Cytogenetic techniques in current biomedical research. Part II: chromosomal rearrangements

A. Volkov, O. I. Rytenkova
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Abstract

Mutations represent a natural mechanism for adaptation of species to changing environmental conditions. Chromosomal rearrangements play a pivotal role in the evolution, as evidenced by the comparison of human and non-human primate karyotypes, and have diverse clinical consequences. In most cases chromosomal aberrations are compatible with life, yet their carriers might show a variety of mental and physiological abnormalities and malformations. Albeit chromosomal rearrangements often do not affect the health and reproductive ability, offspring of their carriers still have a high risk of inherited disorders. Most notably, chromosomal aberrations strongly correlate with cancer risk. When unbalanced, chromosomal abnormalities are associated with reduced life expectancy and reproductive potential. In this lecture, we analyse the mechanisms of chromosomal aberrations, review their diversity, and describe significant clinical consequences such as inherited syndromes which are illustrated with images of patients' karyotypes. The lecture is primarily aimed at biomedical students, researchers and physicians who often have an unmet need to analyse and interpret the results of cytogenetic analyses.
当前生物医学研究中的细胞遗传学技术。第二部分:染色体重排
突变是物种适应环境变化的一种自然机制。染色体重排在进化中起着关键作用,正如人类和非人类灵长类动物核型的比较所证明的那样,并且具有不同的临床后果。在大多数情况下,染色体畸变与生命是相容的,但它们的携带者可能表现出各种精神和生理上的异常和畸形。虽然染色体重排通常不影响健康和生殖能力,但其携带者的后代仍然有很高的遗传疾病风险。最值得注意的是,染色体畸变与癌症风险密切相关。当不平衡时,染色体异常与预期寿命和生殖潜力降低有关。在这个讲座中,我们分析染色体畸变的机制,回顾它们的多样性,并描述重要的临床后果,如遗传综合征,并与患者的核型图像说明。讲座主要针对生物医学学生、研究人员和医生,他们经常需要分析和解释细胞遗传学分析的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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