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硅藻生物二氧化硅作为一种强大的功能性生物材料的潜在用途:天然药物递送系统的描述性综述。

A Descriptive Review on the Potential Use of Diatom Biosilica as a Powerful Functional Biomaterial: A Natural Drug Delivery System.

作者信息

Kang Sunggu, Woo Yeeun, Seo Yoseph, Yoo Daehyeon, Kwon Daeryul, Park Hyunjun, Lee Sang Deuk, Yoo Hah Young, Lee Taek

机构信息

Department of Chemical Engineering, Kwangwoon University, 20 Kwangwoon-ro, Nowon-gu, Seoul 01897, Republic of Korea.

Protist Research Division, Biological Resources Research Department, Nakdonggang National Institute of Biological Resources (NNIBR), 137, Donam 2-gil, Sangju-si 37242, Gyeongsangbuk-do, Republic of Korea.

出版信息

Pharmaceutics. 2024 Sep 5;16(9):1171. doi: 10.3390/pharmaceutics16091171.

Abstract

Although various chemically synthesized materials are essential in medicine, food, and agriculture, they can exert unexpected side effects on the environment and human health by releasing certain toxic chemicals. Therefore, eco-friendly and biocompatible biomaterials based on natural resources are being actively explored. Recently, biosilica derived from diatoms has attracted attention in various biomedical fields, including drug delivery systems (DDS), due to its uniform porous nano-pattern, hierarchical structure, and abundant silanol functional groups. Importantly, the structural characteristics of diatom biosilica improve the solubility of poorly soluble substances and enable sustained release of loaded drugs. Additionally, diatom biosilica predominantly comprises SiO, has high biocompatibility, and can easily hybridize with other DDS platforms, including hydrogels and cationic DDS, owing to its strong negative charge and abundant silanol groups. This review explores the potential applications of various diatom biosilica-based DDS in various biomedical fields, with a particular focus on hybrid DDS utilizing them.

摘要

尽管各种化学合成材料在医学、食品和农业中至关重要,但它们可能会通过释放某些有毒化学物质对环境和人类健康产生意想不到的副作用。因此,基于自然资源的环保且生物相容的生物材料正受到积极探索。最近,源自硅藻的生物二氧化硅因其均匀的多孔纳米图案、分级结构和丰富的硅醇官能团,在包括药物递送系统(DDS)在内的各种生物医学领域引起了关注。重要的是,硅藻生物二氧化硅的结构特征提高了难溶性物质的溶解度,并能够实现负载药物的持续释放。此外,硅藻生物二氧化硅主要由SiO组成,具有高生物相容性,并且由于其强负电荷和丰富的硅醇基团,能够轻松地与其他DDS平台(包括水凝胶和阳离子DDS)杂交。本文综述探讨了各种基于硅藻生物二氧化硅的DDS在各种生物医学领域的潜在应用,特别关注利用它们的混合DDS。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fde6/11434644/9b53d6ccf39e/pharmaceutics-16-01171-g001.jpg

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