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载甲氨蝶呤的生物素受体靶向纳米胶束增强三阴性乳腺癌的体内外抗肿瘤疗效。

Biotin receptor-targeting nanogels loaded with methotrexate for enhanced antitumor efficacy in triple-negative breast cancer in vitro and in vivo models.

机构信息

Pharmaceutical Nanotechnology Department and Center for Nanotechnology in Drug Delivery, Shiraz University of Medical Sciences, Shiraz 71345, Iran.

Center for Nanotechnology in Drug Delivery, Shiraz University of Medical Sciences, Shiraz 71345, Iran.

出版信息

Int J Pharm. 2022 Aug 25;624:122049. doi: 10.1016/j.ijpharm.2022.122049. Epub 2022 Jul 22.

Abstract

High-dose methotrexate (MTX) chemotherapeutic applications confront drug specificity and pharmacokinetic challenges, which can be overcome by utilizing targeted drug delivery systems. In the present study, biotin-PEG conjugated nanogels of carboxymethyl polyethyleneimine (Biotin-PEG-CMPEI) were developed for active targeted delivery of MTX in triple negative breast cancer (TNBC). TEM and DLS analyses revealed uniform, discrete, and spherical particles with a mean hydrodynamic diameter of about 100 nm and ζ-potential of + 15 mV (pH = 7.4). Biotin-PEG-CMPEI nanogels exhibited a zero-order MTX release kinetics at pH = 7.5 and a swelling-controlled release at pH = 5.5. In 4 T1 cells treated with the MTX-loaded Biotin-PEG-CMPEI, the IC was reduced by about 10 folds compared to the free drug, while the unloaded nanogels showed no significant toxicity. In the model mice, the group treated with the MTX-loaded Biotin-PEG-CMPEI had a lower tumor volume and mortality rate animal model when compared to free drug. Additionally, histopathological analyses showed that the group treated with the MTX-loaded nanogels had less lung metastasis and glomerular damage caused by MTX. Overall, the MTX-loaded Biotin-PEG-CMPEI targeted directly against overexpressed biotin receptors in TNBC have been shown to improve the MTX safety and therapeutic efficacy.

摘要

高剂量甲氨蝶呤(MTX)化疗应用面临药物特异性和药代动力学挑战,可通过利用靶向药物传递系统来克服。在本研究中,开发了生物素-PEG 接枝的羧甲基聚乙烯亚胺(Biotin-PEG-CMPEI)纳米凝胶,用于三阴性乳腺癌(TNBC)中 MTX 的主动靶向递送。TEM 和 DLS 分析表明,具有约 100nm 的平均水动力直径和+15mV 的 ζ-电势(pH = 7.4)的均匀、离散和球形颗粒。Biotin-PEG-CMPEI 纳米凝胶在 pH = 7.5 时表现出零级 MTX 释放动力学,在 pH = 5.5 时表现出溶胀控制释放。在用载 MTX 的 Biotin-PEG-CMPEI 处理的 4T1 细胞中,IC 与游离药物相比降低了约 10 倍,而未载药的纳米凝胶没有显示出显著的毒性。在模型小鼠中,与游离药物相比,载 MTX 的 Biotin-PEG-CMPEI 治疗组的肿瘤体积和死亡率均降低。此外,组织病理学分析表明,用载 MTX 的纳米凝胶治疗的组由于 MTX 引起的肺转移和肾小球损伤较少。总体而言,针对 TNBC 中过表达的生物素受体的载 MTX 的 Biotin-PEG-CMPEI 靶向给药已被证明可提高 MTX 的安全性和治疗效果。

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