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利用果蝇遗传学理解 Lunasin 的生物学特性及其作为癌症治疗药物的潜力。

Understanding Lunasin's biology and potential as a cancer therapeutic by utilizing Drosophila genetics.

机构信息

Department of Biology and Biotechnology Center, Western Kentucky University, KY 42101, USA.

出版信息

Exp Biol Med (Maywood). 2014 May;239(5):519-28. doi: 10.1177/1535370214522180. Epub 2014 Mar 13.

Abstract

Soy contains many bioactive molecules known to elicit anticancer effects. One such peptide, Lunasin, has been shown to selectively act on newly transformed cells while having no cytotoxic effect on non-tumorigenic or established cancer cell lines. While this effect on in vitro systems is promising, Lunasin's efficacy in an in vivo system is yet to be assessed. In this review, we discuss the state of knowledge with respect to Lunasin and then review some of the powerful genetic tools available in Drosophila. The availability of a sophisticated genetic tool box makes Drosophila an excellent genetic model well suited to studying the biology of Lunasin and its effect on tumor progression in an in vivo model organism.

摘要

大豆含有许多具有抗癌作用的生物活性分子。其中一种肽,Lunasin,已被证明可以选择性地作用于新转化的细胞,而对非肿瘤或已建立的癌细胞系没有细胞毒性作用。虽然这种体外系统的效果很有希望,但 Lunasin 在体内系统的疗效尚未得到评估。在这篇综述中,我们讨论了 Lunasin 的现有知识,并回顾了果蝇中一些强大的遗传工具。复杂的遗传工具箱的可用性使果蝇成为一个极好的遗传模型,非常适合研究 Lunasin 的生物学及其在体内模型生物中对肿瘤进展的影响。

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