首页> 外文期刊>Journal of drug targeting >Conjugates of daidzein-alliinase as a targeted pro-drug enzyme system against ovarian carcinoma.
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Conjugates of daidzein-alliinase as a targeted pro-drug enzyme system against ovarian carcinoma.

机译:大豆黄酮苷酶作为针对卵巢癌的靶向前药酶系统的缀合物。

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摘要

Human ovarian cancer cells specifically bind the isoflavone daidzein. A chemical conjugate between daidzein and the garlic enzyme alliinase was prepared. The conjugate specifically bound to ovarian cancer cells and upon addition of the prodrug alliin, it effectively produced cytotoxic allicin molecules which killed the cancer cells. In vivo targeting and antitumor effect was confirmed by NIR and bioluminescence imaging using daidzein-alliinase-CyTE-777 conjugates and luciferase-expressing ovarian cancer cells. Co-localization of the fluorescent conjugate with bioluminescence was observed for intraperitoneal tumors while nonconjugated alliinase did not accumulate. Biodistribution studies with Europium-labeled conjugate revealed a five fold higher uptake in tumors as compared to other tissues. Treatment of tumor bearing mice with daidzein-alliinase and alliin effectively attenuated tumor progression during the first 12 days while a 5-fold increase in bioluminescence was detected in placebo-treated animals. Autopsy revealed only small individual foci of luminescence at the site of tumor cells inoculation. Histological examination of organs and tissues did not reveal any additional foci of carcinoma or signs of toxicity. These results suggest that the targeted alliinase conjugates in the presence of alliin, generated therapeutically effective levels of allicin which were capable of suppressing tumor progression of intraperitoneal ovarian cancer in an animal model.
机译:人卵巢癌细胞特异性结合异黄酮黄豆苷元。制备了大豆苷元和大蒜酶蒜氨酸酶之间的化学缀合物。该缀合物特异性结合卵巢癌细胞,并且在加入前药大蒜素后,它有效地产生杀死癌细胞的细胞毒性大蒜素分子。使用黄豆苷元-碱性酶-CyTE-777偶联物和表达荧光素酶的卵巢癌细胞通过近红外光谱和生物发光成像证实了体内靶向和抗肿瘤作用。对于腹膜内肿瘤观察到荧光缀合物与生物发光的共定位,而未缀合的蒜氨酸酶未积累。用Euro标记的结合物进行的生物分布研究表明,与其他组织相比,肿瘤中的摄取量增加了五倍。用黄豆苷原酶和蒜氨酸处理荷瘤小鼠在开始的前12天有效地减缓了肿瘤的进展,而在安慰剂治疗的动物中检测到的生物发光增加了5倍。尸检显示在肿瘤细胞接种部位只有少量的单个发光灶。器官和组织的组织学检查未发现任何其他癌灶或毒性迹象。这些结果表明,在蒜氨酸存在下,靶向的蒜氨酸酶缀合物产生了治疗有效水平的蒜素,其能够在动物模型中抑制腹膜内卵巢癌的肿瘤进展。

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