Paracrine GABA and insulin regulate pancreatic alpha cell proliferation in a mouse model of type 1 diabetes

被引:59
作者
Feng, Allen L. [1 ]
Xiang, Yun-Yan [1 ]
Gui, Le [2 ]
Kaltsidis, Gesthika [2 ]
Feng, Qingping [2 ]
Lu, Wei-Yang [1 ,2 ]
机构
[1] Univ Western Ontario, Robarts Res Inst, Rome 7240,1151 Richmond St North, London, ON N6A 5B7, Canada
[2] Univ Western Ontario, Schulich Sch Med & Dent, Dept Physiol & Pharmacol, London, ON, Canada
基金
加拿大健康研究院;
关键词
Alpha cell; Beta cell; Diabetes; GAD; Glucagon; Insulin; Proliferation; Streptozotocin; Transdifferentiation; gamma-Aminobutyric acid; GAMMA-AMINOBUTYRIC-ACID; BETA-CELLS; TRANSCRIPTION FACTORS; ACTIVATION; EXPRESSION; GROWTH; RAT; ISLETS; REGENERATION; MECHANISMS;
D O I
10.1007/s00125-017-4239-x
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
This study aimed to elucidate the mechanism of increased proliferation of alpha cells in recent-onset type 1 diabetes. Pancreatic beta cells express GAD and produce gamma-aminobutyric acid (GABA), which inhibits alpha cell secretion of glucagon. We explored the roles of GABA in alpha cell proliferation in conditions corresponding to type 1 diabetes in a mouse model and in vitro. Type 1 diabetes was induced by injecting the mice with streptozotocin (STZ). Some of the STZ-injected mice were treated with GABA (10 mg/kg daily) for 12 days. Isolated pancreatic islets were treated with STZ or STZ together with GABA for 2 days. The effects of GABA treatment on STZ-induced alpha cell proliferation in vivo and in vitro were assessed. The effect of muscimol, a GABA receptor agonist, on alpha TC1-6 cell proliferation was also examined. STZ injection substantially decreased levels of GAD, GABA and insulin in pancreatic beta cells 12 h after injection; this was followed by an upsurge of phosphorylated mechanistic target of rapamycin (p-mTOR) in the alpha cells at day 1, and a significant increase in alpha cell mass at day 3. Treating STZ-injected mice with GABA largely restored the immunodetectable levels of insulin and GAD in the beta cells and significantly decreased the number of aldehyde dehydrogenase 1 family, member A3 (ALDH1a3)-positive cells, alpha cell mass and hyperglucagonaemia. STZ treatment also increased alpha cell proliferation in isolated islets, which was reversed by co-treatment with GABA. Muscimol, together with insulin, significantly lowered the level of cytosolic Ca2+ and p-mTOR, and decreased the proliferation rate of alpha TC1-6 cells. GABA signalling critically controls the alpha cell population in pancreatic islets. Low intraislet GABA may contribute to alpha cell hyperplasia in early type 1 diabetes.
引用
收藏
页码:1033 / 1042
页数:10
相关论文
共 50 条
[41]   Restoring glutamate receptor signaling in pancreatic alpha cells rescues glucagon responses in type 1 diabetes [J].
Panzer, Julia K. ;
Tamayo, Alejandro ;
Caicedo, Alejandro .
CELL REPORTS, 2022, 41 (11)
[42]   Blocking of Glucagonlike Peptide-1 Receptors in the Exocrine Pancreas Improves Specificity for β-Cells in a Mouse Model of Type 1 Diabetes [J].
Khera, Eshita ;
Zhang, Liang ;
Roberts, Sheryl ;
Nessler, Ian ;
Sandoval, Darleen ;
Reiner, Thomas ;
Thurber, Greg M. .
JOURNAL OF NUCLEAR MEDICINE, 2019, 60 (11) :1635-1641
[43]   Beneficial effects of physical exercise for β-cell maintenance in a type 1 diabetes mellitus animal model [J].
Pimentel Villaca, Catharina de Barros ;
de Paula, Carolina Cavalcante ;
de Oliveira, Caroline Cruz ;
Vilas-Boas, Eloisa Aparecida ;
dos Santos-Silva, Junia Carolina ;
de Oliveira, Sergio Ferreira ;
Abdulkader, Fernando ;
Ferreira, Sandra Mara ;
Ortis, Fernanda .
EXPERIMENTAL PHYSIOLOGY, 2021, 106 (07) :1482-1497
[44]   Cell Replacement Therapy for Type 1 Diabetes Patients: Potential Mechanisms Leading to Stem-Cell-Derived Pancreatic β-Cell Loss upon Transplant [J].
Shilleh, Ali H. ;
Russ, Holger A. .
CELLS, 2023, 12 (05)
[45]   Increased CD34 in pancreatic islet negatively predict islet β-cell decrease in type1 diabetes model [J].
Huang, Shichen ;
Li, Zhiyuan ;
Sun, Yuhan ;
Chen, Baiyi ;
Jiang, Yuxin ;
Hong, Feng .
FRONTIERS IN PHYSIOLOGY, 2022, 13
[46]   The efficacy of SPA0355 in protecting β cells in isolated pancreatic islets and in a murine experimental model of type 1 diabetes [J].
Bae, Ui-Jin ;
Song, Mi-Young ;
Jang, Hyun-Young ;
Gim, Hyo Jin ;
Ryu, Jae-Ha ;
Lee, Sang-Myeong ;
Jeon, Raok ;
Park, Byung-Hyun .
EXPERIMENTAL AND MOLECULAR MEDICINE, 2013, 45 :e51-e51
[47]   Insulin-degrading enzyme ablation in mouse pancreatic alpha cells triggers cell proliferation, hyperplasia and glucagon secretion dysregulation [J].
Beatriz Merino ;
Elena Casanueva-Álvarez ;
Iván Quesada ;
Carlos M. González-Casimiro ;
Cristina M. Fernández-Díaz ;
Tamara Postigo-Casado ;
Malcolm A. Leissring ;
Klaus H. Kaestner ;
Germán Perdomo ;
Irene Cózar-Castellano .
Diabetologia, 2022, 65 :1375-1389
[48]   Contribution of pancreatic α-cell function to insulin sensitivity and glycemic variability in patients with type 1 diabetes [J].
Takahashi, Nobuyuki ;
Chujo, Daisuke ;
Kajio, Hiroshi ;
Ueki, Kohjiro .
JOURNAL OF DIABETES INVESTIGATION, 2019, 10 (03) :690-698
[49]   The multifaceted function of FoxO1 in pancreatic β-cell dysfunction and insulin resistance: Therapeutic potential for type 2 diabetes [J].
Wang, Hongyu ;
Bai, Ran ;
Wang, Yubing ;
Qu, Meihua ;
Zhou, You ;
Gao, Zhiqin ;
Wang, Yi .
LIFE SCIENCES, 2025, 364
[50]   Systemic Glucose Regulation by a Hindbrain Inhibitory Circuit in a Mouse Model of Type 1 Diabetes [J].
Juras, J. Anna ;
Pitra, Soledad ;
Smith, Bret N. .
NEUROENDOCRINOLOGY, 2024, 114 (03) :302-312