Profil dan Potensi Antikanker Ekstrak Etanol 96% Temu Giring (Curcuma heyneana) Pada Sel MCF-7

Misgiati Misgiati, Andini Andini, Anggraeni In Oktavia, A’liyatur Rosyidah

Abstract


The use of natural ingredients for cancer treatment is something that needs to be considered to obtain treatment according to the right molecular target cells with high selectivity with minimal side effects. Temu giring (Curcuma heyneana) has the highest antioxidant activity among the rhizome groups; the content of secondary metabolites is polyphenols and flavonoids. There was a correlation between antioxidant activity and cancer activity. The aim of this study was to examine the profile and anticancer activity of MCF-7 cells treated with a 96% ethanol extract of temu giring. Extraction using the maceration method. The profile of temu giring extract uses chemical reactions and thin layer chromatography. Anticancer testing using the Microculture Tetrazolium Technique assay method. Testing using MCF-7 cells with extract concentrations of 400µL, 200µL, 100µL, 50µL, and 25µL. Extract yield: 5.17%. Secondary metabolites in turmeric extract are flavonoids, terpenoids, polyphenols, and anthraquinones. The metabolites have the ability to inhibit MCF-7 cells. The anticancer potential of MCF-7 cells with IC50 60.38±9.03µL (strong cytotoxicity).

Keywords


Profile; Anticancer; Temu Giring (Curcuma heyneana); MCF-7 cell

Full Text:

PDF

References


A. cancer Society, “Breast cancer: key statistic of breast cancer.” [Online]. Available: https://www.cancer.org

D. S. Yosephine Sri Wulan Manuhara, Sugiharto, Alfinda Novi Kristanti, Nanik Siti Aminah, Anjar Tri Wibowo, Andika Pramudya, Yohanes Kartjito Putro, “Aktivitas Antioksidan, Kadar Total Fenol, Flavonoid dan Mineral dalam Rhizoma Berbagai Tanaman Herbal Indonesia,” Artikel Ilmiah Populer, Universitas Airlangga. [Online]. Available: https://unair.ac.id/aktivitas-antioksidan-kadar-total-fenol-flavonoid-dan-mineral-dalam-rhizoma-berbagai-tanaman-herbal-indonesia/

M. S. Christopher Filando Santoso, Dr. rer. nat. apt. Adam Hermawan, M.Sc ; Prof. Dr. apt. Edy Meiyanto, “POTENSI RIMPANG TEMU GIRING (Curcuma heyneana Val. & Zijp) SEBAGAI AGEN KEMOPREVENTIF PADA KANKER HATI MENGGUNAKAN MODEL SEL JHH-4.” [Online]. Available: https://etd.repository.ugm.ac.id/penelitian/detail/225225

A. H. Hidayah, A. Fitriyani, K. Sari, and M. M. A, “Hubungan antara Aktivitas Antioksidan dan Antikanker,” J. Ilm. Ilmu Kesehat. dan Kedokt., vol. 1, no. 3, pp. 128–133, 2023.

J. B. Harborne, Metode Fitokimia, Penuntun Cara Modern Menganalisa Tumbuhan. (Edisi II). Bandung: Penerbit ITB, 1987.

et al Riss TL, Moravec RA, Niles AL, Cell Viability Assays. 2004.

L. Yustin and E. Wijayanti, “Aktivitas Antioksidan Sari Rimpang Temu Giring (Curcuma heyneana) Terfermentasi Lactobacillus bulgaricus,” JC-T (Journal Cis-Trans) J. Kim. dan Ter., vol. 2, no. 1, pp. 1–5, 2018, doi: 10.17977/um026v2i12018p001.

Fitrah Asma Ulhusna, “The PROFIL FITOKIMIA DAN AKTIVITAS ANTIOKSIDAN EKSTRAK AIR DAUN Tegetes erecta L,” J. Jeumpa, vol. 9, no. 1, pp. 690–694, 2022, doi: 10.33059/jj.v9i1.5641.

E. Murelina and E. Wijayanti, “Perbandingan Kadar Fenolik Total Sari Rimpang Temu Giring (Curcuma heyneana) Segar dan Terfermentasi,” JC-T (Journal Cis-Trans) J. Kim. dan Ter., vol. 2, no. 2, pp. 20–24, 2018, doi: 10.17977/um026v2i22018p020.

