Sains Malaysiana 48(1)(2019): 103–109

http://dx.doi.org/10.17576/jsm-2019-4801-12

 

Potensi Anti-Hiperglisemia Lunasia amara dan Kesannya terhadap Parameter Kesuburan Tikus Jantan Teraruh-Diabetes

(Lunasia amara Anti-Hyperglycemic Potential and its Effect towards Fertility Parameters in Diabetes-Induced Male Rat)

 

NOR-RAIDAH RAHMAT, AMIRA KAMALRUDIN, SHAZRUL FAZRY & MAHANEM MAT NOOR*

 

Pusat Pengajian Biosains dan Bioteknologi, Fakulti Sains dan Teknologi, Universiti Kebangsaan Malaysia, 43600 UKM Bangi, Selangor Darul Ehsan, Malaysia

 

Received: 31 July 2017/Accepted: 6 September 2018

 

ABSTRAK

Lunasia amara telah digunakan dalam perubatan tradisi untuk merawat diabetes mellitus. L. amara dilaporkan mampu meningkatkan kesuburan tikus jantan normal pada dos 60 mg/kg berat tubuh. Kajian ini dijalankan untuk menentukan potensi ekstrak akuas batang L. amara sebagai agen anti-hiperglisemia dan keupayaannya mempertingkatkan parameter kesuburan tikus jantan teraruh-diabetes. Tikus teraruh-diabetes dibahagikan kepada enam kumpulan (n=5), masing-masing menerima perlakuan secara suap paksa ekstrak akuas L. amara (dos 60, 120, 250 dan 500 mg/kg berat tubuh), 500 mg/kg berat tubuh metformin dan air suling setiap hari selama tujuh hari. Manakala, kumpulan ke-tujuh merupakan kawalan normal (n=5) tanpa aruhan diabetes yang menerima perlakuan air suling (1 mL/tikus). Berdasarkan hasil kajian, dos anti-hiperglisemia yang berkesan iaitu 250 dan 500 mg/kg berat tubuh L. amara dipilih untuk melihat pengaruhnya ke atas kualiti sperma dan histologi testis tikus teraruh-diabetes. Hanya tikus teraruh-diabetes dengan perlakuan 500 mg/kg berat tubuh ekstrak L. amara digunakan untuk melihat taburan pengambilan 2-(N-(7-nitrobenz-2-oksa-1,3-diazol-4-il)amino)-2-deoksiglukosa (2-NBDG) di dalam testis. Selepas 30 hari perlakuan, tikus teraruh-diabetes dengan perlakuan 250 dan 500 mg/kg berat tubuh L. amara didapati merencat kesemua parameter kesuburan jantan yang dikaji walaupun berkesan dalam menurunkan aras glukosa darah. Perlakuan dengan dos 500 mg/kg berat tubuh L. amara juga tidak berupaya menggalakkan pengambilan 2-NBDG ke dalam sel testis tikus teraruh-diabetes berbanding kumpulan kawalan. Ini menunjukkan mekanisme anti-hiperglisemia L. amara tidak melibatkan pembaikan fungsi insulin daripada segi pengambilan 2-NBDG ke dalam testis serta tidak mampu menyumbang kepada pembaikan parameter kesuburan tikus jantan teraruh-diabetes.

 

Kata kunci: 2-NBDG; diabetes mellitus; kesuburan jantan; Lunasia amara

 

ABSTRACT

Lunasia amara has been used in folk medicine to treat diabetes mellitus. It has been reported to have pro-fertility effects in normal male rats at a dose of 60 mg/kg body weight. This study was conducted to investigate the potential of L. amara aqueous extract as an anti-hyperglycemic agent and its ability to improve fertility parameters in diabetes-induced male rats. Six groups (n=5) of diabetes-induced rats were force-fed with L. amara aqueous extract (60, 120, 250, and 500 mg/kg body weight), 500 mg/kg body weight metformin, and distilled water, respectively, for seven consecutive days. Whereas, the seventh group is the normal control (n=5) without diabetic induction given distilled water (1 mL/rat). Doses of 250, and 500 mg/kg body weight L. amara extract were found to be effective for anti-hyperglycemic activity when given to diabetes-induced rats. Hence, only these two doses were used to further study the effect of L. amara on sperm quality and testis histology in diabetes-induced rats. The effect of testicular 2-(N-(7-nitrobenz-2-oxa-1,3-diazol-4-yl)amino)-2-deoxyglucose (2-NBDG) uptake in diabetes-induced rats was studied only at the dose of 500 mg/kg body weight L. amara. After 30 days of treatment, 250, and 500 mg/kg body weight L. amara were both found to inhibit all of the male fertility parameters studied despite their ability to lower the blood glucose level. Furthermore, testicular cells of diabetes-induced rats treated with 500 mg/kg body weight L. amara showed poor 2-NBDG uptake compared to control groups. The findings indicate that the anti-hyperglycemic mechanism of L. amara neither improves insulin function in term of 2-NBDG uptake into the testis nor contributes to the improvement of male fertility parameters in diabetes-induced rats.

 

Keywords: 2-NBDG; diabetes mellitus; Lunasia amara; male fertility

REFERENCES

Bajpai, M., Gupta, G. & Setty, B.S. 1998. Changes in carbohydrate metabolism of testicular germ cells during meiosis in the rat. European Journal of Endocrinology 138: 322-327.

Bhattacharya, S.M., Ghosh, M. & Nandi, N. 2014. Diabetes mellitus and abnormalities in semen analysis. Journal of Obstetrics and Gynaecology Research 40(1): 167-171.

