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	<title>Divers | Nano Publications</title>
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	<title>Divers | Nano Publications</title>
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	<item>
		<title>2019 – Bulletin Cancer – NBTXR3 improves pathological response</title>
		<link>https://bibliography.nanobiotix.com/fr/2019-bulletin-cancer-nbtxr3-improves-pathological-response/</link>
					<comments>https://bibliography.nanobiotix.com/fr/2019-bulletin-cancer-nbtxr3-improves-pathological-response/#respond</comments>
		
		<dc:creator><![CDATA[nano-pub]]></dc:creator>
		<pubDate>Fri, 06 Dec 2019 12:23:41 +0000</pubDate>
				<category><![CDATA[Divers]]></category>
		<category><![CDATA[NO-RIGHTS]]></category>
		<category><![CDATA[Publications]]></category>
		<category><![CDATA[ActInSarc]]></category>
		<category><![CDATA[Complete Response]]></category>
		<category><![CDATA[Controlled]]></category>
		<category><![CDATA[Hafnium Oxide]]></category>
		<category><![CDATA[Nanoparticle]]></category>
		<category><![CDATA[NBTXR3]]></category>
		<category><![CDATA[Pathology]]></category>
		<category><![CDATA[Phase II/III]]></category>
		<category><![CDATA[Radiation Therapy]]></category>
		<category><![CDATA[Radioenhancer]]></category>
		<category><![CDATA[Radiotherapy]]></category>
		<category><![CDATA[Randomized]]></category>
		<category><![CDATA[RT]]></category>
		<category><![CDATA[Soft Tissue Sarcoma]]></category>
		<category><![CDATA[STS]]></category>
		<guid isPermaLink="false">https://bibliography.nanobiotix.com/?p=2069</guid>

					<description><![CDATA[<p>Doubling complete histological response in sarcomas with radiation therapy using nanoparticles (Hafnium oxide, NBTXR3), a phase III trial.</p>
The post <a href="https://bibliography.nanobiotix.com/fr/2019-bulletin-cancer-nbtxr3-improves-pathological-response/">2019 – Bulletin Cancer – NBTXR3 improves pathological response</a> first appeared on <a href="https://bibliography.nanobiotix.com/fr/">Nano Publications</a>.]]></description>
										<content:encoded><![CDATA[<div class="az-main-section-content az-module az-padding-top-0 az-padding-bottom-0 az-section-default az-section-with-equal no-animate-content az-module-bg-color">
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<div class="az-content-element-wrapper az-box-icon-wrapper az-margin-top-0 az-margin-bottom-0 no-animate-content">
    <div class="az-box-icon az-box-icon-top">
            <div class="az-icon-container" style="color: #ffffff; font-size: 50px;"><i class="fa fa-edit"></i>
            </div><div class="az-box-icon-content az-font-custom az-font-color-custom" style="color: #ffffff;"><h3 class="az-box-icon-title">Authors</h3><p>Nazim Khalladi<span class="notes up">1</span>, Juliette Thariat<span class="notes up">1,2</span><br />
<span class="notes"><br />
1 – Centre François-Baclesse/ARCHADE, Department of Radiation, Oncology, 3, avenue Général-Harris, 14000 Caen, France<br />
2 – Normandie université, UNICAEN, ENSICAEN, CNRS/IN2P3, LPC Caen,14000 Caen, France<br />
</span></p>
</div></div>
</div>
<div class="az-content-element-wrapper az-empty-divider hidden-lg hidden-md" style="height: 60px;"></div></div></div></div><div data-animation-type="ani-in" data-animation-in="fadeInUp" data-animation-out="none" data-animation-speed="default" data-animation-delay="300" data-offset-down="90" data-offset-up="none" class="single-clms col-md-6 az-main-col-content az-module az-col-pos-middle az-v-space-clm animate-content az-module-bg-color"><div class="az-col az-clm-padding-105" >
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        </div><div class="az-col-cont"><div class="az-content-element-wrapper az-empty-divider hidden-lg hidden-md" style="height: 60px;"></div>
<div class="az-content-element-wrapper az-box-icon-wrapper az-margin-top-0 az-margin-bottom-0 no-animate-content">
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            <div class="az-icon-container" style="color: #28282e; font-size: 50px;"><i class="az-icon az-icon-layers2"></i>
            </div><div class="az-box-icon-content"><h3 class="az-box-icon-title">Summary</h3><p>Doubling complete histological response in sarcomas with radiation therapy using nanoparticles (Hafnium oxide, NBTXR3), a phase III trial</p>
</div></div>
</div>
<div class="az-content-element-wrapper az-empty-divider hidden-lg hidden-md" style="height: 60px;"></div></div></div></div></div></div></div></div></div></div></div>The post <a href="https://bibliography.nanobiotix.com/fr/2019-bulletin-cancer-nbtxr3-improves-pathological-response/">2019 – Bulletin Cancer – NBTXR3 improves pathological response</a> first appeared on <a href="https://bibliography.nanobiotix.com/fr/">Nano Publications</a>.]]></content:encoded>
					
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			<slash:comments>0</slash:comments>
		
		
			</item>
		<item>
		<title>2017 &#8211; Nano-sized cytochrome p450 3a4 inhibitors to block hepatic &#8211; Paolini et al.</title>
		<link>https://bibliography.nanobiotix.com/fr/08-2017-nano-sized-cytochrome-p450-3a4-inhibitors-to-block-hepatic-paolini-et-al/</link>
					<comments>https://bibliography.nanobiotix.com/fr/08-2017-nano-sized-cytochrome-p450-3a4-inhibitors-to-block-hepatic-paolini-et-al/#respond</comments>
		
		<dc:creator><![CDATA[nano-pub]]></dc:creator>
		<pubDate>Fri, 01 Sep 2017 07:08:05 +0000</pubDate>
				<category><![CDATA[Divers]]></category>
		<category><![CDATA[NO-RIGHTS]]></category>
		<category><![CDATA[Publications]]></category>
		<category><![CDATA[Bioavailability]]></category>
		<category><![CDATA[Biocompatible]]></category>
		<category><![CDATA[Biodistribution]]></category>
		<category><![CDATA[Breast]]></category>
		<category><![CDATA[Cytochrome]]></category>
		<category><![CDATA[Docetaxel]]></category>
		<category><![CDATA[Drug]]></category>
		<category><![CDATA[Efficiency]]></category>
		<category><![CDATA[Galactosamine]]></category>
		<category><![CDATA[Hepatic]]></category>
		<category><![CDATA[Hepatocytes]]></category>
		<category><![CDATA[Hydrodynamic]]></category>
		<category><![CDATA[Metabolized]]></category>
		<category><![CDATA[Nanocarrier]]></category>
		<category><![CDATA[Natural]]></category>
		<category><![CDATA[Survival]]></category>
		<category><![CDATA[Tumor]]></category>
		<guid isPermaLink="false">http://bibliography.nanobiotix.com/?p=1216/</guid>

