Joharapurkar Amit, Kshirsagar Samadhan, Patel Vishal, Patel Maulik, Savsani Hardikkumar, Jain Mukul
Department of Pharmacology and Toxicology, Zydus Research Centre, Cadila Healthcare Limited, Ahmedabad, India.
Basic Clin Pharmacol Toxicol. 2022 Jan;130(1):35-43. doi: 10.1111/bcpt.13670. Epub 2021 Oct 25.
Inhibiting the intestinal and renal neutral amino acid transporter B0AT1 by genetic means has improved insulin sensitivity in mice, but there are no antagonists available for preclinical or clinical use. Since the anti-inflammatory agent nimesulide selectively inhibited B0AT1 in vitro, we hypothesized that nimesulide exhibits in vivo potential to restrict neutral amino acid absorption and, therefore, may improve insulin sensitivity. The dose-related effect of nimesulide (10 to 100 mg/kg, PO) on intestinal absorption of neutral amino acids was estimated in C57 mice. The effect of nimesulide (50 mg/kg, PO) on renal resorption of amino acids was also assessed. The effect of chronic nimesulide (50 mg/kg, PO, BID for 14 days) was assessed in high protein diet-fed C57 mice, diet-induced obese mice and obese and diabetic db/db mice. Acute and chronic nimesulide treatment decreased absorption of neutral amino acids and increased their urinary excretion. Nimesulide treatment improved insulin sensitivity and glycemic control, increased GLP-1, decreased liver lipids and improved FGF-21 in serum. Nimesulide improved insulin sensitivity and glucose tolerance by inhibiting neutral amino acid transport in the intestine and kidneys. Thus, it can serve as a tool compound for in vivo B0AT1 inhibition.
通过基因手段抑制肠道和肾脏中的中性氨基酸转运体B0AT1可改善小鼠的胰岛素敏感性,但目前尚无用于临床前或临床的拮抗剂。由于抗炎药尼美舒利在体外可选择性抑制B0AT1,我们推测尼美舒利在体内具有限制中性氨基酸吸收的潜力,因此可能改善胰岛素敏感性。我们评估了尼美舒利(10至100mg/kg,口服)对C57小鼠肠道中性氨基酸吸收的剂量相关效应。还评估了尼美舒利(50mg/kg,口服)对肾脏氨基酸重吸收的影响。在高蛋白饮食喂养的C57小鼠、饮食诱导的肥胖小鼠以及肥胖和糖尿病db/db小鼠中评估了慢性尼美舒利(50mg/kg,口服,每日两次,共14天)的作用。急性和慢性尼美舒利治疗均降低了中性氨基酸的吸收并增加了其尿排泄。尼美舒利治疗改善了胰岛素敏感性和血糖控制,增加了胰高血糖素样肽-1(GLP-1),降低了肝脏脂质并改善了血清中的成纤维细胞生长因子21(FGF-21)。尼美舒利通过抑制肠道和肾脏中的中性氨基酸转运来改善胰岛素敏感性和葡萄糖耐量。因此,它可作为体内抑制B0AT1的工具化合物。