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用于炔诺酮肟控释和缓释的六偏磷酸钠交联壳聚糖微球的制备与表征

Preparation and characterization of sodium hexameta phosphate cross-linked chitosan microspheres for controlled and sustained delivery of centchroman.

作者信息

Gupta K C, Jabrail Fawzi Habeeb

机构信息

Polymer Research Laboratory, Department of Chemistry, Indian Institute of Technology, Roorkee 247 667, India.

出版信息

Int J Biol Macromol. 2006 May 30;38(3-5):272-83. doi: 10.1016/j.ijbiomac.2006.03.013. Epub 2006 Mar 14.

Abstract

The cross-linked microspheres using chitosan with different molecular weights and degree of deacetylation have been prepared in presence of sodium hexameta polyphosphate (SHMP) as physical cross-linker. The degree of cross-linking through electrostatic interactions in chitosan microspheres has been evaluated by varying the charge density on chitosan and varying degree of dissociation of sodium hexameta polyphosphate by solution pH. The degree of deacetylation and molecular weight of chitosan has controlled electrostatic interactions between hexameta polyphosphate anions and chitosan, which played significant role in swelling, loading and release characteristics of chitosan microspheres for centchroman. The microspheres prepared by hexameta polyphosphate anions cross-linker were compact and more hydrophobic than covalently cross-linked microspheres, which has been attributed to the participation of all amino groups of chitosan in physical cross-linking with added hexameta polyphosphate anions. The microspheres prepared under different experimental conditions have shown an initial step of burst release, which was followed by a step of controlled release for centchroman. The extent of drug release in these steps has shown dependence on properties of chitosan and degree of cross-linking between chitosan and added polyanions. The degree of swelling and release characteristics of microspheres was also studied in presence of organic and inorganic salts, which shown significant effect on controlled characteristics of microspheres due to variations in ionic strength of the medium. The initial step of drug release has followed first order kinetics and become zero order after attaining an equilibrium degree of swelling in these microspheres. The microspheres prepared using chitosan with 62% (w/w) degree of deacetylation and molecular weight of 1134kgmol(-1) have shown a sustained release for centchroman for 50h at 4% (w/w) degree of cross-linking with SHMP.

摘要

以六偏磷酸钠(SHMP)作为物理交联剂,制备了具有不同分子量和脱乙酰度的壳聚糖交联微球。通过改变壳聚糖上的电荷密度以及通过溶液pH改变六偏磷酸钠的解离程度,评估了壳聚糖微球中通过静电相互作用的交联程度。壳聚糖的脱乙酰度和分子量控制了六偏磷酸根阴离子与壳聚糖之间的静电相互作用,这对壳聚糖微球中炔诺酮的溶胀、负载和释放特性起着重要作用。由六偏磷酸根阴离子交联剂制备的微球比共价交联的微球更致密且更疏水,这归因于壳聚糖的所有氨基参与了与添加的六偏磷酸根阴离子的物理交联。在不同实验条件下制备的微球显示出初始的突释步骤,随后是炔诺酮的控释步骤。这些步骤中的药物释放程度显示出依赖于壳聚糖的性质以及壳聚糖与添加的聚阴离子之间的交联程度。还研究了在有机和无机盐存在下微球的溶胀程度和释放特性,由于介质离子强度的变化,这对微球的控释特性显示出显著影响。药物释放的初始步骤遵循一级动力学,在这些微球达到平衡溶胀度后变为零级动力学。使用脱乙酰度为62%(w/w)、分子量为1134kgmol⁻¹的壳聚糖制备的微球,在与SHMP的交联度为4%(w/w)时,对炔诺酮显示出50小时的持续释放。

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