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Mitochondrial Induced and Self-Monitored Intrinsic Apoptosis by Antitumor Theranostic Prodrug: In Vivo Imaging and Precise Cancer Treatment

机译:抗肿瘤治疗药物的线粒体诱导和自我监测的内在凋亡:体内成像和精确的癌症治疗

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摘要

Activation of apoptosis, the cell death machinery, in tumor cells by organelle-specific delivery of antitumor theranostic agent is the utmost challenge in cancer therapy. Herein, we developed a highly efficient mitochondria-targeting antitumor theranostic prodrug 7 that contained two molecules of drug 5'-deoxy-5-fluorouridine and an apoptotic marker ethidium for self-monitoring intrinsic (mitochondrial) apoptosis after its activation in tumor cells. Theranostic 7 was activated by endogenously produced mitochondrial-overexpressed H_2O_2 and released drug 5′-deoxy-5-fluorour-idine and apoptotic marker ethidium to the tumor cells. The in vitro and in vivo drug release was monitored by observing the fluorescence changes of ethidium. Theranostic 7 exhibited an enhanced cytotoxicity over commercial 5-fluorouracil (an active drug of 5′-deoxy-5-fluorouridine) leading to intrinsic apoptosis monitored by in situ generated ethidium. Enhanced expression of mitochondria-mediated apoptotic genes (NOXA, PUMA, BID, BAX, and BAK), Cyt C, Caspase-3 and -9, and cell surface death receptors was observed after theranostic 7 activation in tumor cells. In vivo and ex vivo xenografts revealed that theranostic 7 significantly inhibited tumor progression and cured the tumor-bearing mice. Such organelle-specific theranostic strategies have great potential for the early diagnosis and precise treatment of cancer.
机译:通过细胞器特异性递送抗肿瘤治疗剂激活肿瘤细胞中的凋亡,即细胞死亡机制,是癌症治疗中的最大挑战。在本文中,我们开发了一种高效的针对线粒体的抗肿瘤治疗药物前药7,该药物包含两分子5'-脱氧-5-氟尿苷药物和一个凋亡标记物乙啶,用于在肿瘤细胞激活后自我监测内在(线粒体)凋亡。通过内源性产生的线粒体过表达的H_2O_2激活了theranostic 7,并向肿瘤细胞释放了药物5'-脱氧-5-氟尿嘧啶和凋亡标记物乙。通过观察乙锭的荧光变化来监测体外和体内药物释放。与商业的5-氟尿嘧啶(5'-脱氧-5-氟尿苷的活性药物)相比,Theranostic 7表现出增强的细胞毒性,导致通过原位生成的乙啶监测的内在凋亡。线粒体7激活肿瘤细胞后,观察到线粒体介导的凋亡基因(NOXA,PUMA,BID,BAX和BAK),Cyt C,Caspase-3和-9以及细胞表面死亡受体的表达增强。体内和离体异种移植显示,治疗性7显着抑制肿瘤进展并治愈了荷瘤小鼠。这种特定于细胞器的治疗方法在癌症的早期诊断和精确治疗方面具有巨大的潜力。

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  • 来源
    《Journal of the American Chemical Society》 |2014年第51期|17836-17843|共8页
  • 作者单位

    Department of Chemistry, Korea University, Seoul 136-701, Republic of Korea;

    Division of Biotechnology, Laboratory of Stem Cells and Tissue Regeneration, College of Life Sciences & Biotechnology, Korea University, Seoul 136-713, Republic of Korea;

    Division of Biotechnology, Laboratory of Stem Cells and Tissue Regeneration, College of Life Sciences & Biotechnology, Korea University, Seoul 136-713, Republic of Korea;

    Department of Chemistry, Korea University, Seoul 136-701, Republic of Korea;

    Division of Biotechnology, Laboratory of Stem Cells and Tissue Regeneration, College of Life Sciences & Biotechnology, Korea University, Seoul 136-713, Republic of Korea;

    Division of Biotechnology, Laboratory of Stem Cells and Tissue Regeneration, College of Life Sciences & Biotechnology, Korea University, Seoul 136-713, Republic of Korea;

    Department of Chemistry, Korea University, Seoul 136-701, Republic of Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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