Potentials of rose (Rosa damascena) petals and receptacles extract as antioxidant and antihyaluronidase

Desi Yustra Sari Dewi, Chrismis Novalinda Ginting, Linda Chiuman, Ermi Girsang, Rr. Anisa Siwianti Handayani, Wahyu Widowati

Abstract


Free radicals affect aging by unspecific lead breakdown to macromolecules, like DNA, lipids, and proteins. The degradation of the extracellular matrix affects skin aging and correlated with the hyaluronidase enzyme. Rose (Rosa damascena) petal extract and rose receptacle extract can scavenge free radicals, thus hindering the aging process. This study examines phenolic and flavonoid content, the antioxidant, anti-hyaluronidase potential owned by rose petal extract (RPE), and rose receptacle extract (RRE) inhibiting skin aging. In this study, Hydrogen peroxide (H2O2) scavenging activity assay was done to analyze the antioxidant activity while the hyaluronidase inhibitory assay analyzed antiaging activity. The characteristic of RPE and RRE were measured the phenolics and flavonoids content. The phenolics content of  RPE and RRE were 9.66 μg GAE/mg RPE and  4.31  μg GAE/mg RRE, respectively, while the flavonoids content of  RPE and RRE respectively 1.22 μg QE/mg RPE and 0.59 μg QE/mg RRE. The median inhibitory (IC50) of H2O2 scavenging of RPE (207.99 µg/mL) was more active than RRE (348.24 µg/mL). RPE's anti-hyaluronidase (IC50: 51.68 µg/mL) is as effective as RRE (IC50: 51.98 µg/mL). Antioxidant and antiaging activities possessed by RPE and RRE are promising natural agents for aging therapy.


Keywords


antioxidant; antiaging; hyaluronidase; Rosa damascena

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References


Alam, M., Nyeem, M., Awal, M., Mostofa, M., Alam, M., Subhan, N., & Rahman, M. M. (2008). Antioxidant and hepatoprotective action of the crude ethanolic extract of the flowering top of Rosa damascena. Oriental Pharmacy and Experimental Medicine, 8(2):164–170.

Aryal, S., Baniya, M.K., Danekhu, K. Kunwar, P., Gurung, R., & Koirala, N. (2019). Total phenolic content, flavonoid content and antioxidant potential of wild vegetables from western Nepal. Plants, 8(9):1-12.

Asan, T., Lister, I. N. E., Fachrial, E., Amalia, A., Widowati, W., Samin, B., & Liena, L. (2019). Potency of black soybean (Glycine max (L.) Merr) extract and daidzein as antioxidant and antihyaluronidase. Majalah Obat Tradisional, 24(1):52–58.

Baydar, N. G., & Baydar, H. (2013). Phenolic compounds, antiradical activity and antioxidant capacity of oil-bearing rose (Rosa damascena Mill.) extracts. Industrial Crops and Products, 41(1): 375–380.

Boskabady, M. H., Shafei, M. N., Saberi, Z., & Amini, S. (2011). Pharmacological effects of Rosa damascena. Iranian Journal of Basic Medical Sciences, 14(4):295–307.

Elfitriani, E., Raif, A., Ginting, C. N., & Ikhtiari, R. (2020). Evaluation of antioxidant and anti-collagenase activity of Rosa damascena L. flower petal and receptacle extract. F1000Research, 9: 1-7.

Girsang, E., Lister, I. N. E., Ginting, C. N., Khu, A., Samin, B., Widowati, W., Wibowo, S., & Rizal, R. (2019). Chemical Constituents of snake fruit (Salacca zalacca (Gaert.) Voss) peel and in silico antiaging analysis. Molecular and Cellular Biomedical Sciences, 3(2):122-128.

Jusri, R., Widodo, W. S., Widowati, W., Armansyah, A., Sormin, D. E., Fachrial, E., & Lister, I. N. E. (2019). Comparison of antioxidant and anti-hyaluronidase potentials of pineapple core extract (Ananas comosus (L.) Merr.) and luteolin. Majalah Kedokteran Bandung, 51(2):63–69.

Liana, L., Rizal, R., Widowati, W., Fioni, F., Akbar, K., Fachrial, E., & Lister, I. N. E. (2019). Antioxidant and anti-hyaluronidase activities of dragon fruit peel extract and kaempferol-3-O rutinoside. Jurnal Kedokteran Brawijaya, 30(4):247–252.

Mawarni, E., Ginting, C.N., Chiuman, L., Girsang, E., Handayani, Rr.A.S., & Widowati, W. (2020). Antioxidant and elastase inhibitor potential of petals and receptacle of rose flower (Rosa damascena). Pharmaceutical Sciences and Research (PSR), 7 (2):105 -113.

Marjoni, M.R. & Zulfisa, A. (2017). Antioxidant activity of methanol extract/fractions of Senggani leaves (Melastoma candidum D. Don).Pharmaceutica Analytica Acta. 8(8):1-6.

Moghaddam, E.H. & Shaaban, M. (2018). The determination of flavonoid components, total phenolic content, and antioxidant capacity in dog rose (Rosa canina L.) in Lorestan province. Herbal Medicines Journal 3,(3):85-91.

Patil, P. S., Tatke, P. A., & Gabhe, S. Y. (2015). In vitro antioxidant and free radical scavenging activity of extracts of Rosa damascena flower petals. American Journal of Phytomedicine and Clinical Therapeutics, 3(9):589–601.

