探索香蕉皮提取物(Musa种)作为一种新型聚合物的潜在用途,以创造可持续材料和创新药物递送应用:最新综述。

Abhinav Trivedi, Shashi Verma, Ritesh Kumar Tiwari
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引用次数: 0

摘要

背景:芭蕉属植物,包括香蕉和大蕉,是聚合物的天然来源。这些聚合物在各种行业中都有应用,比如制药,它们被用作药物输送系统。此外,Musa物种被用于制造生物聚合物复合材料,这是一种环保材料,以及生产纳米纤维素,一种具有前景的纳米材料。Musa物种的多功能性使其成为开发可持续材料和探索新应用的宝贵资源。目的:综述了近年来Musa在生物聚合物、生物复合材料、纳米纤维素和新型给药系统等方面的应用进展。方法:回顾现有文献、研究和实验结果。为这些应用分析了木藻的特性、处理和制备技术。结果:强调了Musa物种的多方面作用,包括其对制药进步,环保聚合物生产和创新纳米纤维素应用的贡献。综上所述,本文探讨了如何利用Musa物种用于各种技术和科学目的,特别是在生物聚合物,生物复合材料和药物传递系统领域。热带植物的多功能性和重要性在整个审查中强调。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploring Potential Use of Banana Peel Extract (Musa Species) as a New Polymer to Create Sustainable Materials and Innovative Drug Delivery Applications: An Updated Review.

Background: The Musa genus, which includes bananas and plantains, offers a natural source of polymers. These polymers are finding applications in various industries, such as pharmaceuticals, where they are used as drug delivery systems. Additionally, Musa species are used in the creation of biopolymer composites, which are eco-friendly materials, and in the production of nanocellulose, a nanomaterial with promising properties. The versatility of Musa species makes it a valuable resource for developing sustainable materials and exploring new applications.

Objective: This review aims to highlight recent advances in the applications of bio-polymers, biocomposites, nanocellulose, and novel drug delivery systems using Musa species.

Method: The review likely examines existing literature, research studies, and experimental findings related to Musa species. It may analyze the characterization, treatment, and fabrication techniques of Musa species for these applications.

Result: The multifaceted role of Musa species is emphasized, including its contribution to pharmaceutical advancements, eco-friendly polymer production, and innovative nanocellulose applications.

Conclusion: In summary, this review paper explores how Musa species can be harnessed for various technological and scientific purposes, particularly in the fields of biopolymers, biocomposites, and drug delivery systems. The tropical plant's versatility and significance are underscored throughout the review.

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