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染色体早熟凝集技术在遗传分析中的应用。

Applications of Premature Chromosome Condensation technique for genetic analysis.

机构信息

Department of Human Genetics, Faculty of Biomedical Sciences and Technology, Sri Ramachandra Institute of Higher Education and Research, Chennai, Tamil Nadu 600116, India.

Department of Human Genetics, Faculty of Biomedical Sciences and Technology, Sri Ramachandra Institute of Higher Education and Research, Chennai, Tamil Nadu 600116, India.

出版信息

Toxicol In Vitro. 2024 Feb;94:105736. doi: 10.1016/j.tiv.2023.105736. Epub 2023 Nov 19.

Abstract

Cytogenetic techniques are used to detect aberrations in the genetic material and such techniques have a wide range of applications including for disease diagnosis, drug discovery and for the detection and quantification of mutagenic exposures. Although different types of cytogenetic techniques are in use, the Premature Chromosome Condensation (PCC) is one which is unique by virtue of it not requiring culture of peripheral blood mononucleate cells (PBMNCs) to detect chromatid and chromosomal aberrations. Such an advantage is useful in situations where rapid assessments of genetic damage is required, for example, during radiation exposures. PCC utilizes condensation of interphase chromatin by either biological or chemical means. The most widely used application of PCC is for biodosimetry. However, the rapidness of aberration detection has made PCC a useful technique for other applications such as for cancer diagnosis, drug-induced genotoxicity and preimplantation or assisted reproductive techniques. Also, PCC can be utilized for understanding the fundamental cellular mechanisms involved in chromatin condensation and chromosome morphologies. We present here the various approaches to obtain PCC, its applications and the endpoints which are used while using PCC as a cytogenetic technique.

摘要

细胞遗传学技术用于检测遗传物质中的异常,这些技术具有广泛的应用,包括疾病诊断、药物发现以及检测和量化诱变暴露。尽管有不同类型的细胞遗传学技术在使用,但 Premature Chromosome Condensation(PCC)是一种独特的技术,因为它不需要培养外周血单核细胞(PBMNCs)来检测染色单体和染色体异常。这种优势在需要快速评估遗传损伤的情况下非常有用,例如在辐射暴露期间。PCC 通过生物或化学手段使间期染色质浓缩。PCC 最广泛的应用是生物剂量测定。然而,由于异常检测的快速性,PCC 已成为其他应用的有用技术,例如癌症诊断、药物诱导的遗传毒性以及植入前或辅助生殖技术。此外,PCC 可用于了解涉及染色质浓缩和染色体形态的基本细胞机制。我们在这里介绍了获得 PCC 的各种方法、它的应用以及在将 PCC 用作细胞遗传学技术时使用的终点。

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