					<description><![CDATA[<p>Most drugs are metabolized by hepatic cytochrome P450 3A4 (CYP3A4), resulting in their reduced bioavailability. In this study, we present the design and evaluation of biocompatible nanocarriers trapping a natural CYP3A4-inhibiting compound. Our aim in using nanocarriers was to target the natural CYP3A4-inhibiting agent to hepatic CYP3A4 and leave drug-metabolizing enzymes in other organs undisturbed.</p>
The post <a href="https://bibliography.nanobiotix.com/fr/08-2017-nano-sized-cytochrome-p450-3a4-inhibitors-to-block-hepatic-paolini-et-al/">2017 – Nano-sized cytochrome p450 3a4 inhibitors to block hepatic – Paolini et al.</a> first appeared on <a href="https://bibliography.nanobiotix.com/fr/">Nano Publications</a>.]]></description>
										<content:encoded><![CDATA[<div class="az-main-section-content az-module az-padding-top-0 az-padding-bottom-0 az-section-default az-section-with-equal no-animate-content az-module-bg-color">
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        <div class="az-module-wrap-bg">
            <div class="az-module-wrapper-bg  az-imagesLoadedBg" style="background-image: url(https://bibliography.nanobiotix.com/wp-content/uploads/2017/02/Working-it.jpg); background-position: center center; background-repeat: no-repeat; background-size: cover;">
            
    <div class="az-module-mask-group">
        <span class="az-module-mask-bg is-bg main-mask"></span>
        
    </div>
            </div>
            
        </div><div class="az-col-cont"><div class="az-content-element-wrapper az-empty-divider hidden-lg hidden-md" style="height: 60px;"></div>
<div class="az-content-element-wrapper az-box-icon-wrapper az-margin-top-0 az-margin-bottom-0 no-animate-content">
    <div class="az-box-icon az-box-icon-top">
            <div class="az-icon-container" style="color: #ffffff; font-size: 50px;"><i class="fa fa-edit"></i>
            </div><div class="az-box-icon-content az-font-custom az-font-color-custom" style="color: #ffffff;"><h3 class="az-box-icon-title">Authors</h3><p>Marion Paolini<span class="notes up">1,2</span>, Laurence Poul, PhD<span class="notes up">1</span>, Céline Berjaud<span class="notes up">1</span>, Matthieu Germain, PhD<span class="notes up">1</span>, Audrey Darmon<span class="notes up">1</span>, Maxime Bergère<span class="notes up">1</span>, Agnès Pottier, PhD<span class="notes up">1</span>, Laurent Levy, PhD<span class="notes up">1</span>, Eric Vibert, MD, PhD<span class="notes up">2</span><br />
<span class="notes">1 – Nanobiotix SA, rue de Wattignies, Paris, France<br />
2 – UMR-S 1193 INSERM/Paris-Sud University, Centre Hépato-Biliaire, Hôpital Paul Brousse, Villejuif, France</span></p>
</div></div>
</div>
<div class="az-content-element-wrapper az-empty-divider hidden-lg hidden-md" style="height: 60px;"></div></div></div></div><div data-animation-type="ani-in" data-animation-in="fadeInUp" data-animation-out="none" data-animation-speed="default" data-animation-delay="300" data-offset-down="90" data-offset-up="none" class="single-clms col-md-6 az-main-col-content az-module az-col-pos-middle az-v-space-clm animate-content az-module-bg-color"><div class="az-col az-clm-padding-105" >
        <div class="az-module-wrap-bg">
            <div class="az-module-wrapper-bg" style="background: #ffffff;"></div>
            
        </div><div class="az-col-cont"><div class="az-content-element-wrapper az-empty-divider hidden-lg hidden-md" style="height: 60px;"></div>
<div class="az-content-element-wrapper az-box-icon-wrapper az-margin-top-0 az-margin-bottom-0 no-animate-content">
    <div class="az-box-icon az-box-icon-top">
            <div class="az-icon-container" style="color: #28282e; font-size: 50px;"><i class="az-icon az-icon-layers2"></i>
            </div><div class="az-box-icon-content"><h3 class="az-box-icon-title">Summary</h3><p>Most drugs are metabolized by hepatic cytochrome P450 3A4 (CYP3A4), resulting in their reduced bioavailability. In this study, we present the design and evaluation of biocompatible nanocarriers trapping a natural CYP3A4-inhibiting compound. Our aim in using nanocarriers was to target the natural CYP3A4-inhibiting agent to hepatic CYP3A4 and leave drug-metabolizing enzymes in other organs undisturbed. In the design of such nanocarriers, we took advantage of the nonspecific accumulation of small nanoparticles in the liver. Specific targeting functionalization was added to direct nanocarriers toward hepatocytes. Nanocarriers were evaluated in vitro for their CYP3A4 inhibition capacity and in vivo for their biodistribution, and finally injected 24 hours prior to the drug docetaxel, for their ability to improve the efficiency of the drug docetaxel. Nanoparticles of poly(lactic-co-glycolic) acid (PLGA) with a hydrodynamic diameter of 63 nm, functionalized with galactosamine, showed efficient in vitro CYP3A4 inhibition and the highest accumulation in hepatocytes. When compared to docetaxel alone, in nude mice bearing the human breast cancer, MDA-MB-231 model, they significantly improved the delay in tumor growth (treated group versus docetaxel alone, percent treated versus control ratio [%T/C] of 32%) and demonstrated a major improvement in overall survival (survival rate of 67% versus 0% at day 55).</p>
</div></div>
</div>
<div class="az-content-element-wrapper az-empty-divider hidden-lg hidden-md" style="height: 60px;"></div></div></div></div></div></div></div></div></div></div></div>The post <a href="https://bibliography.nanobiotix.com/fr/08-2017-nano-sized-cytochrome-p450-3a4-inhibitors-to-block-hepatic-paolini-et-al/">2017 – Nano-sized cytochrome p450 3a4 inhibitors to block hepatic – Paolini et al.</a> first appeared on <a href="https://bibliography.nanobiotix.com/fr/">Nano Publications</a>.]]></content:encoded>
					
