Identifying and Study of some of Phytochemical compounds and Anti-Jaundice Activity for powder of leaves and seeds of Moringa oleifera in male albino rats.

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Wijdan I.A. Abd-alwahab

Abstract

The present study aimed to revealing and identifying some of phytochemical compounds, bioactive fatty acids and antioxidants for powder of leaves and seeds of Moringa oleifera that cultivated in Iraq which have been many identified by using modern techniques such as gas chromatography mass spectrometry (GC-MS) technique. And then study and test the preventive and Therapy effects for powder of leaves and seeds in present study against hepatotoxicity that induced by carbon tetrachloride (CCl4) and against jaundice. These effects were tested by measuring total bilirubin concentrations of total bilirubin and γ-glutamyl transferase (GGT) in serum of normal male rats, exposed to CCl4 and that treated with powder of leaves and seeds of Moringa oleifera along the period of experiment (30) days, used (20) albino male rats divide to (4) groups, that is meaning (5) rats for each group. The rats group that exposed to CCl4 caused a significant increase (P<0.05) in concentrations of total bilirubin and GGT enzyme in comparison with normal control group. Whereas the animals which exposed to CCl4 then treated with powder of leaves and seeds of Moringa oleifera lead to significant decrease (P<0.05) in total bilirubin and GGT enzyme concentration in comparison with the group that exposed to CCl4 only. It could be concluded of this study that using powder of leaves and seeds of Moringa oleifera may be have Preventive and therapeutic effects against damage and hepatotoxicity, subsequently, anti-jaundice activity through its nutritional and antioxidant influences for remove of free radicals and repairing cellular and tissues from toxic damage

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How to Cite
Wijdan I.A. Abd-alwahab. (2023). Identifying and Study of some of Phytochemical compounds and Anti-Jaundice Activity for powder of leaves and seeds of Moringa oleifera in male albino rats. Tikrit Journal of Pure Science, 23(2), 66–72. https://doi.org/10.25130/tjps.v23i2.653
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References

1- Gu, R., Wang, Y., Long, B., Kennelly, E., Wu, S and Liu, B. (2014). Prospecting for bioactive constituents from traditional medicinal plants through ethnobotanical approaches. Biol Pharm Bull; Vol 37(6): Pp: 903-915.

2- Mukherjee, S., Das, P and Sen, R. (2006). Towards commercial production of microbial surfactants. Trends Biotechnology; Vol 24: Pp: 509-515.

3- Nadkarni, A.K. (1976). Indian Materia Medica. 1st ed. Popular Bombay Prakashan: Bombay; Vol 1, Pp: 810-816.

4- Goyal, B.R., Agrawal, B.B., Goyal, R.K. and Mehta A.A. (2007). Phyto-pharmacology of Moringa oleifera Lam.6 An overview. Nat Prod Radiance; Vol 6(4): Pp: 347-353.

5- Anwar, F., Ashraf, M and Bhanger, M.I. (2005). Interprovenance variation in the composition of Moringa oleifera oilseeds from Pakistan. J Am Oil Chem Soc; Vol 82: Pp: 45-51.

6- Muyubi, S. A. and Evison, L. M. (1995). Coagulation of turbid water and softening of hard water with Moringa oleifera seeds. J Environ Stud; Vol 9: Pp: 247-258. 7- Edoga, C.O., Njoku, O.O., Amadi, E.N. and Afomezie, P.I. (2013). Effect of aqueous extract of Moringa oleifera on serum protein of Trypanosoma brucei-infected rats. Int. J. Sci. Technol; Vol 3, Pp: 85-87.

8- Konda, V.G., Madhavi, E., Ruckmani. A and Venka, Y. (2013). A review on medicinal plants with potential hypolipidemic activity. Int J Pharm Bio Sci; Vol 4(4), Pp:729-740. 9- Sharma, J., Gairola, S., Gaur, R.D. and Painuli, R.M. (2012). The treatment of jaundice with medicinal plants in indigenous communities of the Sub-Himalayan region of Uttarakhand, India. Journal of Ethnopharmacology; Vol 143; Pp:262-291. 10- Al-Janabi, Q. A. (2008). Study the effect of aqueous extract of grape seeds in oxidative stress induced by hydrogen peroxide in male rats. M.Sc. thesis, College of Education, University of Tikrit.

11- Hewawasam, R.P., Jayatilaka, K.A., Pathirana, C and Mudduwa, L.K. (2004). Hepatoprotective effect of Epaltes divaricata extract on carbon tetrachloride induced hepatotoxicity in mice. Indian J Med Res; Vol 120, Pp:30-34.

12- Aldulaimi,A. M and Husain,F. F.(2016). Effect Urtica dioica leaves and Moringa oleifera leaves and seeds in anemia in males albino rats exposed to toxicity by cadmium chloride and lead acetate. Journal of Tikrit for Agriculture Sciences; Vol 16(2), Pp:243-251. 13- Malloy, H. and Everlyn, K.A. (1937). The determination of bilirubin with the photoelectric colorimeter. J. Bio Chem; Vol 119: Pp:481-490.

14- Teitz, N.N. (1987). Assay for gamma glutamyl transpeptidase activity in serum. In: Fundamentals of

Clinical Chemistry, 3rd ed. W.B. Saunders Co, Philadelphia, USA, Pp: 391.

15- Nadro, M. S and Onoagbe, I. O. (2014). Protective effects of aqueous and ethanolic extracts of the leaf of Cassia italica in CCl4-induced liver damage in rats. American Journal of Research Communication, Vol 2(6), Pp:122-130.

16- Adedapo, A. A., Mogbojuri, O. M. and Emikpe, B. O. (2009). Safety evaluations of the aqueous extract of the leaves of Moringa oleifera in rats. J Med Plant Res; Vol 3(8), Pp:586-591.

17- Heibatollah, S., Reza, N.M., Izadpanah, G. and Sohailla, S. (2008). Hepatoprotective effect of Cichorium intybus on CCl4-induced liver damage in rats. Afr. J. Biochem. Res; Vol 2(6), Pp:141-144.

18- Sivakrishnan, S and Kottaimuthu, A. (2014). Hepatoprotective activity of ethanolic extract of aerial parts Albizia procera roxb (benth.) against paracetmol induced liver toxicity on wistar rats. Int J Pharm Pharm Sci; Vol (6), Pp:233-238.

19- Boone, L., Meyer, D., Cusick, P., Ennulat, D., Bolliger, A. P., Everds, N., Meador, V., Elliott, G., Honor, D., Bounous, D. and Jordan, H. (2005). Selection and interpretation of clinical pathology indicators of hepatic injury in preclinical studies. Vet Clin Pathol; Vol 34(3), Pp:182-188.

20- Rose, H. R., Sudha, P. N., Vinayagam, A. and Sudhakar, K. (2013). A Review on Hepatoprotective Activity of Commonly Consumed Vegetables. Der Pharmacia Lettre; Vol 5(5), Pp:290-304.