Karakter Mutu Simplisia dan Ekstrak Tumbuhan Antidiabetes Lokal dari Banyumas

Authors

  • Dwi Hartanti Universitas Muhammadiyah Purwokerto
  • Shintia Lintang Charisma Universitas Muhammadiyah Purwokerto
  • Hidayah Anisa Fitri Universitas Muhammadiyah Purwokerto
  • Fitriani Fitriani Universitas Muhammadiyah Purwokerto
  • Denia Awanda Putri Universitas Muhammadiyah Purwokerto
  • Jeri Rinawati Universitas Muhammadiyah Purwokerto
  • Widya Agustina Universitas Muhammadiyah Purwokerto
  • Alwani Hamad Universitas Muhammadiyah Purwokerto

DOI:

https://doi.org/10.30595/jrst.v6i2.15545

Keywords:

Catharanthus roseus, Kadar Fenolik Total, Kadar Flavonoid Total, Melia azedarach, Muntingia calabura, Parameter Mutu

Abstract

Daun mindi (Melia azedarach L.), buah kersen (Muntingia calabura L.), serta daun dan bunga tapakdara (Catharanthus roseus (L.) G.Don) digunakan masyarakat Baturraden dan Sumbang (Banyumas) untuk pengobatan tradisional diabetes. Penelitian ini mengkarakterisasi beberapa parameter mutu simplisia dan ekstrak ketiga tumbuhan tersebut.  Simplisia dibuat dari bahan tumbuhan yang dikumpulkan dari tiga desa di wilayah kecamata Baturraden dan Sumbang. Morfologi makroskopik dan mikroskopik, profil kromatografi lapis tipis (KLT), kadar fenolik total, dan kadar flavonoid total simplisia, serta kadar air, kadar abu total, dan kadar abu tidak larut asam ekstrak dianalisis dengan metode standar dalam Farmakope Herbal Indonesia (FHI) 2017. Karakter makroskopik, fragmen diagnostik, dan profil KLT dari simplisia hasil penelitian ini diusulkan untuk menjadi standar dalam memastikan kebenaran identitas simplisia. Kadar fenolik total dan kadar flavonoid total simplisia daun mindi, buah kersen, serta daun dan bunga tapakdara masing-masing sebesar 0,74±0,07 dan 0,99±0,31; 1,62±0,36 dan 1,39±0,11; dan 0,94±0,02 dan 1,98±0,04%. Nilai tersebut diusulkan sebagai standar untuk aspek kandungan masing-masing simplisia. Data kadar air, kadar abu total, dan kadar abu tidak larut asam diusulkan sebagai standar aspek kemurnian dari masing-masing ekstrak.

Author Biography

Dwi Hartanti, Universitas Muhammadiyah Purwokerto

References

Agarwal, M., Rai, V., Khatoon, S., & Mehrotra, S. (2014). Effect of microbial load on therapeutically active constituent glycyrrhizin of Glycyrrhiza glabra L. Indian Journal of Traditional Knowledge, 13(2), 319–324.

Alamgir, A. N. M. (2017). Herbal Drugs: Their Collection, Preservation, and Preparation; Evaluation, Quality Control, and Standardization of Herbal Drugs. In K. D. Rainsford (Ed.), Therapeutic Use of Medicinal Plants and Their Extracts: Volume 1 (Vol. 73, pp. 453–495). Springer International Publishing. https://doi.org/10.1007/978-3-319-63862-1

Das, C., Bose, A., Mallick, S., & Das, D. (2019). Development of standardization parameters of crude drugs used in Ayurvedic Balarista formulation. Oriental Pharmacy and Experimental Medicine, 19, 455–467. https://doi.org/10.1007/s13596-019-00386-w

Ervina, M., Poerwono, H., Widyowati, R., Matsunami, K., & Sukardiman. (2020). Bio-selective hormonal breast cancer cytotoxic and antioxidant potencies of Melia azedarach L. wild type leaves. Biotechnology Reports, 25, e00437. https://doi.org/10.1016/j.btre.2020.e00437

Goboza, M., Meye, M., Aboua, Y. G., & Oguntibeju, O. O. (2020). In vitro antidiabetic and antioxidant effects of different extracts of Catharanthus roseus and its indole alkaloid, vindoline. Molecules, 25(23), 5546. https://doi.org/10.3390/molecules25235546

Indonesian MoH. (2017). Indonesian Herbal Pharmacopeia 2017 (2nd ed.). Ministry of Health Republic of Indonesia.

Kharel, R., & Sharma, K. R. (2020). Evaluation of antioxidant potential and quantitative estimation of phenolic and flavonoid content in some selected Nepalese medicinal plants. Asian Journal of Pharmaceutical and Clinical Research, 13(1), 124–128.

