Department of Chemical, Biological, Pharmaceutical and Environmental Sciences, University of Messina, Messina, Italy.
Istituto di Chimica Biomolecolare del Consiglio Nazionale delle Ricerche (ICB-CNR), Catania, Italy.
Nat Prod Res. 2022 Sep;36(18):4768-4775. doi: 10.1080/14786419.2021.2010073. Epub 2021 Nov 29.
roots have been well studied for their pharmacological activities, whereas less research has been conducted on liquorice aerial parts. Leaves represent a good source of D-pinitol, useful in the treatment of insulin resistance-related pathologies. Herein, we analyzed the in vitro effects of a D-pinitol-rich methanolic extract from leaves (GGLME) against lipotoxicity-related hypertrophy, inflammation, and insulin resistance in 3T3-L1 adipocytes exposed to palmitic acid (PA), comparing its activity with D-pinitol. GGLME pretreatment decreased lipid deposition, PPAR-γ, and NF-κB pathway induced by PA, similarly to D-pinitol, and improved insulin sensitivity, in presence or not of PA, increasing PI3K, pAkt, and GLUT1 levels. This study confirms that liquorice leaves, considered a waste of resource, could potentially be reused, and support further in vivo studies on animal and human models. In conclusion, liquorice leaves extract represents a potential candidate for prevention of metabolically induced inflammation, frequently leading to metabolic disorders.
根已被广泛研究其药理学活性,而对甘草地上部分的研究则较少。叶子是 D-松醇的良好来源,可用于治疗与胰岛素抵抗相关的病理。在此,我们分析了 3T3-L1 脂肪细胞在受到棕榈酸 (PA) 暴露时,一种富含 D-松醇的甲醇提取物(GGLME)的体外作用,比较其与 D-松醇的活性。GGLME 预处理可减少脂肪沉积、PA 诱导的 PPAR-γ 和 NF-κB 途径,与 D-松醇相似,并改善胰岛素敏感性,无论是否存在 PA,均可增加 PI3K、pAkt 和 GLUT1 水平。这项研究证实,甘草叶,被认为是一种浪费资源的物质,可能具有再利用的潜力,并支持在动物和人类模型上进行进一步的体内研究。总之,甘草叶提取物可能是预防代谢引起的炎症的潜在候选物,炎症经常导致代谢紊乱。