Chandrakala V, Aruna Valmiki, Angajala Gangadhara
Department of Chemistry, Kalasalingam Academy of Research and Education, Anand Nagar, Krishnan Koil, 626126 Tamil Nadu India.
Emergent Mater. 2022;5(6):1593-1615. doi: 10.1007/s42247-021-00335-x. Epub 2022 Jan 4.
Over the past few years, nanotechnology has been attracting considerable research attention because of their outstanding mechanical, electromagnetic and optical properties. Nanotechnology is an interdisciplinary field comprising nanomaterials, nanoelectronics, and nanobiotechnology, as three areas which extensively overlap. The application of metal nanoparticles (MNPs) has drawn much attention offering significant advances, especially in the field of medicine by increasing the therapeutic index of drugs through site specificity preventing multidrug resistance and delivering therapeutic agents efficiently. Apart from drug delivery, some other applications of MNPs in medicine are also well known such as in vivo and in vitro diagnostics and production of enhanced biocompatible materials and nutraceuticals. The use of metallic nanoparticles for drug delivery systems has significant advantages, such as increased stability and half-life of drug carrier in circulation, required biodistribution, and passive or active targeting into the required target site. Green synthesis of MNPs is an emerging area in the field of bionanotechnology and provides economic and environmental benefits as an alternative to chemical and physical methods. Therefore, this review aims to provide up-to-date insights on the current challenges and perspectives of MNPs in drug delivery systems. The present review was mainly focused on the greener methods of metallic nanocarrier preparations and its surface modifications, applications of different MNPs like silver, gold, platinum, palladium, copper, zinc oxide, metal sulfide and nanometal organic frameworks in drug delivery systems.
在过去几年中,纳米技术因其出色的机械、电磁和光学性能而备受研究关注。纳米技术是一个跨学科领域,包括纳米材料、纳米电子学和纳米生物技术,这三个领域广泛重叠。金属纳米颗粒(MNPs)的应用引起了广泛关注并取得了重大进展,特别是在医学领域,通过位点特异性提高药物的治疗指数、防止多药耐药性以及高效递送治疗剂。除了药物递送,MNPs在医学中的其他一些应用也广为人知,如体内和体外诊断以及生产增强生物相容性的材料和营养保健品。将金属纳米颗粒用于药物递送系统具有显著优势,例如药物载体在循环中的稳定性和半衰期增加、所需的生物分布以及被动或主动靶向到所需的靶位点。MNPs的绿色合成是生物纳米技术领域的一个新兴领域,作为化学和物理方法的替代方案,具有经济和环境效益。因此,本综述旨在提供关于MNPs在药物递送系统中的当前挑战和前景的最新见解。本综述主要关注金属纳米载体制备的更绿色方法及其表面修饰,以及银、金、铂、钯、铜、氧化锌、金属硫化物和纳米金属有机框架等不同MNPs在药物递送系统中的应用。