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			</item>
		<item>
		<title>2017 &#8211; A new opportunity for nanomedicines &#8211; Paolini et al.</title>
		<link>https://bibliography.nanobiotix.com/fr/2017-a-new-opportunity-for-nanomedicines-paolini-et-al/</link>
					<comments>https://bibliography.nanobiotix.com/fr/2017-a-new-opportunity-for-nanomedicines-paolini-et-al/#respond</comments>
		
		<dc:creator><![CDATA[nano-pub]]></dc:creator>
		<pubDate>Wed, 14 Jun 2017 09:41:43 +0000</pubDate>
				<category><![CDATA[Divers]]></category>
		<category><![CDATA[NO-RIGHTS]]></category>
		<category><![CDATA[Publications]]></category>
		<category><![CDATA[Antitumor]]></category>
		<category><![CDATA[Furanocoumarin]]></category>
		<category><![CDATA[Hepatic CYP450]]></category>
		<category><![CDATA[Hepatocytes]]></category>
		<category><![CDATA[Intravenous]]></category>
		<category><![CDATA[Nanocarrier]]></category>
		<category><![CDATA[Pharmacoenhancer]]></category>
		<category><![CDATA[Polysorbate 80]]></category>
		<guid isPermaLink="false">http://bibliography.nanobiotix.com/?p=1175/</guid>

					<description><![CDATA[<p>Nanomedicines are mainly used as drug delivery systems; here we evaluate a new application - to inhibit a drug's metabolism thereby enhancing its effective dose. Micelles containing the natural furanocoumarin 6′,7′ dihydroxybergamottin (DHB), a known CYP450 inhibitor, were developed to transiently block hepatic CYP450-mediated drug metabolism and increase the bioavailability of the oncology drug docetaxel.</p>
The post <a href="https://bibliography.nanobiotix.com/fr/2017-a-new-opportunity-for-nanomedicines-paolini-et-al/">2017 – A new opportunity for nanomedicines – Paolini et al.</a> first appeared on <a href="https://bibliography.nanobiotix.com/fr/">Nano Publications</a>.]]></description>
										<content:encoded><![CDATA[<div class="az-main-section-content az-module az-padding-top-0 az-padding-bottom-0 az-section-default az-section-with-equal no-animate-content az-module-bg-color">
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        </div><div class="container-fluid az-container-no-padding"><div class="row row-parent az-gutter-0 az-equal"><div class="single-clms col-md-12 az-main-col-content az-module az-v-space-clm no-animate-content az-module-default"><div class="az-col az-clm-padding-0" ><div class="az-col-cont"><div class="row row-inner az-padding-top-0 az-padding-bottom-0 az-gutter-0 az-equal no-animate-content"><div data-animation-type="ani-in" data-animation-in="fadeInUp" data-animation-out="none" data-animation-speed="default" data-animation-delay="200" data-offset-down="90" data-offset-up="none" class="single-clms col-md-6 az-main-col-content az-module az-col-pos-middle az-v-space-clm animate-content az-module-bg-image"><div class="az-col az-clm-padding-105" data-col-min-height-default="700" data-col-min-height-sm="400" data-col-min-height-xs="350" style="min-height: 700px;">
        <div class="az-module-wrap-bg">
            <div class="az-module-wrapper-bg  az-imagesLoadedBg" style="background-image: url(https://bibliography.nanobiotix.com/wp-content/uploads/2017/02/Working-it.jpg); background-position: center center; background-repeat: no-repeat; background-size: cover;">
            
    <div class="az-module-mask-group">
        <span class="az-module-mask-bg is-bg main-mask"></span>
        
    </div>
            </div>
            
        </div><div class="az-col-cont"><div class="az-content-element-wrapper az-empty-divider hidden-lg hidden-md" style="height: 60px;"></div>
<div class="az-content-element-wrapper az-box-icon-wrapper az-margin-top-0 az-margin-bottom-0 no-animate-content">
    <div class="az-box-icon az-box-icon-top">
            <div class="az-icon-container" style="color: #ffffff; font-size: 50px;"><i class="fa fa-edit"></i>
            </div><div class="az-box-icon-content az-font-custom az-font-color-custom" style="color: #ffffff;"><h3 class="az-box-icon-title">Authors</h3><p>Marion Paolini<span class="notes up">1,2</span>, Laurence Poul, PhD<span class="notes up">1</span>, Audrey Darmon<span class="notes up">1</span>, Matthieu Germain, PhD<span class="notes up">1</span>, Agnès Pottier, PhD<span class="notes up">1</span>, Laurent Levy, PhD<span class="notes up">1</span>, Eric Vibert, MD, PhD<span class="notes up">2</span><br />
<span class="notes">1 – Nanobiotix SA, rue de Wattignies, Paris, France<br />
2 – UMR-S 1193 Inserm/University Paris Sud, Centre Hépato-Biliaire, Hôpital Paul Brousse, Villejuif, France</span></p>
</div></div>
</div>
<div class="az-content-element-wrapper az-empty-divider hidden-lg hidden-md" style="height: 60px;"></div></div></div></div><div data-animation-type="ani-in" data-animation-in="fadeInUp" data-animation-out="none" data-animation-speed="default" data-animation-delay="300" data-offset-down="90" data-offset-up="none" class="single-clms col-md-6 az-main-col-content az-module az-col-pos-middle az-v-space-clm animate-content az-module-bg-color"><div class="az-col az-clm-padding-105" >
        <div class="az-module-wrap-bg">
            <div class="az-module-wrapper-bg" style="background: #ffffff;"></div>
            
