Sains Malaysiana 51(3)(2022): 783-793

http://doi.org/10.17576/jsm-2022-5103-12


Hypoglycaemic and Protective Effects of Benincasa hispida Aqueous Extract in Streptozotocin-Induced Diabetic Rats
(Kesan Hipoglisemik dan Pelindungan Ekstrak Benincasa hispida pada Tikus Teraruh Streptozotocin)


FATARIAH ZAKARIA1, WAN ROSLI WAN ISHAK2,*, WAN AMIR NIZAM WAN AHMAD3, SABREENA SAFUAN3 & TENGKU ALINA TENGKU ISMAIL4

1Food Technology Department, Faculty of Applied Science and Technology, Universiti Tun Hussein Onn Malaysia, KM1, Jalan Panchor, 84000 Pagoh, Muar, Johor Darul Takzim, Malaysia

2Nutrition and Dietetics Programme, School of Health Sciences, Universiti Sains Malaysia, 16150 Kubang Kerian, Kelantan Darul Naim, Malaysia

3Biomedicine Programme, School of Health Sciences, Universiti Sains Malaysia, 16150 Kubang Kerian, Kelantan Darul Naim, Malaysia

  4Department of Community Medicine, School of Medical Sciences, Universiti Sains Malaysia,

16150 Kubang Kerian, Kelantan Darul Naim, Malaysia

Diserahkan: 4 November 2020/Diterima: 27 Julai 2021

 

Abstract

Benincasa hispida (BH) contains a range of compounds which play important roles in treating human illnesses. This study was undertaken to evaluate the hypoglycaemic and protective effects of BH fruit on diabetes mellitus (DM) rats. The dose of 250 mg/kg of B. hispida aqueous extract (BHE) is the most effective dose in decreasing blood glucose level (BGL). After eight weeks of treatment, the BGL of BHE-treated DM rats (21.4±1.0 mmol/l) was found to be significantly lower than control DM rats (30.1±3.8 mmol/l). The weight of BHE-treated rats was also higher compared to the other DM groups. Overall, the biochemical evaluation of BHE-treated rats such as lipid profile, liver function test, kidney function test and HbA1c showed an improvement in biomarker values compared to the other groups. There were enhancements in liver and kidney structures of the BHE-treated group compared to those with metformin treatment, which indicated the protective effects of BH on the impaired organ structure. These findings suggest that BHE treatment exerts hypoglycaemic and protective effects in DM by decreasing the BGL, improving weight and biochemical parameters, as well as protecting liver and kidney from serious damage.

 

Keywords: Benincasa hispida; diabetes mellitus; hypoglycaemic; protective effect

 

Abstrak

Benincasa hispida (BH) mengandungi pelbagai jenis sebatian yang berperanan penting dalam merawat penyakit manusia. Kajian ini dijalankan untuk menilai kesan hipoglisemik dan perlindungan buah BH terhadap tikus yang berpenyakit diabetes mellitus (DM). Sebanyak 250 mg/kg ekstrak akues B. hispida (BHE) adalah dos paling berkesan yang menurunkan paras gula darah (BGL). Selepas lapan minggu rawatan, paras BGL tikus yang dirawat dengan BHE (21.4±1.0 mmol/l) turun secara signifikan berbanding tikus DM kawalan (30.1±3.8 mmol/l). Berat tikus yang dirawat dengan BHE juga tinggi berbanding lain-lain tikus daripada kumpulan DM. Secara keseluruhannya, penilaian biokimia tikus yang dirawat dengan BHE seperti profil lipid, ujian fungsi hati, ujian fungsi ginjal dan HbA1c menunjukkan penambahbaikan nilai biopenanda berbanding lain-lain kumpulan. Struktur hati dan ginjal tikus yang dirawat dengan BHE juga lebih baik berbanding yang dirawat dengan metformin, menunjukkan kesan perlindungan BH terhadap struktur organ yang terjejas. Keputusan kajian mencadangkan rawatan BHE mempunyai kesan hipoglisemik dan perlindungan daripada DM dengan menurunkan BGL, memperbaiki berat badan dan parameter biokimia serta melindungi hati dan ginjal daripada kerosakan yang serius.

 

Kata kunci: Benincasa hispida; diabetes mellitus; hipoglisemik; kesan perlindungan


RUJUKAN

 

ADA. 2015. Diabetes Symptoms. http://www.diabetes.org/diabetesbasics/symptoms/?referrer= https://www.google.com/. Accessed on 11 February 2016.

Adeneye, A.A., Adeyemi, O.O. & Agbaje, E.O. 2010. Anti-obesity and antihyperlipidaemic effect of Hunteria umbellata seed extract in experimental hyperlipidaemia. Journal of Ethnopharmacology 130: 307-314.

Adisa, R.A., Choudhary, M.I. & Olorunsogo, O.O. 2011. Hypoglycemic activity of Buchholzia coriacea (Capparaceae) seeds in streptozotocin-induced diabetic rats and mice. Experimental and Toxicologic Pathology 63(7): 619-625.

