Apoptotic with Double-Staining Test, P53, and Cyclooxygenase-2 to Proliferation Colon Cancer Cell (WiDr) of Dolichol in Three Mangrove Leaves
DOI:
https://doi.org/10.3889/oamjms.2020.3289Keywords:
Polyisoprenoid, Dolichol, Anticancer, Ceriops tagal, Nypa fruticans, Rhizophora mucronataAbstract
BACKGROUND: Mangroves secondary metabolites are mostly consisting of sterols, ubiquinones, isoprenoids, and polyisoprenoids. Polyisoprenoid is divided into two types, namely, polyprenol and dolichol, which has been reported to have biological and pharmacological activities.
AIM: This research was aimed to analyze apoptosis 48 h with double staining and immunocytochemistry (ICC) 48 h of P53 and cyclooxygenase-2 (COX-2) gene expression from chemical constituents of dolichol in three mangrove leaves of Ceriops tagal, Nypa fruticans, and Rhizophora mucronata.
METHODS: Apoptosis with the double-staining method was employed to analyze the genes expression in growth and development of cancer cells, P53, and COX-2 with ICC and flow cytometry method. The data were statistically analyzed using one-way ANOVA parametric statistical analysis followed by Duncan’s test.
RESULTS: The result revealed that the increased apoptosis of samples C. tagal was 70% fluorescence orange, while N. fruticans and R. mucronata were 35% and 30% fluorescence orange, respectively. However, it was compared with the positive control; it produced orange fluorescent as much as 75%, suggesting that C. tagal have a position similar to 5-FU. Predominance dolichol in N. fruticans and C. tagal leaves led the expression gene of p53 to have 1.57% M1 phase, indicating the domination in G0-G1 phase (70–80%). Inhibit the expression for 48 h in p53 and COX-2 showing that n-hexane extract of C. tagal had the most percentage (80.733 ± 0.11%) to upregulate the p53 and less percentage (20.16 ± 1.19%) to downregulate the COX-2, indicating positive extract belong to N. fruticans and R. mucronata leaves.
CONCLUSION: The present study confirmed the pharmacological properties of dolichol from three mangrove leaves as an anticancer of tumor suppressor genes and significantly proliferated of cancer cell growth from mangrove leaves.
Downloads
Metrics
Plum Analytics Artifact Widget Block
References
Sari DP, Basyuni M, Hasibuan PA, Sumardi S, Nuryawan A, Wati R. Cytotoxic and antiproliferative activity of polyisoprenoids in seventeen mangroves species against WiDr colon cancer cells. Asian Pac J Cancer Prev. 2018;19(12):3393-400. https://doi.org/10.31557/apjcp.2018.19.12.3393 PMid:30583345
Tao R, Wang C, Ye J, Zhou H, Chen H. Polyprenols of Ginkgo biloba enhance antibacterial activity of five classes of antibiotics. Biomed Res Int. 2016;2016:4191938. https://doi.org/10.1155/2016/4191938 PMid:27642597
Sari DP, Basyuni M, PAZ H, Wati R. Cytotoxic effect of polyisoprenoids from Rhizophora mucronata and Ceriops tagal leaves against WiDr colon cancer cell lines. Sains Malays. 2018;47(9):1953-9. https://doi.org/10.17576/jsm-2018-4709-02
Basyuni M, Sagami H, Baba S, Oku H. Distribution and occurrence of new polyprenyl acetone and other polyisoprenoids in Indonesian mangroves. Dendrobiology. 2017;78:18-31. https://doi.org/10.12657/denbio.078.003
Illian DN, Basyuni M, Wati R, Hasibuan PA. Polyisoprenoids from Avicennia marina and Avicennia lanata inhibit WiDr cells proliferation. Pharmacogn Mag. 2018;14(58):513-8. https://doi.org/10.4103/pm.pm_201_18
Cancer Chemoprevention Research Centre. Protokol Preparasi Sampel. Continuing Care Retirement Communities; 2013. Available from: http://www.ccrc.farmasi.ugm.ac.id/wp- content/uploads/03.009.-Preparasi-sampel.pdf. [Last accessed on 2019 May 05]. https://doi.org/10.18411/a-2017-023
Kurisaki A, Sagami H, Ogura K. Distribution of polyprenols and dolichols in soybean plant. Phytochemistry. 1997;44(1):45-50. https://doi.org/10.1016/s0031-9422(96)00400-1
Sagami H, Kurisaki A, Ogura K, Chojnacki T. Separation of dolichol from dehydrodolichol by a simple two-plate thin-layer chromatography. J Lipid Res. 1992;33(12):1857-61. PMid:1479294
Cancer Chemoprevention Research Centre. Protokol Double Staining. Continuing Care Retirement Communities; 2013. Available from: http://www.ccrc.farmasi.ugm.ac.id/wp- content/uploads/03.011.-Double-Staining.pdf. [Last accessed on 2019 May 09]. https://doi.org/10.18411/a-2017-023