Beh, J.E., Latip, J., Abdullah, M.P., Ismail, A. & Hamida, M. 2010. Scoparia dulcis (SDF7) endowed with glucose uptake properties on L6 myotubes compared insulin. Journal of Ethnopharmacology 129: 23-33.

Biggers, J.D., Whitten, W.K. & Whittingham, D.G. 1971. The culture of mouse embryos in vitro. Dlm. Methods in Mammalian Embryology, disunting oleh Daniel, J.C. San Francisco: Freeman. hlm. 86-116.

Boussouar, F. & Benahmed, M. 2004. Lactate and energy metabolism in male germ cells. TRENDS in Endocrinology and Metabolism 15(7): 345-350.

Desai, N., Ludgin, J., Sharma, R., Anirudh, R.K. & Agarwal, A. 2013. Female and male gametogenesis. Dlm. Clinical Reproductive Medicine and Surgery: A Practical Guide, disunting oleh Falcone, T. & Hurd, W.W. New York: Springer Science. hlm. 43-61.

El-Abhar, H.S. & Schaalan, M.F. 2014. Phytotherapy in diabetes: Review on potential mechanistic perspectives. World Journal of Diabetes 5(2): 176-197.

Gonzales, C., Rubio, J., Gasco, M., Nieto, J., Yucra, S. & Gonzales, G.F. 2006. Effect of short-term and long-term treatments with three ecotypes of Lepidium meyenii (MACA) on spermatogenesis in rats. Journal of Ethnopharmacology 103: 448-454.

Hasanin, N.A., Sayed, N.M., Ghoneim, F.M. & Al-sherief, S.A. 2017. Histological and ultrastructure study of the testes of acrylamide exposed adult male albino rat and evaluation of the possible protective effect of vitamin E intake. Journal of Microscopy and Ultrastructure 6(1): 23-34.

Humason, G.L. 1979. Animal Tissue Techniques. Ed. Ke-4. San Francisco: Freeman, W.H.

Itoh, Y., Abe, T., Takaoka, R. & Tanahashi, N. 2004. Fluorometric determination of glucose utilization in neurons in vitro and in vivo. Journal of Cerebral Blood Flow and Metabolism 24: 993-1003.

Mann, T. 1964. Metabolism of semen: Fructolysis, respiration and sperm energetics. Dlm. Biochemistry of Semen and of Male Reproductive Tract. London: Methuen. hlm. 265-307.

Muhammad Ja’far, L. & Mahanem, M.N. 2009. Kesan ekstrak akuas Lunasia amara Blanco terhadap kualiti sperma, kesuburan dan kelakuan seksual tikus jantan. Sains Malaysiana 38(5): 793-797.

Nakamura, M., Okinaga, S. & Arai, K. 1984. Metabolism of round spermatids: Evidence that lactate is preferred substrate. American Journal of Physiology - Endocrinology and Metabolism 247(2): 234-242.

Nani Rahayu, M.R. & Mahanem, M.N. 2012. Kesan anti-hiperglisemia ekstrak metanol Gynura procumbens terhadap kesuburan dan libido tikus jantan teraruh diabetes. Sains Malaysiana 41(12): 1549-1556.

Rena, G., Pearson, E.R. & Sakamoto, K. 2013. Molecular mechanism of action of metformin: Old or new insights? Diabetologia 56: 1898-1906.

Robb, G.W., Amann, R.P. & Killian, G.J. 1978. Daily sperm production and epididymal sperm reserves of pubertal and adult rats. Journal of Reproduction and Fertility 54: 103-107.

Rochman, J. 2015. Studi aktiviti ekstrak daun Bungur (Lagerstroemia speciosa) dan Maitan (Lunasia amara Blanco) sebagai antioksidan dan inhibitor α-amilase dan α-glukosidase. Tesis Sarjana Sains, Fakultas Matematika dan Ilmu Pengetahuan Alam, Universitas Jember (tidak diterbitkan).

Sanchez-Lira, N.M.V., Morales-Miranda, A., Garcia de la Morab, G., Contreras, J.C.L., Gonzalez-Sanchez, I., Valenciae, N., Cerbon, M. & Morimotoa, S. 2017. Orcinol derivative compound with antioxidant properties protects Langerhans islets against streptozotocin damage. Journal of Pharmacy and Pharmacology 69(3): 305-313.

Sheth, R.A., Josephson, L. & Mahmood, U. 2009. Evaluation and clinically relevant applications of a fluorescent imaging analog to fluorodeoxyglucose positron emission tomography. Journal of Biomedical Optics 14(6).

Singh, K., Devi1, S. & Pankaj, P.P. 2016. Diabetes associated male reproductive dysfunctions: Prevalence, diagnosis and risk factors. International Journal of Drug Development and Research 8(2): 007-010.

Takei, G.L., Miyashiro, D., Mukai, C. & Okuno, M. 2014. Glycolysis plays an important role in energy transfer from the base to the distal end of the flagellum in mouse sperm. Journal of Experimental Biology 217: 1876-1886.

Tangvarasittichai, S. 2015. Oxidative stress, insulin resistance, dyslipidemia and type 2 diabetes mellitus. World Journal of Diabetes 6(3): 456-480.

Whalen, R.E. 1974. Estrogen-progesterone induction of mating in female rats. Hormones and Behavior 5(2): 157-162.

WHO. 2010. WHO Laboratory Manual for the Examination and Processing of Human Semen. Geneva: World Health Organization.

Yamamoto, N., Ueda-Wakagi, M., Sato, T., Kawasaki, K., Sawada, K., Kawabata, K., Akagawa, M. & Ashida, H. 2015. Measurement of glucose uptake in cultured cells. Current Protocols in Pharmacology 71(1):12.14.1-12.14.26.

 

*Corresponding author; email: mahanem@ukm.edu.my

 

 

 

 

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