A Antioxidant Activity And Determination Of Flavonoid Content Of Ethanol Extract Red Betel Leaf (Piper crocatum Ruiz & Pav) With Variation Of Particle Size Simplisia Powder

Authors

  • Rissa Oktavia a:1:{s:5:"en_US";s:22:"universitas sari mulia";}
  • Rohama Rohama Sari Mulia University
  • Rina Saputri Sari Mulia University

DOI:

https://doi.org/10.33859/jpcs.v4i1.422

Abstract

Background: Red betel (Piper crocatum Ruiz & Pav) is a medicinal plant that is used empirically by the people of Tehang, Central Kalimantan for wound healing. The ability of red betel leaves to heal wounds is associated with the anti-inflammatory properties of the secondary metabolites of the flavonoid class contained therein which also have a role as a source of antioxidants. Particle size will affect the amount of bioactive compounds in an extract.

Objective: To determine the difference in antioxidant activity and flavonoid content ethanol extract of red betel leaf in a variation of particle size simplisia powder.

Methods: True experimental quantitative research which divided into two experimental groups, namely red betel leaf extract with a mesh particle size of 40/60 and 60/80. Testing of antioxidant activity with the DPPH method and determining the levels of flavonoids with the UV-Vis Spectrophotometry method.

Results: The results of antioxidant activity based on IC50 values at 40/60 and 60/80 mesh particle sizes is 5.96 ppm and 2.74 ppm. The results of flavonoid content determination at 40/60 and 60/80 mesh particle size is 1.448 mg QAE/g and 3.5 mg QAE/g. Statistical analysis with the Mann Whitney test showed a significant difference (p value 0.025 <0.05).

Conclusion: There is a significant difference with the variation of particle size on the antioxidant activity and levels of flavonoids. The highest antioxidant activity and flavonoid levels were observed in extracts with a mesh particle size of 60/80. The smaller the particle size, the stronger the antioxidants and the higher the levels of flavonoids.

References

Aisyiyah, N. M., Siregar, K. A. A. K., & Kustiawan, P. M. (2021). Review: Potential Of Red Betel Leaves (Piper Crocatum) As Anti-Inflammatory In Rheumatoid Arthritis. Jurnal Farmasi Sains Dan Praktis, 7(2), 197–206. https://doi.org/10.31603/pharmacy.v7i2.5283

Ardyanti, N. K. N. T., Suhendra, L., & Ganda Puta, G. P. (2020). Pengaruh Ukuran Partikel dan Lama Maserasi terhadap Karakteristik Ekstrak Virgin Coconut Oil Wortel (Daucus carota L.) sebagai Pewarna Alami. Jurnal Rekayasa Dan Manajemen Agroindustri, 8(3), 423. https://doi.org/10.24843/jrma.2020.v08.i03.p11

Cahyono, B., Prihatini, C. S., Suzery, M., & Bima, D. N. (2021). Penentuan Aktivitas Antioksidan Senyawa Kuersetin dan Ekstrak Lengkuas Menggunakan HPLC dan UV-Vis. Alchemy, 8(2), 24–32. https://doi.org/10.18860/al.v8i2.10594

Erlidawati, Safrida, & Mukhlis. (2018). Potensi Antioksidan Sebagai Antidiabetes. Syiah Kuala University Press.

Flieger, J., & Flieger, M. (2020). The [DPPH•/DPPH-H]-HPLC-DAD Method on Tracking the Antioxidant Activity of Pure Antioxidants and Goutweed (Aegopodium podagraria L.) Hydroalcoholic Extracts. Molecules, 25, 2–17.

Hartanto, H. (2018). Uji Aktivitas Antioksidan Dengan Metode Dpph Ekstrak Daun Katuk (Sauropus Androgynus (L.) Merr) Serta Uji Stabilitas Pengaruh Konsentrasi Emulgator Asam Stearat Dan Trietanolamin Terhadap Formulasi Krim Antioxidant Activities Test With Dpph Method Katuk L. Indonesia Natural Research Pharmaceutical Journal, 3(1), 2502–8421.

Hussain, K., Qamar, A., Bukhari, N. I., Hussain, A., Shehzadi, N., Qamar, S., & Parveen, S. (2019). Impact of particle-size reduction on the solubility and antidiabetic activity of extracts of leaves of Vinca rosea. Turkish Journal of Pharmaceutical Sciences, 16(3), 335–339. https://doi.org/10.4274/tjps.galenos.2018.02419

Indriyani. (2021). Kandungan Senyawa Bioaktif Teh Herbal Daun Kenikir. 9(1), 109–118.

