Abstract 019: Association Of Sleep Irregularity And Variability With Leptin And Adiponectin Levels In Adolescents

P Pura Ballester-Navarro (Universidad Catolica San Antonio, Murcia, Spain) N Natasha Morales-Ghinaglia (Geisinger Commonwealth SOM, Scranton, Pennsylvania, United States) K Kristina Lenker (PENN STATE COLLEGE OF MEDICINE, Hershey, Pennsylvania, United States) S Susan Calhoun (PENN STATE COLLEGE OF MEDICINE, Hershey, Pennsylvania, United States) J Jiangang Liao (PENN STATE COLLEGE OF MEDICINE, Hershey, Pennsylvania, United States) A Alexandros Vgontzas (PENN STATE COLLEGE OF MEDICINE, Hershey, Pennsylvania, United States) D Duanping Liao (PENN STATE UNIV COLLEGE OF MED, Hershey, Pennsylvania, United States) E Edward Bixler (PENN STATE COLLEGE OF MEDICINE, Hershey, Pennsylvania, United States) J Julio Fernandez-Mendoza (PENN STATE COLLEGE OF MEDICINE, Hershey, Pennsylvania, United States)

Abstract

Introduction: Hormone fluctuations and circadian rhythms, including the sleep-wake cycle, are reciprocally associated. Lipid and glucose metabolism pace depend on leptin and adiponectin levels. Alignment of the sleep-wake cycle is associated with optimal sleep duration and metabolic regulation. Therefore, deviations in sleep timing and duration resulting from circadian misalignment, which is highly prevalent in adolescents, are potentially impacting this association. Hypothesis: Objective metrics of sleep timing and duration are associated with adiponectin and leptin levels in adolescents. Methods: We assessed 344 adolescents from the Penn State Child Cohort [16.2 (2.2) years; 44.4% female; 21.5% racial/ethnic minority], of whom 215 were evaluated while in school and 129 while on break. All subjects had a minimum of 3-nights of at-home actigraphy and 9-hour in-lab polysomnography. Sleep midpoint (SM) was calculated as the central point of the sleep period, while sleep irregularity (SI) and sleep variability (SV) as the intra-individual standard deviation of the SM and total sleep time, respectively. Adiponectin and leptin levels were assayed via ELISA from blood samples. Linear regression models adjusted for sex, race/ethnicity, age, apnea/hypopnea index, BMI percentile, and SES. Results: Greater SI and SV while attending school were associated with lower log-adiponectin levels (B=-0.155, SD=0.057, p=0.007 and B=-0.127, SD=0.054, p=0.021, respectively). SM was not significantly associated with either log-leptin or log-adiponectin levels. Conclusions: Increased irregularity and variability in the timing and duration of sleep during the academic year affect glucose and fatty acid control mechanisms in adolescents. Our findings further support targeting sleep from a multidimensional standpoint to better prevent its impact on cardiometabolic health. Support: National Institutes of Health (R01HL136587, UL1TR000127)

Article Details

Journal Circulation
Volume / Issue Vol. 151, Issue Suppl_1
Published March 11, 2025
ISSN 0009-7322
Publisher Lippincott Williams & Wilkins

Journal Info

Circulation

Lippincott Williams & Wilkins

ISSN: 0009-7322 Health Sciences

Authors (9)

P

Pura Ballester-Navarro

Universidad Catolica San Antonio, Murcia, Spain

N

Natasha Morales-Ghinaglia

Geisinger Commonwealth SOM, Scranton, Pennsylvania, United States

K

Kristina Lenker

PENN STATE COLLEGE OF MEDICINE, Hershey, Pennsylvania, United States

S

Susan Calhoun

PENN STATE COLLEGE OF MEDICINE, Hershey, Pennsylvania, United States

J

Jiangang Liao

PENN STATE COLLEGE OF MEDICINE, Hershey, Pennsylvania, United States

A

Alexandros Vgontzas

PENN STATE COLLEGE OF MEDICINE, Hershey, Pennsylvania, United States

D

Duanping Liao

PENN STATE UNIV COLLEGE OF MED, Hershey, Pennsylvania, United States

E

Edward Bixler

PENN STATE COLLEGE OF MEDICINE, Hershey, Pennsylvania, United States

J

Julio Fernandez-Mendoza

PENN STATE COLLEGE OF MEDICINE, Hershey, Pennsylvania, United States