木薯淀粉基复合材料在新型和传统给药系统中的应用进展:最新进展综述

Sanjoy Das, Malay K. Das, Taison Jamatia, Bireswar Bhattacharya, Rishav Mazumder, Pradip Kumar Yadav, Nayan Ranjan Ghose Bishwas, Trinayan Deka, Dhritiman Roy, Bibek Sinha, Biplajit Das, Ichu Daule, Kishan Paul, Ankita Roy, Ankita Choudhury, Pinkan Sadhukhan, Dibyojyoti Sarmah, Dhritiman Bhargab, Bani Kumar Jana, Dubom Tayeng, Nilayan Guha, Bhrigumani Kalita and Subhajit Mandal
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引用次数: 0

摘要

淀粉因其独特的物理、化学和功能特性,已成为一种可用于制药领域的极具吸引力的新型生物聚合物。这种生物聚合物有几个潜在的优点:生物相容性好、成本低、无毒、易于从植物中分离。在制药领域,淀粉被用作开发各种给药平台的原料。一般来说,木薯淀粉(木薯粉)是从多年生灌木 Manihot esculenta 的膨胀根中提取的,与其他品种的淀粉相比,木薯淀粉的直链淀粉含量较低。因此,木薯淀粉具有各种主要优点,包括糊化温度低、膨胀能力强和糊状粘度相对较高,使其成为制药应用中的理想辅料。然而,原生态木薯淀粉在处理高温和不同 pH 值等各种加工要求时效率低下,因此在许多应用中效果不佳。通过淀粉改性可以提高它们的适用性。这些功能性淀粉已在许多药物配方中作为主要辅料展现出了卓越的前景。本文将讨论木薯淀粉在制药和生物医学领域的潜在应用,以及改性木薯淀粉的毒性评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Advances of cassava starch-based composites in novel and conventional drug delivery systems: a state-of-the-art review

Advances of cassava starch-based composites in novel and conventional drug delivery systems: a state-of-the-art review

Starch has emerged as a new attractive biopolymer for use in pharmaceutical applications, owing to its distinctive physical, chemical and functional properties. This biopolymer has several potential advantages: it is biocompatible, low cost, non-toxic and easily isolated from plant sources. In the pharmaceutical field, starch is used as a raw material for developing various drug delivery platforms. Generally, cassava starch (tapioca) is obtained from the swollen roots of the perennial shrub Manihot esculenta and it contains a low amount of amylose in contrast to other varieties of starches. Because of this reason, cassava starch exhibits various prime benefits, including a low gelatinization temperature, higher swelling power and a relatively high viscosity paste, making it a preferable excipient for pharmaceutical applications. However, cassava starches in their native form are not effective for many applications because of their inefficiency in handling various processing requirements like high temperature and diverse pH. Their applicability can be enhanced by starch modification. These functional starches have demonstrated outstanding prospects as primary excipients in many pharmaceutical formulations. In this article, we discuss the potential application of cassava starches in the pharmaceutical and biomedical fields, along with the toxicity assessment of modified cassava starches.

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