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原花青素作为纳米复合材料应用中的生物活性化合物的最新进展。

Recent Advances in Prodigiosin as a Bioactive Compound in Nanocomposite Applications.

机构信息

Tecnologico de Monterrey, Institute of Advanced Materials for Sustainable Manufacturing Monterrey, Monterrey 64849, Mexico.

Chemical & Biochemical Engineering Department, Tecnológico Nacional de México-Instituto Tecnológico de Durango (TecNM-ITD), Blvd. Felipe Pescador 1830 Ote. Durango, Durango 34080, Mexico.

出版信息

Molecules. 2022 Aug 5;27(15):4982. doi: 10.3390/molecules27154982.

Abstract

Bionanocomposites based on natural bioactive entities have gained importance due to their abundance; renewable and environmentally benign nature; and outstanding properties with applied perspective. Additionally, their formulation with biological molecules with antimicrobial, antioxidant, and anticancer activities has been produced nowadays. The present review details the state of the art and the importance of this pyrrolic compound produced by microorganisms, with interest towards , including production strategies at a laboratory level and scale-up to bioreactors. Promising results of its biological activity have been reported to date, and the advances and applications in bionanocomposites are the most recent strategy to potentiate and to obtain new carriers for the transport and controlled release of prodigiosin. Prodigiosin, a bioactive secondary metabolite, produced by , is an effective proapoptotic agent against bacterial and fungal strains as well as cancer cell lines. Furthermore, this molecule presents antioxidant activity, which makes it ideal for treating wounds and promoting the general improvement of the immune system. Likewise, some of the characteristics of prodigiosin, such as hydrophobicity, limit its use for medical and biotechnological applications; however, this can be overcome by using it as a component of a bionanocomposite. This review focuses on the chemistry and the structure of the bionanocomposites currently developed using biorenewable resources. Moreover, the work illuminates recent developments in pyrrole-based bionanocomposites, with special insight to its application in the medical area.

摘要

基于天然生物活性物质的生物纳米复合材料由于其丰富性、可再生性和环境友好性以及具有应用前景的优异性能而受到重视。此外,如今已经将具有抗菌、抗氧化和抗癌活性的生物分子与它们一起进行配方设计。本综述详细介绍了这种由微生物产生的吡咯化合物的最新进展和重要性,包括实验室水平和生物反应器规模的生产策略。迄今为止,已经报道了其生物活性的有希望的结果,并且在生物纳米复合材料中的进展和应用是增强和获得新型载体以用于普罗迪osin 的运输和控制释放的最新策略。普罗迪osin 是一种由 产生的生物活性次生代谢物,是一种有效的促凋亡剂,可对抗细菌和真菌菌株以及癌细胞系。此外,该分子具有抗氧化活性,使其成为治疗伤口和促进免疫系统整体改善的理想选择。同样,普罗迪osin 的一些特性,如疏水性,限制了其在医学和生物技术应用中的使用;然而,这可以通过将其用作生物纳米复合材料的一部分来克服。本综述重点介绍了使用生物可再生资源开发的生物纳米复合材料的化学和结构。此外,这项工作阐明了基于吡咯的生物纳米复合材料的最新进展,特别关注其在医学领域的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f2d0/9370345/e9afa4baf1ff/molecules-27-04982-g001.jpg

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