Inverse relationship between leukocyte telomere length attrition and blood mitochondrial DNA content loss over time

Leukocyte telomere length (LTL) and whole blood mitochondrial DNA (WB mtDNA) content are aging markers impacted by chronic diseases such as human immunodeficiency virus (HIV) infection. We characterized the relationship between these two markers in 312 women ≥12 years of age living with HIV and 300...

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Veröffentlicht in:Aging (Albany, NY.) NY.), 2020-07, Vol.12 (15), p.15196-15221
Hauptverfasser: Hsieh, Anthony Y Y, Kimmel, Elana, Pick, Neora, Sauvé, Laura, Brophy, Jason, Kakkar, Fatima, Bitnun, Ari, Murray, Melanie C M, Côté, Hélène C F
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Sprache:eng
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Zusammenfassung:Leukocyte telomere length (LTL) and whole blood mitochondrial DNA (WB mtDNA) content are aging markers impacted by chronic diseases such as human immunodeficiency virus (HIV) infection. We characterized the relationship between these two markers in 312 women ≥12 years of age living with HIV and 300 HIV-negative controls. We found no relationship between the two markers cross-sectionally. In multivariable models, age, ethnicity, HIV, and tobacco smoking were independently associated with shorter LTL, and the former three with lower WB mtDNA. Longitudinally, among a subgroup of 228 HIV participants and 68 HIV-negative controls with ≥2 biospecimens ≥1 year apart, an inverted pattern was observed between the rates of change in LTL and WB mtDNA content per year, whereby faster decline of one was associated with the preservation of the other. Furthermore, if HIV viral control was not maintained between visits, increased rates of both LTL attrition and WB mtDNA loss were observed. We describe a novel relationship between two established aging markers, whereby rates of change in LTL and WB mtDNA are inversely related. Our findings highlight the importance of maintaining HIV viral control, the complementary longitudinal relationship between the two markers, and the need to consider both in aging studies.
ISSN:1945-4589
1945-4589
DOI:10.18632/AGING.103703