Post Graduate Department of Microbiology, Seth Kesarimal Porwal College of Arts and Science and Commerce, Kamptee, 441001, India.
Post Graduate Department of Chemistry, Seth Kesarimal Porwal College of Arts and Science and Commerce, Kamptee, 441001, India.
Environ Res. 2023 Aug 15;231(Pt 2):116148. doi: 10.1016/j.envres.2023.116148. Epub 2023 May 19.
Platinum nanoparticles (Pt NPs) have numerous applications in various sectors, including pharmacology, nanomedicine, cancer therapy, radiotherapy, biotechnology and environment mitigation like removal of toxic metals from wastewater, photocatalytic degradation of toxic compounds, adsorption, and water splitting. The multifaceted applications of Pt NPs because of their ultra-fine structures, large surface area, tuned porosity, coordination-binding, and excellent physiochemical properties. The various types of nanohybrids (NHs) of Pt NPs can be fabricated by doping with different metal/metal oxide/polymer-based materials. There are several methods to synthesize platinum-based NHs, but biological processes are admirable because of green, economical, sustainable, and non-toxic. Due to the robust physicochemical and biological characteristics of platinum NPs, they are widely employed as nanocatalyst, antioxidant, antipathogenic, and anticancer agents. Indeed, Pt-based NHs are the subject of keen interest and substantial research area for biomedical and clinical applications. Hence, this review systematically studies antimicrobial, biological, and environmental applications of platinum and platinum-based NHs, predominantly for treating cancer and photo-thermal therapy. Applications of Pt NPs in nanomedicine and nano-diagnosis are also highlighted. Pt NPs-related nanotoxicity and the potential and opportunity for future nano-therapeutics based on Pt NPs are also discussed.
铂纳米粒子 (Pt NPs) 在药理学、纳米医学、癌症治疗、放射治疗、生物技术和环境缓解等各个领域都有广泛的应用,例如从废水中去除有毒金属、有毒化合物的光催化降解、吸附和水分解等。Pt NPs 具有超精细结构、大表面积、可调孔隙率、配位结合和优异的物理化学性能,因此具有多方面的应用。Pt NPs 的各种类型的纳米杂化物 (NHs) 可以通过掺杂不同的金属/金属氧化物/聚合物基材料来制备。有几种方法可以合成基于铂的 NHs,但生物过程因其绿色、经济、可持续和无毒而受到赞赏。由于铂纳米粒子具有强大的物理化学和生物学特性,它们被广泛用作纳米催化剂、抗氧化剂、抗病原体和抗癌剂。事实上,基于 Pt 的 NHs 是生物医学和临床应用领域的热门研究课题和重要研究领域。因此,本综述系统地研究了铂和基于铂的 NHs 在抗菌、生物和环境方面的应用,主要用于治疗癌症和光热治疗。还强调了 Pt NPs 在纳米医学和纳米诊断中的应用。还讨论了 Pt NPs 相关的纳米毒性以及基于 Pt NPs 的未来纳米治疗的潜力和机会。