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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Clathrin-mediated endocytic uptake of PUFA enriched self-nanoemulsifying lipidic systems (SNELS) of an anticancer drug against triple negative cancer and DMBA induced preclinical tumor model
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Clathrin-mediated endocytic uptake of PUFA enriched self-nanoemulsifying lipidic systems (SNELS) of an anticancer drug against triple negative cancer and DMBA induced preclinical tumor model

机译:Clathrin介导的Pufa的内吞吸收抗癌药物的自我纳米乳化系统(鼻塞)对抗三重阴性癌和DMBA诱导的临床前肿瘤模型

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摘要

The current studies envisage unravelling the underlying cellular internalisation mechanism of the systematically developed docetaxel (0TH) polyunsaturated fatty acid (PUPA) enriched self-nanoemulsifying lipidic micellar systems (SNELS). The concentration-, time- and cytotoxicity-related effects of DTH-SNELS on triple negative breast cancer (TNBC) MDA-MB-231 and non-TNBC MCF-7 cell lines were assessed through Presto-blue assay. Subsequently, rhodamine-123 (Rh-123) loaded SNELS were employed for evaluating their internalisation through flow cytometry and fluorescence microscopy, establishing it to be "clothrin-mediated" endocytic pathway. Apoptosis assay (65% cell death) and cell cycle distribution (47% inhibition at G2/M phase) further corroborated the cytotoxicity of DTH-SNELS towards cancerous cells. Biodistribution, histopathology and haematology studies indicated insignificant toxicity of the optimized formulation on vital organs. Preclinical anticancer efficacy studies using 7,12-dimethylbenzantracene (DMBA)-induced model construed significant reduction in breast tumor-volume. Overall, extensive in vitro and in vivo studies indicated the intracellular localization and cytotoxicity, suggesting DTH-SNELS as promising delivery systems for breast tumor therapeutics including TNBC.
机译:目前的研究设想揭示系统显影的多留藻(第0)多不饱和脂肪酸(蛹)富集的自纳乳化型纤维素系统(弯饼)的潜在细胞内化机制。通过Presto-Blue测定评估DTH-Snels对三重阴性乳腺癌(TNBC)MDA-MB-231和非TNBC MCF-7细胞系的浓度,时间和细胞毒性相关效果。随后,采用Rhodamine-123(RH-123)加载的旋转来评估它们通过流式细胞术和荧光显微镜的内化,建立它是“穿衣介导的”内吞途径。细胞凋亡测定(65%的细胞死亡)和细胞周期分布(G2 / M相的47%抑制)进一步证实了DTH-Snels对癌细胞的细胞毒性。生物分布,组织病理学和血液学研究表明了在重要器官上优化配方的微不足道的毒性。利用7,12-二甲基苯并丙烯(DMBA)诱导的模型的临床前抗癌疗效研究对乳腺肿瘤体积的显着降低了显着降低。总体而言,体外和体内研究的广泛表明了细胞内定位和细胞毒性,表明DTH-SENS作为包括TNBC在内的乳腺肿瘤治疗剂的有前途的递送系统。

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