        </div><div class="az-col-cont"><div class="az-content-element-wrapper az-empty-divider hidden-lg hidden-md" style="height: 60px;"></div>
<div class="az-content-element-wrapper az-box-icon-wrapper az-margin-top-0 az-margin-bottom-0 no-animate-content">
    <div class="az-box-icon az-box-icon-top">
            <div class="az-icon-container" style="color: #28282e; font-size: 50px;"><i class="az-icon az-icon-layers2"></i>
            </div><div class="az-box-icon-content"><h3 class="az-box-icon-title">Summary</h3><p>Nanomedicines are mainly used as drug delivery systems; here we evaluate a new application &#8211; to inhibit a drug&rsquo;s metabolism thereby enhancing its effective dose. Micelles containing the natural furanocoumarin 6′,7′ dihydroxybergamottin (DHB), a known CYP450 inhibitor, were developed to transiently block hepatic CYP450-mediated drug metabolism and increase the bioavailability of the oncology drug docetaxel. Administered in mice 24 h prior to the drug, DHB-micelles enhanced antitumor efficacy in the tumor xenograft models HT-29 and MDA-MB-231, when compared to the drug alone. These DHB-micelles have similar composition to marketed docetaxel–micelles for human use. Despite not being optimized in terms of targeting hepatocytes, they do represent the first injectable example of nanosized metabolism-blocking agents and open the way for further work on such nanomedicines in man.</p>
</div></div>
</div>
<div class="az-content-element-wrapper az-empty-divider hidden-lg hidden-md" style="height: 60px;"></div></div></div></div></div></div></div></div></div></div></div>The post <a href="https://bibliography.nanobiotix.com/fr/2017-a-new-opportunity-for-nanomedicines-paolini-et-al/">2017 – A new opportunity for nanomedicines – Paolini et al.</a> first appeared on <a href="https://bibliography.nanobiotix.com/fr/">Nano Publications</a>.]]></content:encoded>
					
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		<title>2015 &#8211; Metals as radio-enhancers in oncology &#8211; Pottier et al.</title>
		<link>https://bibliography.nanobiotix.com/fr/2015-metals-as-radio-enhancers-in-oncology-pottier-et-al/</link>
					<comments>https://bibliography.nanobiotix.com/fr/2015-metals-as-radio-enhancers-in-oncology-pottier-et-al/#respond</comments>
		
		<dc:creator><![CDATA[nano-pub]]></dc:creator>
		<pubDate>Tue, 14 Feb 2017 15:25:15 +0000</pubDate>
				<category><![CDATA[Divers]]></category>
		<category><![CDATA[NO-RIGHTS]]></category>
		<category><![CDATA[Publications]]></category>
		<category><![CDATA[Cellular]]></category>
		<category><![CDATA[Industry]]></category>
		<category><![CDATA[Ionizing]]></category>
		<category><![CDATA[Metal]]></category>
		<category><![CDATA[Oncology]]></category>
		<category><![CDATA[Radiation]]></category>
		<category><![CDATA[Radionenhancer]]></category>
		<category><![CDATA[Therapeutic]]></category>
		<category><![CDATA[Tumor]]></category>
		<guid isPermaLink="false">http://localhost:8888/bibliography/2017/02/14/2015-metals-as-radio-enhancers-in-oncology-pottier-et-al/</guid>

					<description><![CDATA[<p>Radio-enhancers, metal-based nanosized agents, could play a key role in oncology. They may unlock the potential of radiotherapy by enhancing the radiation dose deposit within tumors when the ionizing radiation source is ‘on’, while exhibiting chemically inert behavior in cellular and subcellular systems when the radiation beam is ‘off’. Important decision points support the development of these new type of therapeutic agents originated from nanotechnology. Here, we discuss from an industry perspective, the interest of developing radio-enhancer agents to improve tumor control, the relevance of nanotechnology to achieve adequate therapeutic attributes, and present some considerations for their development in oncology.</p>
The post <a href="https://bibliography.nanobiotix.com/fr/2015-metals-as-radio-enhancers-in-oncology-pottier-et-al/">2015 – Metals as radio-enhancers in oncology – Pottier et al.</a> first appeared on <a href="https://bibliography.nanobiotix.com/fr/">Nano Publications</a>.]]></description>
										<content:encoded><![CDATA[<div class="az-main-section-content az-module az-padding-top-0 az-padding-bottom-0 az-section-default az-section-with-equal no-animate-content az-module-bg-color">
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        </div><div class="container-fluid az-container-no-padding"><div class="row row-parent az-gutter-0 az-equal"><div class="single-clms col-md-12 az-main-col-content az-module az-v-space-clm no-animate-content az-module-default"><div class="az-col az-clm-padding-0" ><div class="az-col-cont"><div class="row row-inner az-padding-top-0 az-padding-bottom-0 az-gutter-0 az-equal no-animate-content"><div data-animation-type="ani-in" data-animation-in="fadeInUp" data-animation-out="none" data-animation-speed="default" data-animation-delay="200" data-offset-down="90" data-offset-up="none" class="single-clms col-md-6 az-main-col-content az-module az-col-pos-middle az-v-space-clm animate-content az-module-bg-image"><div class="az-col az-clm-padding-105" data-col-min-height-default="700" data-col-min-height-sm="400" data-col-min-height-xs="350" style="min-height: 700px;">
        <div class="az-module-wrap-bg">
            <div class="az-module-wrapper-bg  az-imagesLoadedBg" style="background-image: url(https://bibliography.nanobiotix.com/wp-content/uploads/2017/02/Working-it.jpg); background-position: center center; background-repeat: no-repeat; background-size: cover;">
            
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        </div><div class="az-col-cont"><div class="az-content-element-wrapper az-empty-divider hidden-lg hidden-md" style="height: 60px;"></div>
<div class="az-content-element-wrapper az-box-icon-wrapper az-margin-top-0 az-margin-bottom-0 no-animate-content">
    <div class="az-box-icon az-box-icon-top">
            <div class="az-icon-container" style="color: #ffffff; font-size: 50px;"><i class="fa fa-edit"></i>
            </div><div class="az-box-icon-content az-font-custom az-font-color-custom" style="color: #ffffff;"><h3 class="az-box-icon-title">Authors</h3><p>Agnès Pottier<span class="notes up">1</span>, Elsa Borghi<span class="notes up">1</span>, Laurent Levy<span class="notes up">1</span><br />
<span class="notes">1 – Nanobiotix, Paris, France</span></p>
<p>0006-291X/© 2015 Published by Elsevier Inc.<br />
<a href="https://dx.doi.org/10.1016/j.bbrc.2015.09.027" target="_blank" rel="noopener noreferrer">https://dx.doi.org/10.1016/j.bbrc.2015.09.027<br />
</a><a href="https://www.sciencedirect.com/science/journal/0006291X" target="_blank" rel="noopener noreferrer">https://www.sciencedirect.com/science/journal/0006291X</a></p>
</div></div>
</div>
<div class="az-content-element-wrapper az-empty-divider hidden-lg hidden-md" style="height: 60px;"></div></div></div></div><div data-animation-type="ani-in" data-animation-in="fadeInUp" data-animation-out="none" data-animation-speed="default" data-animation-delay="300" data-offset-down="90" data-offset-up="none" class="single-clms col-md-6 az-main-col-content az-module az-col-pos-middle az-v-space-clm animate-content az-module-bg-color"><div class="az-col az-clm-padding-105" >
        <div class="az-module-wrap-bg">
            <div class="az-module-wrapper-bg" style="background: #ffffff;"></div>
            