Almdal, J.P. & Vilstrup, H. 1988. Strict insulin therapy normalizes organ nitrogen contents and the capacity of urea nitrogen synthesis in experimental diabetes in rats. Diabetologia 31: 114-118.

Al-Snafi, A.E. 2013. The pharmacological importance of Benincasa hispida. A review. International Journal of Pharma Sciences and Research 4(12): 165-170.

Bahadoran, Z., Mirmiran, P. & Azizi, F. 2013. Dietary polyphenols as potential nutraceuticals in management of diabetes: A review. Journal of Diabetes & Metabolic Disorders 12(1): 43.

Davies, M.J., D'Alessio, D.A., Fradkin, J., Kernan, W.N., Mathieu, C., Mingrone, G., Rossing, P., Tsapas, A., Wexler, D.J. & Buse, J.B. 2018. Management of Hyperglycemia in Type 2 Diabetes, 2018. A Consensus Report by the American Diabetes Association (ADA) and the European Association for the Study of Diabetes (EASD). Diabetes Care 41(12): 2669-2701.

de Sotillo, D.V.R. & Hadley, M. 2002. Chlorogenic acid modifies plasma and liver concentrations of cholesterol, triacylglycerol, and minerals in (fa/fa) Zucker rats. The Journal of Nutritional Biochemistry 13(12): 717-726.

Erejuwa, O.O., Sulaiman, S.A., Ab Wahab, M.S., Sirajudeen, K.N.S., Salleh, M.S.M. & Gurtu, S. 2011. Glibenclamide or metformin combined with honey improves glycemic control in
streptozotocin-induced diabetic rats. International Journal of Biological Sciences 7(2): 244.

Esmail, A.S.A. & Ali, T.T. 2019. A review of medicinal plants with nephroprotective effects. GSC Biological and Pharmaceutical Sciences 8(1).

Fatariah, Z., Zulkhairuazha, T. & Wan Rosli, W.I. 2014. Quantitative HPLC analysis of gallic acid in Benincasa hispida prepared with different extraction techniques. Sains Malaysiana43(8): 1181-1187.

Fatariah, Z., Wan Rosli, W.I., Ng, S.H., Mohd Shazwan, Z. & Wan Amir Nizam, W.A. 2016. Assessment of glycaemic effect of Benincasa hispida aqueous extract in streptozotocin diabetic rats. Health and the Environment Journal 7(1): 1-2.

Franzetti, I., Donnini, P., Gaiazzi, M., Mazzola, E., Zibetti, E. & Uccella, R. 1994. Lactic acidosis and severe hyperkalemia in a diabetic patient treated with metformin and enalapril: Influence of acute renal disease and drugs. Minerva Medica 86(1-2): 49-54.

Gandhi, G.R., Ignacimuthu, S. & Paulraj, M.G. 2011. Solanum torvum Swartz. fruit containing phenolic compounds shows antidiabetic and antioxidant effects in streptozotocin induced diabetic rats. Food and Chemical Toxicology 49(11): 2725-2733.

Gosh, S. & Suryawansi, S.A. 2001. Effect of Vinca rosea extracts in treatment of alloxan diabetes in male albino rats. Indian Journal of Experimental Biology 39: 748-759.

Hakim, Z.S., Patel, B.K. & Goyal, R.K. 1997. Effects of chronic ramipril treatment in streptozotocin-induced diabetic rats. Indian Journal of Physiology and Pharmacology 41:
353-360.

Hollander-Rodriguez, J.C. & Calvert, J.F. 2006. Hyperkalemia. American Family Physician 73(2): 283-290.

Kesari, A.N., Gupta, R.K., Singh, S.K., Diwakar, S. & Watal, G. 2006. Hypoglycemic and antihyperglycemic activity of Aegle marmelos seed extract in normal and diabetic rats. Journal of Ethnopharmacology 107(3): 374-379.

Luciano-Mateo, F., Hernández-Aguilera, A., Cabre, N., Camps, J., Fernández-Arroyo, S., Lopez-Miranda, J., Menendez, J.A. & Joven, J. 2017. Nutrients in energy and one-carbon metabolism: Learning from metformin users. Nutrients 9(2): 121.

Lyons, T.J. & Basu, A. 2012. Biomarkers in diabetes: Hemoglobin A1c, vascular and tissue markers. Translational Research 159(4): 303-312.

Mahatma, A., Sonowal, A. & Kumar, M.S. 2015. Evaluation of antidiabetic potential of methanolic extract of Benincasa hispida in streptozotocin induced diabetic rats. International Journal of Pharmaceutical Sciences and Research 6(8): 3334-3343.

Mahatma, A., Kumar, M.S. & Sonowal, A. 2014. Evaluation of antidiabetic potential of methanolic extract of Benincasa hispida in dexamethasone induced diabetic rats. Journal of Dental and Medical Sciences 13(12): 118-125.

Maxwell, S., Holm, G., Bondjers, G. & Wiklund, O. 1997. Comparison of antioxidant activity in lipoprotein fractions from insulin-dependent diabetics and healthy controls. Atherosclerosis 129(1): 89-96.

