Pengaruh Proses Pembuatan Tisane “Wedang Uwuh” terhadap Kandungan Polifenol dan Aktifitas Penangkap Radikal Bebasnya

Authors

DOI:

https://doi.org/10.30595/pharmacy.v19i1.12827

Keywords:

DPPH, flavonoid, senyawa fenolik, wedang uwuh

Abstract

Tisane merupakan suatu istilah yang merujuk pada teh herbal, yaitu sediaan teh yang terbuat dari satu bagian atau campuran simplisia yang umumnya dibuat dengan cara diseduh dengan air panas ataupun direbus sebagai minuman kesehatan atau untuk pengobatan. Berdasarkan penelitan yang telah dilakukan, proses preparasi yang berbeda dalam pembuatan beberapa jenis tisane dapat mempengaruhi kandungan senyawa aktif dan aktifitas antioksidannya. Wedang uwuh merupakan salah satu jenis tisane asli dari Indonesia yang telah diketahui kaya akan rempah dan senyawa antioksidan. Penelitian ini bertujuan untuk mengetahui pengaruh beberapa proses preparasi tisane wedang uwuh terhadap kandungan senyawa polifenolnya, serta aktifitas penangkap radikal bebasnya. Uji kandungan senyawa aktif dilakukan menggunakan metode Folin-Ciocalteau dan metode kolorimetri AlCl3. Sedangkan uji aktifitas penangkap radikal bebasnya menggunakan metode DPPH. Berdasarkan data yang diperoleh diketahui bahwa preparasi tisane dengan metode panas dapat meningkatkan kandungan senyawa polifenolnya. Namun tidak terdapat korelasi yang positif antara tingginya kandungan senyawa polifenol dalam tisane uji dengan aktifitas penangkap radikal bebasnya.

Author Biography

Hidayah Anisa Fitri, Universitas Muhammadiyah Purwokerto

Pharmaceutical Biology, lecturer

References

Asimi OH, Sahu NP, Pal AK. 2013, Antioxidant capacity of crude water and ethyl acetate extracts of some Indian spices and their antimicrobial activity against Vibrio vulnificus and Micrococcus luteus, Journal of Medicinal Plants Research. 7(26): 1907-1915.

Chang CC. Yang MH. Wen HM, Chern JC. 2002. Estimation of total flavonoid content in propolis by two complementary colometric methods. Journal of Food and Drug Analysis. 10. https://doi.org/10.38212/2224- 6614.2748.

Chiang SH, Tsou MF, Chang CY, Chen CW. 2020. Physicochemical characteristics, sensory quality, and antioxidant properties of Paochung tea infusion brewed in cold water. International Journal of Food Properties. 23: 1611–1623. https://doi.org/10.1080/10942912.2020.1820519.

Colon M, Nerín C. 2016. Synergistic, antagonistic and additive interactions of green tea polyphenols. European Food Research and Technology. 242: 211–220.

Couzinet-Mossion A, Balayssac S, Gilard V, Malet-Martino M, Potin-Gautier M, Behra P. 2010. Interaction mechanisms between caffeine and polyphenols in infusions of Camellia sinensis leaves. Food Chemistry. 119(1): 173-181.

Damiani E, Carloni P, Rocchetti G, Senizza B, Tiano L, Joubert E, de Beer D, Lucini L. 2019. Impact of cold versus hot brewing on the phenolic profile and antioxidant capacity of rooibos (Aspalathus linearis) herbal tea. Antioxidants. 8. https://doi.org/10.3390/antiox8100499.

Deepa G, Ayesha S, Nishtha K, Thankamani M. 2013. Comparative evaluation of various total antioxidant capacity assays applied to phytochemical compounds of Indian culinary spices. International Food Research Journal. 20(4): 1711-1716.

Hardest J. 2010. Spectrophotometry and the Beer-Lambert Law 6. http://vfsilesieux.free.fr/1Seuro/BeerLaw.pdf diunduh pada 11/1/2021.

Jager S, Beffert M, Hoppe K, Nadberezny D, Frank B, Scheffler A. 2010. Preparation of herbal tea as infusion or by maceration at room temperature using mistletoe tea as an example. http://dx.doi.org/10.3797/scipharm.1006-06.

Kedare SB, Singh RP. 2011. Genesis and development of DPPH method of antioxidant assay. Journal of Food Science and Technology. 48, 412–422. https://doi.org/10.1007/s13197-011-0251-1.