K. M. I. Kusumawatia, K. O Kurniawan, S. Rullyansyah, T.A. Prijo, R. Widyowati R, J. Ekowati, E.P. Hestianah, S. Maat, “Anti-aging properties of Curcuma heyneana Valeton & Zipj: a scientific approach to its use in Javanese tradition,” , J. Ethnopharmacol, vol. 225, pp. 64–70, 2018, [Online]. Available: https://doi.org/10.1016/j.jep.2018.06.038

E. B. Susila, “Uji Sitotoksisitas Obat dan Bahan Kedokteran Berbasis Kultur Sel sebagai Layanan Unggulan Pusvetma,” Pusvetma. Accessed: Nov. 04, 2024. [Online]. Available: https://pusvetma.ditjenpkh.pertanian.go.id/main.php?page=detail_berita&id=243#:~:text=Metode MTT didasarkan pada pengukuran,dibandingkan dengan sel fibroblas manusia.

M. Aouali, N., Morjani, H., Trussardi, A., Soma, E., Giroux, B., and Manfait, “Enhanced Cytotoxicity and Nuclear Accumulation of Doxorubicin-loaded Nanospheres in Human Breast Cancer MCF-7 Cells Expressing MRP1,” Int. J. Oncol., vol. 23, pp. 1195–1201, 2003, [Online]. Available: https://pubmed.ncbi.nlm.nih.gov/12964004/

P. A. Luigi Zampieri , Pepita Bianchi, Paul Ruff, “Differential modulation by estradiol of P-glycoprotein drug resistance protein expression in cultured MCF7 and T47D breast cancer cells,” Anticancer Res, vol. 22, no. 4, pp. 2253–2259, 2002, [Online]. Available: https://pubmed.ncbi.nlm.nih.gov/12174911/

N. Weerapreeyakul, A. Nonpunya, S. Barusrux, T. Thitimetharoch, and B. Sripanidkulchai, “Evaluation of the anticancer potential of six herbs against a hepatoma cell line,” Chinese Med. (United Kingdom), vol. 7, Jun. 2012, doi: 10.1186/1749-8546-7-15.

D. M. Kopustinskiene, V. Jakstas, A. Savickas, and J. Bernatoniene, “Flavonoids as anticancer agents,” Nutrients, vol. 12, no. 2, pp. 1–25, 2020, doi: 10.3390/nu12020457.

F. C. F. de Luna, W. A. S. Ferreira, S. M. M. Casseb, and E. H. C. de Oliveira, “Anticancer Potential of Flavonoids: An Overview with an Emphasis on Tangeretin,” Pharmaceuticals, vol. 16, no. 9, 2023, doi: 10.3390/ph16091229.

A. A. Dayem, H. Y. Choi, G. M. Yang, K. Kim, S. K. Saha, and S. G. Cho, “The anti-cancer effect of polyphenols against breast cancer and cancer stem cells: Molecular mechanisms,” Nutrients, vol. 8, no. 9, 2016, doi: 10.3390/nu8090581.

M. Misgiati, A. Widyawaruyanti, and S. J. Raharjo, “Ergosterol isolated from Agaricus blazei Murill n-hexane extracts as potential anticancer MCF-7 activity,” Pharmacogn. J., vol. 13, no. 2, pp. 418–426, Mar. 2021, doi: 10.5530/pj.2021.13.53.

Misgiati et al., “The anticancer and antioxidant potential of local sea cucumber Holothuria edulis, an ecology balancer of Labuan Bajo marine ecosystem,” Case Stud. Chem. Environ. Eng., vol. 9, no. November 2023, p. 100625, 2024, doi: 10.1016/j.cscee.2024.100625.

M. S. Malik et al., “Journey of anthraquinones as anticancer agents-a systematic review of recent literature,” RSC Adv., vol. 11, no. 57, pp. 35806–35827, 2021, doi: 10.1039/d1ra05686g.




DOI: https://doi.org/10.37311/ijpe.v4i3.28163

Refbacks

  • There are currently no refbacks.


Copyright (c) 2024 Misgiati Misgiati

Creative Commons License
Indonesian Journal of Pharmaceutical Education is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License.
slot gacor slot gacor hari ini slot gacor 2025 demo slot pg slot gacor slot gacor