Cherbal Asma, Bouabdallah Mouna, Benhalla Mouna, Hireche Saliha, Desdous Rachid
Department of Molecular and Cell Biology, Faculty of Nature and Life Sciences, University of Jijel, Jijel 18000, Algeria.
Biomathematics, Biophysics, Biochemistry, Scientometry Laboratory, Faculty of Nature and Life Sciences, University Abderrahmane Mira-Béjaïa, Béjaïa 06000, Algeria.
Prev Nutr Food Sci. 2023 Jun 30;28(2):141-148. doi: 10.3746/pnf.2023.28.2.141.
Medicinal plants are promising sources of natural substances with biological functions and several drugs have been developed from traditional medicine. This study aimed to determine the chemical components of a hydromethanolic extract from seeds. Total phenolic, flavonoid, and flavonol contents were assessed, and gas chromatography-mass spectrometry (GC-MS) analysis was performed. To investigate the anti-inflammatory activity of seed hydromethanolic extract, its effects on protein denaturation, protease activity, membrane stabilization, and heat-induced hemolysis in red blood cells were evaluated . seed extract showed significant inhibition of protein denaturation (35.68±0.4%), protease activity (58.09±0.1%), and heat-induced hemolysis in red blood cells (9.67±0.3%) at concentrations of 200, 250, and 200 μg/mL, respectively, compared to the reference drug indomethacin (<0.001). This remarkable anti-inflammatory activity may be attributable to the abundance of flavonoids in the seed extract. GC-MS confirmed the presence of linalool and fatty acids (palmitic and oleic acids), which have potential anti-inflammatory activities. Therefore, the hydromethanolic extract of seeds may be a valuable anti-inflammatory candidate in the years ahead.
药用植物是具有生物功能的天然物质的有前景的来源,并且已经从传统医学中开发出了几种药物。本研究旨在确定[种子名称]种子水甲醇提取物的化学成分。评估了总酚、黄酮和黄酮醇含量,并进行了气相色谱-质谱联用(GC-MS)分析。为了研究[种子名称]种子水甲醇提取物的抗炎活性,评估了其对蛋白质变性、蛋白酶活性、膜稳定性以及红细胞热诱导溶血的影响。与参考药物吲哚美辛相比(<0.001),[种子名称]种子提取物在浓度分别为200、250和200μg/mL时,对蛋白质变性(35.68±0.4%)、蛋白酶活性(58.09±0.1%)和红细胞热诱导溶血(9.67±0.3%)均表现出显著抑制作用。这种显著的抗炎活性可能归因于[种子名称]种子提取物中丰富的黄酮类化合物。GC-MS证实了芳樟醇和脂肪酸(棕榈酸和油酸)的存在,它们具有潜在的抗炎活性。因此,[种子名称]种子的水甲醇提取物在未来几年可能是一种有价值的抗炎候选物。