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淋巴细胞胞质分裂阻断微核细胞遗传学分析及其在辐射生物剂量学中的应用。

The lymphocyte cytokinesis-block micronucleus cytome assay and its application in radiation biodosimetry.

机构信息

CSIRO, PO Box 10041, Adelaide BC SA 5000, Australia.

出版信息

Health Phys. 2010 Feb;98(2):234-43. doi: 10.1097/HP.0b013e3181b85044.

Abstract

The cytokinesis-block micronucleus cytome (CBMN Cyt) assay is one of the best-validated methods for measuring chromosome damage in human lymphocytes. This paper describes the methodology, biology, and mechanisms underlying the application of this technique for biodosimetry following exposure to ionizing radiation. Apart from the measurement of micronuclei, it is also possible to measure other important biomarkers within the CBMN Cyt assay that are relevant to radiation biodosimetry. These include nucleoplasmic bridges, which are an important additional measure of radiation-induced damage that originate from dicentric chromosomes as well as the proportion of dividing cells and cells undergoing cell death. A brief account is also given of current developments in the automation of this technique and important knowledge gaps that need attention to further enhance the applicability of this important method for radiation biodosimetry.

摘要

有丝分裂阻断微核细胞胞质分裂(CBMN Cyt)检测是一种经过充分验证的用于测量人淋巴细胞染色体损伤的方法。本文描述了该技术应用于电离辐射生物剂量学的方法学、生物学和机制。除了测量微核之外,还可以在 CBMN Cyt 检测中测量其他与辐射生物剂量学相关的重要生物标志物。其中包括核质桥,这是一种重要的额外测量指标,可用于评估辐射诱导的损伤,其起源于双着丝粒染色体以及有丝分裂细胞和细胞死亡的比例。本文还简要介绍了该技术自动化的最新进展以及需要关注的重要知识空白,以进一步增强该重要方法在辐射生物剂量学中的适用性。

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