Department of Biostatistics, School of Health, Kermanshah University of Medical Sciences, Kermanshah, Iran.
Department of Pharmaceutics, School of Pharmacy, Hamadan University of Medical Sciences, Hamadan, Iran.
Cancer Treat Res Commun. 2022;32:100605. doi: 10.1016/j.ctarc.2022.100605. Epub 2022 Jul 6.
Recent advances in nanotechnology sciences lead to the development of new treatment approaches for various diseases such as cancer. Nanotechnology advances can potentially minimize the side effects of drugs through the employment of effective and controlled drug delivery systems (DDSs). Polymers are optimal tools providing drug delivery mechanisms through the unique features of pharmacokinetics, circulation time, biocompatibility, and biodegradability. This systematic review aimed to evaluate polymer-based DDSs for anticancer drugs and their various therapeutic applications in cancer treatment. This study was conducted with no time limitation by November 2021. Related articles were collected through a deep search in English and Persian databases of SID, MagIran, Scopus, Web Of Science (WoS), PubMed, Science Direct, and Google Scholar. Keywords included drug delivery system, anticancer agent, polymeric nanostructure-based drug delivery, polymer-based drug delivery, and polymeric system. As the results showed, polymeric nanoparticles (PNPs) have influential roles in cancer treatment than conventional chemotherapy procedures. PNPs can reduce cytotoxicity following chemotherapy drug administration, improve the solubility characteristics of these therapeutic agents and inhibit the rate of tumor growth.
纳米技术科学的最新进展导致了针对各种疾病(如癌症)的新治疗方法的发展。纳米技术的进步可以通过使用有效的和控制药物释放系统(DDS)来最小化药物的副作用。聚合物是通过药物动力学、循环时间、生物相容性和生物降解性的独特特性提供药物输送机制的最佳工具。本系统评价旨在评估用于抗癌药物的基于聚合物的 DDS 及其在癌症治疗中的各种治疗应用。本研究没有时间限制,截至 2021 年 11 月进行。通过在 SID、MagIran、Scopus、Web Of Science(WoS)、PubMed、Science Direct 和 Google Scholar 的英文和波斯文数据库中进行深入搜索,收集了相关文章。关键词包括药物传递系统、抗癌剂、基于聚合物纳米结构的药物传递、基于聚合物的药物传递和聚合物系统。结果表明,聚合物纳米粒子(PNP)在癌症治疗中比传统化疗方法具有更重要的作用。PNP 可以减少化疗药物给药后的细胞毒性,改善这些治疗剂的溶解度特性,并抑制肿瘤生长速度。