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首页> 外文期刊>Artificial cells, nanomedicine, and biotechnology. >Quantitative proteomic analysis to the first commercialized liposomal paclitaxel nano-platform Lipusu revealed the molecular mechanism of the enhanced anti-tumor effect
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Quantitative proteomic analysis to the first commercialized liposomal paclitaxel nano-platform Lipusu revealed the molecular mechanism of the enhanced anti-tumor effect

机译:对第一个商业化的脂质体紫杉醇纳米平台Lipusu的定量蛋白质组学分析揭示了增强的抗肿瘤作用的分子机制

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摘要

The first nano-platform commercialized as a drug delivery system was a liposomal formulation. The application of liposome technology resolved the issues of paclitaxel (PTX) insolubility and eliminated the use of solvents causing toxic side-effects, which enabled to apply higher drug doses leading to an enhanced drug efficacy. The growth-inhibitory activity of liposome-encapsulated PTX was retained in vitro against a variety of tumor cell. To investigate the drug efficacy in the system biological level, quantitative proteomic analysis was employed to study the molecular mechanism of the anti-tumor effect of Lipusu? (lip) compared with PTX on lung cancer cell A549. The functions of the differential expressed proteins were correlated to the negative effect to cell proliferation due to regulation of hippo pathway and prolonged cell cycle, as well as inhibitory cell exocytosis, which would cause the aggregation of free PTX. This investigation focused on the direct biological effect of lip to cancer cells. It was different from pharmaceutical issues about drug exposure, delivery and distribution which were widely investigated in other traditional studies. It was the first study about the drug effect of lip from the global molecular biological aspect.
机译:商业化为药物递送系统的第一个纳米平台是脂质体制剂。脂质体技术的应用解决了紫杉醇(PTX)不溶性的问题,并消除了使用会引起毒副作用的溶剂的使用,从而能够应用更高剂量的药物,从而提高药物功效。脂质体包裹的PTX对多种肿瘤细胞的体外抑制活性得以保留。为了研究药物在系统生物学水平上的功效,采用定量蛋白质组学方法研究了Lipusu?抗肿瘤作用的分子机制。 (嘴唇)与PTX相比对肺癌A549细胞的影响。差异表达蛋白的功能与由于调节河马途径和延长细胞周期以及抑制细胞胞吐作用而对细胞增殖的负面影响有关,后者会导致游离PTX的聚集。这项研究的重点是嘴唇对癌细胞的直接生物学作用。它与药物接触,递送和分配的药物问题不同,后者在其他传统研究中已被广泛调查。从全球分子生物学的角度,这是关于唇部药物作用的第一项研究。

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