Nanodiamonds: A Versatile Drug-Delivery System in the Recent Therapeutics Scenario.

IF 3 4区 医学 Q2 PHARMACOLOGY & PHARMACY Critical Reviews in Therapeutic Drug Carrier Systems Pub Date : 2021-01-01 DOI:10.1615/CritRevTherDrugCarrierSyst.2021035845
Awesh Yadav, Rahul Shukla, S J S Flora
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引用次数: 1

Abstract

Nanodiamonds (ND) belong to the nano-carbon family, which involves several synthesis, post-synthesis methods, and other modifications for ND preparation. NDs have played vital role both inside and outside of medicine in recent years. The study of NDs has stated in early 1960s, NDs are smaller particles with a size of about 4-5 nm with confined size distribution, large-scale synthesis at lower costs relying on the carbon explosives ignition, apparent surface functional design along with bio-conjugation and extreme biocompatibility. It has been predicted that the ND's magnetic characteristics will contribute to the up-growth of various therapeutic promoters for delivery vehicles, diagnostic probes, gene therapy, tissue scaffolds, anti-bacterial and anti-viral treatments, and devices like nano-robots. Furthermore, the wide applications of biotechnology have displayed the potential usage of NDs in certain bioanalytical needs like fluorescent bio labeling through fluorescent and protein purification of proteins. In this current review, the determination of ND's design, property, classes, constancy, organization, surface modification, biocompatibility, and its applications in the biomedical field have penned. The usage of ND as anti-neoplastic agents and in other health related formulations have displayed exceptional results for future growth. Additionally, NDs provide other functionalities such as production of biodegradable surgical devices of bone, the assassination of drug resistant microbes and viruses, tissue engineering scaffolds, and aids in the delivery of genetic matter into the nucleus of cells.

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纳米金刚石:一种多功能药物输送系统在最近的治疗方案。
纳米金刚石(ND)属于纳米碳家族,其制备涉及多种合成方法、后合成方法和其他修饰。近年来,NDs在医学内外都发挥了重要作用。纳米颗粒的研究早在20世纪60年代初就指出,纳米颗粒的粒径约为4-5 nm,具有有限的粒径分布,依靠碳炸药点火,以较低的成本大规模合成,具有明显的表面功能设计和生物偶联性,具有极强的生物相容性。据预测,ND的磁性特性将有助于各种治疗促进剂的发展,用于运载工具、诊断探针、基因治疗、组织支架、抗菌和抗病毒治疗以及纳米机器人等设备。此外,生物技术的广泛应用显示了ndds在某些生物分析需求中的潜在用途,如通过荧光和蛋白质纯化的荧光生物标记。本文综述了ND的设计、性质、分类、常数、组织、表面改性、生物相容性的测定及其在生物医学领域的应用。ND作为抗肿瘤剂和其他健康相关制剂的使用已经显示出未来增长的特殊结果。此外,NDs还提供其他功能,如生产可生物降解的骨外科器械、杀死耐药微生物和病毒、组织工程支架,以及帮助将遗传物质输送到细胞核中。
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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来源期刊
CiteScore
5.50
自引率
18.50%
发文量
27
审稿时长
>12 weeks
期刊介绍: Therapeutic uses of a variety of drug carrier systems have significant impact on the treatment and potential cure of many chronic diseases, including cancer, diabetes mellitus, psoriasis, parkinsons, Alzheimer, rheumatoid arthritis, HIV infection, infectious diseases, asthma, and drug addiction. Scientific efforts in these areas are multidisciplinary, involving the physical, biological, medical, pharmaceutical, biological materials, and engineering fields. Articles concerning this field appear in a wide variety of journals. With the vast increase in the number of articles and the tendency to fragment science, it becomes increasingly difficult to keep abreast of the literature and to sort out and evaluate the importance and reliability of the data, especially when proprietary considerations are involved. Abstracts and noncritical articles often do not provide a sufficiently reliable basis for proper assessment of a given field without the additional perusal of the original literature. This journal bridges this gap by publishing authoritative, objective, comprehensive multidisciplinary critical review papers with emphasis on formulation and delivery systems. Both invited and contributed articles are subject to peer review.
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