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表面改性纳米纤维素在生物医学工程和纳米医学中的应用:综述。

Surface-Modified Nanocellulose for Application in Biomedical Engineering and Nanomedicine: A Review.

机构信息

Department of Industrial Chemistry "Toso Montanari", Alma Mater Studiorum - University of Bologna, Bologna 40136, Italy.

出版信息

Int J Nanomedicine. 2020 Dec 10;15:9909-9937. doi: 10.2147/IJN.S266103. eCollection 2020.

Abstract

Presently, a plenty of concerns related to the environment are due to the overuse of petroleum-based chemicals and products; the synthesis of functional materials, starting from the natural sources, is the current trend in research. The interest for nanocellulose has recently increased in a huge range of fields, from the material science to the biomedical engineering. Nanocellulose gained this leading role because of several reasons: its natural abundance on this planet, the excellent mechanical and optical features, the good biocompatibility and the attractive capability of undergoing surface chemical modifications. Nanocellulose surface tuning techniques are adopted by the high reactivity of the hydroxyl groups available; the chemical modifications are mainly performed to introduce either charged or hydrophobic moieties that include amination, esterification, oxidation, silylation, carboxymethylation, epoxidation, sulfonation, thiol- and azido-functional capability. Despite the several already published papers regarding nanocellulose, the aim of this review involves discussing the surface chemical functional capability of nanocellulose and the subsequent applications in the main areas of nanocellulose research, such as drug delivery, biosensing/bioimaging, tissue regeneration and bioprinting, according to these modifications. The final goal of this review is to provide a novel and unusual overview on this topic that is continuously under expansion for its intrinsic sophisticated properties.

摘要

目前,由于过度使用基于石油的化学物质和产品,出现了许多与环境相关的问题;从天然资源出发,合成功能性材料是当前研究的趋势。纳米纤维素在从材料科学到生物医学工程等众多领域的应用兴趣最近大幅增加。纳米纤维素之所以能占据主导地位,是因为它具有以下几个原因:它在地球上的丰富度、出色的机械和光学特性、良好的生物相容性以及能够进行表面化学修饰的吸引力。纳米纤维素表面调谐技术采用了其羟基的高反应性;化学修饰主要是为了引入带电荷或疏水性的基团,包括胺化、酯化、氧化、硅烷化、羧甲基化、环氧化、磺化、巯基和叠氮官能化能力。尽管已经有许多关于纳米纤维素的论文发表,但本文的目的是根据这些修饰,讨论纳米纤维素的表面化学官能化能力以及随后在纳米纤维素研究的主要领域(如药物输送、生物传感/生物成像、组织再生和生物打印)中的应用。本文的最终目的是提供一个关于这个主题的新颖而不同的综述,这个主题因其内在的复杂特性而不断扩展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1fa1/7737557/37c366b91d15/IJN-15-9909-g0001.jpg

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