        </div><div class="az-col-cont"><div class="az-content-element-wrapper az-empty-divider hidden-lg hidden-md" style="height: 60px;"></div>
<div class="az-content-element-wrapper az-box-icon-wrapper az-margin-top-0 az-margin-bottom-0 no-animate-content">
    <div class="az-box-icon az-box-icon-top">
            <div class="az-icon-container" style="color: #28282e; font-size: 50px;"><i class="az-icon az-icon-layers2"></i>
            </div><div class="az-box-icon-content"><h3 class="az-box-icon-title">Summary</h3><p>Radio-enhancers, metal-based nanosized agents, could play a key role in oncology. They may unlock the potential of radiotherapy by enhancing the radiation dose deposit within tumors when the ionizing radiation source is ‘on’, while exhibiting chemically inert behavior in cellular and subcellular systems when the radiation beam is ‘off’. Important decision points support the development of these new type of therapeutic agents originated from nanotechnology. Here, we discuss from an industry perspective, the interest of developing radio-enhancer agents to improve tumor control, the relevance of nanotechnology to achieve adequate therapeutic attributes, and present some considerations for their development in oncology.</p>
</div></div>
</div>
<div class="az-content-element-wrapper az-empty-divider hidden-lg hidden-md" style="height: 60px;"></div></div></div></div></div></div></div></div></div></div></div>The post <a href="https://bibliography.nanobiotix.com/fr/2015-metals-as-radio-enhancers-in-oncology-pottier-et-al/">2015 – Metals as radio-enhancers in oncology – Pottier et al.</a> first appeared on <a href="https://bibliography.nanobiotix.com/fr/">Nano Publications</a>.]]></content:encoded>
					
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		<title>2015 &#8211; The future of nanosized radiation enhancers &#8211; Pottier et al.</title>
		<link>https://bibliography.nanobiotix.com/fr/2015-the-future-of-nanosized-radiation-enhancers-pottier-et-al/</link>
					<comments>https://bibliography.nanobiotix.com/fr/2015-the-future-of-nanosized-radiation-enhancers-pottier-et-al/#respond</comments>
		
		<dc:creator><![CDATA[nano-pub]]></dc:creator>
		<pubDate>Mon, 06 Feb 2017 11:21:27 +0000</pubDate>
				<category><![CDATA[Divers]]></category>
		<category><![CDATA[NO-RIGHTS]]></category>
		<category><![CDATA[Publications]]></category>
		<category><![CDATA[Cell]]></category>
		<category><![CDATA[Clinical]]></category>
		<category><![CDATA[Depositing]]></category>
		<category><![CDATA[Dose]]></category>
		<category><![CDATA[Feasability]]></category>
		<category><![CDATA[Predictable]]></category>
		<category><![CDATA[Radiation]]></category>
		<category><![CDATA[Radiotherapy]]></category>
		<category><![CDATA[Standards]]></category>
		<category><![CDATA[Surrounding]]></category>
		<category><![CDATA[Tissue]]></category>
		<category><![CDATA[Trial]]></category>
		<category><![CDATA[Tumor]]></category>
		<guid isPermaLink="false">http://localhost:8888/bibliography/2017/02/06/2015-the-future-of-nanosized-radiation-enhancers-pottier-et-al/</guid>

					<description><![CDATA[<p>Radiotherapy has a universal and predictable mode of action, that is, a physical mode of action consisting of the deposit of a dose of energy in tissues. Tumour cell damage is proportional to the energy dose. However, the main limitation of radiotherapy is the lack of spatial control of the deposition of energy, that is, it penetrates the healthy tissues, damages them and renders unfeasible delivery of an efficient energy dose when tumours are close to important anatomical structures. True nanosized radiation enhancers may represent a disruptive approach to broaden the therapeutic window of radiation therapy.</p>
The post <a href="https://bibliography.nanobiotix.com/fr/2015-the-future-of-nanosized-radiation-enhancers-pottier-et-al/">2015 – The future of nanosized radiation enhancers – Pottier et al.</a> first appeared on <a href="https://bibliography.nanobiotix.com/fr/">Nano Publications</a>.]]></description>
										<content:encoded><![CDATA[<div class="az-main-section-content az-module az-padding-top-0 az-padding-bottom-0 az-section-default az-section-with-equal no-animate-content az-module-bg-color">
        <div class="az-module-wrap-bg">
            <div class="az-module-wrapper-bg" style="background: #28282e;"></div>
            
        </div><div class="container-fluid az-container-no-padding"><div class="row row-parent az-gutter-0 az-equal"><div class="single-clms col-md-12 az-main-col-content az-module az-v-space-clm no-animate-content az-module-default"><div class="az-col az-clm-padding-0" ><div class="az-col-cont"><div class="row row-inner az-padding-top-0 az-padding-bottom-0 az-gutter-0 az-equal no-animate-content"><div data-animation-type="ani-in" data-animation-in="fadeInUp" data-animation-out="none" data-animation-speed="default" data-animation-delay="200" data-offset-down="90" data-offset-up="none" class="single-clms col-md-6 az-main-col-content az-module az-col-pos-middle az-v-space-clm animate-content az-module-bg-image"><div class="az-col az-clm-padding-105" data-col-min-height-default="700" data-col-min-height-sm="400" data-col-min-height-xs="350" style="min-height: 700px;">
        <div class="az-module-wrap-bg">
            <div class="az-module-wrapper-bg  az-imagesLoadedBg" style="background-image: url(https://bibliography.nanobiotix.com/wp-content/uploads/2017/02/Working-it.jpg); background-position: center center; background-repeat: no-repeat; background-size: cover;">
            
