Sildenafil amplifies calcium influx and insulin secretion in pancreatic β cells

被引:1
|
作者
Murao, Naoya [1 ,2 ]
Morikawa, Risa [1 ]
Seino, Yusuke [1 ,2 ]
Shimomura, Kenju [3 ]
Maejima, Yuko [3 ]
Yamada, Yuichiro [1 ,2 ]
Suzuki, Atsushi [1 ]
机构
[1] Fujita Hlth Univ, Sch Med, Dept Endocrinol Diabet & Metab, 1-98 Dengakugakubo, Toyoake, Aichi 4701192, Japan
[2] Kansai Elect Power Med Res Inst, Yutaka Seino Distinguished Ctr Diabet Res, Kyoto, Japan
[3] Fukushima Med Univ, Sch Med, Dept Bioregulat & Pharmacol Med, Fukushima, Japan
来源
PHYSIOLOGICAL REPORTS | 2024年 / 12卷 / 11期
基金
日本学术振兴会;
关键词
diabetes; insulin secretion; pancreatic beta cells; sildenafil; voltage-dependent calcium channels; CHANNELS; CITRATE; CGMP;
D O I
10.14814/phy2.16091
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Sildenafil, a phosphodiesterase-5 (PDE5) inhibitor, has been shown to improve insulin sensitivity in animal models and prediabetic patients. However, its other metabolic effects remain poorly investigated. This study examines the impact of sildenafil on insulin secretion in MIN6-K8 mouse clonal beta cells. Sildenafil amplified insulin secretion by enhancing Ca2+ influx. These effects required other depolarizing stimuli in MIN6-K8 cells but not in KATP channel-deficient beta cells, which were already depolarized, indicating that sildenafil-amplified insulin secretion is depolarization-dependent and KATP channel-independent. Interestingly, sildenafil-amplified insulin secretion was inhibited by pharmacological inhibition of R-type channels, but not of other types of voltage-dependent Ca2+ channels (VDCCs). Furthermore, sildenafil-amplified insulin secretion was barely affected when its effect on cyclic GMP was inhibited by PDE5 knockdown. Thus, sildenafil stimulates insulin secretion and Ca2+ influx through R-type VDCCs independently of the PDE5/cGMP pathway, a mechanism that differs from the known pharmacology of sildenafil and conventional insulin secretory pathways. Our results reposition sildenafil as an insulinotropic agent that can be used as a potential antidiabetic medicine and a tool to elucidate the novel mechanism of insulin secretion.
引用
收藏
页数:11
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