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具有强大药物递送能力及生物医学应用的纳米金刚石:体内研究与专利的最新进展

Nanodiamonds with powerful ability for drug delivery and biomedical applications: Recent updates on in vivo study and patents.

作者信息

Chauhan Swati, Jain Neha, Nagaich Upendra

机构信息

Department of Pharmaceutics, Amity Institute of Pharmacy, Amity University, Noida, U.P., India.

出版信息

J Pharm Anal. 2020 Feb;10(1):1-12. doi: 10.1016/j.jpha.2019.09.003. Epub 2019 Oct 1.

Abstract

Nanodiamonds are novel nanosized carbon building blocks possessing varied fascinating mechanical, chemical, optical and biological properties, making them significant active moiety carriers for biomedical application. These are known as the most 'captivating' crystals attributed to their chemical inertness and unique properties posing them useful for variety of applications in biomedical era. Alongside, it becomes increasingly important to find, ascertain and circumvent the negative aspects associated with nanodiamonds. Surface modification or functionalization with biological molecules plays a significant role in managing the toxic behavior since nanodiamonds have tailorable surface chemistry. To take advantage of nanodiamond potential in drug delivery, focus has to be laid on its purity, surface chemistry and other considerations which may directly or indirectly affect drug adsorption on nanodiamond and drug release in biological environment. This review emphasizes on the basic properties, synthesis techniques, surface modification techniques, toxicity issues and biomedical applications of nanodiamonds. For the development of nanodiamonds as an effective dosage form, researchers are still engaged in the in-depth study of nanodiamonds and their effect on life interfaces.

摘要

纳米金刚石是新型的纳米级碳结构单元,具有多种迷人的机械、化学、光学和生物学特性,使其成为生物医学应用中重要的活性部分载体。由于其化学惰性和独特性质,纳米金刚石被认为是最“迷人”的晶体,这使得它们在生物医学时代的各种应用中都很有用。此外,发现、确定并规避与纳米金刚石相关的负面影响变得越来越重要。用生物分子进行表面修饰或功能化在控制毒性行为方面起着重要作用,因为纳米金刚石具有可定制的表面化学性质。为了利用纳米金刚石在药物递送方面的潜力,必须关注其纯度、表面化学以及其他可能直接或间接影响纳米金刚石上药物吸附和生物环境中药物释放的因素。本综述着重介绍了纳米金刚石的基本性质、合成技术、表面修饰技术、毒性问题和生物医学应用。为了将纳米金刚石开发成一种有效的剂型,研究人员仍在深入研究纳米金刚石及其对生命界面的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab15/7037532/d8b77ec0a97d/fx1.jpg

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