Galgano MT, Castle PE, Atkins KA, Brix WK, Nassau SR, Stoler MH. Using biomarkers as objective standards in the diagnosis of cervical biopsies. Am J Surg Pathol. 2010;34:1077-87. https://doi.org/10.1097/pas.0b013e3181e8b2c4 PMid:20661011
Cancer Chemoprevention Research Centre. Protokol Siklus Sel. Continuing Care Retirement Communities; 2013. Available from: http://www.ccrc.farmasi.ugm.ac.id/wp- content/uploads/03.014.02-flowcytometry.pdf. [Last accessed on 2019 May 27]. https://doi.org/10.18411/a-2017-023
Siao AC, Hou CW, Kao YH, Jeng KC. Effect of sesamin on apoptosis and cell cycle arrest in human breast cancer mcf-7 cells. Asian Pac J Cancer Prev. 2015;16:3779-83. https://doi.org/10.7314/apjcp.2015.16.9.3779 PMid:25987037
Hu KQ, Yu CH, Mineyama Y, McCracken JD, Hillebrand DJ, Hasan M. Inhibited proliferation of cyclooxygenase-2 expressing human hepatoma cells by NS-398, a selective COX-2 inhibitor. Int J Oncol. 2003;22(4):757-63. https://doi.org/10.3892/ijo.22.4.757 PMid:12632065
Basyuni M, Sagami H, Baba S, Iwasaki H, Oku H. Diversity of A - Basic Sciences Pathology 42 https://www.id-press.eu/mjms/index polyisoprenoid in ten Okinawan mangroves. Dendrobiology. 2016;75:167-75. https://doi.org/10.12657/denbio.075.016
Levine AJ, Chang A, Dittmer D, Notterman DA, Silver A, Thorn K, et al. The p53 tumor suppressor gene. J Lab Clin Med. 1994;123(6):817-23. PMid:8201258
Bai L, Wang S. Targeting apoptosis pathways for new cancer therapeutics. Annu Rev Med. 2014;65:139-55. https://doi.org/10.1146/annurev-med-010713-141310 PMid:24188661
Dannenberg AJ, Zakim D. Chemoprevention of colorectal cancer through inhibition of cyclooxygenase-2. Semin Oncol. 1999;26(5):499-504. PMid:10528897
Fosslien E. Review: Molecular pathology of cyclooxygenase-2 in cancer-induced angiogenesis. Ann Clin Lab Sci. 2001;31(4):325-48. PMid:11688844
Leahy JG, Colwell RR. Microbial degradation of hydrocarbons in the environment. Microbiol Rev. 1990;54(3):305-15. PMid:2215423
Cree IA. Cancer Cell Culture: Methods and Protocols. Totowa, New Jersey: Springer Humana; 2011.
Ziche M, Jones J, Gullino PM. Role of prostaglandin E1 and copper in angiogenesis. J Natl Cancer Inst. 1982;69(2):475-82. PMid:6180207
Form DM, Auerbach R. PGE2 and angiogenesis. Proc Soc Exp Biol Med. 1983;172(2):214-8. PMid:6572402
Peterson HI. Tumor angiogenesis inhibition by prostaglandin synthetase inhibitors. Anticancer Res. 1986;6(2):251-3. PMid:2423014
Peterson HI. Effects of prostaglandin synthesis inhibitors on tumor growth and vascularization. Experimental studies in the rat. Invasion Metastasis. 1983;3(3):151-9. PMid:6203870
Brunda MJ, Herberman RB, Holden HT. Inhibition of murine natural killer cell activity by prostaglandins. J Immunol. 1980;124(6):2682-7. PMid:6154736
Kubota Y, Sunouchi K, Ono M, Sawada T, Muto T. Local immunity and metastasis of colorectal carcinoma. Dis Colon Rectum. 1992;35(7):645-50. https://doi.org/10.1007/bf02053754 PMid:1611952
Zhu J, Zhang C, Qing Y, Cheng Y, Jiang X, Li M, et al. Genistein induces apoptosis by stabilizing intracellular p53 protein through an APE1-mediated pathway. Free Radic Biol Med. 2015;86:209-18. https://doi.org/10.1016/j.freeradbiomed.2015.05.030 PMid:26032169
Zambetti GP, Bargonetti J, Walker K, Prives C, Levine AJ. Wild-type p53 mediates positive regulation of gene expression through a specific DNA sequence element. Genes Dev. 1992;6(7):1143-52. https://doi.org/10.1101/gad.6.7.1143 PMid:1628822
Basyuni M, Ramayani RR, Hayullah HH, Prayunita PP, Hamka HH. Growth of salt-secretor and non-salt secretor mangrove seedlings with varying salinity and their relations to habitat zonation. IOP Conf Ser. 2019;236:1-7. https://doi.org/10.1088/1755-1315/236/1/012050
Skoczylas E, Swiezewska E, Chojnacki T, Tanaka Y. Long-chain rubber-like polyisoprenoid alcohols in leaves of Lumnitzera racemosa. Plant Physiol Biochem. 1994;32:843.
Downloads
Published
How to Cite
License
Copyright (c) 2020 Meighina Atika Istiqomah, Mohammad Basyuni, Poppy Anjelisa Zaitun Hasibuan (Author)

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.
This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 International License (CC BY-NC 4.0)
