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Protein encapsulation in biodegradable amphiphilic microspheres

Identifieur interne : 000A86 ( PascalFrancis/Checkpoint ); précédent : 000A85; suivant : 000A87

Protein encapsulation in biodegradable amphiphilic microspheres

Auteurs : P. Bouillot [France] ; N. Ubrich [France] ; F. Sommer [France] ; TRAN MINH DUC [France] ; J.-P. Loeffler [France] ; Édith Dellacherie [France]

Source :

RBID : Pascal:99-0311903

Descripteurs français

English descriptors

Abstract

MPOE-PLA microspheres containing bovine serum albumin (BSA) were prepared by the double emulsion method with high encapsulation efficiency (∼ 93%). Confocal scanning microscopic analysis using MPOE-PLA labelled with 1-pyrenemethanol showed the MPOE coating of the microsphere surface. This coating improves the performance of the release system compared with PLA microspheres; the hydrophilic chains reduce the BSA adsorption onto the microspheres and increase the amount of BSA released in the supernatant. Microsphere analysis using atomic force microscopy showed that the presence of the MPOE chains also leads to surface roughness. Studies of the diffusion of 1% rhodamine aqueous solution into the microspheres by means of confocal microscopy showed a fast diffusion of water through the matrices containing high molecular weight MPOE chains ( > 10000 g mol- ') and could explain the fast release of BSA from these microspheres.


