Department of Nutrition, Babcock University, Ilishan, Nigeria.
Department of Physiology, Babcock University, Ilishan, Nigeria.
J Food Biochem. 2022 Aug;46(8):e14198. doi: 10.1111/jfbc.14198. Epub 2022 May 24.
Murraya koenigii (L.) Spreng. (Rutaceae) has been reported to positively affect liver function. However, the effect of M. koenigii leaves on N -Nitro-L-Arginine Methyl Ester (L-NAME) induced liver dysfunction is unknown. The aim of the present study was therefore to investigate the effect of M.koenigii leaves as tea on L-NAME induced liver dysfunction.
Two variants of curry tea were formulated; one was formulated entirely from leaves of M. koenigii, the other was formulated with thaumatin-rich aril obtained from seeds of Thaumatococcus danielii (Benn.) Benth. (Marantaceae). Group I animals served as control and were untreated. Groups II and V animals were administered curry tea (CT). Group III and VI animals received curry-thaumatin tea (CTT). Concurrently, L-NAME (40 mg/kg) was administered to groups IV-VI respectively for 21 days. Blood and liver samples were collected at the end of the study for biochemical, histological, and immunohistochemical analysis.
L-NAME induced liver dysfunction evidenced by liver histology, increased activities of ALT, AST, hyperlipidemia, hepatic oxidative stress and increased hepatic NF-kB expression. Administration of CT and CTT ameliorated the L-NAME induced liver dysfunction evidenced by liver histology, increased NO hepatic bioavailability, reduced activity of ALT and AST, increased hepatic antioxidant system and decreased hepatic NF-kB expression. Thaumatin taste/flavor enhancer did not significantly reduce or potentiate the hepatoprotective, antioxidant and anti-lipidemic property of aqueous curry tea extracts in rats.
L-NAME impaired liver function in rats. CT and CTT interfered with the ability of L-NAME to inhibit NO synthesis which was associated with ameliorated hepatic dysfunction.
The study reports that non-selective inhibition of nitric oxide by L-NAME in rats impairs liver function and formulated curry tea types interfered with the ability of L-NAME to inhibit NO synthesis which was associated with ameliorated hepatic dysfunction in rats.
已报道芸香科植物九里香(Murraya koenigii(L.)Spreng.)可改善肝功能。然而,九里香叶片对 N-硝基-L-精氨酸甲酯(L-NAME)诱导的肝损伤的影响尚不清楚。因此,本研究旨在探讨九里香叶片茶对 L-NAME 诱导的肝损伤的作用。
本研究制备了两种咖喱茶变体,一种完全由九里香叶制成,另一种由臭辣树(Thaumatococcus danielii(Benn.)Benth.)种子中的甜蛋白丰富的假种皮制成。第 I 组动物作为对照组,未进行处理。第 II 组和第 V 组动物给予咖喱茶(CT)。第 III 组和第 VI 组动物给予咖喱甜蛋白茶(CTT)。同时,第 IV 组-第 VI 组动物分别给予 L-NAME(40mg/kg),连续 21 天。研究结束时采集血液和肝脏样本,用于生化、组织学和免疫组织化学分析。
L-NAME 诱导的肝损伤表现为肝组织学改变、ALT、AST 活性升高、血脂异常、肝氧化应激和 NF-kB 表达增加。给予 CT 和 CTT 可改善 L-NAME 诱导的肝损伤,表现为肝组织学改变、NO 肝生物利用度增加、ALT 和 AST 活性降低、肝抗氧化系统增加和 NF-kB 表达减少。甜蛋白味觉/风味增强剂对水提咖喱茶提取物的肝保护、抗氧化和抗脂质作用没有显著的降低或增强作用。
L-NAME 损害了大鼠的肝功能。CT 和 CTT 干扰了 L-NAME 抑制 NO 合成的能力,从而改善了肝功能障碍。
本研究报告称,L-NAME 对大鼠的非选择性抑制一氧化氮合成会损害肝功能,而配方咖喱茶类型则干扰了 L-NAME 抑制 NO 合成的能力,从而改善了大鼠的肝功能障碍。