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        </div><div class="az-col-cont"><div class="az-content-element-wrapper az-empty-divider hidden-lg hidden-md" style="height: 60px;"></div>
<div class="az-content-element-wrapper az-box-icon-wrapper az-margin-top-0 az-margin-bottom-0 no-animate-content">
    <div class="az-box-icon az-box-icon-top">
            <div class="az-icon-container" style="color: #ffffff; font-size: 50px;"><i class="fa fa-edit"></i>
            </div><div class="az-box-icon-content az-font-custom az-font-color-custom" style="color: #ffffff;"><h3 class="az-box-icon-title">Authors</h3><p>Agnes Pottier (agnes.pottier@nanobiotix.com), Elsa Borghi (elsa.borghi@nanobiotix.com), Laurent Levy (laurent.levy@nanobiotix.com)<br />
<span class="notes">Nanobiotix, 60 rue de wattignies, 75012 Paris, France</span></p>
</div></div>
</div>
<div class="az-content-element-wrapper az-empty-divider hidden-lg hidden-md" style="height: 60px;"></div></div></div></div><div data-animation-type="ani-in" data-animation-in="fadeInUp" data-animation-out="none" data-animation-speed="default" data-animation-delay="300" data-offset-down="90" data-offset-up="none" class="single-clms col-md-6 az-main-col-content az-module az-col-pos-middle az-v-space-clm animate-content az-module-bg-color"><div class="az-col az-clm-padding-105" >
        <div class="az-module-wrap-bg">
            <div class="az-module-wrapper-bg" style="background: #ffffff;"></div>
            
        </div><div class="az-col-cont"><div class="az-content-element-wrapper az-empty-divider hidden-lg hidden-md" style="height: 60px;"></div>
<div class="az-content-element-wrapper az-box-icon-wrapper az-margin-top-0 az-margin-bottom-0 no-animate-content">
    <div class="az-box-icon az-box-icon-top">
            <div class="az-icon-container" style="color: #28282e; font-size: 50px;"><i class="az-icon az-icon-layers2"></i>
            </div><div class="az-box-icon-content"><h3 class="az-box-icon-title">Summary</h3><p>Radiotherapy has a universal and predictable mode of action, that is, a physical mode of action consisting of the deposit of a dose of energy in tissues. Tumour cell damage is proportional to the energy dose. However, the main limitation of radiotherapy is the lack of spatial control of the deposition of energy, that is, it penetrates the healthy tissues, damages them and renders unfeasible delivery of an efficient energy dose when tumours are close to important anatomical structures. True nanosized radiation enhancers may represent a disruptive approach to broaden the therapeutic window of radiation therapy.</p>
<p>They offer the possibility of entering tumour cells and depositing high amounts of energy in the tumour only when exposed to ionizing radiations (on/off activity). They may unlock the potential of radiation therapy by rendering the introduction of a greater energy dose, exactly within the tumour structure without passing through surrounding tissues feasible. Several nanosized radiation enhancers have been studied in in vitro and in vivo models with positive results. One agent has received the authorization to conduct clinical trials for human use. Opportunities to improve outcomes for patients receiving radiotherapy, to create new standards of care and to offer solutions to new patient populations are looked over here.</p>
</div></div>
</div>
<div class="az-content-element-wrapper az-empty-divider hidden-lg hidden-md" style="height: 60px;"></div></div></div></div></div></div></div></div></div></div></div>The post <a href="https://bibliography.nanobiotix.com/fr/2015-the-future-of-nanosized-radiation-enhancers-pottier-et-al/">2015 – The future of nanosized radiation enhancers – Pottier et al.</a> first appeared on <a href="https://bibliography.nanobiotix.com/fr/">Nano Publications</a>.]]></content:encoded>
					
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		<title>2010 &#8211; Nanocarrier for Photodynamic Therapy &#8211; Thienot et al.</title>
		<link>https://bibliography.nanobiotix.com/fr/2010-nanocarrier-for-photodynamic-therapy-thienot-et-al/</link>
					<comments>https://bibliography.nanobiotix.com/fr/2010-nanocarrier-for-photodynamic-therapy-thienot-et-al/#respond</comments>
		
		<dc:creator><![CDATA[nano-pub]]></dc:creator>
		<pubDate>Mon, 06 Feb 2017 13:35:30 +0000</pubDate>
				<category><![CDATA[Divers]]></category>
		<category><![CDATA[NO-RIGHTS]]></category>
		<category><![CDATA[Publications]]></category>
		<category><![CDATA[Chemistry]]></category>
		<category><![CDATA[Nanocarrier]]></category>
		<category><![CDATA[photodynamic therapy]]></category>
		<guid isPermaLink="false">http://localhost:8888/bibliography/2017/02/06/2010-nanocarrier-for-photodynamic-therapy-thienot-et-al/</guid>

					<description><![CDATA[<p>A new versatile hybrid nano carrier has been designed using a “soft chemistry” synthesis, to efficiently encapsulate a photosensitizer – the protoporphyrin IX (Pp IX) – while preserving its activity intact in biological environment for advantageous use in photodynamic therapy (PDT).</p>
The post <a href="https://bibliography.nanobiotix.com/fr/2010-nanocarrier-for-photodynamic-therapy-thienot-et-al/">2010 – Nanocarrier for Photodynamic Therapy – Thienot et al.</a> first appeared on <a href="https://bibliography.nanobiotix.com/fr/">Nano Publications</a>.]]></description>
										<content:encoded><![CDATA[<div class="az-main-section-content az-module az-padding-top-0 az-padding-bottom-0 az-section-default az-section-with-equal no-animate-content az-module-bg-color">
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            <div class="az-module-wrapper-bg" style="background: #28282e;"></div>
            
        </div><div class="container-fluid az-container-no-padding"><div class="row row-parent az-gutter-0 az-equal"><div class="single-clms col-md-12 az-main-col-content az-module az-v-space-clm no-animate-content az-module-default"><div class="az-col az-clm-padding-0" ><div class="az-col-cont"><div class="row row-inner az-padding-top-0 az-padding-bottom-0 az-gutter-0 az-equal no-animate-content"><div data-animation-type="ani-in" data-animation-in="fadeInUp" data-animation-out="none" data-animation-speed="default" data-animation-delay="200" data-offset-down="90" data-offset-up="none" class="single-clms col-md-6 az-main-col-content az-module az-col-pos-middle az-v-space-clm animate-content az-module-bg-image"><div class="az-col az-clm-padding-105" data-col-min-height-default="700" data-col-min-height-sm="400" data-col-min-height-xs="350" style="min-height: 700px;">
        <div class="az-module-wrap-bg">
            <div class="az-module-wrapper-bg  az-imagesLoadedBg" style="background-image: url(https://bibliography.nanobiotix.com/wp-content/uploads/2017/02/Author.jpg); background-position: center center; background-repeat: no-repeat; background-size: cover;">
            
