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Articles

Induction of apoptosis by Centaurea nerimaniae extract in HeLa and MDA-MB-231 cells by a caspase-3 pathway

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References

  • Aktumsek A, Zengin G, Guler GO, Cakmak YS, Duran A (2011) Screening for in vitro antioxidant properties and fatty acid profiles of five Centaurea L. species from Turkey flora. Food Chem. Toxicol. 49: 2914–2920. doi:10.1016/j.fct.2011.08.016
  • Aktumsek A, Zengin G, Guler GO, Cakmak YS, Duran A (2013) Assessment of the antioxidant potential and fatty acid composition of four Centaurea L. taxa from Turkey. Food Chem. 141: 91–97. doi:10.1016/j.foodchem.2013.02.092
  • Al-Easa HS, Kamel A, Rızık AF (1992) Flavonoids from Centaurea sinaica. Fitoterapia. 63: 468–469.
  • Barut Ş, Ünlü YA, Karaoğlan A, Tunçdemir M, Dağistanli FK, Öztürk M, Çolak A (2005) The neuroprotective effects of z-DEVD.fmk, a caspase-3 inhibitor, on traumatic spinal cord injury in rats. Surg. Neurol. 64: 213–220. doi:10.1016/j.surneu.2005.03.042
  • Chicca A, Tebano M, Adinolfi B, Ertugrul K, Flamini G, Nieri P (2011) Anti-proliferative activity of aguerin B and a new rare nor-guaianolide lactone isolated from the aerial parts of Centaurea deflexa. Eur. J. Med. Chem. 46: 3066–3070.
  • Donato AL, Huang Q, Liu X, Li F, Zimmerman MA, Li CY (2014) Caspase 3 promotes surviving melanoma tumor cell growth after cytotoxic therapy. J. Invest. Dermatol. 134: 1686–1692.
  • Erel SB, Karaalp C, Bedir E, Kaehlig H, Glasl S, Khan S, Krenn L (2011) Secondary metabolites of Centaurea calolepsis and evaluation of cnicin for anti-inflammatory, antioxidant, and cytotoxic activities. Pharm. Biol. 49: 840–849.
  • Faleiro L, Lazebnik Y (2000) Caspases disrupt the nuclear-cytoplasmic barrier. J. Cell. Biol. 151: 951–959.
  • Forgo P, Zupko I, Molnar J, Vasas A, Dombi G, Hohmann J (2012) Bioactivity-guided isolation of antiproliferative compounds from Centaurea jacea L. Fitoterapia. 83: 921–925.
  • Freshney RI (2000) Cell Lines; in Culture of Animal Cells: A Manual of Basic Technique. Wiley-Liss, New York. pp. 177–193.
  • Galluzzi L, Vitale I, Abrams JM, Alnemri ES, Baehrecke EH, Blagosklonny MV, Dawson TM, Dawson VL, El-Deiry WS, Fulda S, Gottlieb E, Green DR, Hengartner MO, Kepp O, Knight RA, Kumar S, Lipton SA, Lu X, Madeo F, Malorni W, Mehlen P, Nuñez G, Peter ME, Piacentini M, Rubinsztein DC, Shi Y, Simon HU, Vandenabeele P, White E, Yuan J, Zhivotovsky B, Melino G, Kroemer G (2012) Molecular definitions of cell death subroutines: recommendations of the nomenclature committee on cell death 2012. Cell Death Differ. 15: 1–14.
  • Gdynia G, Grund K, Eckert A, Böck BC, Funke B, Macher-Goeppinger S, Sieber S, Herold-Mende C, Wiestler B, Wiestler OD, Roth W (2007) Basal caspase activity promotes migration and invasiveness in glioblastoma cells. Mol. Cancer Res. 5: 1232–1240.
  • Goldar S, Khaniani MS, Derakhshan SM, Baradaran B (2015) Molecular mechanisms of apoptosis and roles in cancer development and treatment. Asian Pac. J. Cancer Prev. 16: 2129–2144.
  • Gu J, Dong RP, Zhang C, McLaughlin DF, Wu MX, Schlossman SF (1999) Functional interaction of DFF35 and DFF45 with caspase-activated DNA fragmentation nuclease DFF40. J. Biol. Chem. 274: 20759–20762.
  • Hanahan D, Weinberg RA (2011) Hallmarks of cancer: the next generation. Cell 144: 646–674.
  • Kamada S, Kikkawa U, Tsujimoto Y, Hunter T (2005) Nuclear translocation of caspase-3 is dependent on its proteolytic activation and recognition of a substrate-like protein(s). J. Biol. Chem. 280: 857–860.
  • Karagoz A, Artun FT, Ozcan G, Melikoglu G, Anil S, Kultur Ş, Sutlupinar N (2015) In vitro evaluation of antioxidant activity of some plant methanol extracts. Biotechnol. Biotech. Eq. 29: 1184–1189.
