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水可的松自组装衍生物作为糖皮质激素受体靶向纳米药物用于协同联合治疗结直肠肿瘤。

Self-Assembling Derivative of Hydrocortisone as Glucocorticoid Receptor-Targeted Nanotherapeutics for Synergistic, Combination Therapy against Colorectal Tumor.

机构信息

Applied Biology Division, CSIR-Indian Institute of Chemical Technology, Hyderabad 500 007, India.

Academy of Scientific and Innovative Research (AcSIR), CSIR-HRDC Campus, Ghaziabad 201002, India.

出版信息

Mol Pharm. 2021 Mar 1;18(3):1208-1228. doi: 10.1021/acs.molpharmaceut.0c01091. Epub 2020 Dec 28.

Abstract

Hydrocortisone, a natural glucocorticoid secreted by adrenal and extra-adrenal tissues, locally governs the transcription of genes involved in inflammation, immune response, metabolism, and energy homeostasis binding to its cognate glucocorticoid receptor (GR). In this study, we show that modified hydrocortisone (HC16), a cancer-selective cytotoxic molecule, showed synergism in combination with drugs like Doxorubicin and docetaxel, self-assembled into vesicles, entrapped docetaxel and complexed with anti-cancer plasmid DNA for enhanced killing of cancer cells. These vesicles exhibited GR-mediated nuclear localization, delivery of the p53 gene, and also inhibited cell viability selectively in RKO, HCT15, and CT26 colon cancer cells but not in normal cells like CHO and HEK293T. Apart from exerting its own anti-cancer activity, the self-assembled HC16 vesicles loaded with docetaxel sensitized the cancer cells to its drug cargo by downregulating the drug metabolizing CYP3A4 gene. This indirectly reduces the risk of nonspecific adverse effects in normal cells, as the viability of sensitized cancer cells could be significantly reduced even in low doses of cytotoxic docetaxel. The near infrared (NIR)-dye-associated self-assemblies accumulated in a colon tumor with higher orders of NIR intensity compared to those in a colon of healthy mice. Thereafter, the treatment of HC16-docetaxel-p53 vesicle/DNA complex led to significant tumor regression, which resulted in a cecum/body weight ratio in tumor-bearing mice similar to that of healthy mice measured at 24 h postcompletion of treatment. There was an up to 2.5-fold enhancement in the overall survivability of colon-tumor-bearing mice treated with HC16-docetaxel-p53 vesicle/DNA complexes when compared against the pristine docetaxel-treated groups. Further, the HC16-docetaxel-p53 vesicle/DNA complex-treated group showed reduced nuclear accumulation of cell proliferation marker Ki67, reduced protein levels of prosurvival and mesenchymal proteins like Bcl-2, PARP, vimentin, and -cadherin, and increased the levels of pro-apoptotic activated caspases as compared to the pristine docetaxel-treated groups. The therapeutic package described herein is expected to find future use as a rational, multifaceted, GR-targeted approach for inhibiting colon tumor progression.

摘要

氢化可的松是一种由肾上腺和肾上腺外组织分泌的天然糖皮质激素,通过与其同源糖皮质激素受体 (GR) 结合,局部调控参与炎症、免疫反应、代谢和能量稳态的基因转录。在这项研究中,我们表明,修饰后的氢化可的松 (HC16) 是一种选择性细胞毒性的抗癌分子,与多柔比星和 docetaxel 等药物联合使用时表现出协同作用,自组装成囊泡,包载 docetaxel 并与抗癌质粒 DNA 复合,从而增强对癌细胞的杀伤作用。这些囊泡表现出 GR 介导的核定位、p53 基因的递送,并且选择性地抑制 RKO、HCT15 和 CT26 结肠癌细胞的活力,而对正常细胞如 CHO 和 HEK293T 则没有影响。除了发挥自身的抗癌活性外,负载 docetaxel 的自组装 HC16 囊泡通过下调药物代谢 CYP3A4 基因使癌细胞对其药物载体敏感。这间接降低了正常细胞发生非特异性不良反应的风险,因为即使在低剂量的细胞毒性 docetaxel 作用下,敏化癌细胞的活力也可以显著降低。近红外 (NIR) 染料相关的自组装物在结直肠肿瘤中的积累程度比在健康小鼠的结直肠中更高。此后,HC16-docetaxel-p53 囊泡/DNA 复合物的治疗导致显著的肿瘤消退,这导致荷瘤小鼠的盲肠/体重比与治疗完成后 24 小时的健康小鼠相似。与单独用 docetaxel 治疗的组相比,用 HC16-docetaxel-p53 囊泡/DNA 复合物治疗的结肠肿瘤荷瘤小鼠的总体存活率提高了 2.5 倍。此外,与单独用 docetaxel 治疗的组相比,HC16-docetaxel-p53 囊泡/DNA 复合物治疗组的增殖标志物 Ki67 的核积累减少,促生存和间充质蛋白如 Bcl-2、PARP、波形蛋白和 - 钙粘蛋白的蛋白水平降低,促凋亡的激活半胱天冬酶水平升高。与单独用 docetaxel 治疗的组相比,HC16-docetaxel-p53 囊泡/DNA 复合物治疗组的增殖标志物 Ki67 的核积累减少,促生存和间充质蛋白如 Bcl-2、PARP、波形蛋白和 - 钙粘蛋白的蛋白水平降低,促凋亡的激活半胱天冬酶水平升高。与单独用 docetaxel 治疗的组相比,HC16-docetaxel-p53 囊泡/DNA 复合物治疗组的增殖标志物 Ki67 的核积累减少,促生存和间充质蛋白如 Bcl-2、PARP、波形蛋白和 - 钙粘蛋白的蛋白水平降低,促凋亡的激活半胱天冬酶水平升高。促凋亡的激活半胱天冬酶水平升高。

本文所述的治疗方案有望成为一种合理的、多方面的、GR 靶向的抑制结肠肿瘤进展的方法。

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