Sains Malaysiana 41(5)(2012): 539–545

 

Antioxidant Activity of Ardisia crispa (Mata pelanduk)

(Aktiviti Antioksida daripada Ardisia crispa (Mata pelanduk))

Hassan Mahmood Kzar Jindal & Jamaludin Mohamad*

Institute of Biological Sciences, Faculty of Science

University of Malaya, 50603 Kuala Lumpur, Malaysia

 

Diserahkan: 11 April 2011/Diterima: 11 November 2011

 

ABSTRACT

The leaf and fruit crude extracts of hexane, chloroform, methanol and water of Ardisia crispa were screened for their antioxidant activity using DPPH radical scavenging, ferric reducing power, and metal chelating antioxidant assay. The methanol crude extract of fruits showed higher antioxidant activity (90.16 ± 0.01%) than the methanol crude extract of leaves (82.24 ± 0.02%) in the DPPH radical scavenging assay. In the ferric reducing power assay methanol fruit extract showed the highest absorbance indicating high antioxidant activities than leaf extract. In the metal chelating antioxidant assay fruit methanol extract gave 40% antioxidant activities than the leaf. Thin Layer Chromatography of the fruit methanol crude extract showed that it contained phenolic compounds when it was detected with folin reagent. HPLC analysis revealed that the fruit methanol extract contained gallic acid. This indicated that the high antioxidant activities of the fruits were due to the presence of gallic acid in the fruits of Ardisia crispa.

 

Keywords: Antioxidants; DPPH radical scavenging activity; gallic acid; metal chelating activity; reducing power assay

 

ABSTRAK

Ekstrak mentah heksan, kloroform, metanol, air daripada daun dan buah Ardisia crispa telah disaring untuk menentukan aktiviti antioksidan menggunakan asai antioksidan penyahbebas radikal DPPH, kuasa penurunan ferik, dan logam pengkelat. Ekstrak metanol buah menunjukkan aktiviti antioksidan yang lebih tinggi daripada ekstrak daun dengan peratus perencatan penyahbebas DPPH 90.16 ± 0.01% and 82.24 ± 0.02% masing-masing. Dalam asai kuasa penurunan ferik ekstrak metanol buah menunjukkan serapan yang tertinggi menandakan aktiviti antioksidan yang tinggi daripada ekstrak daun. Dalam asai logam pengkelat ekstrak metanol, buah memberikan 40% aktiviti antioksidan daripada daun. Kromatografi lapisan nipis ekstrak mentah buah menunjukkan, terdapat kandungan sebatioan fenolik. Analisis HPLC menunjukkan akstrak mentah mengandungi asid galik. Ini menunjukan aktiviti antioksidan yang tinggi di dalam buah adalah disebabkan kehadiran asid galik dalam buah Ardisia crispa.

 

Kata kunci: Aktiviti pengkelat logam; antioksidan; asai kuasa penurun; asid galik; penyahbebas radikal DPPH

RUJUKAN

Andjelkovic, M., Camp, J.V., Meulenaer, B.D., Depaemelaere, G., Socaciu, C. & Verloo, M. 2006. Iron-chelation properties of phenolic acids bearing catechol and galloyl groups. Food Chemistry 98: 23–31.

Atmani, D., Chaher, N., Berboucha, M., Ayouni, K., Lounis, H., Boudaoud, H., Debbache, N. & Atmani, D. 2009. Antioxidant capacity and phenol content of selected Algerian medicinal plants. Food Chemistry 112: 303–309.

Cazzi, R., Ricardy, R., Aglitti, T., Gatta, V., Petricone, P. & De Salvia, R. 1997. Ascorbic acid and b-carotene as modulators of oxidative damage. Carcinogenesis 18: 223–228.

Cheesman, K. & Slater, H. 1993. An introduction to free radicals biochemistry. BritishMedical Bulletin 49: 481–493.

Chen, H., Zu, Y. & Peng, Y. 2001. Separation and dtermination of flavonoids and other phenolic compounds in cranberry juice by high-performance liquid chromatography. Journal of Chromatography A 913: 387-395.

