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基于氧化石墨烯的刺激响应型平台在生物医学中的应用。

Graphene Oxide-Based Stimuli-Responsive Platforms for Biomedical Applications.

机构信息

Department of Biosystems Engineering, Institute of Forest Science, Kangwon National University, Chuncheon 24341, Korea.

Interdisciplinary Program in Smart Agriculture, Kangwon National University, Chuncheon 24341, Korea.

出版信息

Molecules. 2021 May 10;26(9):2797. doi: 10.3390/molecules26092797.

Abstract

Graphene is a two-dimensional sp hybridized carbon material that has attracted tremendous attention for its stimuli-responsive applications, owing to its high surface area and excellent electrical, optical, thermal, and mechanical properties. The physicochemical properties of graphene can be tuned by surface functionalization. The biomedical field pays special attention to stimuli-responsive materials due to their responsive abilities under different conditions. Stimuli-responsive materials exhibit great potential in changing their behavior upon exposure to external or internal factors, such as pH, light, electric field, magnetic field, and temperature. Graphene-based materials, particularly graphene oxide (GO), have been widely used in stimuli-responsive applications due to their superior biocompatibility compared to other forms of graphene. GO has been commonly utilized in tissue engineering, bioimaging, biosensing, cancer therapy, and drug delivery. GO-based stimuli-responsive platforms for wound healing applications have not yet been fully explored. This review describes the effects of different stimuli-responsive factors, such as pH, light, temperature, and magnetic and electric fields on GO-based materials and their applications. The wound healing applications of GO-based materials is extensively discussed with cancer therapy and drug delivery.

摘要

石墨烯是一种二维 sp 杂化碳材料,由于其高比表面积和优异的电学、光学、热学和力学性能,在刺激响应应用方面引起了极大的关注。石墨烯的物理化学性质可以通过表面功能化来调节。由于其在不同条件下的响应能力,生物医学领域特别关注刺激响应材料。刺激响应材料在暴露于外部或内部因素(如 pH 值、光、电场、磁场和温度)时表现出改变其行为的巨大潜力。基于石墨烯的材料,特别是氧化石墨烯(GO),由于其比其他形式的石墨烯具有更好的生物相容性,因此已广泛应用于刺激响应应用。GO 已广泛应用于组织工程、生物成像、生物传感、癌症治疗和药物输送。基于 GO 的用于伤口愈合应用的刺激响应平台尚未得到充分探索。本综述描述了不同刺激响应因素(如 pH 值、光、温度以及磁场和电场)对基于 GO 的材料及其应用的影响。还广泛讨论了基于 GO 的材料在癌症治疗和药物输送方面的伤口愈合应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7844/8126026/a3de8f713f2b/molecules-26-02797-g001.jpg

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