Keyword search (4,163 papers available)

"fatty acid" Keyword-tagged Publications:

Title Authors PubMed ID
1 Sex differences in the metabolism of glucose and fatty acids by adipose tissue and skeletal muscle in humans Costa DN; Santosa S; Jensen MD; 39869194
SOH
2 The Adr1 transcription factor directs regulation of the ergosterol pathway and azole resistance in Candida albicans Shrivastava M; Kouyoumdjian GS; Kirbizakis E; Ruiz D; Henry M; Vincent AT; Sellam A; Whiteway M; 37791798
BIOLOGY
3 Utilization of ferulic acid in Aspergillus niger requires the transcription factor FarA and a newly identified Far-like protein (FarD) that lacks the canonical Zn(II)2Cys6 domain Arentshorst M; Reijngoud J; van Tol DJC; Reid ID; Arendsen Y; Pel HJ; van Peij NNME; Visser J; Punt PJ; Tsang A; Ram AFJ; 37746181
CSFG
4 Putting ATM to BED: How Adipose Tissue Macrophages Are Affected by Bariatric Surgery, Exercise, and Dietary Fatty Acids Turner L; Santosa S; 33979430
PERFORM
5 Association between rs174537 FADS1 polymorphism and immune cell profiles in abdominal and femoral subcutaneous adipose tissue: an exploratory study in adults with obesity Wang C; Murphy J; Delaney KZ; Khor N; Morais JA; Tsoukas MA; Lowry DE; Mutch DM; Santosa S; 33595419
PERFORM
6 The Relationship Between Cognitive Status and Known Single Nucleotide Polymorphisms in Age-Related Macular Degeneration. Murphy C; Johnson AP; Koenekoop RK; Seiple W; Overbury O; 33178008
PSYCHOLOGY
7 Processing High-Solid and High-Ammonia Rich Manures in a Two-Stage (Liquid-Solid) Low-Temperature Anaerobic Digestion Process: Start-Up and Operating Strategies. Mahato P, Goyette B, Rahaman MS, Rajagopal R 32722477
ENCS
8 Arachidonic acid status negatively associates with forearm bone outcomes and glucose homeostasis in children with an overweight condition or obesity. Mak IL; Cohen TR; Vanstone CA; Weiler HA; 31269410
PERFORM
9 The Sexual Dimorphism of Lipid Kinetics in Humans. Santosa S, Jensen MD 26191040
PERFORM

 

Title:Association between rs174537 FADS1 polymorphism and immune cell profiles in abdominal and femoral subcutaneous adipose tissue: an exploratory study in adults with obesity
Authors:Wang CMurphy JDelaney KZKhor NMorais JATsoukas MALowry DEMutch DMSantosa S
Link:https://pubmed.ncbi.nlm.nih.gov/33595419/
DOI:10.1080/21623945.2021.1888470
Publication:Adipocyte
Keywords:Fatty acid desaturaseT cellmacrophagewhite adipose tissue
PMID:33595419 Category: Date Added:2021-02-17
Dept Affiliation: PERFORM
1 Department of Human Health and Nutritional Sciences, University of Guelph , Guelph, Canada.
2 Department of Health, Kinesiology and Applied Physiology, Concordia University , Montreal, Canada.
3 Metabolism, Obesity, and Nutrition Lab, PERFORM Centre, Concordia University , Montreal, Canada.
4 Centre de recherche - Axe maladies chroniques, Centre intégré universitaire de santé et de services sociaux du Nord-de-l'Ile-de-Montréal, Hôpital du Sacré-Coeur de Montréal , Montreal, Canada.
5 Division of Geriatric Medicine, McGill University Health Centre , Montreal, Canada.
6 Division of Endocrinology, Department of Medicine, McGill University , Montréal, Canada.

Description:

Fatty acid desaturase 1 (FADS1) polymorphisms alter fatty acid content in subcutaneous adipose tissue (SAT); however, existing evidence is limited and conflicting regarding the association between FADS1 variants and SAT inflammatory status. To advance this area, we conducted an exploratory study to investigate whether the common rs174537 polymorphism in FADS1 was associated with immune cell profiles in abdominal and femoral SAT in individuals with obesity. FADS1 gene expression and immune cell profiles in SAT depots were assessed by qPCR and flow cytometry, respectively. Although FADS1 gene expression was associated with genotype, no associations were observed with immune cell profiles in either depot. Our study provides additional evidence that rs174537 in FADS1 has minimal impact on inflammatory status in obese SAT.





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