  • Ke N, Wang X, Xu X, Abassi YA (2011) The xCELLigence system for real-time and label-free monitoring of cell viability. Methods Mol. Biol. 740: 33–43.
  • Kim JM, Lou L, Zirkin BR (2000) Caspase-3 activation is required for Leydig cell apoptosis induced by ethane dimethanesulfonate. Endocrinology. 141: 1846–1853.
  • Kultur S (2010) Centaurea nerimaniae sp. nov. (Asteraceae) from South Anatolia, Turkey. Nord. J. Bot. 28: 613–616.
  • Luo M, Lu Z, Sun H, Yuan K, Zhang Q, Meng S (2010) Nuclear entry of active caspase-3 is facilitated by its p3-recognition-based specific cleavage activity. Cell Res. 20: 211–222.
  • Matic IZ, Aljancic I, Zizak Z, Vajs V, Jadranin M, Milosavljevic S, Juranić ZD (2013) In vitro antitumor actions of extracts from endemic plant Helichrysum zivojinii. BMC Comple. Alt. Med. 13: 36. doi:10.1186/1472-6882-13-36
  • Meng LY, Liu HR, Shen Y, Yu Q, Tao X (2011) Cochinchina momordica seed extract induces G2/M arrest and apoptosis in human breast cancer MDA-MB-231 cells by modulating the PI3K/Akt pathway. Asian Pac. J. Cancer Prev. 13: 3483–3488.
  • Moirangthem DS, Laishram S, Borah JC, Kalita MC, Talukdar NC (2014) Cephalotaxus griffithii Hook. f. needle extract induces cell cycle arrest, apoptosis and suppression of HTERT and hTR expression on human breast cancer cells. BMC Comple. Alt. Med. 14: 305.
  • O’Brien MA, Kirby R (2008) Apoptosis: a review of pro-apoptotic and anti-apoptotic pathways and dysregulation in disease. J. Vet. Emerg. Crit. Care 18: 572–585.
  • Pandey MK, Prasad S, Tyagi AK, Deb L, Huang J, Karelia DN, Amin SG, Aggarwal BB (2016) Targeting cell survival proteins for cancer cell death. Pharmaceuticals 9: 11. doi:10.3390/ph9010011
  • Patel K, Patel DK (2016) Medicinal importance, pharmacological activities, and analytical aspects of hispidulin: a concise report. J. Trad. Comple. Med. 7: 360–366.
  • Safarzadeh E, Sandoghchian Shotorbani S, Baradaran B (2014) Herbal medicine as inducers of apoptosis in cancer treatment. Adv. Pharm. Bull. 4: 421–427.
  • Salla M, Fakhoury I, Saliba N, Darwiche N, Gali-Muhtasib H (2013) Synergistic anticancer activities of the plant-derived sesquiterpene lactokines salograviolide A andiso-seco-tanapartholide. J. Nat. Med. 67: 468–479.
  • Salvesen GS, Riedl SJ (2008) Caspase mechanisms. Adv. Exp. Med. Biol. 615: 13–23.
  • Shebaby WN, Mroueh M, Bodman-Smith K, Mansour A, Taleb R, Daher CF, El-Sibai M (2014) Daucus carota pentane-based fractions arrest the cell cycle and increase apoptosis in MDA-MB-231 breast cancer cells. BMC Comple. Alt. Med 14: 387. doi:10.1186/1472-6882-14-387
  • Shiezadeh F, Mousavi SH, Amiri MS, Iranshahi M, Tayarani-Najaran Z, Karimi G (2013) Cytotoxic and apoptotic potential of Rheum turkestanicum Janisch root extract on human cancer and normal cells. Iran J. Pharm. Res. 12: 811–819.
  • Solowey E, Lichtenstein M, Sallon S, Paavilainen H, Solowey E, Lorberboum-Galski H (2014) Evaluating medicinal plants for anticancer activity. Sci. World J. 721402: 12. doi:10.1155/2014/721402
  • Tanriverdi G, Denir S, Ayla S, Bilir A, Oktar H, Cepni I, Irez T (2013) Notch signaling pathway in cumulus cells can be a novel marker to identify poor and normal responder IVF patients. J. Assist. Reprod. Genet. 30: 1319–1326.
  • Wang JY, Sun S, Liu L, Yang WS (2014) Induction of apoptosis in human cervical carcinoma HeLa cells with active components of Menispermum dauricum. Genet. Mol. Res. 13: 3545–3552.
  • Weissenstein U, Kunz M, Urech K, Baumgartner S (2014) Interaction of standardized mistletoe (Viscum album) extracts with chemotherapeutic drugs regarding cytostatic and cytotoxic effects in vitro. BMC Comple. Alt. Med. 14: 6.
  • Wu KY, Wang HZ, Hong SJ (2008) Mechanism of mitomycin-induced apoptosis in cultured corneal endothelial cells. Mol. Vis. 14: 1705–1712.

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