A R Carpinelli
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Explore the profile of A R Carpinelli including associated specialties, affiliations and a list of published articles.
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Articles
56
Citations
735
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Recent Articles
1.
Graciano M, Leonelli M, Curi R, R Carpinelli A
J Physiol Biochem
. 2016 Jul;
72(4):699-710.
PMID: 27474043
Omega-3 fatty acids have multiple effects in peripheral tissues and pancreatic beta cell function. Dietary depletion of omega-3 fatty acids is associated with pancreatic islet dysfunction and insulin resistance in...
2.
Marcal A, Camporez J, Lima-Salgado T, Cintra D, Akamine E, Ribeiro L, et al.
Br J Nutr
. 2012 Nov;
109(12):2154-65.
PMID: 23182275
Long-chain fatty acids are capable of inducing alterations in the homoeostasis of glucose-stimulated insulin secretion (GSIS), but the effect of medium-chain fatty acids (MCFA) is poorly elucidated. In the present...
3.
Felipe E, Maestri J, Kanunfre C, Curi R, Newsholme P, R Carpinelli A, et al.
Nat Prod Res
. 2012 Mar;
27(10):925-8.
PMID: 22443082
Flavonoids, in general, have potent antioxidant activity and they can be used in treating chronic diseases involving oxidative stress, such as diabetes mellitus. The purpose of this study was to...
4.
Alves E, Haidar A, Quadros C, Carvalho D, Morgan D, Rocha M, et al.
Regul Pept
. 2012 Jan;
175(1-3):1-6.
PMID: 22280799
Angiotensin II (AII), the active component of the renin angiotensin system (RAS), plays a vital role in the regulation of physiological processes of the cardiovascular system, but also has autocrine...
5.
Morgan D, Rebelato E, Abdulkader F, Graciano M, Oliveira-Emilio H, Hirata A, et al.
Endocrinology
. 2009 Jan;
150(5):2197-201.
PMID: 19147679
We previously described the presence of nicotinamide adenine dinucleotide phosphate reduced form [NAD(P)H]oxidase components in pancreatic beta-cells and its activation by glucose, palmitic acid, and proinflammatory cytokines. In the present...
6.
Hirata A, Morgan D, Oliveira-Emilio H, Rocha M, Carvalho C, Curi R, et al.
Regul Pept
. 2008 Dec;
153(1-3):1-6.
PMID: 19081082
Angiotensin II (Ang II) controls blood pressure, electrolyte balance, cell growth and vascular remodeling. Ang II activates NAD(P)H oxidase in several tissues with important function in the control of insulin...
7.
Picinato M, Hirata A, Cipolla-Neto J, Curi R, Carvalho C, Anhe G, et al.
J Pineal Res
. 2007 Dec;
44(1):88-94.
PMID: 18078453
Melatonin diminishes insulin release through the activation of MT1 receptors and a reduction in cAMP production in isolated pancreatic islets of neonate and adult rats and in INS-1 cells (an...
8.
Newsholme P, Haber E, Hirabara S, Rebelato E, Procopio J, Morgan D, et al.
J Physiol
. 2007 Jun;
583(Pt 1):9-24.
PMID: 17584843
It is now widely accepted, given the current weight of experimental evidence, that reactive oxygen species (ROS) contribute to cell and tissue dysfunction and damage caused by glucolipotoxicity in diabetes....
9.
Morgan D, Oliveira-Emilio H, Keane D, Hirata A, Santos da Rocha M, Bordin S, et al.
Diabetologia
. 2006 Dec;
50(2):359-69.
PMID: 17151863
Aims/hypothesis: Acute or chronic exposure of beta cells to glucose, palmitic acid or pro-inflammatory cytokines will result in increased production of the p47(phox) component of the NADPH oxidase and subsequent...
10.
Martins E, Miyasaka C, Newsholme P, Curi R, R Carpinelli A
Diabetes Metab
. 2004 Mar;
30(1):21-7.
PMID: 15029094
Objective: The hypothesis that changes in fatty acId composition of pancreatic islets occur during incubation was investigated. Methods: The content and composition of fatty acIds (FA) from rat pancreatic islets...