用户名: 密码: 验证码:
Gamma-tocotrienol and hydroxy-chavicol synergistically inhibits growth and induces apoptosis of human glioma cells
详细信息    查看全文
  • 作者:Amirah Abdul Rahman ; A Rahman A Jamal…
  • 关键词:Gamma ; tocotrienol ; Hydroxy ; chavicol ; Synergism ; Cytotoxicity ; Apoptosis ; Glioma
  • 刊名:BMC Complementary and Alternative Medicine
  • 出版年:2014
  • 出版时间:December 2014
  • 年:2014
  • 卷:14
  • 期:1
  • 全文大小:1,910 KB
  • 参考文献:1. Furnari, FB, Fenton, T, Bachoo, RM, Mukasa, A, Stommel, JM, Stegh, A, Hahn, WC, Ligon, KL, Louis, DN, Brennan, C, Chin, L, DePinho, RA, Cavenee, WK (2007) Malignant astrocytic glioma: genetics, biology, and paths to treatment. Gene Dev 21: pp. 2683-2710 CrossRef
    2. Wrensch, M, Rice, T, Miike, R, McMillan, A, Lamborn, KR, Aldape, K, Prados, MD (2006) Diagnostic, treatment, and demographic factors influencing survival in a population-based study of adult glioma patients in the San Francisco Bay Area. Neuro Oncol 8: pp. 12-26 CrossRef
    3. Miller, CR, Perry, A (2007) Glioblastoma. Arch Pathol Lab Med 131: pp. 397-406
    4. Stupp, R, Hegi, ME, Mason, WP, van den Bent, MJ, Taphoorn, MJ, Janzer, RC, Ludwin, SK, Allgeier, A, Fisher, B, Belanger, K, Hau, P, Brandes, AA, Gijtenbeek, J, Marosi, C, Vecht, CJ, Mokhtari, K, Wesseling, P, Villa, S, Eisenhauer, E, Gorlia, T, Weller, M, Lacombe, D, Cairncross, JG, Mirimanoff, RO (2009) Effects of radiotherapy with concomitant and adjuvant temozolomide versus radiotherapy alone on survival in glioblastoma in a randomised phase III study: 5-year analysis of the EORTC-NCIC trial. Lancet Oncol 10: pp. 459-466 CrossRef
    5. Wagner, H, Ulrich-Merzenich, G (2009) Synergy research: approaching a new generation of phytopharmaceuticals. Phytomedicine 16: pp. 97-110 CrossRef
    6. Straetemans, R, O'Brien, T, Wouters, L, Van Dun, J, Janicot, M, Bijnens, L, Burzykowski, T, Aerts, M (2005) Design and analysis of drug combination experiments. Biom J 47: pp. 299-308 CrossRef
    7. Viola, V, Pilolli, F, Piroddi, M, Pierpaoli, E, Orlando, F, Provinciali, M, Betti, M, Mazzini, F, Galli, F (2012) Why tocotrienols work better: insights into the in vitro anti-cancer mechanism of vitamin E. Gene Nutr 7: pp. 29-41 CrossRef
    8. Kannappan, R, Gupta, SC, Kim, JH, Aggarwal, BB (2012) Tocotrienols fight cancer by targeting multiple cell signaling pathways. Gene Nutr 7: pp. 43-52 CrossRef
    9. Patacsil, D, Tran, AT, Cho, YS, Suy, S, Saenz, F, Malyukova, I, Ressom, H, Collins, SP, Clarke, R, Kumar, D (2012) Gamma-tocotrienol induced apoptosis is associated with unfolded protein response in human breast cancer cells. J Nutr Biochem 23: pp. 93-100 CrossRef
    10. Jeng, JH, Wang, YJ, Chang, WH, Wu, HL, Li, CH, Uang, BJ, Kang, JJ, Lee, JJ, Hahn, LJ, Lin, BR, Chang, MC (2004) Reactive oxygen species are crucial for hydroxychavicol toxicity toward KB epithelial cells. Cell Mol Life Sci 61: pp. 83-96 CrossRef
    11. Pandey, A, Bani, S (2010) Hydroxychavicol inhibits immune responses to mitigate cognitive dysfunction in rats. J Neuroimmunol 226: pp. 48-58 CrossRef
    12. Chakraborty, JB, Mahato, SK, Joshi, K, Shinde, V, Rakshit, S, Biswas, N, Choudhury Mukherjee, I, Mandal, L, Ganguly, D, Chowdhury, AA, Chaudhuri, J, Paul, K, Pal, BC, Vinayagam, J, Pal, C, Manna, A, Jaisankar, P, Chaudhuri, U, Konar, A, Roy, S, Bandyopadhyay, S (2012) Hydroxychavicol, a Piper betle leaf component, induces apoptosis of CML cells through mitochondrial reactive oxygen species-dependent JNK and endothelial nitric oxide synthase activation and overrides imatinib resistance. Cancer Sci 103: pp. 88-99 CrossRef
    13. Sharma, S, Khan, IA, Ali, I, Ali, F, Kumar, M, Kumar, A, Johri, RK, Abdullah, ST, Bani, S, Pandey, A, Suri, KA, Gupta, BD, Satti, NK, Dutt, P, Qazi, GN (2009) Evaluation of the antimicrobial, antioxidant, and anti-inflammatory activities of hydroxychavicol for its potential use as an oral care agent. Antimicrob Agents Chemother 53: pp. 216-222 Cro
  • 刊物主题:Complementary & Alternative Medicine; Internal Medicine; Chiropractic Medicine;
  • 出版者:BioMed Central
  • ISSN:1472-6882
文摘
Background Gamma-tocotrienol (GTT), an isomer of vitamin E and hydroxy-chavicol (HC), a major bioactive compound in Piper betle, has been reported to possess anti-carcinogenic properties by modulating different cellular signaling events. One possible strategy to overcome multi-drug resistance and high toxic doses of treatment is by applying combinational therapy especially using natural bioactives in cancer treatment. Methods In this study, we investigated the interaction of GTT and HC and its mode of cell death on glioma cell lines. GTT or HC alone and in combination were tested for cytotoxicity on glioma cell lines 1321N1 (Grade II), SW1783 (Grade III) and LN18 (Grade IV) by [3-(4,5-dimethylthiazol-2- yl)-5-(3-carboxymethoxy-phenyl)-2-(4-sulfophenyl)- 2H- tetrazolium, inner salt] MTS assay. The interactions of each combination were evaluated by using the combination index (CI) obtained from an isobologram. Results Individually, GTT or HC displayed mild growth inhibitory effects against glioma cancer cell lines at concentration values ranging from 42-00?μg/ml and 75-19?μg/ml respectively. However, the combination of sub-lethal doses of GTT-?HC dramatically enhanced the inhibition of glioma cancer cell proliferation and exhibited a strong synergistic effect on 1321N1 with CI of 0.55, and CI--.54 for SW1783. While in LN18 cells, moderate synergistic interaction of GTT-?HC was observed with CI value of 0.73. Exposure of grade II, III and IV cells to combined treatments for 24?hours led to increased apoptosis as determined by annexin-V FITC/PI staining and caspase-3 apoptosis assay, showing caspase-3 activation of 27%, 7.1% and 79% respectively. Conclusion In conclusion, combined treatments with sub-effective doses of GTT and HC resulted in synergistic inhibition of cell proliferation through the induction of apoptosis of human glioma cells in vitro.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700