Phyco-synthesized inorganic nanoparticles and their biomedical applications

Nishmitha Ramaraj, Gobika Thiripuranathar, Sagarika Ekanayake, Keerthi Attanayake and Upul Marapana
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引用次数: 0

Abstract

Marine macroalgae have long been utilized commercially and industrially in food, pharmaceutical, and cosmetic industries. The current trend is to synthesize nanoparticles (NPs) utilizing marine macroalgae as they are a rich source of bioactive compounds. Utilization of marine macroalgae and algal-based polysaccharides is becoming a trendsetter as a simple, cost-effective, sustainable method to synthesize metallic and metallic oxide NPs, thus opening up a new field known as phyco-nanotechnology. Due to safe and biocompatible nature, macroalgae based NPs are investigated for their biological activities such as antibacterial, antifungal, antiviral, anti-inflammatory, anticancer and antioxidant activities. This review focuses on metallic and metallic oxide NPs synthesized from marine macroalgae and their biological activities, with a detailed comparison of how various types of NPs differ in their mechanisms to highlight their distinct effects and potential biomedical applications. Furthermore, current innovations of marine macroalgal polysaccharides such as alginate, fucoidan, and ulvan based NPs as well as their promising opportunities in biomedical applications and therapeutics are also reviewed.

植物合成无机纳米粒子及其生物医学应用
长期以来,海洋巨藻在食品、制药和化妆品工业中得到了商业和工业上的应用。目前的趋势是利用大型海藻合成纳米颗粒(NPs),因为它们是生物活性化合物的丰富来源。利用海洋大型藻类和藻类多糖作为一种简单、经济、可持续的合成金属和金属氧化物纳米粒子的方法正在成为一种趋势,从而开辟了一个新的领域,即藻纳米技术。由于其安全性和生物相容性,大藻NPs具有抗菌、抗真菌、抗病毒、抗炎、抗癌和抗氧化等生物活性。本文综述了从海洋大型藻类中合成的金属和金属氧化物NPs及其生物活性,并详细比较了不同类型NPs的不同机制,以突出其独特的作用和潜在的生物医学应用。此外,本文还综述了海藻酸盐、岩藻聚糖和基于ulvan的NPs等海洋大藻多糖的最新进展及其在生物医学和治疗方面的应用前景。
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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CiteScore
0.60
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