Prahastuti, S., Hidayat, M., Hasianna, S. T., Widowati, W., Amalia, A., Yusepany, D. T., Rizal, R., & Kusuma, H. S. W. (2019). Antioxidant potential ethanolic extract of Glycine max (L.) Merr. Var. detam and daidzein. Journal of Physics: Conference Series, 1374(012020):1-13

Prahastuti, S., Hidayat, M., Hasiana, S. T., Widowati, W., Widodo, W. S., Handayani, R. A. S., Rizal, R., & Kusuma, H. S. W. (2020). The ethanol extract of the bastard cedar (Guazuma ulmifolia L.) as antioxidants. Pharmaciana, 10(1):77-88.

Pujimulyani, D., Suryani, L.Ch., Setyowati, A., Handayani, Rr., A.S., Arumwardana, S., Widowati, W., Maruf, A. (2020). Cosmeceutical potentials of Curcuma mangga Val. extract in human BJ ï¬broblasts against MMP1, MMP3, and MMP13. Heliyon, 6(e04921):1-6

Rakhshandeh, H., Vahdati-Mashhadian, N., Dolati, K., & Hosseini, M. (2008). Antinociceptive effect of Rosa damascena in mice. Journal of Biological Sciences, 8(1):176–180.

Rozalia, M., Vasiliki-Ioanna, B., Evanthia, D., Nektarios, A., & Alexios-Leandros, S. (2016). Greek flora as a source of new antioxidant, anti-elastase, anti-collagenase and anti-hyaluronidase natural agents. Planta Medica, 81(S 01): S1–S381.

Scotti, L., Singla, R. K., Ishiki, H. M., Júnior, F. J. B. M., Silva, M. S. da, Filho, J. M. B., & Scotti, M. T. (2016). Recent Advancement in Natural Hyaluronidase Inhibitors. Current Topics in Medicinal Chemistry, 16(23):2525–2531.

Shameh, S., Alirezalu, A., Hosseini, B., & Maleki, R. (2019). Fruit phytochemical composition and color parameters of 21 accessions of five Rosa species grown in North West Iran. Journal of the Science of Food and Agriculture, 99(13):5740–5751.

Schmitzer V, Veberic R, Osterc G, Stampar F. (2009). Changes in the phenolic concentration during flower development of Rose' KORcrisett'. Journal of the American Society for Horticultural Science,134(5):491–496.

Stevenie, S., Girsang, E., Nasution, A. N., & Lister, I. N. E. (2019). Comparison activities of peel and extract of lime (Citrus amblycarpa) as antioxidant and antielastase. American Scientific Research Journal for Engineering, Technology, and Sciences (ASRJETS), 57(1): 77–84.

Tatke, P., Satyapal, U. S., Mahajan, D. C., & Naharwar, V. (2015). Phytochemical analysis, in-vitro antioxidant and antimicrobial activities of flower petals of Rosa damascena. International Journal of Pharmacognosy and Phytochemical Research, 7(2):246–250.

Utami, S., Adityaningsari, P., Sosiawan, I., Endrini, S., Sachrowardi, Q. R., Laksono, S. P., Nafik, S., Arrahmani, B. C., Afifah, E., & Widowati, W. (2017). Antioxidants and anticholinesterase activities of the characterized ethanolic of ripe sesoot (Garcinia picrorrhiza Miq.) fruit extract (GpKar) and xanthone. Majalah Obat Tradisional, 22(3):160–165.

Vrianty, D., Qodariah, R. L., Widowati, W., Sinaga, A. P. F., Fibrina, D., Fachrial, E., & Lister, I. N. E. (2019). Comparison of Antioxidant and anti-tyrosinase activities of pineapple (Ananas comosus) core extract and luteolin compound. Jurnal Kedokteran Brawijaya, 30(4):240-246

Widowati, W., Fauziah, N., Herdiman, H., Afni, M., Afifah, E., Kusuma, H. S. W., Nufus, H., Arumwardana, S., & Rihibiha, D. D. (2016). Antioxidant and antiaging assays of Oryza sativa extracts, vanilin, and coumaric acid. Journal of Natural Remedies, 16(3):88–99.

Widowati, W., Rani, A. P., Hamzah, R. A., Arumwardana, S., Afifah, E., Kusuma, H. S. W., Rihibiha, D. D., Nufus, H., & Amalia, A. (2017). Antioxidant and antiaging assays of Hibiscus sabdariffa extract and its compounds. Natural Product Sciences, 23(3):192-200

Widowati, W., Noverina, R., Ayuningtiyas, W., Kurniawan, D., Faried, A., Laksmitawati, D.R., Rihibiha, D.D., Rizal., R., Suciati, T., Sumitro, S.B. (2018a). Reactive oxygen species and aging mechanism. Book Chapter in Reactive oxygen species (ROS) mechanism and role in health and diseases. Editor : Whilkerson, S. Nova Publisher; pp101-134.

Widowati, W., Widya Janeva, B., Nadya, S., Amalia, A., Arumwardana, S., Kusuma, H. S. W., & Arinta, Y. (2018b). Antioxidant and antiaging activities of Jasminum sambac extract, and its compounds. Journal of Reports in Pharmaceutical Sciences, 7(3):270–285.

Zheng J, Yu X, Maninder M, Xu B. (2018). Total phenolics and antioxidants profiles of commonly consumed edible flowers in China. International Journal of Food Properties,21:1,1524-1540.




DOI: http://dx.doi.org/10.12928/pharmaciana.v10i3.16406

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Pharmaciana
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