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由壳聚糖、羧甲基纤维素和改性甲基纤维素制成的可生物降解且生物相容的聚两性电解质微凝胶。

Biodegradable and biocompatible polyampholyte microgels derived from chitosan, carboxymethyl cellulose and modified methyl cellulose.

作者信息

Dhar Neha, Akhlaghi Seyedeh Parinaz, Tam Kam C

机构信息

Department of Chemical Engineering, Waterloo Institute for Nanotechnology, University of Waterloo, 200 University Avenue West, Waterloo, Ontario, Canada N2L 3G1.

Department of Chemical Engineering, Waterloo Institute for Nanotechnology, University of Waterloo, 200 University Avenue West, Waterloo, Ontario, Canada N2L 3G1.

出版信息

Carbohydr Polym. 2012 Jan 4;87(1):101-109. doi: 10.1016/j.carbpol.2011.07.022. Epub 2011 Jul 29.

Abstract

Two biocompatible and biodegradable polyampholyte microgels, namely chitosan-carboxymethyl cellulose (CS-CMC) and chitosan-modified methyl cellulose (CS-ModMC) were synthesized by an inverse microemulsion technique. The CS-CMC microgel system was pH-responsive while the CS-ModMC system possessed both pH and thermo-responsive properties. For CS-CMC system, the number of -OCHCOOH and -NH groups was determined to be 1.5 and 1.1meq/g of microgel, respectively. In the pH range of 4-9, the zeta potential values varied from +10 to -40mV, while the hydrodynamic radius varied from 160nm in the swollen state (acidic and basic pH) to 110nm in the "collapse" state (neutral pH). Furthermore, TEM micrographs confirmed the swelling/deswelling behaviour of CS-CMC microgel particles at acidic, neutral and basic conditions. For CS-ModMC system, the number of -OCHCOOH and -NH groups was determined to be 0.8 and 0.6meq/g microgel, respectively. In the pH range of 4-9, the surface charge on the microgels varied from +25 to -60mV and the hydrodynamic radii were 190nm at low pH, 80nm at neutral pH, to 120nm at a high pH. In vitro drug release studies confirmed that CS-CMC microgels could encapsulate and release a model drug, thus they could potentially be used as biocompatible and biodegradable drug carriers.

摘要

通过反相微乳液技术合成了两种具有生物相容性和可生物降解性的聚两性电解质微凝胶,即壳聚糖-羧甲基纤维素(CS-CMC)和壳聚糖改性甲基纤维素(CS-ModMC)。CS-CMC微凝胶体系具有pH响应性,而CS-ModMC体系同时具有pH和温度响应特性。对于CS-CMC体系,测定得到微凝胶中-OCHCOOH和-NH基团的数量分别为1.5和1.1meq/g。在4-9的pH范围内,zeta电位值从+10变化到-40mV,而流体动力学半径从溶胀状态(酸性和碱性pH)下的160nm变化到“塌陷”状态(中性pH)下的110nm。此外,透射电子显微镜照片证实了CS-CMC微凝胶颗粒在酸性、中性和碱性条件下的溶胀/去溶胀行为。对于CS-ModMC体系,测定得到微凝胶中-OCHCOOH和-NH基团的数量分别为0.8和0.6meq/g。在4-9的pH范围内,微凝胶表面电荷从+25变化到-60mV,流体动力学半径在低pH下为190nm,在中性pH下为80nm,在高pH下为120nm。体外药物释放研究证实,CS-CMC微凝胶可以包封并释放一种模型药物,因此它们有可能用作生物相容性和可生物降解的药物载体。

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