Aging selectively dampens oscillation of lipid abundance in white and brown adipose tissue

Author:

Held Ntsiki M.,Buijink M. Renate,Elfrink Hyung L.,Kooijman Sander,Janssens Georges E.,Luyf Angela C. M.,Pras-Raves Mia L.,Vaz Frédéric M.,Michel Stephan,Houtkooper Riekelt H.,van Weeghel Michel

Abstract

AbstractLipid metabolism is under the control of the circadian system and circadian dysregulation has been linked to obesity and dyslipidemia. These factors and outcomes have also been associated to, or affected by, the process of aging. Here, we investigated whether murine white (WAT) and brown (BAT) adipose tissue lipids exhibit rhythmicity and if this is affected by aging. To this end, we have measured the 24 h lipid profiles of WAT and BAT using a global lipidomics analysis of > 1100 lipids. We observed rhythmicity in nearly all lipid classes including glycerolipids, glycerophospholipids, sterol lipids and sphingolipids. Overall, ~ 22% of the analyzed lipids were considered rhythmic in WAT and BAT. Despite a general accumulation of lipids upon aging the fraction of oscillating lipids decreased in both tissues to 14% and 18%, respectively. Diurnal profiles of lipids in BAT appeared to depend on the lipid acyl chain length and this specific regulation was lost in aged mice. Our study revealed how aging affects the rhythmicity of lipid metabolism and could contribute to the quest for targets that improve diurnal lipid homeostasis to maintain cardiometabolic health during aging.

Funder

The Netherlands Cardiovascular Research Initiative: an initiative with support of The Dutch Heart Foundation

Dutch Heart Foundation

VENI grant from ZonMw

ERC Starting grant

ZonMw VIDI grant

Rembrandt Institute for Cardiovascular Science

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

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