All Relations between gip and insulin

Publication Sentence Publish Date Extraction Date Species
Soraya P Shirazi-Beechey, Kristian Daly, Miran Al-Rammahi, Andrew W Moran, David Brav. Role of nutrient-sensing taste 1 receptor (T1R) family members in gastrointestinal chemosensing. The British journal of nutrition. vol 111 Suppl 1. 2014-07-14. PMID:24382171. glp-1 and gip enhance insulin secretion; glp-2 increases intestinal growth and glucose absorption. 2014-07-14 2023-08-12 Not clear
Giuseppina Opinto, Annalisa Natalicchio, Piero Marchett. Physiology of incretins and loss of incretin effect in type 2 diabetes and obesity. Archives of physiology and biochemistry. vol 119. issue 4. 2014-07-10. PMID:23859800. in humans, the major incretin hormones are glucagon-like peptide (glp)-1 and glucose-dependent insulinotropic polypeptide (gip), and together they fully account for the incretin effect (that is, higher insulin release in response to an oral glucose challenge compared to an equal intravenous glucose load). 2014-07-10 2023-08-12 Not clear
Victòria Ceperuelo-Mallafré, Xavier Duran, Gisela Pachón, Kelly Roche, Lourdes Garrido-Sánchez, Nuria Vilarrasa, Francisco J Tinahones, Vicente Vicente, Jordi Pujol, Joan Vendrell, Sonia Fernández-Veled. Disruption of GIP/GIPR axis in human adipose tissue is linked to obesity and insulin resistance. The Journal of clinical endocrinology and metabolism. vol 99. issue 5. 2014-07-10. PMID:24512489. glucose-dependent insulinotropic peptide (gip) has a central role in glucose homeostasis through its amplification of insulin secretion; however, its physiological role in adipose tissue is unclear. 2014-07-10 2023-08-12 human
Jie Shen, Zhi Chen, Chaofeng Chen, Xiao Zhu, Yajuan Ha. Impact of incretin on early-phase insulin secretion and glucose excursion. Endocrine. vol 44. issue 2. 2014-07-01. PMID:23283820. plasma glucose, insulin, glucagon, total glucose-dependent insulinotropic polypeptide (gip), and glucagon-like peptide-l (glp-1) levels were measured at 30-min increments for 2 h after glucose intake. 2014-07-01 2023-08-12 human
Jie Shen, Zhi Chen, Chaofeng Chen, Xiao Zhu, Yajuan Ha. Impact of incretin on early-phase insulin secretion and glucose excursion. Endocrine. vol 44. issue 2. 2014-07-01. PMID:23283820. no correlation was observed between gip secretion and early-phase insulin secretion. 2014-07-01 2023-08-12 human
Mathieu Weitten, Jean-Patrice Robin, Hugues Oudart, Paul Pévet, Caroline Habol. Hormonal changes and energy substrate availability during the hibernation cycle of Syrian hamsters. Hormones and behavior. vol 64. issue 4. 2014-07-01. PMID:24005184. our study aims to define these metabolic adaptations, including hormone (insulin, glucagon, leptin, adiponectin, glp-1, gip) and metabolite (glucose, free fatty acids, triglycerides, urea) profiles together with body composition adjustments. 2014-07-01 2023-08-12 Not clear
Yutaka Seino, Mitsuo Fukushima, Daisuke Yab. GIP and GLP-1, the two incretin hormones: Similarities and differences. Journal of diabetes investigation. vol 1. issue 1-2. 2014-06-24. PMID:24843404. gastric inhibitory polypeptide (gip) and glucagon-like peptide-1 (glp-1) are the two primary incretin hormones secreted from the intestine on ingestion of glucose or nutrients to stimulate insulin secretion from pancreatic β cells. 2014-06-24 2023-08-13 human
Christopher Hs McIntosh, Scott Widenmaier, Su-Jin Ki. Glucose-dependent insulinotropic polypeptide signaling in pancreatic β-cells and adipocytes. Journal of diabetes investigation. vol 3. issue 2. 2014-06-24. PMID:24843552. in addition to stimulating insulin secretion, gip plays regulatory roles in the maintenance, growth and survival of pancreatic islets, as well as impacting on adipocyte function. 2014-06-24 2023-08-13 Not clear
Christopher Hs McIntosh, Scott Widenmaier, Su-Jin Ki. Glucose-dependent insulinotropic polypeptide signaling in pancreatic β-cells and adipocytes. Journal of diabetes investigation. vol 3. issue 2. 2014-06-24. PMID:24843552. these events involve interactions between gip, insulin and resistin signaling pathways. 2014-06-24 2023-08-13 Not clear
Yutaka Seino, Daisuke Yab. Glucose-dependent insulinotropic polypeptide and glucagon-like peptide-1: Incretin actions beyond the pancreas. Journal of diabetes investigation. vol 4. issue 2. 2014-06-24. PMID:24843641. glucose-dependent insulinotropic polypeptide (gip) and glucagon-like peptide-1 (glp-1) are the two primary incretin hormones secreted from the intestine on ingestion of various nutrients to stimulate insulin secretion from pancreatic β-cells glucose-dependently. 2014-06-24 2023-08-13 mouse
Noriko Kameyama, Chizuko Maruyama, Sadako Matsui, Risa Araki, Yuichiro Yamada, Taro Maruyam. Effects of consumption of main and side dishes with white rice on postprandial glucose, insulin, glucose-dependent insulinotropic polypeptide and glucagon-like peptide-1 responses in healthy Japanese men. The British journal of nutrition. vol 111. issue 9. 2014-06-02. PMID:24507870. the co-ingestion of protein, fat and fibre with carbohydrate reportedly affects postprandial glucose, insulin and incretin (glucose-dependent insulinotropic polypeptide (gip) and glucagon-like peptide-1 (glp-1)) responses. 2014-06-02 2023-08-12 human
