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J Herbmed Pharmacol. 2026;15(4): 498-505.
doi: 10.34172/jhp.53693
  Abstract View: 281998
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Original Article

Dose-dependent antidiabetic, antihyperlipidemic, and hepatoprotective effects of Piper betle leaf powder suspension in streptozotocin-induced diabetic mice

Md. Nazmul Hosen 1 ORCID logo, Md. Siddiqul Islam 1 ORCID logo, Md. Ashraf Zaman Faruk 2* ORCID logo, Md. Saifur Rahman 3,4 ORCID logo, Md. Anwar Hossain 1 ORCID logo, Md. Khairul Islam 3,4 ORCID logo, Md. Mahbubul Alam Sarker 3,4 ORCID logo, Md. Rizianul Islam 1 ORCID logo, Md. Mowdudul Hasan Talha 1 ORCID logo

1 Department of Pharmacology and Toxicology, Sylhet Agricultural University, Sylhet-3100, Bangladesh
2 Division of Pharmacology, Graduate School of Medical and Dental Sciences, Niigata University, Niigata 951-8510, Japan
3 Department of Veterinary and Animal Sciences, University of Rajshahi, Rajshahi-6205, Bangladesh
4 Department of Livestock Services, Ministry of Fisheries and Livestock, Government of the People’s Republic of Bangladesh, Dhaka-1215, Bangladesh
*Corresponding Author: Md. Ashraf Zaman Faruk, Email: faruk.unibd@yahoo.com

Abstract

Introduction: Piper betle (PB) is rich in bioactive compounds and traditionally used for its antihyperglycemic and hepatoprotective properties. This study examined the dose-dependent hypoglycemic, hypolipidemic, and hepatoprotective responses to a suspension of PB leaf powder in streptozotocin (STZ)-induced diabetic mice.

Methods: Thirty Swiss albino mice were allocated into six groups: a healthy control (T0), a diabetic control (T1), three treatment groups receiving 50, 100, and 200 mg/kg body weight (BW) of PB leaf powder suspension (T2-T4), and a gliclazide-treated positive control (T5). A single intraperitoneal injection of STZ (50 mg/kg) induced diabetes. Fasting blood glucose (FBG), serum lipid profiles, including high-density lipoprotein (HDL) and low-density lipoprotein (LDL), and hepatic biomarkers, including alanine aminotransferase (ALT) and aspartate aminotransferase (AST), were measured periodically.

Results: Compared with the untreated diabetic control group (T1), PB-treated mice exhibited a dose-dependent reduction in FBG levels (P < 0.05). Treatment also significantly improved lipid profiles (P < 0.05), lowering LDL and increasing HDL concentrations. In addition, hepatic dysfunction was attenuated (P < 0.05), indicated by the restoration of ALT and AST activities. The 200 mg/kg dose showed the highest efficacy, comparable to gliclazide (P > 0.05).

Conclusion: Oral administration of PB leaf suspension exhibits significant antidiabetic, antihyperlipidemic, and hepatoprotective effects in STZ-induced diabetic mice, supporting its potential as an alternative therapeutic agent for diabetes management.


Implication for health policy/practice/research/medical education:

The study indicates that PB leaf powder suspension significantly improves glycemic control, lipid profile, and hepatic function in an STZ-induced diabetic mouse model, suggesting its promise as a plant-derived medicinal candidate for diabetes prevention and management. To support its translational applicability, further research, including mechanistic studies and well-designed clinical trials, would be necessary.

Please cite this paper as: Hosen MN, Islam MS, Faruk MAZ, Rahman MS, Hossain MA, Islam MK, et al. Dose-dependent antidiabetic, antihyperlipidemic, and hepatoprotective effects of Piper betle leaf powder suspension in streptozotocin-induced diabetic mice. J Herbmed Pharmacol. 2026;15(4):498-505. doi: 10.34172/jhp.53693.

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