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David M Bravo

Explore the profile of David M Bravo including associated specialties, affiliations and a list of published articles. Areas
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Articles 20
Citations 678
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Recent Articles
1.
Kroscher K, Fausnacht D, McMillan R, El-Kadi S, Wall E, Bravo D, et al.
J Anim Sci . 2022 Jul; 100(8). PMID: 35908791
Substantial economic losses in animal agriculture result from animals experiencing heat stress (HS). Pigs are especially susceptible to HS, resulting in reductions in growth, altered body composition, and compromised substrate...
2.
Ringuet M, Hunne B, Lenz M, Bravo D, Furness J
Nutrients . 2021 Apr; 13(4). PMID: 33806211
Dietary organic selenium (Se) is commonly utilized to increase formation of selenoproteins, including the major antioxidant protein, glutathione peroxidase (GPx). Inorganic Se salts, such as sodium selenite, are also incorporated...
3.
Biggs M, Kroscher K, Zhao L, Zhang Z, Wall E, Bravo D, et al.
J Anim Sci . 2020 Apr; 98(5). PMID: 32333770
Pigs exposed to elevated ambient temperatures exhibit reduced daily gain, alterations in muscle and fat deposition, and decreased health. Negative aspects of gastrointestinal (GI) function, integrity, and permeability also occur....
4.
Doan N, Liu Y, Xiong X, Kim K, Wu Z, Bravo D, et al.
Br J Nutr . 2020 Mar; 124(1):23-33. PMID: 32116206
The study investigated antioxidant effects of Se on resilience to diquat-induced oxidative stress in nursery pigs. Thirty-five weaned pigs were individually housed and randomly assigned to one of the five...
5.
Moran A, Al-Rammahi M, Daly K, Grand E, Ionescu C, Bravo D, et al.
J Agric Food Chem . 2019 Nov; 68(2):441-450. PMID: 31736308
Absorption of glucose, via intestinal Na/glucose cotransporter 1 (SGLT1), activates salt and water absorption and is an effective route for treating ()-induced diarrhea. Activity and expression of SGLT1 is regulated...
6.
Moran A, Al-Rammahi M, Batchelor D, Bravo D, Shirazi-Beechey S
Front Nutr . 2018 Nov; 5:101. PMID: 30416998
The Na/glucose cotransporter 1, SGLT1 is the major route for transport of dietary glucose from the lumen of the intestine into absorptive enterocytes. Sensing of dietary sugars and artificial sweeteners...
7.
Fothergill L, Callaghan B, Hunne B, Bravo D, Furness J
Endocrinology . 2017 Apr; 158(7):2113-2123. PMID: 28430903
Recent studies reveal complex patterns of hormone coexpression within enteroendocrine cells (EECs), contrary to the traditional view that gut hormones are expressed individually in EECs. Moreover, different hormones have been...
8.
Fothergill L, Callaghan B, Rivera L, Lieu T, Poole D, Cho H, et al.
Nutrients . 2016 Oct; 8(10). PMID: 27735854
TRPA1 is a ligand-activated cation channel found in the intestine and other tissues. Components of food that stimulate TRPA1 receptors (phytonutrients) include allyl isothiocyanate, cinnamaldehyde and linalool, but these may...
9.
Liu F, Cottrell J, Furness J, Rivera L, Kelly F, Wijesiriwardana U, et al.
Exp Physiol . 2016 Apr; 101(7):801-10. PMID: 27064134
What is the central question of this study? Oxidative stress may play a role in compromising intestinal epithelial barrier integrity in pigs subjected to heat stress, but it is unknown...
10.
Reynaud Y, Fakhry J, Fothergill L, Callaghan B, Ringuet M, Hunne B, et al.
Cell Tissue Res . 2016 Jan; 364(3):489-497. PMID: 26803512
The majority of 5-HT (serotonin) in the body is contained in enteroendocrine cells of the gastrointestinal mucosa. From the time of their discovery over 80 years ago, the 5-HT-containing cells...