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http://dx.doi.org/10.20307/nps.2017.23.3.192

Antioxidant and Antiaging Assays of Hibiscus sabdariffa Extract and Its Compounds  

Widowati, Wahyu (Medical Research Center, Faculty of Medicine, Maranatha Christian University)
Rani, Andani Puspita (Medical Research Center, Faculty of Medicine, Maranatha Christian University)
Hamzah, R. Amir (Medical Research Center, Faculty of Medicine, Maranatha Christian University)
Arumwardana, Seila (Aretha Medika Utama, Biomolecular and Biomedical Research Center)
Afifah, Ervi (Aretha Medika Utama, Biomolecular and Biomedical Research Center)
Kusuma, Hanna Sari W. (Aretha Medika Utama, Biomolecular and Biomedical Research Center)
Rihibiha, Dwi Davidson (Aretha Medika Utama, Biomolecular and Biomedical Research Center)
Nufus, Hayatun (Aretha Medika Utama, Biomolecular and Biomedical Research Center)
Amalia, Annisa (Aretha Medika Utama, Biomolecular and Biomedical Research Center)
Publication Information
Natural Product Sciences / v.23, no.3, 2017 , pp. 192-200 More about this Journal
Abstract
Skin aging is a complex biological process due to intrinsic and extrinsic factors. Free radical oxidative is one of extrinsic factors that induce activation of collagenase, elastase and hyaluronidase. Natural product from plants has been used as antioxidant and antiaging. This study aimed to evaluate antioxidant and antiaging properties of Hibiscus sabdariffa extract (HSE) and its compounds including myricetin, ascorbic acid, and ${\beta}$ carotene. The phytochemical of H. sabdariffa was determined using modified Farnsworth method and presence of phenols, flavonoids and tannins were in moderate content, whereas triterpenoids and alkaloids were in low content. Total phenolic content performed using Folin-Ciocalteu method, was $23.85{\mu}gGAE/mg$. Quantitative analysis of myricetin, ${\beta}-carotene$, and ascorbic acid of HSE was performed with Ultra-High Performance Liquid Chromatography (UHPLC) that shows $78.23{\mu}g/mg$ myricetin, $0.034{\mu}g/mg$ ${\beta}-carotene$, whilst ascorbic acid was not detected. HSE has lower activity on DPPH ($IC_{50}=195.73{\mu}g/mL$) compared to ${\beta}-carotene$, the lowest in ABTS assay ($IC_{50}=74.58{\mu}g/mL$) and low activity in FRAP assay ($46.24{\mu}MFe(II)/{\mu}g\;$) compared to myricetin, ${\beta}-carotene$. Antiaging was measured through inhibitory activity of collagenase, elastase, and hyaluronidase. HSE had weakest collagenase inhibitory activity ($IC_{50}=750.33{\mu}g/mL$), elastase inhibitory activity ($103.83{\mu}g/mL$), hyaluronidase inhibitory activity ($IC_{50}=619.43{\mu}g/mL$) compared to myricetin, ${\beta}-carotene$, and ascorbic acid. HSE contain higher myricetin compared to ${\beta}-carotene$. HSE has moderate antioxidants and lowest antiaging activities. Myricetin is the most active both antioxidant and antiaging activities.
Keywords
Hibiscus sabdariffa; Myricetin; ${\beta}-carotene$; Ascorbic acid; Antioxidant; Antiaging;
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1 Taniguchi, M.; Arai, N.; Kohno, K.; Ushio, S.; Fukuda, S. Eur. J. Pharmacol. 2012, 674, 126-131.   DOI
