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α粒子辐射防护剂的高通量筛选

A high-throughput screen for alpha particle radiation protectants.

作者信息

Seideman Jonathan H, Shum David, Djaballah Hakim, Scheinberg David A

机构信息

Molecular Pharmacology and Chemistry Program, Memorial Sloan-Kettering Cancer Center, New York, New York 10065, USA.

出版信息

Assay Drug Dev Technol. 2010 Oct;8(5):602-14. doi: 10.1089/adt.2010.0291. Epub 2010 Jul 26.

Abstract

Alpha-particle-emitting elements are of increasing importance as environmental and occupational carcinogens, toxic components of radiation dispersal devices and accidents, and potent therapeutics in oncology. Alpha particle radiation differs from radiations of lower linear energy transfer in that it predominantly damages DNA via direct action. Because of this, radical scavengers effective for other radiations have had only limited effect in mitigating alpha particle toxicity. We describe here a simple assay and a pilot screen of 3,119 compounds in a high-throughput screen (HTS), using the alpha-particle-emitting isotope, ²²⁵Ac, for the discovery of compounds that might protect mammalian cells from alpha particles through novel mechanisms. The assay, which monitored the viability of a myeloid leukemic cell line upon alpha particle exposure, was robust and reproducible, yielding a Z' factor of 0.66 and a signal-to-noise ratio of nearly 10 to 1. Surprisingly, 1 compound emerged from this screen, epoxy-4,5-α-dihydroxysantonin (EDHS), that showed considerable protective activity. While the value of EDHS remains to be determined, its discovery is a proof of concept and validation of the utility of this HTS methodology. Further application of the described assay could yield compounds useful in minimizing the toxicity and carcinogenesis associated with alpha particle exposure.

摘要

发射α粒子的元素作为环境和职业致癌物、辐射扩散装置及事故中的有毒成分以及肿瘤学中的有效治疗剂,其重要性日益增加。α粒子辐射与低线性能量传递的辐射不同,它主要通过直接作用损害DNA。因此,对其他辐射有效的自由基清除剂在减轻α粒子毒性方面效果有限。我们在此描述了一种简单的检测方法,并在高通量筛选(HTS)中对3119种化合物进行了初步筛选,使用发射α粒子的同位素²²⁵Ac,以发现可能通过新机制保护哺乳动物细胞免受α粒子伤害的化合物。该检测方法监测了α粒子暴露后髓系白血病细胞系的活力,结果可靠且可重复,Z'因子为0.66,信噪比接近10比1。令人惊讶的是,从该筛选中出现了1种化合物,环氧-4,5-α-二羟基山道年(EDHS),它显示出相当强的保护活性。虽然EDHS的价值还有待确定,但其发现是这一HTS方法学的概念验证和实用性验证。所描述检测方法的进一步应用可能会产生有助于将与α粒子暴露相关的毒性和致癌作用降至最低的化合物。

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