Wu Lingyun, Yang Wei, Jia Xuming, Yang Guangdong, Duridanova Dessislava, Cao Kun, Wang Rui
Department of Pharmacology, University of Saskatchewan, Saskatoon, SK, Canada.
Lab Invest. 2009 Jan;89(1):59-67. doi: 10.1038/labinvest.2008.109. Epub 2008 Nov 10.
Hydrogen sulfide (H(2)S) has been traditionally known for its toxic effects on living organisms. The role of H(2)S in the homeostatic regulation of pancreatic insulin metabolism has been unclear. The present study is aimed at elucidating the effect of endogenously produced H(2)S on pancreatic insulin release and its role in diabetes development. Diabetes development in Zucker diabetic fatty (ZDF) rats was evaluated in comparison with Zucker fatty (ZF) and Zucker lean (ZL) rats. Pancreatic H(2)S production and insulin release were also assayed. It was found that H(2)S was generated in rat pancreas islets, catalyzed predominantly by cystathionine gamma-lyase (CSE). Pancreatic CSE expression and H(2)S production were greater in ZDF rats than in ZF or ZL rats. ZDF rats exhibited reduced serum insulin level, hyperglycemia, and insulin resistance. Inhibition of pancreatic H(2)S production in ZDF rats by intraperitoneal injection of DL-propargylglycine (PPG) for 4 weeks increased serum insulin level, lowered hyperglycemia, and reduced hemoglobin A1c level (P<0.05). Although in ZF rats it also reduced pancreatic H(2)S production and serum H(2)S level, PPG treatment did not alter serum insulin and glucose level. Finally, H(2)S significantly increased K(ATP) channel activity in freshly isolated rat pancreatic beta-cells. It appears that insulin release is impaired in ZDF because of abnormally high pancreatic production of H(2)S. New therapeutic approach for diabetes management can be devised based on our observation by inhibiting endogenous H(2)S production from pancreas.
传统上,硫化氢(H₂S)因其对生物体的毒性作用而为人所知。H₂S在胰腺胰岛素代谢稳态调节中的作用尚不清楚。本研究旨在阐明内源性产生的H₂S对胰腺胰岛素释放的影响及其在糖尿病发展中的作用。通过与 Zucker 肥胖(ZF)和 Zucker 瘦(ZL)大鼠比较,评估 Zucker 糖尿病肥胖(ZDF)大鼠的糖尿病发展情况。还检测了胰腺H₂S的产生和胰岛素释放。结果发现,大鼠胰岛中产生H₂S,主要由胱硫醚γ-裂解酶(CSE)催化。ZDF大鼠胰腺CSE表达和H₂S产生高于ZF或ZL大鼠。ZDF大鼠血清胰岛素水平降低、血糖升高且存在胰岛素抵抗。腹腔注射DL-炔丙基甘氨酸(PPG)4周抑制ZDF大鼠胰腺H₂S产生,可提高血清胰岛素水平、降低血糖并降低糖化血红蛋白水平(P<0.05)。虽然PPG处理也降低了ZF大鼠胰腺H₂S产生和血清H₂S水平,但未改变血清胰岛素和血糖水平。最后,H₂S显著增加了新鲜分离的大鼠胰腺β细胞中ATP敏感性钾通道(KATP)的活性。ZDF大鼠胰岛素释放受损似乎是由于胰腺H₂S产生异常升高所致。基于我们的观察,通过抑制胰腺内源性H₂S产生,可为糖尿病治疗设计新的治疗方法。