Kim IS, Yang MR, Lee OH, Kang SK. 2011, Antioxidant activities of hot water extracts from various spices. International Journal of Molecular Sciences. 12: 4120-4131.

Lantano C, Rinaldi M, Cavazza A, Barbanti D, Corradini C. 2015. Effects of alternative steeping methods on composition, antioxidant property and colour of green, black and oolong tea infusions. Journal of Food Science and Technology. 52: 8276–8283. https://doi.org/10.1007/s13197-015-1971-4.

Magammana C, Rock C, Wang L, Gray V. 2019. A comparison of the polyphenolic and free radical scavenging activity of cold brew versus hot brew black tea (Camellia sinensis, Theaceae). Journal of Food Research. 8: 35. https://doi.org/10.5539/jfr.v8n3p35

Munisa A, Wresdiyati T, Kusumorini N,Manalu W. 2012. Antioksidant activity of clove leaf extract.Jurnal Veteriner. 13(3): 272-277.

Naczk M, Shahidi F. 2004. Extraction and analysis of phenolics in food. Journal of Chromatography A. 1054: 95–111. https://doi.org/10.1016/j.chroma.2004.08.059.

Palimbong S, Mangalik G, Mikasari AL. 2020. Pengaruh lama perebusan terhadap daya hambat radikal bebas, viskositas dan sensori sirup secang (Caesalpinia sappan L.). eknologi Pangan: Media Informasi dan Komunikasi Ilmiah Teknologi Pertanian. 11: 7–15. https://doi.org/10.35891/tp.v11i1.1786

Phan MAT. Paterson J. Bucknall M, Arcot J. 2018. Interactions between phytochemicals from fruits and vegetables: Effects on bioactivities and bioavailability. Critical Reviews in Food Science and Nutrition. 58: 1310–1329. https://doi.org/10.1080/10408398.2016.1254595.

Ravikumar C. 2014. Review on herbal teas, Journal of Pharmaceutical Sciences and Research. 6(5): 236-238.

Rezaeizadeh A, Zuki ABZ, Abdollahi M, Goh YM, Noordin MM, Hamid M, Azmi TI. 2011. Determination of antioxidant activity in methanolic and cloroformic extract of Momordica charantia, African Journal of Biotechnology. 10(24): 4932-4940.

Prakash RSAPJ. 2010. Chemical composition and antioxidant properties of ginger root (Zingiber officinale). Journal of Medicinal Plants Research. 4. 2674–2679. https://doi.org/10.5897/JMPR09.464.

Saleh FA, Kamel SA. 2011. Antioxidant and antibacterial activities of clove and cardamom extracts. Bulletin of the National Nutrition Institute of the Arab Republic of Egypt. 201(39): 35-57.

Sari R, Suhartati S. 2016. Secang (Caesalpinia sappan L.): Tumbuhan herbal kaya antioksidan. Buletin Eboni. 13: 57–67. https://doi.org/10.20886/buleboni.5077.

Shi J, Yu J, Pohorly J, Young J, Bryan M, Wu Y. 2002. Optimization of the extraction of polyphenols from grape seed meal by aqueous ethanol solution. Journal of Food, Agriculture & Environment (JFAE). 1(2): 42-47.

Silva EM, Souza JNS, Rogez H, Rees JF, Larondelle Y. 2007. Antioxidant activities and polyphenolic contents of fifteen selected plant species from the Amazonian region. Food Chemistry. 101: 1012–1018. https://doi.org/10.1016/j.foodchem.2006.02.055.

Sinsawasdi VK. 2012. Sappan wood water extract: evaluation of color properties, functional properties, and toxicity. Dissertation. University of Florida.

Yin J, Becker E, Andersen M, Skibsted L. 2012. Green tea extract as food antioxidant - Synergism and antagonism with α-tocopherol in vegetable oils and their colloidal systems. Food Chemisty. 135:2195–2202.

Wang S, Meckling K, Marcone M, Kakuda Y, Tsao R. 2011. Synergistic, additive, and antagonistic effects of food mixtures on total antioxidant capacities. Journal of Agricultural and Food Chemistry. 59: 960–968.

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Published

2022-08-26

How to Cite

Fitri, H. A., & Pamungkasih, C. O. (2022). Pengaruh Proses Pembuatan Tisane “Wedang Uwuh” terhadap Kandungan Polifenol dan Aktifitas Penangkap Radikal Bebasnya. PHARMACY: Jurnal Farmasi Indonesia (Pharmaceutical Journal of Indonesia), 19(1), 108–121. https://doi.org/10.30595/pharmacy.v19i1.12827