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The effect of co-delivery of paclitaxel and curcumin by transferrin-targeted PEG-PE-based mixed micelles on resistant ovarian cancer in 3-D spheroids and in vivo tumors

机译:运铁蛋白靶向的基于PEG-PE的混合胶束共递送紫杉醇和姜黄素对3-D椭球体和体内肿瘤中耐药卵巢癌的影响

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摘要

Multicellular 3D cancer cell culture (spheroids) resemble to in vivo tumors in terms of shape, cell morphology, growth kinetics, gene expression and drug response. However, these characteristics cause very limited drug penetration into deeper parts of the spheroids. In this study, we used multi drug resistant (MDR) ovarian cancer cell spheroid and in vivo tumor models to evaluate the co-delivery of paclitaxel (PCL) and a potent NF-κB inhibitor curcumin (CUR). PCL and CUR were co-loaded into the polyethylene glycol-phosphatidyl ethanolamine (PEG-PE) based polymeric micelles modified with Transferrin (TF) as the targeting ligand. Cytotoxicity, cellular association and accumulation into the deeper layers were investigated in the spheroids and compared with the monolayer cell culture. Comparing to non-targeted micelles, flow cytometry and confocal imaging proved significantly deeper and higher micelle penetration into the spheroids with TF-targeting. Both in monolayers and spheroids, PCL cytotoxicity was significantly increased when co-delivered with CUR in non-targeted micelles or as single agent in TF-targeted micelles, whereas TF-modification of co-loaded micelles did not further enhance the cytotoxicity. In vivo tumor inhibition studies showed good correlation with the 3D cell culture experiments, which suggests the current spheroid model can be used as an intermediate model for evaluation of co-delivery of anticancer compounds in targeted micelles.
机译:多细胞3D癌细胞培养物(球体)在形状,细胞形态,生长动力学,基因表达和药物反应方面类似于体内肿瘤。然而,这些特征导致药物非常有限地渗透到球体的较深部分。在这项研究中,我们使用了多药耐药性(MDR)卵巢癌细胞球体和体内肿瘤模型来评估紫杉醇(PCL)和有效的NF-κB抑制剂姜黄素(CUR)的共同给药。将PCL和CUR共加载到以转铁蛋白(TF)作为靶向配体修饰的聚乙二醇-磷脂酰乙醇胺(PEG-PE)基聚合物胶束中。在球体中研究了细胞毒性,细胞缔合和向更深层的积累,并与单层细胞培养进行了比较。与未靶向的胶束相比,流式细胞术和共聚焦成像证明,以TF靶向的胶束更深,更高地渗透到球体中。在单层和球体中,当与CUR在非靶向胶束中共同递送或在TF靶向胶束中作为单一药剂时,PCL的细胞毒性均显着增加,而共加载胶束的TF修饰并没有进一步增强细胞毒性。体内肿瘤抑制研究表明与3D细胞培养实验具有良好的相关性,这表明当前的球体模型可以用作评估抗癌化合物在靶向胶束中共同释放的中间模型。

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