Mingyu, D., Mingzhang, L., Qinghong, Y., Weiming, F., Jianxiang, X. & Weiming, X. 1995. A study on Benincasa hispidacontents effective for protection of kidney. Jiangsu Journal of Agricultural Sciences 11: 46-52.

Mohana Rupa, L. & Mohan, K. 2013. Hypoglycaemic effect of aqueous extract of Benincasa hispida in rabbits. International Ayurvedic Medical Journal 1: 1-5.

Mulec, H.S., Johnson, A. & Bjorck, S. 1990. Relation between serum cholesterol and diabetic nephropathy. The Lancet 335(8704): 1537-1538.

Navarro, M.C., Montialla, M., Martín, A., Jimenez, J. & Utrilla, M.P. 1993. Free radical scavenger and antihepatotoxic activity of Rosmarinus Tomentosus. Planta Medica59(4): 312-314.

Palmer, B.F. 2010. A physiologic-based approach to the evaluation of a patient with hyperkalemia. American Journal of Kidney Diseases 56(2): 387-393.

Perrone, R.D., Madias, N.E. & Levey, A.S. 1992. Serum creatinine as an index of renal function: New insights into old concepts. Clinical Chemistry 38(10): 1933-1953.

Pertek, J., Vidal, S., Mariot, J., Galy-Floch, M. & Azoulay, E. 2003. In Annales Francaises D'anesthesie Et De Reanimation 22: 457-460.

Priya, G. & Kalra, S. 2018. Metformin in the management of diabetes during pregnancy and lactation. Drugs in Context 7: 212523.

Punithavathi, V.R., Prince, P.S.M., Kumar, R. & Selvakumari, J. 2011a. Antihyperglycaemic, antilipid peroxidative and antioxidant effects of gallic acid on streptozotocin induced diabetic wistar rats. European Journal of Pharmacology 650(1): 465-471.

Punithavathi, V.R., Prince, P.S.M., Kumar, M.R. & Selvakumari, C.J. 2011b. Protective effects of gallic acid on hepatic lipid peroxide metabolism, glycoprotein components and lipids in streptozotocin-induced type II diabetic wistar rats. Journal of Biochem Molecular Toxicology 25(2): 68-76.

Reagan-Shaw, S., Nihal, M. & Ahmad, N. 2008. Dose translation from animal to human studies revisited. Federation of American Societies for Experimental Biology 22(3): 659-661.

Saeedi, P., Petersohn, I., Salpea, P., Malanda, B., Karuranga, S., Unwin, N., Colagiuri, S., Guariguata, L., Motala, A.A., Ogurtsova, K., Shaw, J.E., Bright, D., Williams, R. & IDF Diabetes Atlas Committee. 2019. Global and regional diabetes prevalence estimates for 2019 and projections for 2030 and 2045: Results from the International Diabetes Federation Diabetes Atlas, 9th ed. Diabetes Res. Clin. Pract. 157: 107843.

Shah, S.V., Baliga, R., Rajapurkar, M. & Fonseca, V.A. 2007. Oxidants in chronic kidney disease. Journal of the American Society of Nephrology 18(1): 16-28.

Shakya, A., Chaudhary, S.K., Bhat, H.R. & Ghosh, S.K. 2020. Acute and sub-chronic toxicity studies of Benincasa hispida (Thunb.) cogniaux fruit extract in rodents. Regulatory Toxicology and Pharmacology 118: 104785.

Simpson, R. & Morris, G.A. 2014. The anti-diabetic potential of polysaccharides extracted from members of the cucurbit family: A review. Bioactive Carbohydrates and Dietary Fibre. 3(2): 106-114.

Singh, S.K., Kesari, A.N., Gupta, R.K., Jaiswal, D. & Watal, G. 2007. Assessment of antidiabetic potential of Cynodon dactylonextract in streptozotocin diabetic rats. Journal of Ethnopharmacology 114(2): 174-179.

Varghese, H., Kotagiri, S., Vrushabendra, S., Archana, S. & Raj, G. 2013. Nephroprotective activity of Benincasa hispida(Thunb.) Cogn. fruit extract against paracetamol induced nephrotoxicity in rats. Research Journal of Pharmaceutical, Biological and Chemical Sciences 4: 322-332.

Wang, S.C., Lee, S.F., Wang, C.J., Lee, C.H., Lee, W.C. & Lee, H.J. 2011. Aqueous extract from Hibiscus sabdariffa Linnaeus ameliorate diabetic nephropathy via regulating oxidative status and Akt/Bad/14-3-3γ in an experimental animal model. Evidence-Based Complementary and Alternative Medicine 2011: 938126.

WHO. 2015. Country and regional data on diabetes. http://www.who.int/diabetes/facts/world_figures/en/index6.html.

Zaini, N.A.M., Anwar, F., Hamid, A.A. & Saari, N. 2011. Kundur [Benincasa hispida(Thunb.) Cogn.]: A potential source for valuable nutrients and functional foods. Food Research International 44(7): 2368-2376.

 

*Pengarang untuk surat-menyurat; email: wrosli@usm.my

 

 

   

sebelumnya