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Published on: April 23, 2018
Praecitrullus fistulosus Extract Exhibits Antidiabetic Potential by Augmenting Insulin-Signaling Cascade, GLUT-4 and
Ayesha Amjad1, Azmat Ullah Khan1, Qaisar Raza1
1Department of Food Science & Human Nutrition, University of Veterinary and Animal Sciences, Outfall Road, Lahore 54000, Pakistan.
Abstract:
Diabetes mellitus is largely driven by oxidative stress that disrupts insulin signaling, leading to failure in insulin-mediated glucose absorption. Exploration of natural bioactive compounds is fueled by their promising role in correcting redox imbalance. This study aims to investigate the antidiabetic effect of the methanolic extract of Praecitrullus fistulosus, potentially by transcriptional modulation in streptozotocin-nicotinamide-induced diabetic rats. Male Wistar albino rats (n = 36) were assigned to six groups: normal control; diabetic control; standard drug group; and three treatment groups receiving P. fistulosus extract orally at doses of 200, 400, and 600 mg/kg body weight, respectively, for 30 consecutive days. Diabetes was induced in all groups, except for normal control, by intraperitoneal co-administration of streptozotocin and nicotinamide. Nicotinamide (100 mg/kg) was injected 15 min prior to a single dose of streptozotocin (50 mg/kg). Baseline and endpoint assessments of weight and blood glucose levels were performed. Blood was processed to assess insulin-related indices, lipid profile, and oxidative stress markers. q-PCR and Western blotting were utilized to explore the underlying molecular mechanisms. The diabetic control-group rats exhibited impaired glucose tolerance due to the marked reduction in serum insulin levels, compromised β-cell function, and substantial rise in lipid profile and oxidative stress parameters. Oral administration of P. fistulosus methanolic extract effectively mitigated these alterations in a dose-dependent manner, accompanied by the upregulation of both gene and protein expression involved in the insulin-signaling cascade.
Insights
This study shows that Praecitrullus fistulosus extract improves blood sugar control in diabetic rats by enhancing insulin signaling pathways. The natural compound effectively reduces oxidative stress and corrects metabolic imbalances.
Area of Science:
- Pharmacology
- Biochemistry
- Diabetology
Background:
- Diabetes mellitus is characterized by oxidative stress, impaired insulin signaling, and disrupted glucose absorption.
- Natural bioactive compounds offer potential for correcting redox imbalance and managing diabetes.
- Praecitrullus fistulosus is explored for its antidiabetic properties.
Purpose of the Study:
- To investigate the antidiabetic effects of the methanolic extract of Praecitrullus fistulosus.
- To determine if these effects are mediated by transcriptional modulation of insulin signaling pathways.
- To evaluate the extract's impact on oxidative stress and lipid profiles in diabetic rats.
Main Methods:
- Streptozotocin-nicotinamide-induced diabetic rat model.
- Oral administration of Praecitrullus fistulosus extract at varying doses (200, 400, 600 mg/kg) for 30 days.
- Assessment of blood glucose, insulin levels, lipid profile, oxidative stress markers, and gene/protein expression via q-PCR and Western blotting.
Main Results:
- Diabetic rats showed impaired glucose tolerance, reduced insulin, elevated lipids, and increased oxidative stress.
- Praecitrullus fistulosus extract significantly improved glucose tolerance and insulin levels in a dose-dependent manner.
- The extract administration led to reduced lipid profiles, mitigated oxidative stress, and upregulated insulin-signaling cascade components.
Conclusions:
- The methanolic extract of Praecitrullus fistulosus possesses significant antidiabetic effects.
- These effects are likely mediated through the correction of oxidative stress and enhancement of insulin signaling pathways.
- Praecitrullus fistulosus represents a promising natural therapeutic agent for managing diabetes mellitus.
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