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生物医学中的铂纳米颗粒:制备、抗癌活性及药物递送载体

Platinum Nanoparticles in Biomedicine: Preparation, Anti-Cancer Activity, and Drug Delivery Vehicles.

作者信息

Abed Atena, Derakhshan Maryam, Karimi Merat, Shirazinia Matin, Mahjoubin-Tehran Maryam, Homayonfal Mina, Hamblin Michael R, Mirzaei Seyed Abbas, Soleimanpour Hamidreza, Dehghani Sadegh, Dehkordi Farnaz Farzaneh, Mirzaei Hamed

机构信息

Department of Medical Biotechnology, School of Advanced Technologies, Shahrekord University of Medical Sciences, Shahrekord, Iran.

Cellular and Molecular Research Center, Basic Health Sciences Institute, Shahrekord University of Medical Sciences, Shahrekord, Iran.

出版信息

Front Pharmacol. 2022 Feb 23;13:797804. doi: 10.3389/fphar.2022.797804. eCollection 2022.

Abstract

Cancer is the main cause of morbidity and mortality worldwide, excluding infectious disease. Because of their lack of specificity in chemotherapy agents are used for cancer treatment, these agents have severe systemic side effects, and gradually lose their therapeutic effects because most cancers become multidrug resistant. Platinum nanoparticles (PtNPs) are relatively new agents that are being tested in cancer therapy. This review covers the various methods for the preparation and physicochemical characterization of PtNPs. PtNPs have been shown to possess some intrinsic anticancer activity, probably due to their antioxidant action, which slows tumor growth. Targeting ligands can be attached to functionalized metal PtNPs to improve their tumor targeting ability. PtNPs-based therapeutic systems can enable the controlled release of drugs, to improve the efficiency and reduce the side effects of cancer therapy. Pt-based materials play a key role in clinical research. Thus, the diagnostic and medical industries are exploring the possibility of using PtNPs as a next-generation anticancer therapeutic agent. Although, biologically prepared nanomaterials exhibit high efficacy with low concentrations, several factors still need to be considered for clinical use of PtNPs such as the source of raw materials, stability, solubility, the method of production, biodistribution, accumulation, controlled release, cell-specific targeting, and toxicological issues to human beings. The development of PtNPs as an anticancer agent is one of the most valuable approaches for cancer treatment. The future of PtNPs in biomedical applications holds great promise, especially in the area of disease diagnosis, early detection, cellular and deep tissue imaging, drug/gene delivery, as well as multifunctional therapeutics.

摘要

癌症是全球发病和死亡的主要原因,不包括传染病。由于用于癌症治疗的化疗药物缺乏特异性,这些药物具有严重的全身副作用,并且由于大多数癌症产生多药耐药性而逐渐失去治疗效果。铂纳米颗粒(PtNPs)是正在癌症治疗中进行测试的相对较新的药物。本综述涵盖了PtNPs的各种制备方法和物理化学表征。已证明PtNPs具有一些内在的抗癌活性,这可能归因于它们的抗氧化作用,从而减缓肿瘤生长。靶向配体可以连接到功能化的金属PtNPs上,以提高其肿瘤靶向能力。基于PtNPs的治疗系统可以实现药物的控释,以提高癌症治疗的效率并减少副作用。铂基材料在临床研究中起着关键作用。因此,诊断和医疗行业正在探索将PtNPs用作下一代抗癌治疗剂的可能性。尽管生物制备的纳米材料在低浓度下具有高效性,但PtNPs的临床应用仍需考虑几个因素,如原材料来源、稳定性、溶解性、生产方法、生物分布、积累、控释、细胞特异性靶向以及对人类的毒理学问题。将PtNPs开发为抗癌剂是癌症治疗最有价值的方法之一。PtNPs在生物医学应用中的未来前景广阔,特别是在疾病诊断、早期检测、细胞和深部组织成像、药物/基因递送以及多功能治疗等领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd81/8904935/8e9c6dcd74c8/fphar-13-797804-g001.jpg

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