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硒封闭纳米颗粒用于癌症管理的概述。

A Snapshot of Selenium-enclosed Nanoparticles for the Management of Cancer.

机构信息

Institute of Pharmaceutical Research, GLA University, Mathura 281406, India.

Delhi Institute of Pharmaceutical Sciences and Research University, Delhi 110017, India.

出版信息

Curr Pharm Des. 2024;30(11):841-858. doi: 10.2174/0113816128297329240305071103.

Abstract

Among the primary causes of mortality in today's world is cancer. Many drugs are employed to give lengthy and severe chemotherapy and radiation therapy, like nitrosoureas (Cisplatin, Oxaliplatin), Antimetabolites (5-fluorouracil, Methotrexate), Topoisomerase inhibitors (Etoposide), Mitotic inhibitors (Doxorubicin); such treatment is associated with significant adverse effects. Antitumor antibiotics have side effects similar to chemotherapy and radiotherapy. Selenium (Se) is an essential trace element for humans and animals, and additional Se supplementation is required, particularly for individuals deficient in Se. Due to its unique features and high bioactivities, selenium nanoparticles (SeNPs), which act as a supplement to counter Se deficiency, have recently gained worldwide attention. This study presented a safer and more economical way of preparing stable SeNPs. The researcher has assessed the antiproliferative efficiency of SeNPs-based paclitaxel delivery systems against tumor cells in vitro with relevant mechanistic visualization. SeNPs stabilized by Pluronic F-127 were synthesized and studied. The significant properties and biological activities of PTX-loaded SeNPs on cancer cells from the lungs, breasts, cervical, and colons. In one study, SeNPs were formulated using chitosan (CTS) polymer and then incorporated into CTS/citrate gel, resulting in a SeNPs-loaded chitosan/citrate complex; in another study, CTS was used in the synthesis of SeNPs and then situated into CTS/citrate gel, resulting in Se loaded nanoparticles. These formulations were found to be more successful in cancer treatment.

摘要

在当今世界,癌症是主要的死亡原因之一。许多药物被用于进行长期和严重的化疗和放疗,如亚硝脲类(顺铂、奥沙利铂)、抗代谢物(5-氟尿嘧啶、甲氨蝶呤)、拓扑异构酶抑制剂(依托泊苷)、有丝分裂抑制剂(多柔比星);这种治疗与显著的不良反应有关。抗肿瘤抗生素具有与化疗和放疗相似的副作用。硒(Se)是人类和动物必需的微量元素,需要额外的 Se 补充,特别是对于 Se 缺乏的个体。由于其独特的特性和高生物活性,作为补充 Se 缺乏的硒纳米颗粒(SeNPs)最近引起了全球的关注。本研究提出了一种更安全、更经济的制备稳定 SeNPs 的方法。研究人员评估了 SeNPs 基紫杉醇递送系统在体外对肿瘤细胞的抗增殖效率,并进行了相关的机制可视化。研究合成并研究了由 Pluronic F-127 稳定的 SeNPs。研究了载紫杉醇的 SeNPs 对肺、乳腺、宫颈和结肠癌细胞的显著性质和生物活性。在一项研究中,使用壳聚糖(CTS)聚合物对 SeNPs 进行配方,然后将其掺入 CTS/柠檬酸盐凝胶中,形成载 SeNPs 的壳聚糖/柠檬酸盐复合物;在另一项研究中,CTS 用于合成 SeNPs,然后将其定位到 CTS/柠檬酸盐凝胶中,形成载 Se 的纳米颗粒。这些制剂在癌症治疗中更为成功。

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