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Summary Anatomy Item Literature (1720) Expression Attributions Wiki
XB-ANAT-1495

Papers associated with portion of organism substance (and ins)

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A loss-of-function mutation in KCNJ11 causing sulfonylurea-sensitive diabetes in early adult life., Vedovato N., Diabetologia. May 1, 2024; 67 (5): 940-951.          


Beneficial actions of the [A14K] analog of the frog skin peptide PGLa-AM1 in mice with obesity and degenerative diabetes: A mechanistic study., Musale V., Peptides. February 1, 2021; 136 170472.


Genetic and Physiological Effects of Insulin on Human Urate Homeostasis., Mandal AK., Front Physiol. January 1, 2021; 12 713710.              


Inhibition of the facilitative sugar transporters (GLUTs) by tea extracts and catechins., Ni D., FASEB J. August 1, 2020; 34 (8): 9995-10010.


Interactive Actions of Aldosterone and Insulin on Epithelial Na+ Channel Trafficking., Marunaka R., Int J Mol Sci. May 12, 2020; 21 (10):         


Ketone body modulation of ligand-gated ion channels., Pflanz NC., Neuropharmacology. April 1, 2019; 148 21-30.


A novel high-affinity inhibitor against the human ATP-sensitive Kir6.2 channel., Ramu Y., J Gen Physiol. July 2, 2018; 150 (7): 969-976.              


Permanent neonatal diabetes: combining sulfonylureas with insulin may be an effective treatment., Misra S., Diabet Med. June 13, 2018;


Unexpected metabolic disorders induced by endocrine disruptors in Xenopus tropicalis provide new lead for understanding amphibian decline., Regnault C., Proc Natl Acad Sci U S A. May 8, 2018; 115 (19): E4416-E4425.        


Xenopus-derived glucagon-like peptide-1 and polyethylene-glycosylated glucagon-like peptide-1 receptor agonists: long-acting hypoglycaemic and insulinotropic activities with potential therapeutic utilities., Han J., Br J Pharmacol. February 1, 2018; 175 (3): 544-557.


Action of Protein Tyrosine Kinase Inhibitors on the Hypotonicity-Stimulated Trafficking Kinetics of Epithelial Na+ Channels (ENaC) in Renal Epithelial Cells: Analysis Using a Mathematical Model., Marunaka R., Cell Physiol Biochem. January 1, 2018; 50 (1): 363-377.


Apple and blackcurrant polyphenol-rich drinks decrease postprandial glucose, insulin and incretin response to a high-carbohydrate meal in healthy men and women., Castro-Acosta ML., J Nutr Biochem. November 1, 2017; 49 53-62.


Elevated circulating levels of xenopsin-related peptide-1 are associated with polycystic ovary syndrome., Temur M., Arch Gynecol Obstet. October 1, 2017; 296 (4): 841-846.


Xenopus pax6 mutants affect eye development and other organ systems, and have phenotypic similarities to human aniridia patients., Nakayama T., Dev Biol. December 15, 2015; 408 (2): 328-44.                              


Understanding How the Subcommissural Organ and Other Periventricular Secretory Structures Contribute via the Cerebrospinal Fluid to Neurogenesis., Guerra MM., Front Cell Neurosci. September 23, 2015; 9 480.                


Magainin-AM2 improves glucose homeostasis and beta cell function in high-fat fed mice., Ojo OO., Biochim Biophys Acta. January 1, 2015; 1850 (1): 80-7.


Inhibition of the intestinal sodium-coupled glucose transporter 1 (SGLT1) by extracts and polyphenols from apple reduces postprandial blood glucose levels in mice and humans., Schulze C., Mol Nutr Food Res. September 1, 2014; 58 (9): 1795-808.


Impaired liver function in Xenopus tropicalis exposed to benzo[a]pyrene: transcriptomic and metabolic evidence., Regnault C., BMC Genomics. August 8, 2014; 15 666.          


Characterization of the insulin-like growth factor binding protein family in Xenopus tropicalis., Haramoto Y., Int J Dev Biol. January 1, 2014; 58 (9): 705-11.                                            


A system for ex vivo culturing of embryonic pancreas., Petzold KM., J Vis Exp. August 27, 2012; (66): e3979.


Programming pluripotent precursor cells derived from Xenopus embryos to generate specific tissues and organs., Borchers A., Genes (Basel). November 18, 2010; 1 (3): 413-26.      


Disease progression and search for monogenic diabetes among children with new onset type 1 diabetes negative for ICA, GAD- and IA-2 Antibodies., Pörksen S., BMC Endocr Disord. September 23, 2010; 10 16.      


COMMD1 downregulates the epithelial sodium channel through Nedd4-2., Ke Y., Am J Physiol Renal Physiol. June 1, 2010; 298 (6): F1445-56.


Rgs16 and Rgs8 in embryonic endocrine pancreas and mouse models of diabetes., Villasenor A., Dis Model Mech. January 1, 2010; 3 (9-10): 567-80.


Mechanism of disopyramide-induced hypoglycaemia in a patient with Type 2 diabetes., Negishi M., Diabet Med. January 1, 2009; 26 (1): 76-8.


Evolving potassium channels by means of yeast selection reveals structural elements important for selectivity., Bichet D., Proc Natl Acad Sci U S A. March 30, 2004; 101 (13): 4441-6.


Aquaglyceroporin AQP9: solute permeation and metabolic control of expression in liver., Carbrey JM., Proc Natl Acad Sci U S A. March 4, 2003; 100 (5): 2945-50.


Endoderm is required for vascular endothelial tube formation, but not for angioblast specification., Vokes SA., Development. February 1, 2002; 129 (3): 775-85.            


Open state destabilization by ATP occupancy is mechanism speeding burst exit underlying KATP channel inhibition by ATP., Li L., J Gen Physiol. January 1, 2002; 119 (1): 105-16.                    


Induction of pancreatic differentiation by signals from blood vessels., Lammert E., Science. October 19, 2001; 294 (5542): 564-7.


Organization of the human glucokinase regulator gene GCKR., Hayward BE., Genomics. April 1, 1998; 49 (1): 137-42.


Truncation of Kir6.2 produces ATP-sensitive K+ channels in the absence of the sulphonylurea receptor., Tucker SJ., Nature. May 8, 1997; 387 (6629): 179-83.


The effect of active serum albumin on PC12 cells: I. Neurite retraction and activation of the phosphoinositide second messenger system., Dyer D., Brain Res Mol Brain Res. August 1, 1992; 14 (4): 293-301.


Serum immunoreactive insulin levels in intact and regenerating postmetamorphic Xenopus laevis., Liversage RA., J Exp Zool. September 1, 1987; 243 (3): 453-60.


Effect of xenopsin on blood flow, hormone release, and acid secretion., Zinner MJ., Am J Physiol. September 1, 1982; 243 (3): G195-9.

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