Mrabti Hanae Naceiri, Jaradat Nidal, Fichtali Ismail, Ouedrhiri Wessal, Jodeh Shehdeh, Ayesh Samar, Cherrah Yahia, Faouzi My El Abbes
Faculty of Medicine and Pharmacy, Laboratory of Pharmacology and Toxicology, Pharmacokinetics Team, Mohammed V University in Rabat, Rabat Institute, Rabat BP 6203, Morocco.
Department of Pharmacy, Faculty of Medicine and Health Sciences, An-Najah National University, P.O. Box 7, 00970 Nablus, Palestine.
Plants (Basel). 2018 Apr 12;7(2):31. doi: 10.3390/plants7020031.
Phytopharmaceuticals play an essential role in medicine, since the need to investigate highly effective and safe drugs for the treatment of diabetes mellitus disease remains a significant challenge for modern medicine. L. root has various therapeutic properties, and has been used widely in the traditional medicine as an antidiabetic agent. The current study aimed to isolate the pharmacologically active compound from roots using accelerated solvent extraction technology, to determine its chemical structure using different instrumental analytical methods, and also to evaluate the α-glucosidase inhibitory activity. The roots of were exhaustively extracted by high-pressure static extraction using the Zippertex technology (Dionex-ASE, Paris, France), and the extract was mixed with XAD-16 resin to reach quantifiable amounts of active compounds which were identified by high-pressure liquid chromatography (HPLC), ¹H NMR (300 MHz), and C NMR. The antidiabetic activity of the isolated compound was evaluated using the α-glucosidase inhibitory assay. The active compound was isolated, and its structure was identified as catechin using instrumental analysis.The results revealed that the isolated compound has potential α-glucosidase inhibitory activity with an IC value of 87.55 ± 2.23 μg/mL greater than acarbose. This was used as a positive control, which has an IC value of 199.53 ± 1.12 μg/mL. According to the results achieved, the roots of were considered the best source of catechin and the Zippertex technology method of extraction is the best method for isolation of this therapeutic active compound. In addition, the α-glucosidase inhibitory activity results confirmed the traditional use of roots as an antidiabetic agent. Future clinical trials and investigations of antidiabetic and other pharmacological effects such as anticancer are required.
植物药在医学中发挥着重要作用,因为研究用于治疗糖尿病的高效、安全药物的需求仍然是现代医学面临的重大挑战。L.根具有多种治疗特性,在传统医学中被广泛用作抗糖尿病药物。本研究旨在利用加速溶剂萃取技术从根中分离出具有药理活性的化合物,使用不同的仪器分析方法确定其化学结构,并评估其α-葡萄糖苷酶抑制活性。采用Zippertex技术(法国巴黎戴安公司的Dionex - ASE)通过高压静态萃取对L.的根进行彻底萃取,萃取物与XAD - 16树脂混合以获得可定量的活性化合物,这些化合物通过高压液相色谱(HPLC)、¹H NMR(300 MHz)和C NMR进行鉴定。使用α-葡萄糖苷酶抑制试验评估分离出的化合物的抗糖尿病活性。通过仪器分析分离出活性化合物,并确定其结构为儿茶素。结果表明,分离出的化合物具有潜在的α-葡萄糖苷酶抑制活性,IC值为87.55±2.23μg/mL,大于作为阳性对照的阿卡波糖,其IC值为199.53±1.12μg/mL。根据所取得的结果,L.的根被认为是儿茶素的最佳来源,Zippertex技术萃取方法是分离这种治疗活性化合物的最佳方法。此外α-葡萄糖苷酶抑制活性结果证实了L.根在传统医学中作为抗糖尿病药物的用途。未来需要进行抗糖尿病和其他药理作用(如抗癌)的临床试验和研究。