2 Thring, T. S.; Hili, P.; Naughton, D. P. BMC Complement. Altern. Med. 2009, 9, 1-11.   DOI
3 Tsai, P. J.; McIntosh, J.; Pearce P.; Camden, B.; Jordan, B. Food Res. Int. 2002, 35, 351-356.   DOI
4 Mohamad, O.; Mohd, B.; Abdul, M.; Herman, S. Bull. PGM. 2002.
5 Widowati, W.; Wijaya, L.; Wargasetia, T. L.; Bachtiar, I.; Yellianty, Y.; Laksmitawati, D. R. J. Exp. Integr. Med. 2013, 3, 225-230.   DOI
6 Widowati, W.; Ratnawati, H.;Rusdi, U.; Winarno, W.; Imanuel, V. HAYATI J. Biosci. 2010, 17, 85-90.   DOI
7 Bera, T. K.; Chatterjee, K.; Ghosh, D. B. G. M. 2015, 7, 18-24.
8 Adnyana, I. K.; Abuzaid, A. S.; Iskandar, E. Y.; Kurniati, N. F. Int. J. Med. Res. Health Sci. 2016, 5, 23-28.   DOI
9 Widowati, W.; Ratnawati, H.; Husin, W.; Maesaroh, M. Biomed. Eng. 2015, 1, 24-29.
10 Widowati, W.; Herlina, T.; Ratnawati, H.; Constantia, G.; Deva, I.; Maesaroh, M. Biol. Med. Nat. Prod. Chem. 2015, 4, 35-39.   DOI
11 Lucini, L.; Pellizzoni, M.; Baffi, C.; Molinari, G. P. J. Sci. Food Agric. 2016, 92, 1297-1303.
12 Pandel, R.; Poljsak, B.; Godic, A.; Dahmane, R. ISRN Dermatol. 2013, 2013, 1-12.
13 Sohn, D.; Kim, Y. C.; Oh, S. H.; Park, E. J.; Li, X.; Lee, B. H. Phytomedicine. 2003, 10, 165-169.   DOI
14 Dasgupta, A.; Ray, D.; Chatterjee, A.; Roy, A.; Acharya, K. J. Pharm. Biol. Chem. Sci. 2014, 5, 510-520.
15 Tu, P. T.; Tawata, S. Molecules. 2015, 20, 16723-16740.   DOI
16 Widowati, W.; Widyanto, R. M.; Husin, W.; Ratnawati, H.; Laksmitawati, D. R.; Setiawan, B.; Nugrahenny, D.; Bachtiar, I. Iran. J. Basic Med. Sci. 2014, 17, 702-709.
17 Mishra, A.; Bapat, M. M.; Tilak, J. C.; Devasagayam, T. T. Curr. Sci. 2006, 91, 90-93.
18 Widowati, W.; Fauziah, N.; Herdiman, H.; Afni, M.; Afifah, E.; Kusuma, H. S. W.; Nufus, H.; Arumwardana, S.; Rihibiha, D. D. J. Nat. Rem. 2016, 16, 89-99.
19 Bergmeier, D.; Berres, P. H. D.; Filippi, D.; Bilibio, D.; Bettiol, V. R.; Priamo, W. L. Maringa. 2014, 36, 545-551.
20 Mahadevan, N.; Shivali.; Kamboj, P. Nat. Prod. Radiance 2009, 8, 77-83.
21 Fusco, D.; Colloca, G.; Lo Monaco, M. R.; Cesari, M. Clin. Interv. Aging 2007, 2, 377-387.
22 Amarowicz, R.; Pegg, R. B.; Rahimi-Moghaddam, P.; Barl, B.; Weil, J. A. Food Chem. 2004, 84, 551-562.   DOI
23 Oliveira, C. P.; Kassab, P.; Lopasso, F. P.; Souza, H. P; Janiszewski, M.; Laurindo, F. R.; Iriya, K.; Laudanna, A. A. World J. Gastroenterol. 2003, 9, 446-448.   DOI
24 Wang, X.; Falcone, T.; Attaran, M.; Goldberg, J. M.; Agarwal, A.; Sharma, R. K. Fertil. Steril. 2002, 78, 1272-1277.   DOI
25 Huang, J. H.; Huang, C. C.; Fang, J. Y.; Yang, C.; Chan, C. M.; Wu, N. L.; Kang, S. W.; Hung, C. F. Toxicol. In Vitro 2010, 24, 21-28.   DOI
26 Formica, J. V.; Regelson, W. Food Chem. Toxicol. 1995, 33, 1061-1080.   DOI