Kumar, S., Bajpai, V., Singh, A., & Kumar, B. (2017). Identification, characterization and distribution of terpene indole alkaloids in ethanolic extracts of Catharanthus roseus using high-performance liquid chromatography/electrospray ionization quadrupole time-of-flight tandem mass spectrometry and the stud. Rapid Communication in Mass Sceptroscopy, 32(4), 319–332. https://doi.org/10.1002/rcm.8037

Kumar, S., Singh, B., & Singh, R. (2022). Catharanthus roseus (L.) G. Don: A review of its ethnobotany, phytochemistry, ethnopharmacology and toxicities. Journal of Ethnopharmacology, 284, 114647. https://doi.org/10.1016/j.jep.2021.114647

Kumazawa, S., Kubota, S., Yamamoto, H., Okamura, N., Sugiyamab, Y., Kobayashia, H., Nakanishi, M., Ohta, T., Sugiyama, Y., Kobayashi, H., Nakanishi, M., & Ohta, T. (2013). Antiangiogenic activity of flavonoids from Melia azedarach. Natural Product Communications, 8(12), 1719–1720. https://doi.org/10.1177/1934578X1300801215

Mahmood, N. D., Nasir, N. L. M., Rofiee, M. S., Tohid, S. F. M., Ching, S. M., Teh, L. K., Salleh, M. Z., & Zakaria, Z. A. (2014). Muntingia calabura: A review of its traditional uses, chemical properties, and pharmacological observations. Pharmaceutical Biology, 52(12), 1598–1623. https://doi.org/10.3109/13880209.2014.908397

Mukhi, S., Bose, A., Panda, P., & Rao, M. M. (2016). Pharmacognostic, physicochemical and chromatographic characterization of Samasharkara Churna. Journal of Ayurveda and Integrative Medicine, 7, 88–99. https://doi.org/10.1016/j.jaim.2015.11.004

Mwamatope, B., Tembo, D., Chikowe, I., Kampira, E., & Nyirenda, C. (2020). Total phenolic contents and antioxidant activity of Senna singueana, Melia azedarach, Moringa oleifera and Lannea discolor herbal plants. Scientific African, 9, e00481. https://doi.org/10.1016/j.sciaf.2020.e00481

Nasution, F., Theanhom, A. A., Unpaprom, Y., Ramaraj, R., Manmai, N., & Chumpookam, J. (2022). Muntingia calabura fruits as sources of bioactive compounds and fermentative ethanol production. Biomass Conversion and Biorefinery. https://doi.org/10.1007/s13399-022-02465-6

Nur, S., Srimayona, W. O., Aswad, M., Yulianti, R., Burhan, A., Aisyah, A. N., Sami, F. J., & Nursamsiar. (2020). Inhibition of tyrosine photodegradation activity of lhyophilisate, extract and fractions of kersen fruit (Muntingia calabura L.) as photoprotective agent. Plant Cell Biotechnology and Molecular Biology, 21(55&56), 68–75.

Pereira, G. A., Arruda, H. S., Morais, D. R. de, Eberlin, M. N., & Pastore, G. M. (2018). Carbohydrates, volatile and phenolic compounds composition, and antioxidant activity of calabura (Muntingia calabura L.) fruit. Food Research International, 108, 264–273. https://doi.org/10.1016/j.foodres.2018.03.046

Rani, J., Kapoor, M., & Kaur, R. (2017). In-vitro anti-bacterial activity and phytochemical screening of crude extracts of Catharanthus roseus L. (G.) Don. Agricultural Science Digest, 37(2), 106–111. https://doi.org/10.18805/asd.v37i2.7983

Simamora, A., Santoso, A. W., Rahayu, I., & Timotius, K. H. (2020). Enzyme inhibitory, antioxidant, and antibacterial activities of ethanol fruit extract of Muntingia calabura Linn. Journal of Herbmed Pharmacology, 9(4), 346–354. https://doi.org/10.34172/jhp.2020.44

Sultana, S., Asif, H. M., Akhtar, N., Waqas, M., & Ur-Rehman, S. (2014). Comprehensive review on ethnobotanical uses, phytochemistry and pharmacological properties of Melia azedarach Linn. Asian Journal of Pharmaceutical Research and Health Care, 6(1), 26–32.

Sultana, S., Khan, M. A., Ahmad, M., Bano, A., Zafar, M., & Shinwari, Z. K. (2011). Authentication of herbal medicine neem (Azadirachta indica A.Juss) by using taxonomic and pharmacognostic techniques. Pakistan Journal of Botany, 43, 141–150.

Tauheed, A., Hamiduddin, Khanam, S., Ali, M. A., & Zaigham, M. (2017). Comparative physicochemical evaluation of kharekhasak (Tribulus terrestris Linn.) before and after mudabbar process. Pharmacognosy Research, 9(4), 384–389. https://doi.org/10.4103/pr.pr_16_17

Utaminingrum, W., Nofrianti, & Hartanti, D. (2020). Ethnomedicinal survey of traditional antidiabetic plants in Baturraden and Sumbang. Medisains Jurnal Ilmiah Ilmu-Ilmu Kesehatan, 18(2). https://doi.org/10.30595/medisains.v18i2.7169

Zeng, J., Ma, R.-J., Wang, L., Zhang, S.-N., Song, H.-Z., Yang, Y., & Tan, Q.-G. (2019). Chemical constituents from the leaves of Melia azedarach. Natural Product Research, 33(19), 2860–2863. https://doi.org/10.1080/14786419.2018.1501690

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Published

2022-11-25

How to Cite

Hartanti, D., Charisma, S. L., Fitri, H. A., Fitriani, F., Putri, D. A., Rinawati, J., … Hamad, A. (2022). Karakter Mutu Simplisia dan Ekstrak Tumbuhan Antidiabetes Lokal dari Banyumas. JRST (Jurnal Riset Sains Dan Teknologi), 6(2), 227–236. https://doi.org/10.30595/jrst.v6i2.15545

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