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羧甲基化对水蜈蚣淀粉的物理化学性质、粉体学性质及释放特性的影响

Effect of carboxymethylation on physicochemical, micromeritics and release characteristics of Kyllinga nemoralis starch.

作者信息

Paramakrishnan N, Jha S, Kumar K Jayaram

机构信息

Department of Pharmaceutical Sciences and Technology, BIT, Mesra, 835215, Ranchi, Jharkhand State, India.

Department of Pharmaceutical Sciences and Technology, BIT, Mesra, 835215, Ranchi, Jharkhand State, India.

出版信息

Int J Biol Macromol. 2016 Nov;92:543-549. doi: 10.1016/j.ijbiomac.2016.07.039. Epub 2016 Jul 13.

Abstract

Lesser usages of native starch has attracted attention in the modification of starch to incorporate its benefits for pharmaceutical application. A work has been carried out to study the influence of carboxymethylation on the morphological, physico-chemical, powder, spectroscopical and drug discharge characteristics of native starch. Various amount of monochloroacetic acid was used to study the influence of degree of substitution (DS) on the diverse characteristics of modified starch. Amylose content was found to be reduced with the increase in degree of substitution. An enhanced degree of structure deformation was observed with the increment in the DS by the help of scanning electron micrographs. The FT-IR spectra established the polysaccharide nature and the carboxymethylation of the chemically modified starch molecules through the new bands at 1602cm, and 1418.69cm. The stability of carboxymethyl starches pertaining to the temperature has been revealed by thermogravimetric analysis. Micromeritics of carboxymethylated starches shows their effectiveness as excipients in tablet formulation. The delayed % release of the drug, with the rise in degree of substitution from the tablets prepared marks that the carboxymethyl derivatives of Kyllinga nemoralis rhizomes starch may be used as a suitable source of excipient for sustained release formulations.

摘要

天然淀粉的较少用途在淀粉改性以纳入其在药物应用中的益处方面引起了关注。已经开展了一项工作来研究羧甲基化对天然淀粉的形态、物理化学、粉末、光谱和药物释放特性的影响。使用不同量的一氯乙酸来研究取代度(DS)对改性淀粉各种特性的影响。发现随着取代度的增加直链淀粉含量降低。借助扫描电子显微镜观察到随着取代度的增加结构变形程度增强。傅里叶变换红外光谱(FT-IR)通过1602cm和1418.69cm处的新谱带确定了化学改性淀粉分子的多糖性质和羧甲基化。热重分析揭示了羧甲基淀粉在温度方面的稳定性。羧甲基化淀粉的粉体学特性表明它们作为片剂配方中的辅料是有效的。从制备的片剂来看,随着取代度的增加药物的延迟释放百分比表明黑三棱根茎淀粉的羧甲基衍生物可用作缓释制剂的合适辅料来源。

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