Christophe, W. 2002. Medicinal Plants of Southeast Asia. Selangor: Prentice Hall.

Dastmalchi, K.D., Doeman, H.J.D., Oinonen, P.P., Darwis, Y., Laaso, I, & Hiltunen, R. 2008. Chemical composition and in vitro antioxidative activity of a lemon balm (Melissa officinalis L.) extract. LWT Food Science and Technology 41(3): 391-400.

de Mejía, E.G., Chandra, S., Ramírez-Mares, M. & Wang, W. 2006. Catalytic inhibition of human DNA topoisomerase by phenolic compounds in Ardisia compressa extracts and their effect on human colon cancer cells. Food and Chemical Toxicology 44: 1191–1203.

de Oliveira, A.C., Valentim, L.B., Silva, C.A., Bechara, E.J.H., Barros, M.P., Mano, C.M. & Goulart, M.O.F. 2009. Total phenolic content and free radical scavenging activities of methanolic extract powders of tropical fruit residues. Food Chemistry 115: 469–475.

Dinis, T.C.P., Madeira, V.M.C. & Almeida, L. M. 1994. Action of phenolic derivatives (acetaminophen, salicylate and 5-aminosalicylate) as inhibitors of membrane lipid peroxidation as peroxyl radical scavenging effects. Chemical Pharmacology Bulletin 36: 2090–2097.

Duh, P.D., Yen, G.C., Yen, W.Y & Chang, L.W. 2001. Anti-oxidant effects of water extracts from barley (Hordeum vulgare L.) prepared under different roasting temperatures. Journal of Agricultural and Food Chemistry 49:1455-1463.

Erel, O. 2004. A novel automated direct measurement method for total antioxidant capacity using a new generation, more stable ABTS radical cation. Clinical Biochemistry 37: 277–285.

Frankel, E.N. & Finley, J.W. 2008. How to standardize the multiplicity of methods to evaluate natural antioxidants. Journal Agriculture Food Chemistry 56: 4901–4908.

Gow-Chin Yen., Pin-Der Duh & Hui-Ling Tsai. 2002. Antioxidant and pro-oxidant properties of ascorbic acid and gallic acid. Food Chemistry 79:307-313.

Hseu, Y., Chang, W., Chen, C., Liao, L., Huang, C., Lu, F., Chia, Y., Hsu, H., Wu, J. & Yang, H. 2008. Antioxidant activities of Toona Sinensis leaves extracts using different antioxidant models. Food and Chemical Toxicology 46: 105–114.

Kang, Y.H., Kim, W.H., Park, M.K. & Han, B.H. 2001. Antimetastatic and antitumor effects of benzoquinonoid AC7-1 from Ardisia crispa. International Journal of Cancer 93: 736–740.

Kobayashi, H. & de Mejia, E. 2005. The genus Ardisia: a novel source of health-promoting compounds and phytopharmaceuticals. Journal of Ethnopharmacology 96: 347–354.

Li, H.B., Wong, C.C., Cheng, K.W. & Chen, F. 2008. Antioxidant properties in vitro and total phenolic contents in methanol extracts from medicinal plants. LWT - Food Science and Technology 41(3): 385-390.

Li, Y.F., Gue, C.J., Yang, J.J., Wei, J.Y., Xu, J. & Cheng, S. 2006. Evaluation of antioxidant properties of pomegranate peel extract in comparison with pomegranate pulp extract. Food Chemistry 96: 254 – 260.

Lu, Z., Nie, G., Belton, P.S., Tang. H. & Zhao, B. 2006. Structure-activity relationship analysis of antioxidant ability and neuroprotective effect of gallic acid derivatives. Neurochemistry International 48: 263-274.

Mates, M.J., Gomez, C.P. & De Castro, I.N. 1999. Antioxidant Enzymes and Human Diseases. Clinical Biochemistry 32: 595-603.

