Mani Vadivel, Balraj Manikandan, Rajapandian Nithya, Jinka Chaitra, Babu Shyamaladevi
Department of Biochemistry, Arunai Medical College and Hospital, Tiruvanamallai- 606603, Tamilnadu, India.
Department of Physiology, Konaseema Institute of Medical Sciences and Research Foundation, Amalapuram, East Godavari Dt-533201, Andhra Pradesh, India.
Bioinformation. 2022 Nov 30;18(11):1087-1091. doi: 10.6026/973206300181087. eCollection 2022.
Skeletal muscle is responsible for the majority of insulin-stimulated whole-body glucose elimination, under normal circumstances. High dietary fat consumption increases stored fat mass and is a major risk factor for metabolic disorders. The conventional pharmacological treatments are associated with many adverse side effects and high rates of secondary failure which lead to an increasing demand for natural products with anti-diabetic activity and lesser side effects. β-Caryophyllene is a naturally occurring sequiterpene that may be found in cannabis and a range of culinary herbs and spices. It contains antioxidant, anti-inflammatory, and anti-lipidemic effects, among others. However, the effect of β-Caryophyllene on glucose absorption and oxidation, is yet unknown. Hence, the current study was intended to investigate the anti-diabetic impact of β-Caryophyllene in type-2 diabetes caused by a high-fat diet. To evaluate its anti-diabetic efficacy, high fat diet and fructose-induced type-2 diabetic rats were administered an effective dosage of β-Caryophyllene (200 mg/kg b.wt, orally for 30 days). The treatment of diabetes-induced rats with β-Caryophyllene restored the altered levels of blood glucose, serum insulin as well as lipid parameters. Our findings show that β-caryophyllene improves glycemia control by alleviating dyslipidemia in type-2 diabetic rats. From the present findings, it is evident that β-caryophyllene can be used as an anti-diabetic drug.
在正常情况下,骨骼肌负责大部分胰岛素刺激的全身葡萄糖清除。高膳食脂肪摄入会增加脂肪储存量,是代谢紊乱的主要危险因素。传统的药物治疗伴有许多不良副作用和高继发性失败率,这导致对具有抗糖尿病活性且副作用较小的天然产物的需求不断增加。β-石竹烯是一种天然存在的倍半萜烯,可在大麻以及一系列烹饪草药和香料中找到。它具有抗氧化、抗炎和抗血脂等作用。然而,β-石竹烯对葡萄糖吸收和氧化的影响尚不清楚。因此,本研究旨在探讨β-石竹烯对高脂饮食所致2型糖尿病的抗糖尿病作用。为了评估其抗糖尿病疗效,对高脂饮食和果糖诱导的2型糖尿病大鼠给予有效剂量的β-石竹烯(200mg/kg体重,口服30天)。用β-石竹烯治疗糖尿病诱导的大鼠可恢复血糖、血清胰岛素以及脂质参数的改变水平。我们的研究结果表明,β-石竹烯通过减轻2型糖尿病大鼠的血脂异常来改善血糖控制。从目前的研究结果来看,很明显β-石竹烯可作为一种抗糖尿病药物。