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        </div><div class="az-col-cont"><div class="az-content-element-wrapper az-empty-divider hidden-lg hidden-md" style="height: 60px;"></div>
<div class="az-content-element-wrapper az-box-icon-wrapper az-margin-top-0 az-margin-bottom-0 no-animate-content">
    <div class="az-box-icon az-box-icon-top">
            <div class="az-icon-container" style="color: #ffffff; font-size: 50px;"><i class="fa fa-edit"></i>
            </div><div class="az-box-icon-content az-font-custom az-font-color-custom" style="color: #ffffff;"><h3 class="az-box-icon-title">Authors</h3><p>Virginie Simon<span class="notes up">1</span>, Kelthoum Piejos<span class="notes up">1</span>, Audrey Darmon<span class="notes up">1</span>, Jean-Francois Hochepied<span class="notes up">2</span>, Edouard Thiénot<span class="notes up">1</span>, Matthieu Germain<span class="notes up">1</span>, Agnès Pottier<span class="notes up">1</span>, Elsa Borghi<span class="notes up">1</span>, Laurent Levy<span class="notes up">1</span> and Julie Marill*<span class="notes up">1</span><br />
<span class="notes">1 – Nanobiotix SA, rue de Wattignies, Paris, France<br />
2 – Mines ParisTech, CEP/SCPI, 60, boulevard Saint-Michel, 75006 Paris, France</span></p>
</div></div>
</div>
<div class="az-content-element-wrapper az-empty-divider hidden-lg hidden-md" style="height: 60px;"></div></div></div></div><div data-animation-type="ani-in" data-animation-in="fadeInUp" data-animation-out="none" data-animation-speed="default" data-animation-delay="300" data-offset-down="90" data-offset-up="none" class="single-clms col-md-6 az-main-col-content az-module az-col-pos-middle az-v-space-clm animate-content az-module-bg-color"><div class="az-col az-clm-padding-105" >
        <div class="az-module-wrap-bg">
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        </div><div class="az-col-cont"><div class="az-content-element-wrapper az-empty-divider hidden-lg hidden-md" style="height: 60px;"></div>
<div class="az-content-element-wrapper az-box-icon-wrapper az-margin-top-0 az-margin-bottom-0 no-animate-content">
    <div class="az-box-icon az-box-icon-top">
            <div class="az-icon-container" style="color: #28282e; font-size: 50px;"><i class="az-icon az-icon-layers2"></i>
            </div><div class="az-box-icon-content"><h3 class="az-box-icon-title">Summary</h3><p>A new versatile hybrid nano carrier has been designed using a “soft chemistry” synthesis, to efficiently encapsulate a photosensitizer – the protoporphyrin IX (Pp IX) – while preserving its activity intact in biological environment for advantageous use in photodynamic therapy (PDT). […]</p>
</div></div>
</div>
<div class="az-content-element-wrapper az-empty-divider hidden-lg hidden-md" style="height: 60px;"></div></div></div></div></div></div></div></div></div></div></div>The post <a href="https://bibliography.nanobiotix.com/fr/2010-nanocarrier-for-photodynamic-therapy-thienot-et-al/">2010 – Nanocarrier for Photodynamic Therapy – Thienot et al.</a> first appeared on <a href="https://bibliography.nanobiotix.com/fr/">Nano Publications</a>.]]></content:encoded>
					
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		<title>2010 &#8211; Silica Nanoparticles &#8211; Simon et al.</title>
		<link>https://bibliography.nanobiotix.com/fr/2010-silica-nanoparticles-simon-et-al/</link>
					<comments>https://bibliography.nanobiotix.com/fr/2010-silica-nanoparticles-simon-et-al/#respond</comments>
		
		<dc:creator><![CDATA[nano-pub]]></dc:creator>
		<pubDate>Mon, 06 Feb 2017 13:25:44 +0000</pubDate>
				<category><![CDATA[Divers]]></category>
		<category><![CDATA[NO-RIGHTS]]></category>
		<category><![CDATA[Publications]]></category>
		<category><![CDATA[Photodamage]]></category>
		<category><![CDATA[Silica-based nanoparticles]]></category>
		<guid isPermaLink="false">http://localhost:8888/bibliography/2017/02/06/2010-silica-nanoparticles-simon-et-al/</guid>

					<description><![CDATA[<p>Protoporphyrin IX (Pp IX) silica nanoparticles, developed for effective use in photodynamic therapy (PDT), were explored in in vitro and in vivo models with the ambition to improve knowledge on the role of biological factors in the photodamage. Pp IX silica nanoparticles are found efficient at temperature with extreme metabolic downregulation, which suggest a high proportion of passive internalization. For the first time, clearance of silica nanoparticles on tumor cells is established. Cell viability assessment in six tumor cell lines is reported.</p>
The post <a href="https://bibliography.nanobiotix.com/fr/2010-silica-nanoparticles-simon-et-al/">2010 – Silica Nanoparticles – Simon et al.</a> first appeared on <a href="https://bibliography.nanobiotix.com/fr/">Nano Publications</a>.]]></description>
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            </div><div class="az-box-icon-content az-font-custom az-font-color-custom" style="color: #ffffff;"><h3 class="az-box-icon-title">Authors</h3><p>Virginie Simon<span class="notes up">1</span>, Corinne Devaux<span class="notes up">1</span>, Audrey Darmon<span class="notes up">1</span>, Thibault Donnet<span class="notes up">1</span>, Edouard Thiénot<span class="notes up">1</span>, Matthieu Germain<span class="notes up">1</span>, Jérome Honnorat<span class="notes up">2</span>, Alex Duval<span class="notes up">3</span>, Agnès Pottier<span class="notes up">1</span>, Elsa Borghi<span class="notes up">1</span>, Laurent Levy<span class="notes up">1</span> and Julie Marill*<span class="notes up">1</span><br />
<span class="notes">1 – Nanobiotix SA, rue de Wattignies, Paris, France<br />
2 – UMR Inserm-UCBL2 U842, Faculté Laennec, rue G. Paradin, Lyon, France<br />
3 – UMR S893, rue du faubourg Saint Antoine, Paris, France</span></p>
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            </div><div class="az-box-icon-content"><h3 class="az-box-icon-title">Summary</h3><p>Protoporphyrin IX (Pp IX) silica nanoparticles, developed for effective use in photodynamic therapy (PDT), were explored in in vitro and in vivo models with the ambition to improve knowledge on the role of biological factors in the photodamage. Pp IX silica nanoparticles are found efficient at temperature with extreme metabolic downregulation, which suggest a high proportion of passive internalization. For the first time, clearance of silica nanoparticles on tumor cells is established. Cell viability assessment in six tumor cell lines is reported. In all tumor types, Pp IX silica nanoparticles are more efficient than free Pp IX. A strong fluorescence signal of reactive oxygen species generation colocalized with Pp IX silica nanoparticles, correlates with 100% of cell death. In vivo studies performed in HCT 116, A549 and glioblastoma multiforme tumors-bearing mice show tumor uptake of Pp IX silica nanoparticles with better tumor accumulation than the control alone, highlighting a high selectivity for tumor tissues. As observed in in vitro tests, tumor cell type is likely a major determinant but tumor microenvironment could more influence this differential time accumulation dynamic. The present results strongly suggest that Pp IX silica nanoparticles may be involved in new alternative local applications of PDT.</p>
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<div class="az-content-element-wrapper az-empty-divider hidden-lg hidden-md" style="height: 60px;"></div></div></div></div></div></div></div></div></div></div></div>The post <a href="https://bibliography.nanobiotix.com/fr/2010-silica-nanoparticles-simon-et-al/">2010 – Silica Nanoparticles – Simon et al.</a> first appeared on <a href="https://bibliography.nanobiotix.com/fr/">Nano Publications</a>.]]></content:encoded>
					