Meir, S., Kanner, J., Akiri, B. & Philosoph-Hadas, S. 1995. Determination and involvement of aqueous reducing compounds in oxidative defense systems of various senescing leaves. Journal Agriculture Food Chemistry 43: 1813–1819.

Nikolovska-Coleska, Z., Xu, L., Hu, Z., Tomita, Y., Li, P., Roller, P.P., Renxiao, W., Fang, X., Guo, R., Zhang, M., Lippman, M.E., Yang, D. & Wang, S. 2004. Discovery of embelin as a cell-permeable, small molecular weight inhibitor of XIAP through structure-based computational screening of traditional herbal medicine three-dimentional structure database. Journal of Medicinal Chemistry 47: 2430–2440.

Oyaizu, M. 1986. Studies on product of browning reaction prepared from glucose amine. Japanese Journal of Nutrition 44: 307–315.

Piacente, S., Pizza, C., De Tommasi, N. & Mahmood, N. 1996. Constituents of Ardisia japonica and their in vitro anti-HIV activity. Journal of Natural Products 59: 565–569.

Rice-Evans, C.A., Miller, N.J. & Paganga, G. 1996. Structure–antioxidant activity relationships of flavonoids and phenolic acids. Free Radical Biology & Medicine 20: 933–956.

Ryu, G., Lee, S.Y., Kim, B.S., Ryu, S.Y., Hwang, H.J., Choi, B.W., Lee, B.H. & Jung, D.S. 2002. Ardimerin, a new dimeric lactone from the herb of Ardisia japonica. Natural Product Sciences 8: 108–110.

Sakagami, H & Satoh, K. 1997. Pro-oxidant action of two anti-oxidant: ascorbic acid and gallic acid. Anticancer Research 17: 221-224.

Sânchez-Moreno, C., Larrauri, J. & Saura-Calixto, F. 1999a. Free radical scavenging capacity and inhibition of lipid oxidation of wines, grape juices and related polyphenolic constituents. Food Research International 32: 407–412.

Sànchez-Moreho, C., Larrauri, J.A & Saura-Calixto, F., 1999b. Free radical scavenging capacity of selected red, rose and white wines. Journal of the science of food and agriculture 79(10): 1301-1304.

Sumino, M., Sekine, T., Ruangrungsi, N., Igarashi, K. & Ikegami, F. 2002. Ardisiphenols and other antioxidant principles from the fruits of Ardisia colorata. Chemical and Pharmaceutical Bulletin 50: 1484–1487.

Velioglu, Y.S., Mazza, G., Gao, L. & Oomah, B.D. 1998. Antioxidant activity and total phenolics in selected fruits, vegetables and grain products. Journal of Agriculture Food Chemistry 46: 4113–4117.

Vilapakkam, R.P., Ponnian, S.M.P., Ramesh, K. & Jemmi, S. 2011. Antihyperglycaemic, antilipid peroxidative and antioxidant effects of gallic acid on streptozotocin induced diabetic Winstar rats. European Journal of Pharmacolog 650: 465-471.

Villano, D., Fernandez-Pachon, M.S., Moya, M.L., Troncoso, A.M. & Garcia-Parrilla, M.C. 2007. Radical scavenging ability of polyphenolic compounds towards DPPH free radical. Talanta 71: 230–235.

Whysner, J., Wang, C.X., Zang, E., Iatropoulos, M.J. & Williams, G. M. 1994. Dose response of promotion of butylated hydroxyanisole in chemically initiated tumors of the rat fore stomach. Food and Chemical Toxicology 32: 215–222.

Yun, S. Liang, J. Peng, X. Yan. L. & Jinsong, B. 2009. Total phenolic, flavonoids, antioxidant capacity in rice grain and their relations to grain color, size and weight. Journal of Cereal Science 49(1): 106 -111.

Zhishen, J., Mengcheng, T. & Jianming, W. 1999. The determination of flavonoid contents in mulberry and their scavenging effects on superoxide radicals. Food Chemistry 64: 555-559.

 

*Pengarang untuk surat-menyurat; email: jamal@um.edu.my

 

 

 

sebelumnya