Strategies for fabrication of microalgae based biomaterials: Recent updates

Anal Kishore Singh, Chinmaya Mahapatra
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Abstract

Microalgae are rich reservoirs of bioactive compounds as well as they exhibit immense proclivity for interacting with nanomaterials consequently offering strong candidacy for wide range of therapeutic possibilities and other applications. The Nano-Bio interaction between a nanomaterial and a microalga exhibits a characteristic diversity along the parameters of structure, function, chemical and biological compatibility yielding into vast possibilities of enhanced functionalities of both the microalgal biomass and the nanomaterial. The derived biomaterials could be exploited for targeted delivery, immunomodulation through ROS release, oxygenic tissue repair etc. The review enlightens on the synthesis of biopolymeric matrices by microalgae and the influences of nanomaterial presence in it. Further research promises to unlock microalgae's full therapeutic potential, revolutionizing healthcare. This review proceeds to provide an oversight of various therapeutic applications and potential of microalgae.
微藻生物材料的制备策略:最新进展
微藻是丰富的生物活性化合物储存库,并且它们表现出与纳米材料相互作用的巨大倾向,因此为广泛的治疗可能性和其他应用提供了强有力的候选。纳米材料和微藻之间的纳米-生物相互作用在结构、功能、化学和生物相容性参数上表现出特征多样性,从而为微藻生物量和纳米材料的增强功能提供了巨大的可能性。该生物材料可用于靶向递送、ROS释放免疫调节、含氧组织修复等。本文综述了微藻合成生物聚合物基质的研究进展以及纳米材料的存在对微藻合成生物聚合物基质的影响。进一步的研究有望释放微藻的全部治疗潜力,彻底改变医疗保健。本文对微藻的各种治疗应用及其潜力进行了综述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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