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		<title>2010 &#8211; Combinations of proteins with Nano-Systems &#8211; Di Marco et al.</title>
		<link>https://bibliography.nanobiotix.com/fr/2010-combinations-of-proteins-with-nano-systems-di-marco-et-al/</link>
					<comments>https://bibliography.nanobiotix.com/fr/2010-combinations-of-proteins-with-nano-systems-di-marco-et-al/#respond</comments>
		
		<dc:creator><![CDATA[nano-pub]]></dc:creator>
		<pubDate>Mon, 06 Feb 2017 12:30:17 +0000</pubDate>
				<category><![CDATA[Divers]]></category>
		<category><![CDATA[NO-RIGHTS]]></category>
		<category><![CDATA[Publications]]></category>
		<category><![CDATA[Biomolecules]]></category>
		<category><![CDATA[Chemotherapeutic]]></category>
		<category><![CDATA[Delivery]]></category>
		<category><![CDATA[Design]]></category>
		<category><![CDATA[Drug]]></category>
		<category><![CDATA[Encapsulate]]></category>
		<category><![CDATA[Pharmacokinetics]]></category>
		<category><![CDATA[Protein]]></category>
		<category><![CDATA[Therapeutic]]></category>
		<category><![CDATA[Versatile]]></category>
		<guid isPermaLink="false">http://localhost:8888/bibliography/2017/02/06/2010-combinations-of-proteins-with-nano-systems-di-marco-et-al/</guid>

					<description><![CDATA[<p>The latest development of protein engineering allows the production of proteins having desired properties and large potential markets, but the clinical advances of therapeutical proteins are still limited by their fragility. Nanotechnology could provide optimal vectors able to protect from degradation therapeutical biomolecules such as proteins, enzymes or specific polypeptides.</p>
The post <a href="https://bibliography.nanobiotix.com/fr/2010-combinations-of-proteins-with-nano-systems-di-marco-et-al/">2010 – Combinations of proteins with Nano-Systems – Di Marco et al.</a> first appeared on <a href="https://bibliography.nanobiotix.com/fr/">Nano Publications</a>.]]></description>
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            </div><div class="az-box-icon-content az-font-custom az-font-color-custom" style="color: #ffffff;"><h3 class="az-box-icon-title">Authors</h3><p>Mariagrazia Di Marco<span class="notes up">1</span>, Shaharum Shamsuddin<span class="notes up">2</span>, Khairunisak Abdul Razak<span class="notes up">3</span>, Azlan Abdul Aziz<span class="notes up">4</span>, Corinne Devaux<span class="notes up">1</span>, Elsa Borghi<span class="notes up">1</span>, Laurent Levy<span class="notes up">1</span>, Claudia Sadun<span class="notes up">5</span><br />
<span class="notes">1 – Nanobiotix, Paris, France<br />
2 – School of Health Sciences, Health Campus Universiti Sains Malaysia, Kelantan, Malaysia<br />
3 – School of Materials and Mineral Resources Engineering, Engineering Campus<br />
4 – School of Physics, Universiti Sains Malaysia, Penang, Malaysia<br />
5 – Department of Chemistry, Sapienza, University of Rome, Rome, Italy</span></p>
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<div class="az-content-element-wrapper az-empty-divider hidden-lg hidden-md" style="height: 60px;"></div></div></div></div><div data-animation-type="ani-in" data-animation-in="fadeInUp" data-animation-out="none" data-animation-speed="default" data-animation-delay="300" data-offset-down="90" data-offset-up="none" class="single-clms col-md-6 az-main-col-content az-module az-col-pos-middle az-v-space-clm animate-content az-module-bg-color"><div class="az-col az-clm-padding-105" >
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            </div><div class="az-box-icon-content"><h3 class="az-box-icon-title">Summary</h3><p><strong>Abstract:</strong> The latest development of protein engineering allows the production of proteins having desired properties and large potential markets, but the clinical advances of therapeutical proteins are still limited by their fragility. Nanotechnology could provide optimal vectors able to protect from degradation therapeutical biomolecules such as proteins, enzymes or specific polypeptides.</p>
<p>On the other hand, some proteins can be also used as active ligands to help nanoparticles loaded with chemotherapeutic or other drugs to reach particular sites in the body. The aim of this review is to provide an overall picture of the general aspects of the most successful approaches used to combine proteins with nanosystems. This combination is mainly achieved by absorption, bioconjugation and encapsulation. Interactions of nanoparticles with biomolecules and caveats related to protein denaturation are also pointed out. A clear understanding of nanoparticle-protein interactions could make possible the design of precise and versatile hybrid nanosystems. This could further allow control of their pharmacokinetics as well as activity, and safety.</p>
<p><strong>Keywords:</strong> nanoparticles, drug delivery, proteins, polypeptides, absorption, bioconjugation, encapsulation</p>
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<div class="az-content-element-wrapper az-empty-divider hidden-lg hidden-md" style="height: 60px;"></div></div></div></div></div></div></div></div></div></div></div>The post <a href="https://bibliography.nanobiotix.com/fr/2010-combinations-of-proteins-with-nano-systems-di-marco-et-al/">2010 – Combinations of proteins with Nano-Systems – Di Marco et al.</a> first appeared on <a href="https://bibliography.nanobiotix.com/fr/">Nano Publications</a>.]]></content:encoded>
					
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