Richard Planells
Overview
Explore the profile of Richard Planells including associated specialties, affiliations and a list of published articles.
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28
Citations
628
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Recent Articles
1.
Desmarchelier C, Martin J, Planells R, Gastaldi M, Nowicki M, Goncalves A, et al.
J Clin Endocrinol Metab
. 2014 Jan;
99(3):E484-8.
PMID: 24423365
Context: The postprandial chylomicron (CM) triacylglycerol (TG) response to dietary fat, which is positively associated with atherosclerosis and cardiovascular disease risk, displays a high interindividual variability. This is assumed to...
2.
Karsenty J, Landrier J, Rousseau-Ralliard D, Robbez-Masson V, Margotat A, Deprez P, et al.
Eur J Nutr
. 2012 Dec;
52(8):1865-74.
PMID: 23269653
Purpose: To study, in high-fructose-fed rats, the effect of a dietary enrichment in omega-3 polyunsaturated fatty acids (n-3 PUFA) on the expression of genes involved in lipid metabolism and cardiovascular...
3.
Phillips C, Kesse-Guyot E, McManus R, Hercberg S, Lairon D, Planells R, et al.
J Nutr
. 2012 Mar;
142(5):824-31.
PMID: 22457394
Fat mass and obesity-associated (FTO) is the strongest genetic determinant of obesity identified to date. Dietary fat is a key environmental factor that may interact with genotype to affect risk...
4.
Phillips C, Kesse-Guyot E, Ahluwalia N, McManus R, Hercberg S, Lairon D, et al.
Atherosclerosis
. 2011 Dec;
220(2):513-9.
PMID: 22138144
Objective: Chronic inflammation plays a role in the pathogenesis of metabolic syndrome (MetS) and cardiovascular disease (CVD). Complement component 3 (C3) is a novel cardiometabolic risk factor. Whether dietary fat...
5.
Garcia-Rios A, Delgado-Lista J, Perez-Martinez P, Phillips C, Ferguson J, Gjelstad I, et al.
Atherosclerosis
. 2011 Aug;
218(2):416-22.
PMID: 21840003
Objective: To investigate whether seven common single nucleotide polymorphisms (SNPs) at the lipoprotein lipase (LPL) locus interact with total plasma fatty acids to modulate plasma lipid metabolism in metabolic syndrome...
6.
Phillips C, Goumidi L, Bertrais S, Field M, McManus R, Hercberg S, et al.
J Nutr Biochem
. 2011 May;
23(3):239-44.
PMID: 21543200
Transcription factor 7-like 2 (TCF7L2) is the strongest genetic determinant of type 2 diabetes (T2DM) and insulin-related phenotypes to date. Dietary fat is a key environmental factor which may interact...
7.
Wolff E, Vergnes M, Defoort C, Planells R, Portugal H, Nicolay A, et al.
Genes Nutr
. 2011 Mar;
6(1):71-9.
PMID: 21437032
An important inter-individual variability in cholesterol absorption has been reported. It could result from polymorphisms in genes coding for proteins involved in the absorption process and in interaction with dietary...
8.
Phillips C, Goumidi L, Bertrais S, Field M, McManus R, Hercberg S, et al.
Atherosclerosis
. 2010 Dec;
214(2):408-14.
PMID: 21122859
Objective: Dyslipidemia is a key feature of the metabolic syndrome (MetS), which is determined by both genetic and dietary factors. Methods: We determined the relationships between ApoA1 and ApoB polymorphisms...
9.
Phillips C, Goumidi L, Bertrais S, Field M, Cupples L, Ordovas J, et al.
J Lipid Res
. 2010 Sep;
51(12):3500-7.
PMID: 20855566
Acetyl-CoA carboxylase β (ACC2) plays a key role in fatty acid synthesis and oxidation pathways. Disturbance of these pathways is associated with impaired insulin responsiveness and metabolic syndrome (MetS). Gene-nutrient...
10.
Phillips C, Goumidi L, Bertrais S, Field M, Cupples L, Ordovas J, et al.
J Lipid Res
. 2010 Feb;
51(7):1793-800.
PMID: 20176858
Long-chain acyl CoA synthetase 1 (ACSL1) plays an important role in fatty acid metabolism and triacylglycerol (TAG) synthesis. Disturbance of these pathways may result in dyslipidemia and insulin resistance, hallmarks...