Noriko Kameyama, Chizuko Maruyama, Sadako Matsui, Risa Araki, Yuichiro Yamada, Taro Maruyam. Effects of consumption of main and side dishes with white rice on postprandial glucose, insulin, glucose-dependent insulinotropic polypeptide and glucagon-like peptide-1 responses in healthy Japanese men. The British journal of nutrition. vol 111. issue 9. 2014-06-02. PMID:24507870. plasma glucose, gip and glp-1 and serum insulin concentrations were determined during a 3 h period after consumption of these meals. 2014-06-02 2023-08-12 human
Timothy D Heden, Ying Liu, Monica L Kearney, Youngmin Park, Kevin C Dellsperger, Tom R Thomas, Jill A Kanale. Prior exercise and postprandial incretin responses in lean and obese individuals. Medicine and science in sports and exercise. vol 45. issue 10. 2014-05-21. PMID:23559122. the incretin hormones glucagon-like peptide-1 (glp-1) and glucose-dependent insulinotropic polypeptide (gip) help regulate postprandial triacylglycerol (tag) and insulin concentrations, but the effects of acute aerobic exercise on glp-1 or gip responses are unclear. 2014-05-21 2023-08-12 Not clear
Timothy D Heden, Ying Liu, Monica L Kearney, Youngmin Park, Kevin C Dellsperger, Tom R Thomas, Jill A Kanale. Prior exercise and postprandial incretin responses in lean and obese individuals. Medicine and science in sports and exercise. vol 45. issue 10. 2014-05-21. PMID:23559122. the purpose of this study was to determine whether reductions in postprandial tag and insulin with exercise are associated with glp-1 and gip responses. 2014-05-21 2023-08-12 Not clear
Emilie Faivre, Christian Hölsche. Neuroprotective effects of D-Ala(2)GIP on Alzheimer's disease biomarkers in an APP/PS1 mouse model. Alzheimer's research & therapy. vol 5. issue 2. 2014-05-20. PMID:23601582. glucose-dependent insulinotropic polypeptide (gip) normalises insulin signaling by facilitating insulin release. 2014-05-20 2023-08-12 mouse
Norio Harada, Akihiro Hamasaki, Shunsuke Yamane, Atsushi Muraoka, Erina Joo, Kazuyo Fujita, Nobuya Inagak. Plasma gastric inhibitory polypeptide and glucagon-like peptide-1 levels after glucose loading are associated with different factors in Japanese subjects. Journal of diabetes investigation. vol 2. issue 3. 2014-05-20. PMID:24843483. aims/introduction:  gastric inhibitory polypeptide (gip) and glucagon-like peptide-1 (glp-1) are major incretins that potentiate insulin secretion from pancreatic β-cells. 2014-05-20 2023-08-13 human
Tetsuji Okawa, Hideki Kamiya, Tatsuhito Himeno, Yusuke Seino, Shin Tsunekawa, Yoshitaka Hayashi, Norio Harada, Yuichiro Yamada, Nobuya Inagaki, Yutaka Seino, Yutaka Oiso, Jiro Nakamur. Sensory and motor physiological functions are impaired in gastric inhibitory polypeptide receptor-deficient mice. Journal of diabetes investigation. vol 5. issue 1. 2014-05-20. PMID:24843734. gastric inhibitory polypeptide (gip) is an incretin secreted from the gastrointestinal tract after an ingestion of nutrients, and stimulates an insulin secretion from the pancreatic islets. 2014-05-20 2023-08-13 mouse
Serenella Salinari, Carel W le Roux, Alessandro Bertuzzi, Francesco Rubino, Geltrude Mingron. Duodenal-jejunal bypass and jejunectomy improve insulin sensitivity in Goto-Kakizaki diabetic rats without changes in incretins or insulin secretion. Diabetes. vol 63. issue 3. 2014-04-24. PMID:24241532. baseline and poststimulation levels of glucose, insulin, glucagon-like peptide 1 (glp-1), and glucose-dependent insulinotropic polypeptide (gip) were measured. 2014-04-24 2023-08-12 rat
Sara Chowdhury, Dominic N Reeds, Dan L Crimmins, Bruce W Patterson, Erin Laciny, Songyan Wang, Hung D Tran, Terry A Griest, David A Rometo, Judit Dunai, Michael J Wallendorf, Jack H Ladenson, Kenneth S Polonsky, Burton M Wic. Xenin-25 delays gastric emptying and reduces postprandial glucose levels in humans with and without type 2 diabetes. American journal of physiology. Gastrointestinal and liver physiology. vol 306. issue 4. 2014-04-10. PMID:24356886. plasma acm, glucose, insulin, c-peptide, glucagon, xen, gip, and glucagon-like peptide-1 (glp-1) levels were measured and isrs calculated. 2014-04-10 2023-08-12 human
Sara Chowdhury, Dominic N Reeds, Dan L Crimmins, Bruce W Patterson, Erin Laciny, Songyan Wang, Hung D Tran, Terry A Griest, David A Rometo, Judit Dunai, Michael J Wallendorf, Jack H Ladenson, Kenneth S Polonsky, Burton M Wic. Xenin-25 delays gastric emptying and reduces postprandial glucose levels in humans with and without type 2 diabetes. American journal of physiology. Gastrointestinal and liver physiology. vol 306. issue 4. 2014-04-10. PMID:24356886. hi-xen reduced plasma glp-1, but not gip, levels without altering the insulin secretory response to glucose. 2014-04-10 2023-08-12 human