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Mitochondrial-targeted penetrating peptide delivery for cancer therapy

机译:线粒体靶向癌症治疗的渗透肽递送

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ABSTRACT, Introduction: Mitochondria are promising targeting organelles for anticancer strategies; however, mitochondria are difficult for antineoplastic drugs to recognize and bind. Mitochondria-penetrating peptides (MPPs) are unique tools to gain access to the cell interior and deliver a bioactive cargo into mitochondria. MPPs have combined or delivered a variety of antitumor cargoes and obviously inhibited the tumor growth in vivo and in vitro. MPPs create new opportunities to develop new treatments for cancer. Areas covered: We review the target sites of mitochondria and the target-penetration mechanism of MPPs, different strategies, and various additional strategies decorated MPPs for tumor cell mitochondria targeting, the decorating mattes including metabolism molecules, RNA, DNA, and protein, which exploited considered as therapeutic combined with MPPs and target in human cancer treatment. Expert opinion/commentary: Therapeutic selectivity that preferentially targets the mitochondrial abnormalities in cancer cells without toxic impact on normal cells still need to be deepen. Moreover, it needs appropriate study designs for a correct evaluation of the target delivery outcome and the degradation rate of the drug in the cell. Generally, it is optimistic that the advances in mitochondrial targeting drug delivery by MPPs plasticity outlined here will ultimately help to the discovery of new approaches for the prevention and treatment of cancers.
机译:摘要,介绍:线粒体是有前途的抗癌策略的靶向细胞器;然而,线粒体难以识别和结合抗肿瘤药物。线粒体渗透肽(MPP)是获得对细胞内部的独特工具,并将生物活性炭递送到线粒体中。 MPPS已组合或交付各种抗肿瘤货物,显然抑制体内和体外肿瘤生长。 MPPS创造了开发新癌症治疗的新机会。所涵盖的地区:我们审查了线粒体的目标网站和MPPS,不同策略和各种额外策略的目标渗透机制,为肿瘤细胞线粒体靶向的MPP,包括新陈代谢分子,RNA,DNA和蛋白质,它被利用被认为是治疗性结合MPP和人类癌症治疗中的靶标。专家意见/评论:治疗选择性,优先针对癌细胞的线粒体异常对正常细胞没有毒性的影响仍然需要加深。此外,它需要适当的研究设计,用于对细胞中药物的目标递送结果和药物的降解率进行正确评估。通常,通过MPPS塑性的MITOCOCOLIAL靶向药物递送的预期持乐观态度最终有助于发现预防和治疗癌症的新方法。

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