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Techniques for assessing telomere length: A methodological review

Hyeon Jong Yu, Yoon Hwan Byun, Chul‐Kee Park

2024Computational and Structural Biotechnology Journal35 citationsDOIOpen Access PDF

Abstract

Telomeres are located at the ends of chromosomes and have specific sequences with a distinctive structure that safeguards genes. They possess capping structures that protect chromosome ends from fusion events and ensure chromosome stability. Telomeres shorten in length during each cycle of cell division. When this length reaches a certain threshold, it can lead to genomic instability, thus being implicated in various diseases, including cancer and neurodegenerative disorders. The possibility of telomeres serving as a biomarker for aging and age-related disease is being explored, and their significance is still under study. This is because post-mitotic cells, which are mature cells that do not undergo mitosis, do not experience telomere shortening due to age. Instead, other causes, for example, exposure to oxidative stress, can directly damage the telomeres, causing genomic instability. Nonetheless, a general agreement has been established that measuring telomere length offers valuable insights and forms a crucial foundation for analyzing gene expression and epigenetic data. Numerous approaches have been developed to accurately measure telomere lengths. In this review, we summarize various methods and their advantages and limitations for assessing telomere length.

Topics & Concepts

TelomereGenome instabilityMitosisBiologyBiomarkerChromosomeComputational biologyEpigeneticsGeneticsChromosome instabilityGeneCell divisionDNA damageCellDNATelomeres, Telomerase, and Senescence