Department of Chemical Engineering, 199257University of Petroleum and Energy Studies, Dehradun, Uttarakhand, India.
Department of Bioengineering and Biotechnology, Birla Institute of Technology, Mesra, Ranchi, Jharkhand, India.
Technol Cancer Res Treat. 2023 Jan-Dec;22:15330338231152083. doi: 10.1177/15330338231152083.
Cancer is recognized as one of the world's deadliest diseases, with more than 10 million new cases each year. Over the past 2 decades, several studies have been performed on cancer to pursue solutions for effective treatment. One of the vital benefits of utilizing nanoparticles (NPs) in cancer treatment is their high adaptability for modification and amalgamation of different physicochemical properties to boost their anti-cancer activity. Various nanomaterials have been designed as nanocarriers attributing nontoxic and biocompatible drug delivery systems with improved bioactivity. The present review article briefly explained various types of nanocarriers, such as organic-inorganic-hybrid NPs, and their targeting mechanisms. Here a special focus is given to the synthesis, benefits, and applications of polymeric NPs (PNPs) involved in various anti-cancer therapeutics. It has also been discussed about the drug delivery approach by the functionalized/encapsulated PNPs (without/with targeting ability) that are being applied in the therapy and diagnostic (theranostics). Overall, this review can give a glimpse into every aspect of PNPs, from their synthesis to drug delivery application for cancer cells.
癌症被公认为世界上最致命的疾病之一,每年有超过 1000 万例新发病例。在过去的 20 年中,已经进行了多项癌症研究,以寻求有效治疗的解决方案。在癌症治疗中使用纳米粒子(NPs)的一个重要好处是,它们非常适合修改和合并不同的物理化学性质,以提高其抗癌活性。各种纳米材料已被设计为纳米载体,具有无毒和生物相容性的药物输送系统,提高了生物活性。本文简要解释了各种类型的纳米载体,如有机-无机杂化 NPs 及其靶向机制。这里特别关注参与各种抗癌治疗的聚合物 NPs(PNPs)的合成、优点和应用。还讨论了功能化/封装的 PNPs(无/有靶向能力)的药物输送方法,这些方法正在治疗和诊断(治疗学)中得到应用。总的来说,这篇综述可以让人们对 PNPs 的各个方面有一个大致的了解,从它们的合成到用于癌细胞的药物输送应用。