Januarti, I. B., Wijayanti, R., Wahyuningsih, S., & Nisa, Z. (2019). Potensi Ekstrak Terpurifikasi Daun Sirih Merah (Piper crocatum Ruiz &Pav) Sebagai Antioksidan Dan Antibakteri. JPSCR : Journal of Pharmaceutical Science and Clinical Research, 4(2), 60. https://doi.org/10.20961/jpscr.v4i2.27206

Kementerian Kesehatan Republik Indonesia. (2017). Farmakope Herbal Indonesia Edisi II.

Molyneux, P. (2004). The Use of the Stable Free Radical Diphenylpicryl-hydrazyl (DPPH) for Estimating Antioxidant Activity. Songklanakarin Journal of Science and Technology, 26(December 2003), 211–219. https://doi.org/10.1287/isre.6.2.144

Nugroho, A. (2017). Buku Ajar : Teknologi Bahan Alam. Lambung Mangkurat University Press.

Nur, S., Sami, F. J., Awaluddin, A., & Afsari, M. I. A. (2019). Korelasi Antara Kadar Total Flavonoid dan Fenolik dari Ekstrak dan Fraksi Daun Jati Putih (Gmelina Arborea Roxb.) Terhadap Aktivitas Antioksidan. Jurnal Farmasi Galenika (Galenika Journal of Pharmacy) (e-Journal), 5(1), 33–42. https://doi.org/10.22487/j24428744.2019.v5.i1.12034

Prasedya, E. S., Frediansyah, A., Martyasari, N. W. R., Ilhami, B. K., Abidin, A. S., Padmi, H., Fahrurrozi, Juanssilfero, A. B., Widyastuti, S., & Sunarwidhi, A. L. (2021). Effect of particle size on phytochemical composition and antioxidant properties of Sargassum cristaefolium ethanol extract. Scientific Reports, 11(1), 1–9. https://doi.org/10.1038/s41598-021-95769-y

Prayitno, S. A., Kusnadi, J., & Murtini, E. S. (2018). Karakteristik (Total Flavonoid, Total Fenol, Aktivitas Antioksidan) Ekstrak Serbuk Daun Sirih Merah (Piper crocatum Ruiz & pav.). FOODSCITECH, 1(2), 26–34.

Sukmilawati, N. (2021). Skrining Fitokimia dan Aktivitas Antioksidan Ekstrak Akar Jeruk Nipis (Citrus Aurantifolia (Cristm.) Swingle) dengan Metode DPPH. Repository UNISM.

Sumantining, L. P. A., Ganda Putra, G. P., & Suhendra, L. (2022). Pengaruh Jenis Pelarut dan Ukuran Partikel pada Ekstraksi Kulit Buah Kakao (Theobroma cacao L.) menggunakan Metode Microwave Assisted Extraction (MAE) terhadap Karakteristik Ekstrak. Jurnal Rekayasa Dan Manajemen Agroindustri, 10(1), 124. https://doi.org/10.24843/jrma.2022.v10.i01.p12

Susiloningrum, D., & Sari, D. E. M. (2021). Uji Aktivitas Antioksidan Dan Penetapan Kadar Flavonoid Total Ekstrak Temu Mangga (Curcuma mangga Valeton & Zijp ) Dengan Variasi Konsentrasi Pelarut. Cendekia Journal of Pharmacy STIKES Cendekia Utama Kudus P-ISSN, 5(2), 117–127.

Suwartini, L., Yanti, N., & Efrinalia, W. (2021). Optimasi kondisi pengujian senyawa Flavonoid Total di dalam ekstrak tanaman sebagai pengayaan bahan ajar praktikum Makromolekul dan Hasil Alam di Laboratorium Kimia Organik. Jurnal Penelitian Sains, 23(1), 28. https://doi.org/10.56064/jps.v23i1.621

Tonahi, J. M. M., Nuryanti, S., & Suherman. (2014). Antioksidan dari Daun Sirih Merah. J. Akad. Kim, 3(August), 158–164.

Downloads

Published

2023-11-30

How to Cite

Oktavia, R., Rohama, R., & Saputri, R. (2023). A Antioxidant Activity And Determination Of Flavonoid Content Of Ethanol Extract Red Betel Leaf (Piper crocatum Ruiz & Pav) With Variation Of Particle Size Simplisia Powder. Journal Pharmaceutical Care and Sciences, 4(1), 25–33. https://doi.org/10.33859/jpcs.v4i1.422

Most read articles by the same author(s)

1 2 > >>