Zhang Rui, Asikaer Aiminuer, Chen Qi, Wang Fang, Lan Junjie, Liu Yang, Hu Linfang, Zhao Huaye, Duan Hongtao
Department of pharmacy, Guizhou Provincial People's Hospital, Guiyang, 550002, China.
School of Pharmacy and Bioengineering, Chongqing University of Technology, Chongqing, 405400, PR China.
BMC Complement Med Ther. 2024 Jan 27;24(1):58. doi: 10.1186/s12906-024-04372-x.
Acute pancreatitis (AP) is a severe gastrointestinal inflammatory disease with increasing mortality and morbidity. Glycyrrhiza glabra, commonly known as Liquorice, is a widely used plant containing bioactive compounds like Glycyrrhizin, which possesses diverse medicinal properties such as anti-inflammatory, antioxidant, antiviral, and anticancer activities. The objective of this study is to investigate the active components, relevant targets, and underlying mechanisms of the traditional Chinese medicine Glycyrrhiza glabra in the treatment of AP. Utilizing various computational biology methods, we explored the potential targets and molecular mechanisms through Glycyrrhizin supplementation. Computational results indicated that Glycyrrhizin shows promising pharmacological potential, particularly with mitogen-activated protein kinase 3 (MAPK3) protein (degree: 70), forming stable complexes with Glycyrrhizin through ionic and hydrogen bonding interactions, with a binding free energy (ΔG) of -33.01 ± 0.08 kcal/mol. Through in vitro experiments, we validated that Glycyrrhizin improves primary pancreatic acinar cell injury by inhibiting the MAPK/STAT3/AKT signaling pathway. Overall, MAPK3 emerges as a reliable target for Glycyrrhizin's therapeutic effects in AP treatment. This study provides novel insights into the active components and potential targets and molecular mechanisms of natural products.
急性胰腺炎(AP)是一种严重的胃肠道炎症性疾病,死亡率和发病率不断上升。光果甘草,俗称甘草,是一种广泛使用的植物,含有甘草酸等生物活性化合物,具有抗炎、抗氧化、抗病毒和抗癌等多种药用特性。本研究的目的是探讨中药光果甘草治疗AP的活性成分、相关靶点及潜在机制。利用各种计算生物学方法,我们通过补充甘草酸探索了潜在靶点和分子机制。计算结果表明,甘草酸显示出有前景的药理潜力,特别是与丝裂原活化蛋白激酶3(MAPK3)蛋白(度:70),通过离子键和氢键相互作用与甘草酸形成稳定复合物,结合自由能(ΔG)为-33.01±0.08千卡/摩尔。通过体外实验,我们验证了甘草酸通过抑制MAPK/STAT3/AKT信号通路改善原代胰腺腺泡细胞损伤。总体而言,MAPK3成为甘草酸在AP治疗中发挥治疗作用的可靠靶点。本研究为天然产物的活性成分、潜在靶点和分子机制提供了新的见解。