27 Sim G. S.; Lee, B. C.; Cho, H. S.; Lee, J. W.; Kim, J. H.; Lee, D. H.; Kim, J. H.; Pyo, H. B.; Moon, D. C.; Oh, K.W.; Yun, Y. P.; Hong, J. T. Arch. Pharm. Res. 2007, 30, 290-298.   DOI
28 Swindells, K.; Rhodes, L. Photodermatol. Photoimmunol. Photomed. 2004, 20, 297-304.   DOI
29 Wang, L.; Tu, Y. C.; Lian T. W.; Hung, J. T.; Yen, J. H.; Wu, M. J. J. Agric. Food Chem. 2006, 54, 9798-9804.   DOI
30 Mattivi, F.; Guzzon, R.; Vrhovsek, U.; Stefanini, M.; Velasco, R. J. Agric. Food Chem. 2006, 54, 7692-7702.   DOI
31 Boelsma, E.; Hendriks, H.; Roza, L. Am. J. Clin. Nutr. 2001, 73, 853-864.   DOI
32 Roy, A.; Sahu, R. K.; Matlam, M.; Deshmukh, V. K.; Dwivedi, J.; Jha, A. K. Pharmacogn. Rev. 2013, 7, 97-106.   DOI
33 Haftek, M.; Mac-Mary, S.; Le Bitoux, M. A.; Creidi, P.; Seite, S.; Rougier, A.; Humbert, P. Exp. Dermatol. 2008, 17, 946-952.   DOI
34 Demeule, M.; Brossard, M.; Page, M.; Gingras, D.; Beliveau, R. Biochim. Biophys. Acta 2000, 1478, 51-60.   DOI
35 Pientaweeratch, S.; Panapisal, V.; Tansirikongkol, A. Pharm. Biol. 2016, 54, 1865-1872.   DOI
36 Jung, S. K.; Lee, K. W.; Kim, H. Y.; Oh, M. H., Byun, S.; Lim, S. H.; Heo, Y. S.; Kang, N. J.; Bode, A. M.; Dong, Z.; Lee, H. J. Biochem. Pharmacol. 2010, 79, 1455-1461.   DOI
37 Kanashiro, A.; Souza, J. G.; Kabeya, L. M.; Azzolini, A. E.; Lucisano-Valim, Y. M. Z. Naturforsch.C. 2007, 62, 357-361.
38 Sahasrabudhe, A.; Deodhar, M. Int. J. Bot. 2010, 6, 299-303.   DOI
39 Getoff, N. Rad. Phys. Chem. 2007, 76, 1577-1586.   DOI
40 Kammerer, C.; Czermak, I.; Getoff, N. Radiat. Phys. Chem. 2001, 60, 71-72.   DOI
41 Darr, D.; Dunston, S.; Faust, H.; Pinnell, S. Acta Derm. Venereol. 1996, 76, 264-268.
42 Lin, J. Y.; Selim, M. A.; Shea, C. R.; Grichnik, J. M.; Omar, M. M.; Monteiro-Riviere, N. A.; Pinnell, S. R. J. Am. Acad. Dermatol. 2003, 48, 866-874.   DOI
43 Rizvi, S.; Jha, R. Expert Opin. Drug Discov. 2011, 6, 89-102.   DOI
44 Girish, K. S.; Kemparaju, K. Life Sci. 2007, 80, 1921-1943.   DOI
45 Chanchal, D.; Swarnlata, S. Open. Nat. Prod. J. 2009, 2,7-6 71-76.   DOI
46 Benaiges, A.; Marcet, P.; Armengol, R.; Betes, C.; Girones, E. Int. J. Cosmet. Sci. 1998, 20, 223-233.   DOI
47 Jenkins, G. Mech. Ageing. Dev. 2002, 123, 801-810.   DOI
48 Schlotmann, K.; Kaeten, M.; Black, A. F.; Damour, O.; Waldmann-Laue, M.; Forster, T. Int. J. Cosmet. Sci. 2001, 23, 309-318.   DOI
49 McCullough, J. L.; Kelly, K. M. Ann. N. Y. Acad. Sci. 2006, 1067, 323-331.   DOI
50 Aslam, M. N.; Lansky, E. P.; Varani J. J. Ethnopharmacol. 2006, 103, 311-318.   DOI
51 Farris, P. K. Cosmetic. Dermatol. 2003, 16, 59-72.
52 Roy, A.; Sahu, R. K.; Matlam, M.; Deshmukh, V. K.; Dwivedi, J.; Jha, A. K. Pharmacogn. Rev. 2013, 7, 97-106.   DOI