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Pascal:99-0311903

Le document en format XML

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<div type="abstract" xml:lang="en">MPOE-PLA microspheres containing bovine serum albumin (BSA) were prepared by the double emulsion method with high encapsulation efficiency (∼ 93%). Confocal scanning microscopic analysis using MPOE-PLA labelled with 1-pyrenemethanol showed the MPOE coating of the microsphere surface. This coating improves the performance of the release system compared with PLA microspheres; the hydrophilic chains reduce the BSA adsorption onto the microspheres and increase the amount of BSA released in the supernatant. Microsphere analysis using atomic force microscopy showed that the presence of the MPOE chains also leads to surface roughness. Studies of the diffusion of 1% rhodamine aqueous solution into the microspheres by means of confocal microscopy showed a fast diffusion of water through the matrices containing high molecular weight MPOE chains ( > 10000 g mol
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<s5>17</s5>
</fC03>
<fC03 i1="09" i2="X" l="ENG">
<s0>Release</s0>
<s5>17</s5>
</fC03>
<fC03 i1="09" i2="X" l="SPA">
<s0>Liberación</s0>
<s5>17</s5>
</fC03>
<fC03 i1="10" i2="X" l="FRE">
<s0>Principe actif</s0>
<s5>18</s5>
</fC03>
<fC03 i1="10" i2="X" l="ENG">
<s0>Active ingredient</s0>
<s5>18</s5>
</fC03>
<fC03 i1="10" i2="X" l="SPA">
<s0>Principio activo</s0>
<s5>18</s5>
</fC03>
<fC03 i1="11" i2="X" l="FRE">
<s0>In vitro</s0>
<s5>19</s5>
</fC03>
<fC03 i1="11" i2="X" l="ENG">
<s0>In vitro</s0>
<s5>19</s5>
</fC03>
<fC03 i1="11" i2="X" l="SPA">
<s0>In vitro</s0>
<s5>19</s5>
</fC03>
<fC03 i1="12" i2="X" l="FRE">
<s0>Polymère amphiphile</s0>
<s5>20</s5>
</fC03>
<fC03 i1="12" i2="X" l="ENG">
<s0>Amphiphilic polymer</s0>
<s5>20</s5>
</fC03>
<fC03 i1="12" i2="X" l="SPA">
<s0>Polímero amfifilo</s0>
<s5>20</s5>
</fC03>
<fC03 i1="13" i2="X" l="FRE">
<s0>Lactique acide polymère</s0>
<s2>NK</s2>
<s5>21</s5>
</fC03>
<fC03 i1="13" i2="X" l="ENG">
<s0>Lactic acid polymer</s0>
<s2>NK</s2>
<s5>21</s5>
</fC03>
<fC03 i1="13" i2="X" l="SPA">
<s0>Láctico ácido polímero</s0>
<s2>NK</s2>
<s5>21</s5>
</fC03>
<fC03 i1="14" i2="X" l="FRE">
<s0>Ester polymère</s0>
<s2>NK</s2>
<s5>22</s5>
</fC03>
<fC03 i1="14" i2="X" l="ENG">
<s0>Ester polymer</s0>
<s2>NK</s2>
<s5>22</s5>
</fC03>
<fC03 i1="14" i2="X" l="SPA">
<s0>Ester polímero</s0>
<s2>NK</s2>
<s5>22</s5>
</fC03>
<fC03 i1="15" i2="X" l="FRE">
<s0>Copolymère biséquencé</s0>
<s2>NK</s2>
<s5>23</s5>
</fC03>
<fC03 i1="15" i2="X" l="ENG">
<s0>Diblock copolymer</s0>
<s2>NK</s2>
<s5>23</s5>
</fC03>
<fC03 i1="15" i2="X" l="SPA">
<s0>Copolímero bisecuencia</s0>
<s2>NK</s2>
<s5>23</s5>
</fC03>
<fC03 i1="16" i2="X" l="FRE">
<s0>Teneur eau</s0>
<s5>24</s5>
</fC03>
<fC03 i1="16" i2="X" l="ENG">
<s0>Water content</s0>
<s5>24</s5>
</fC03>
<fC03 i1="16" i2="X" l="SPA">
<s0>Dosis agua</s0>
<s5>24</s5>
</fC03>
<fC03 i1="17" i2="X" l="FRE">
<s0>Encapsulation</s0>
<s5>35</s5>
</fC03>
<fC03 i1="17" i2="X" l="ENG">
<s0>Encapsulation</s0>
<s5>35</s5>
</fC03>
<fC03 i1="17" i2="X" l="SPA">
<s0>Encapsulación</s0>
<s5>35</s5>
</fC03>
<fC03 i1="18" i2="X" l="FRE">
<s0>Ethylène oxyde copolymère</s0>
<s2>NK</s2>
<s5>78</s5>
</fC03>
<fC03 i1="18" i2="X" l="ENG">
<s0>Ethylene oxide copolymer</s0>
<s2>NK</s2>
<s5>78</s5>
</fC03>
<fC03 i1="18" i2="X" l="SPA">
<s0>Etileno óxido copolímero</s0>
<s2>NK</s2>
<s5>78</s5>
</fC03>
<fC03 i1="19" i2="X" l="FRE">
<s0>Emulsion eau huile eau</s0>
<s5>79</s5>
</fC03>
<fC03 i1="19" i2="X" l="ENG">
<s0>Water oil water emulsion</s0>
<s5>79</s5>
</fC03>
<fC03 i1="19" i2="X" l="SPA">
<s0>Emulsión agua aceite agua</s0>
<s5>79</s5>
</fC03>
<fC03 i1="20" i2="X" l="FRE">
<s0>Copolymère triséquencé</s0>
<s2>NK</s2>
<s5>80</s5>
</fC03>
<fC03 i1="20" i2="X" l="ENG">
<s0>Triblock copolymer</s0>
<s2>NK</s2>
<s5>80</s5>
</fC03>
<fC03 i1="20" i2="X" l="SPA">
<s0>Copolímero trisecuencia</s0>
<s2>NK</s2>
<s5>80</s5>
</fC03>
<fC07 i1="01" i2="X" l="FRE">
<s0>Artiodactyla</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="01" i2="X" l="ENG">
<s0>Artiodactyla</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="01" i2="X" l="SPA">
<s0>Artiodactyla</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="02" i2="X" l="FRE">
<s0>Ungulata</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="02" i2="X" l="ENG">
<s0>Ungulata</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="02" i2="X" l="SPA">
<s0>Ungulata</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="03" i2="X" l="FRE">
<s0>Mammalia</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="03" i2="X" l="ENG">
<s0>Mammalia</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="03" i2="X" l="SPA">
<s0>Mammalia</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="04" i2="X" l="FRE">
<s0>Vertebrata</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="04" i2="X" l="ENG">
<s0>Vertebrata</s0>
<s2>NS</s2>
</fC07>
<fC07 i1="04" i2="X" l="SPA">
<s0>Vertebrata</s0>
<s2>NS</s2>
</fC07>
<fN21>
<s1>193</s1>
</fN21>
</pA>
</standard>
</inist>
<affiliations>
<list>
<country>
<li>France</li>
</country>
<region>
<li>Alsace (région administrative)</li>
<li>Grand Est</li>
<li>Lorraine (région)</li>
<li>Provence-Alpes-Côte d'Azur</li>
</region>
<settlement>
<li>Marseilles</li>
<li>Nancy</li>
<li>Strasbourg</li>
</settlement>
<orgName>
<li>Centre national de la recherche scientifique</li>
<li>Laboratoire réactions et génie des procédés</li>
<li>Université Strasbourg 1</li>
<li>Université de Lorraine</li>
</orgName>
</list>
<tree>
<country name="France">
<noRegion>
<name sortKey="Bouillot, P" sort="Bouillot, P" uniqKey="Bouillot P" first="P." last="Bouillot">P. Bouillot</name>
</noRegion>
<name sortKey="Dellacherie, E" sort="Dellacherie, E" uniqKey="Dellacherie E" first="E." last="Dellacherie">Édith Dellacherie</name>
<name sortKey="Loeffler, J P" sort="Loeffler, J P" uniqKey="Loeffler J" first="J.-P." last="Loeffler">J.-P. Loeffler</name>
<name sortKey="Sommer, F" sort="Sommer, F" uniqKey="Sommer F" first="F." last="Sommer">F. Sommer</name>
<name sortKey="Tran Minh Duc" sort="Tran Minh Duc" uniqKey="Tran Minh Duc" last="Tran Minh Duc">TRAN MINH DUC</name>
<name sortKey="Ubrich, N" sort="Ubrich, N" uniqKey="Ubrich N" first="N." last="Ubrich">N. Ubrich</name>
</country>
</tree>
</affiliations>
</record>

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