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工程化药用凝胶中的植物多糖

Plant Polysaccharides in Engineered Pharmaceutical Gels.

作者信息

Bahú Juliana O, de Andrade Lucas R Melo, de Melo Barbosa Raquel, Crivellin Sara, da Silva Aline Pioli, Souza Samuel D A, Cárdenas Concha Viktor O, Severino Patrícia, Souto Eliana B

机构信息

National Institute of Science and Technology in Biofabrication (INCT-BIOFABRIS), School of Chemical Engineering, University of Campinas, Albert Einstein Ave., Cidade Universitária Zeferino Vaz, Campinas 13083-852, SP, Brazil.

Laboratory of Pharmaceutical Technology, Faculty of Pharmaceutical Sciences, Food and Nutrition, Federal University of Mato Grosso do Sul, Campo Grande 79070-900, MS, Brazil.

出版信息

Bioengineering (Basel). 2022 Aug 9;9(8):376. doi: 10.3390/bioengineering9080376.

Abstract

Hydrogels are a great ally in the pharmaceutical and biomedical areas. They have a three-dimensional polymeric structure that allows the swelling of aqueous fluids, acting as an absorbent, or encapsulating bioactive agents for controlled drug release. Interestingly, plants are a source of biogels, specifically polysaccharides, composed of sugar monomers. The crosslinking of these polymeric chains forms an architecture similar to the extracellular matrix, enhancing the biocompatibility of such materials. Moreover, the rich hydroxyl monomers promote a hydrophilic behavior for these plant-derived polysaccharide gels, enabling their biodegradability and antimicrobial effects. From an economic point of view, such biogels help the circular economy, as a green material can be obtained with a low cost of production. As regards the bio aspect, it is astonishingly attractive since the raw materials (polysaccharides from plants-cellulose, hemicelluloses, lignin, inulin, pectin, starch, guar, and cashew gums, etc.) might be produced sustainably. Such properties make viable the applications of these biogels in contact with the human body, especially incorporating drugs for controlled release. In this context, this review describes some sources of plant-derived polysaccharide gels, their biological function, main methods for extraction, remarkable applications, and properties in the health field.

摘要

水凝胶在制药和生物医学领域是很好的帮手。它们具有三维聚合物结构,能使水性流体膨胀,起到吸收剂的作用,或包裹生物活性剂以实现药物的控释。有趣的是,植物是生物凝胶的来源,特别是由糖单体组成的多糖。这些聚合物链的交联形成了类似于细胞外基质的结构,增强了这类材料的生物相容性。此外,丰富的羟基单体赋予了这些植物源多糖凝胶亲水性,使其具有生物可降解性和抗菌作用。从经济角度来看,这类生物凝胶有助于循环经济,因为可以低成本生产绿色材料。从生物方面来看,它极具吸引力,因为原材料(来自植物的多糖——纤维素、半纤维素、木质素、菊粉、果胶、淀粉、瓜尔胶和腰果胶等)可以可持续生产。这些特性使得这些生物凝胶在与人体接触的应用中切实可行,尤其是用于药物控释。在此背景下,本综述描述了一些植物源多糖凝胶的来源、它们的生物学功能、主要提取方法、显著应用以及在健康领域的特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e48f/9405058/daa30cb86566/bioengineering-09-00376-g001.jpg

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