Keyword search (4,164 papers available)

"Tam BT" Authored Publications:

Title Authors PubMed ID
1 Combating childhood overweight and obesity: The role of Olympic Movement and bodily movement Tam BT; Wan K; Santosa S; Cai Z; 39991475
SOH
2 Intramyocellular lipid use is altered with exercise in males with childhood-onset obesity despite no differences in substrate oxidation Feola S; Al-Nabelsi L; Tam BT; Near J; Morais JA; Santosa S; 39875595
HKAP
3 Age of obesity onset affects subcutaneous adipose tissue cellularity differently in the abdominal and femoral region Murphy J; Dera A; Morais JA; Tsoukas MA; Khor N; Sazonova T; Almeida LG; Cooke AB; Daskalopoulou SS; Tam BT; Santosa S; 39045668
SOH
4 Senescence markers in subcutaneous preadipocytes differ in childhood- versus adult-onset obesity before and after weight loss Murphy J; Tam BT; Kirkland JL; Tchkonia T; Giorgadze N; Pirtskhalava T; Tsoukas MA; Morais JA; Santosa S; 37194560
PERFORM
5 Sex Affects Regional Variations in Subcutaneous Adipose Tissue T Cells but not Macrophages in Adults with Obesity Murphy J; Delaney KZ; Dam V; Tam BT; Khor N; Tsoukas MA; Morais JA; Santosa S; 33179451
PERFORM
6 Acetyl-CoA regulation, OXPHOS integrity and leptin level are different in females with different onsets of obesity. Tam BT, Murphy J, Khor N, Morais JA, Santosa S 32808657
PERFORM
7 Obestatin and growth hormone reveal the interaction of central obesity and other cardiometabolic risk factors of metabolic syndrome. Yu AP, Ugwu FN, Tam BT, Lee PH, Ma V, Pang S, Chow AS, Cheng KK, Lai CW, Wong CS, Siu PM 32218464
HKAP
8 Obesity and ageing: Two sides of the same coin. Tam BT, Morais JA, Santosa S 32020741
PERFORM
9 Ghrelin Axis Reveals the Interacting Influence of Central Obesity and Hypertension. Yu AP, Ugwu FN, Tam BT, Lee PH, Lai CW, Wong CSC, Siu PM 30258404
HKAP

 

Title:Acetyl-CoA regulation, OXPHOS integrity and leptin level are different in females with different onsets of obesity.
Authors:Tam BTMurphy JKhor NMorais JASantosa S
Link:https://www.ncbi.nlm.nih.gov/pubmed/32808657
DOI:10.1210/endocr/bqaa142
Publication:Endocrinology
Keywords:acetyl-CoAadipose tissueleptinmetabolismobesity onset
PMID:32808657 Category:Endocrinology Date Added:2020-08-18
Dept Affiliation: PERFORM
1 Department of Health, Kinesiology, and Applied Physiology, Concordia University, Montreal, Quebec, Canada.
2 Metabolism, Obesity, Nutrition Lab, PERFORM Centre, Concordia University, Montreal, Quebec, Canada.
3 Division of Geriatric Medicine and Research Institute of McGill University Health Centre, Montreal, Quebec, Canada.

Description:

Although childhood-onset obesity (CO) and adult-onset obesity (AO) are known to lead to distinctive clinical manifestations and disease risks, the fundamental differences between them are largely unclear. The aim of the current study is to investigate the fundamental differences between subcutaneous adipose tissue from CO and AO and identify metabolic differences between abdominal (abSAT) and femoral subcutaneous adipose tissues (feSAT). Total and regional body composition was assessed using DXA and computed tomography. Level of acetyl-CoA, NAD+/NADH, acetyl-CoA network genes, mitochondrial complex abundance, H3 acetylation were determined in biopsied abSAT and feSAT. Serum leptin and adiponectin were measured. Our results showed that acetyl-CoA was higher in subcutaneous adipose tissue from subjects with AO compared to CO. Multiple linear regression revealed that ATP citrate lyase was the only main effect affecting the level of acetyl-CoA. Circulating leptin was higher in AO. The increased level of acetyl-CoA was strongly associated with histone H3 acetylation, LEPTIN expression in adipose tissue and circulating leptin in AO. NAD+/NADH was higher in CO, however, mitochondrial complexes abundance, complex II: complex V and complex IV: complex V ratio were lower in CO, reflecting compromised mitochondrial function in adipose tissue from CO. Moreover, we identified differences in the level of acetyl-CoA and NAD+/NADH ratio between abSAT and feSAT, suggesting that these fat depots may possess different metabolic properties. The fundamental difference in the important metabolic intermediate, acetyl-CoA, between CO and AO may help us better understand the development of obesity and the pathogenesis of different obesity-related diseases in human.

PMID: 32808657 [PubMed - as supplied by publisher]





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