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For: Fujimori N, Oono T, Igarashi H, Ito T, Nakamura T, Uchida M, Coy DH, Jensen RT, Takayanagi R. Vasoactive intestinal peptide reduces oxidative stress in pancreatic acinar cells through the inhibition of NADPH oxidase. Peptides. 2011;32:2067-2076. [PMID: 21924308 DOI: 10.1016/j.peptides.2011.08.027] [Cited by in Crossref: 17] [Cited by in F6Publishing: 18] [Article Influence: 1.5] [Reference Citation Analysis]
Number Citing Articles
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10 Kleme ML, Sané A, Garofalo C, Seidman E, Brochiero E, Berthiaume Y, Levy E. CFTR Deletion Confers Mitochondrial Dysfunction and Disrupts Lipid Homeostasis in Intestinal Epithelial Cells. Nutrients 2018;10:E836. [PMID: 29954133 DOI: 10.3390/nu10070836] [Cited by in Crossref: 15] [Cited by in F6Publishing: 15] [Article Influence: 3.8] [Reference Citation Analysis]
11 Morara S, Colangelo AM, Provini L. Microglia-Induced Maladaptive Plasticity Can Be Modulated by Neuropeptides In Vivo. Neural Plast 2015;2015:135342. [PMID: 26273481 DOI: 10.1155/2015/135342] [Cited by in Crossref: 7] [Cited by in F6Publishing: 6] [Article Influence: 1.0] [Reference Citation Analysis]
12 Palus K, Bulc M, Całka J. Effect of Acrylamide Supplementation on the Population of Vasoactive Intestinal Peptide (VIP)-Like Immunoreactive Neurons in the Porcine Small Intestine. Int J Mol Sci 2020;21:E9691. [PMID: 33353157 DOI: 10.3390/ijms21249691] [Reference Citation Analysis]
13 Yu R, Yang Y, Cui Z, Zheng L, Zeng Z, Zhang H. Novel peptide VIP-TAT with higher affinity for PAC1 inhibited scopolamine induced amnesia. Peptides 2014;60:41-50. [DOI: 10.1016/j.peptides.2014.07.018] [Cited by in Crossref: 10] [Cited by in F6Publishing: 8] [Article Influence: 1.3] [Reference Citation Analysis]
14 Palipoch S, Punsawad C, Koomhin P, Suwannalert P. Hepatoprotective effect of curcumin and alpha-tocopherol against cisplatin-induced oxidative stress. BMC Complement Altern Med 2014;14:111. [PMID: 24674233 DOI: 10.1186/1472-6882-14-111] [Cited by in Crossref: 58] [Cited by in F6Publishing: 49] [Article Influence: 7.3] [Reference Citation Analysis]
15 Brandes RP, Weissmann N, Schröder K. Nox family NADPH oxidases: Molecular mechanisms of activation. Free Radical Biology and Medicine 2014;76:208-26. [DOI: 10.1016/j.freeradbiomed.2014.07.046] [Cited by in Crossref: 355] [Cited by in F6Publishing: 346] [Article Influence: 44.4] [Reference Citation Analysis]
16 Xia D, Halder B, Godoy C, Chakraborty A, Singla B, Thomas E, Shuja JB, Kashif H, Miller L, Csanyi G, Sabbatini ME. NADPH oxidase 1 mediates caerulein-induced pancreatic fibrosis in chronic pancreatitis. Free Radic Biol Med 2020;147:139-49. [PMID: 31837426 DOI: 10.1016/j.freeradbiomed.2019.11.034] [Cited by in Crossref: 3] [Cited by in F6Publishing: 4] [Article Influence: 1.0] [Reference Citation Analysis]
17 Vacas E, Bajo AM, Schally AV, Sánchez-chapado M, Prieto JC, Carmena MJ. Antioxidant activity of vasoactive intestinal peptide in HK2 human renal cells. Peptides 2012;38:275-81. [DOI: 10.1016/j.peptides.2012.09.011] [Cited by in Crossref: 12] [Cited by in F6Publishing: 13] [Article Influence: 1.2] [Reference Citation Analysis]
18 Cao WL, Xiang XH, Chen K, Xu W, Xia SH. Potential role of NADPH oxidase in pathogenesis of pancreatitis. World J Gastrointest Pathophysiol 2014; 5(3): 169-177 [PMID: 25133019 DOI: 10.4291/wjgp.v5.i3.169] [Cited by in CrossRef: 18] [Cited by in F6Publishing: 16] [Article Influence: 2.3] [Reference Citation Analysis]