Regenerated Cellulose Based Polymers For Biomedical Applications | A Doctoral Research From RDVV Jabalpur(MP) INDIA

Dinesh Kumar Gautam (u. a.)

ISBN 10: 3659691879 ISBN 13: 9783659691874
Editorial: LAP LAMBERT Academic Publishing, 2015
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Descripción:

Regenerated Cellulose Based Polymers For Biomedical Applications | A Doctoral Research From RDVV Jabalpur(MP) INDIA | Dinesh Kumar Gautam (u. a.) | Taschenbuch | 236 S. | Englisch | 2015 | LAP LAMBERT Academic Publishing | EAN 9783659691874 | Verantwortliche Person für die EU: preigu GmbH & Co. KG, Lengericher Landstr. 19, 49078 Osnabrück, mail[at]preigu[dot]de | Anbieter: preigu. N° de ref. del artículo 104697325

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Sinopsis:

Cellulose is the most abundant naturally occurring biopolymer available world-wide, and is considered as inexhaustible source of raw material for increasing demand for environmental friendly and biocompatible products in various biomedical and technological fields. Silver nanoparticles have been a focus of research in biomedical fields due to the fact that they are highly toxic to micro-organisms, exhibiting strong biocidal effects on as many as 16 species of bacteria including E.coli. Silver nanoparticles show excellent antimicrobial activity by binding both to microbial DNA, preventing bacterial replication and to the sulfydryl groups of the metabolic enzymes of the bacterial electron transport chain causing their inactivation.

Reseña del editor: Cellulose is the most abundant naturally occurring biopolymer available world-wide, and is considered as inexhaustible source of raw material for increasing demand for environmental friendly and biocompatible products in various biomedical and technological fields. Silver nanoparticles have been a focus of research in biomedical fields due to the fact that they are highly toxic to micro-organisms, exhibiting strong biocidal effects on as many as 16 species of bacteria including E.coli. Silver nanoparticles show excellent antimicrobial activity by binding both to microbial DNA, preventing bacterial replication and to the sulfydryl groups of the metabolic enzymes of the bacterial electron transport chain causing their inactivation.

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Detalles bibliográficos

Título: Regenerated Cellulose Based Polymers For ...
Editorial: LAP LAMBERT Academic Publishing
Año de publicación: 2015
Encuadernación: Taschenbuch
Condición: Neu

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