Literature DB >> 24127938

Telomeres and human health.

S E Bojesen1.   

Abstract

Telomeres are the tips of chromosomes and consist of proteins and hexanucleotide tandem repeats of DNA. The DNA repeats are shortened at each mitotic division of normal cells, and the telomere length chronicles how many divisions the cell has undergone. Thus, telomere length is a marker of fundamental biological pathways. It has been possible to measure telomere length for more than 20 years, and it has been established that telomere length is associated with age, sex and lifestyle factors. Here, the current knowledge of telomere length as a biomarker of disease susceptibility and mortality will be reviewed. In addition, technical difficulties and the reasons why measurement of telomeres has still not been introduced into routine clinical practice will be discussed. Findings from recent studies conducted in many thousands of individuals indicate that telomere length is not-or at best only marginally-independently associated with risk of common disorders such as cardiovascular, pulmonary and neoplastic diseases. However, in sufficiently powered studies, short telomeres are repeatedly and independently found to be associated with increased risk of early death in the general population or in subsets of individuals. This indicates that measurement of telomeres could be a valuable prognostic biomarker in many clinical settings. However, whether short telomeres are a causal factor for or simply a marker of increased risk of early death must be determined. Finally, how Mendelian randomization studies could clarify this issue, and which clinical studies might be carried out to refine this very promising biomarker for routine clinical use will be considered.
© 2013 The Association for the Publication of the Journal of Internal Medicine.

Entities:  

Keywords:  biomarker; epidemiology; mortality; telomere length

Mesh:

Substances:

Year:  2013        PMID: 24127938     DOI: 10.1111/joim.12083

Source DB:  PubMed          Journal:  J Intern Med        ISSN: 0954-6820            Impact factor:   8.989


  43 in total

1.  Race-Ethnicity, Poverty, Urban Stressors, and Telomere Length in a Detroit Community-based Sample.

Authors:  Arline T Geronimus; Jay A Pearson; Erin Linnenbringer; Amy J Schulz; Angela G Reyes; Elissa S Epel; Jue Lin; Elizabeth H Blackburn
Journal:  J Health Soc Behav       Date:  2015-04-30

2.  Polygenic risk score of shorter telomere length and risk of depression and anxiety in women.

Authors:  Shun-Chiao Chang; Jennifer Prescott; Immaculata De Vivo; Peter Kraft; Olivia I Okereke
Journal:  J Psychiatr Res       Date:  2018-05-26       Impact factor: 4.791

3.  Automated Assay of Telomere Length Measurement and Informatics for 100,000 Subjects in the Genetic Epidemiology Research on Adult Health and Aging (GERA) Cohort.

Authors:  Kyle Lapham; Mark N Kvale; Jue Lin; Sheryl Connell; Lisa A Croen; Brad P Dispensa; Lynn Fang; Stephanie Hesselson; Thomas J Hoffmann; Carlos Iribarren; Eric Jorgenson; Lawrence H Kushi; Dana Ludwig; Tetsuya Matsuguchi; William B McGuire; Sunita Miles; Charles P Quesenberry; Sarah Rowell; Marianne Sadler; Lori C Sakoda; David Smethurst; Carol P Somkin; Stephen K Van Den Eeden; Lawrence Walter; Rachel A Whitmer; Pui-Yan Kwok; Neil Risch; Catherine Schaefer; Elizabeth H Blackburn
Journal:  Genetics       Date:  2015-06-19       Impact factor: 4.562

4.  Telomere length: is the future in our "ends"?

Authors:  Elisa Danese; Giuseppe Lippi
Journal:  Ann Transl Med       Date:  2018-07

5.  Coffee Consumption Is Positively Associated with Longer Leukocyte Telomere Length in the Nurses' Health Study.

Authors:  Jason J Liu; Marta Crous-Bou; Edward Giovannucci; Immaculata De Vivo
Journal:  J Nutr       Date:  2016-06-08       Impact factor: 4.798

Review 6.  Sleep disordered breathing in pregnancy: Food for thought.

Authors:  Martino F Pengo; Debasree Banerjee; Amanpreet Kaur; Ghada Bourjeily
Journal:  Obstet Med       Date:  2016-04-11

7.  Stress and Salivary Telomere Length in the Second Half of Life: A Comparison of Life-course Models.

Authors:  Margaret Willis; Ursula M Staudinger; Pam Factor-Litvak; Esteban Calvo
Journal:  Adv Life Course Res       Date:  2019-02-12

8.  Alterations of Mitochondrial DNA Copy Number and Telomere Length With Early Adversity and Psychopathology.

Authors:  Audrey R Tyrka; Stephanie H Parade; Lawrence H Price; Hung-Teh Kao; Barbara Porton; Noah S Philip; Emma S Welch; Linda L Carpenter
Journal:  Biol Psychiatry       Date:  2015-01-15       Impact factor: 13.382

9.  TERT and JAK2 polymorphisms define genetic predisposition to myeloproliferative neoplasms in Japanese patients.

Authors:  Masafumi Matsuguma; Toshiaki Yujiri; Kaoru Yamamoto; Yasuko Kajimura; Yoshihiro Tokunaga; Mayumi Tanaka; Yoshinori Tanaka; Yukinori Nakamura; Yukio Tanizawa
Journal:  Int J Hematol       Date:  2019-09-30       Impact factor: 2.490

Review 10.  Pharmacologic management of Duchenne muscular dystrophy: target identification and preclinical trials.

Authors:  Joe N Kornegay; Christopher F Spurney; Peter P Nghiem; Candice L Brinkmeyer-Langford; Eric P Hoffman; Kanneboyina Nagaraju
Journal:  ILAR J       Date:  2014
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