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Collette, Floraine:SUPRAMOLECULAR ENGINEERING OF VESICLES VIA SELF-ASSEMBLY: - APPLICATION TO DRUG DELIVERY
- Taschenbuch 2010, ISBN: 9783838379821
[ED: Taschenbuch / Paperback], [PU: LAP Lambert Academic Publishing], Sixteen millions of people are diabetics in the United States. Finding an oral way to deliver the insulin they need w… Mehr…
[ED: Taschenbuch / Paperback], [PU: LAP Lambert Academic Publishing], Sixteen millions of people are diabetics in the United States. Finding an oral way to deliver the insulin they need would improve the quality of their life. For this purpose biodegradable and biocompatible nanovesicles encapsulating some insulin have been synthesized. Those nanovesicles are made by self-assembly of a triblock copolymer poly(ethylene glycol)-b-poly(lactic acid)-b-poly (glutamic acid). The triblock copolymer has been prepared in several steps by multi-step anionic ring- opening polymerization. The first step consisted in the preparation of the diblock copolymer PEG-b-PLA. The second step was the synthesis of the poly (glutamic acid). The polybenzyl(glutamic acid) was obtained by ring opening polymerization of the N- Carboxyanhydride of the corresponding amino acid. Finally, the benzyl group was deprotected via protonolysis, to generate the homopolymer. This triblock was successfully obtained by coupling a diblock copolymer PEG-b-PLA and a homopolymer poly (glutamic acid). In the presence of an aqueous solution of insulin, the triblock copolymer self- assembles in nanovesicles containing a part of the free insulin., DE, [SC: 0.00], Neuware, gewerbliches Angebot, H: 220mm, B: 150mm, T: 7mm, 144, [GW: 208g], Selbstabholung und Barzahlung, PayPal, offene Rechnung, Banküberweisung, Internationaler Versand<
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BEISPIEL
Collette, Floraine:SUPRAMOLECULAR ENGINEERING OF VESICLES VIA SELF-ASSEMBLY:
- Taschenbuch 2010, ISBN: 9783838379821
2010. ; KT ; COLLETTE:SUPRAMOLECULAR ENGINEERING OF Sixteen millions of people are diabetics in the United States. Finding an oral way to deliver the insulin they need would improve the q… Mehr…
2010. ; KT ; COLLETTE:SUPRAMOLECULAR ENGINEERING OF Sixteen millions of people are diabetics in the United States. Finding an oral way to deliver the insulin they need would improve the quality of their life. For this purpose biodegradable and biocompatible nanovesicles encapsulating some insulin have been synthesized. Those nanovesicles are made by self-assembly of a triblock copolymer poly(ethylene glycol)-b-poly(lactic acid)-b-poly (glutamic acid). The triblock copolymer has been prepared in several steps by multi-step anionic ring- opening polymerization. The first step consisted in the preparation of the diblock copolymer PEG-b-PLA. The second step was the synthesis of the poly (glutamic acid). The polybenzyl(glutamic acid) was obtained by ring opening polymerization of the N- Carboxyanhydride of the corresponding amino acid. Finally, the benzyl group was deprotected via protonolysis, to generate the homopolymer. This triblock was successfully obtained by coupling a diblock copolymer PEG-b-PLA and a homopolymer poly (glutamic acid). In the presence of an aqueous solution of insulin, the triblock copolymer self- assembles in nanovesicles containing a part of the free insulin. Buch Taschenbuch<
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Floraine Collette:SUPRAMOLECULAR ENGINEERING OF VESICLES VIA SELF-ASSEMBLY:
- neues Buch ISBN: 9783838379821
Sixteen millions of people are diabetics in the United States. Finding an oral way to deliver the insulin they need would improve the quality of their life. For this purpose biodegradable… Mehr…
Sixteen millions of people are diabetics in the United States. Finding an oral way to deliver the insulin they need would improve the quality of their life. For this purpose biodegradable and biocompatible nanovesicles encapsulating some insulin have been synthesized. Those nanovesicles are made by self-assembly of a triblock copolymer poly(ethylene glycol)-b-poly(lactic acid)-b-poly (glutamic acid). The triblock copolymer has been prepared in several steps by multi-step anionic ring- opening polymerization. The first step consisted in the preparation of the diblock copolymer PEG-b-PLA. The second step was the synthesis of the poly (glutamic acid). The polybenzyl(glutamic acid) was obtained by ring opening polymerization of the N- Carboxyanhydride of the corresponding amino acid. Finally, the benzyl group was deprotected via protonolysis, to generate the homopolymer. This triblock was successfully obtained by coupling a diblock copolymer PEG-b-PLA and a homopolymer poly (glutamic acid). In the presence of an aqueous solution of insulin, the triblock copolymer self- assembles in nanovesicles containing a part of the free insulin. Bücher / Naturwissenschaften, Medizin, Informatik & Technik / Chemie<
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SUPRAMOLECULAR ENGINEERING OF VESICLES VIA SELF-ASSEMBLY:
- neues BuchISBN: 9783838379821
Sixteen millions of people are diabetics in the United States. Finding an oral way to deliver the insulin they need would improve the quality of their life. For this purpose biodegradable… Mehr…
Sixteen millions of people are diabetics in the United States. Finding an oral way to deliver the insulin they need would improve the quality of their life. For this purpose biodegradable and biocompatible nanovesicles encapsulating some insulin have been synthesized. Those nanovesicles are made by self-assembly of a triblock copolymer poly(ethylene glycol)-b-poly(lactic acid)-b-poly (glutamic acid). The triblock copolymer has been prepared in several steps by multi-step anionic ring- opening polymerization. The first step consisted in the preparation of the diblock copolymer PEG-b-PLA. The second step was the synthesis of the poly (glutamic acid). The polybenzyl(glutamic acid) was obtained by ring opening polymerization of the N- Carboxyanhydride of the corresponding amino acid. Finally, the benzyl group was deprotected via protonolysis, to generate the homopolymer. This triblock was successfully obtained by coupling a diblock copolymer PEG-b-PLA and a homopolymer poly (glutamic acid). In the presence of an aqueous solution of insulin, the triblock copolymer self- assembles in nanovesicles containing a part of the free insulin. Bücher / Naturwissenschaften, Medizin, Informatik & Technik / Chemie<
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Floraine COLLETTE:SUPRAMOLECULAR ENGINEERING OF VESICLES VIA SELF-ASSEMBLY: als Buch von Floraine COLLETTE
- gebunden oder broschiert ISBN: 9783838379821
SUPRAMOLECULAR ENGINEERING OF VESICLES VIA SELF-ASSEMBLY::APPLICATION TO DRUG DELIVERY Floraine COLLETTE SUPRAMOLECULAR ENGINEERING OF VESICLES VIA SELF-ASSEMBLY::APPLICATION TO DRUG DELI… Mehr…
SUPRAMOLECULAR ENGINEERING OF VESICLES VIA SELF-ASSEMBLY::APPLICATION TO DRUG DELIVERY Floraine COLLETTE SUPRAMOLECULAR ENGINEERING OF VESICLES VIA SELF-ASSEMBLY::APPLICATION TO DRUG DELIVERY Floraine COLLETTE Bücher > English, International > Gebundene Ausgaben, LAP Lambert Academic Publishing<
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