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Original Articles

The Interaction of Bee Products With Temozolomide in Human Diffuse Astrocytoma, Glioblastoma Multiforme and Astroglia Cell Lines

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Pages 1247-1256 | Received 31 Mar 2014, Accepted 15 Jul 2014, Published online: 25 Sep 2014

REFERENCES

  • Cherniack EP: Bugs as drugs, Part 1. Insects: the “new” alternative medicine for the 21st century? Altern Med Rev 15, 124–135, 2010.
  • Abouda Z, Zerdani I, Kalalou I, Faid M, and Ahami MT: The antibacterial activity of Moroccan bee bread and bee-pollen (fresh and dried) against pathogenic bacteria. Res J Microbil 6, 376–384, 2011.
  • Israili ZH: Antimicrobial properties of honey. Am J Ther 21, 304–323, 2014.
  • Umthong S, Phuwapraisirisan P, Puthong S, and Chanchao C: In vitro antiproliferative activity of partially purified Trigona laeviceps propolis from Thailand on human cancer cell lines. BMC Complement Altern Med 11, 37, 2011.
  • Kas’ianenko VI, Komisarenko IA, and Dubtsova EA: Correction of atherogenic dyslipidemia with honey, pollen and bee bread in patients with different body mass. Ter Arkh 83, 58–62, 2011.
  • Mutsaers M, van Blitterswijk H, van't Leven L, Kerkvliet J, and van de Waerdt J: Bee products. Agromisa Foundation, Wageningen, The Netherlands, 2005.
  • Farah IO, Lewis VL, Ayensu WK, and Cameron JA: Therapeutic implications of the warburg effect assessing the survival of MRC5 and a549 cell lines upon exposure to honey and d glucose. Biomed Sci Instru 49, 101–108, 2013.
  • Yaacob NS, Nengsih A, and Norazmi MN: Tualang honey promotes apoptotic cell death induced by tamoxifen in breast cancer cell lines. Evid Based Complement Alternat Med 2013. doi:10.1155/2013/989841
  • Orsolić N, Knezević A, Sver L, Terzić S, Hackenberger BK, et al.: Influence of honey bee products on transplantable murine tumors. Vet Comp Oncol 1, 216–226, 2003.
  • Hurren KM and Lewis CL: Probable interaction between warfarin and bee pollen. Am J Health Syst Pharm 67, 2034–2037, 2010.
  • Tomaselli KJ, Neugebauer KM, Bixby JL, Lilien J, and Reichardt LF: N-cadherin and integrins: two receptor systems that mediate neuronal process outgrowth on astrocyte surfaces. Neuron 60, 398–399, 2008.
  • Michaelsen SR, Christensen IJ, Grunnet K, Stockhausen MT, Broholm H, et al.: Clinical variables serve as prognostic factors in a model for survival from glioblastoma multiforme: an observational study of a cohort of consecutive non-selected patients from a single institution. BMC Cancer 13, 402, 2013.
  • Borges KS, Brassesco MS, Scrideli CA, Soares AE, and Tone LG: Antiproliferative effects of Tubi-bee propolis in glioblastoma cell lines. Genet Mol Biol 34, 310–314, 2011.
  • Markiewicz-Żukowska R, Borawska MH, Fiedorowicz A, Naliwajko SK, Sawicka D, et al.: Propolis changes the anticancer activity of temozolomide in U87MG human glioblastoma cell line. BMC Complement Altern Med 13, 50, 2013.
  • Nakaya M, Onda H, Sasaki K, Yukiyoshi A, Tachibana H, et al.: Effect of royal jelly on bisphenol A-induced proliferation of human breast cancer cells. Biosci Biotechnol Biochem 71, 253–255, 2007.
  • Kleihues P, Louis DN, Scheithauer BW, Rorke LB, Reifenberger G, et al.: The WHO classification of tumors of the nervous system. J Neuropathol Exp Neurol 61, 215–225, 2002.
  • Carmichael J, DeGraff WG, Gazdar AF, Minna JD, and Mitchell JB: Evaluation of a tetrazolium-based semiautomated colorimetric assay: assessment of chemosensitivity testing. Cancer Res 47, 936–942, 1987.
  • Markiewicz-Żukowska R, Car H, Naliwajko SK, Sawicka D, Szynaka B, et al.: Ethanolic extract of propolis, chrysin, CAPE inhibit human astroglia cells. Adv Med Sci 57, 208–216, 2012.
  • Dahl JE, Frangou-Polyzois MJ, and Polyzois GL: In vitro biocompatibility of denture relining materials. Gerodentology 23, 17–22, 2006.
  • Annabi B, Rojas-Sutterlin S, Laroche M, Lachambre MP, Moumdjian R, et al.: The diet-derived sulforaphane inhibits matrix metalloproteinase-9-activated human brain microvascular endothelial cell migration and tubulogenesis. Mol Nutr Food Res 52, 692–700, 2008.
  • Cheng L, Wu Q, Guryanova OA, Huang Z, Huang Q, et al.: Elevated invasive potential of glioblastoma stem cells. Biochem Biophys Res Commun 406, 643–438, 2011.
  • Shih AH and Holland EC: Notch signaling enhances nestin expression in gliomas. Neoplasia 8, 1072–1082, 2006.
  • Ghashm AA, Othman NH, Khattak MN, Ismail NM, and Saini R: Antiproliferative effect of Tualang honey on oral squamous cell carcinoma and osteosarcoma cell lines. BMC Complement Altern Med 10, 49, 2010.
  • Fauzi AN, Norazmi MN, and Yaacob NS: Tualang honey induces apoptosis and disrupts the mitochondrial membrane potential of human breast and cervical cancer cell lines. Food Chem Toxicol 49, 871–878, 2011.
  • Fernandez-Cabezudo MJ, El-Kharrag R, Torab F, Bashir G, George JA, et al.: Intravenous administration of manuka honey inhibits tumor growth and improves host survival when used in combination with chemotherapy in a melanoma mouse model. PLoS One 8, e55993, 2013.
  • Ahmed S and Othman NH: Review of the medicinal effects of tualang honey and a comparison with manuka honey. Malays J Med Sci 20, 6–13, 2013.
  • Attia WY, Gabry MS, El-Shaikh KA, and Othman GA: The anti-tumor effect of bee honey in Ehrlich ascite tumor model of mice is coincided with stimulation of the immune cells. Egypt J Immunol 15, 169–183, 2008.
  • Michaluart P, Masferrer JL, Carothers AM, Subbaramaiah K, Zweifel BS, et al.: Inhibitory effects of caffeic acid phenethyl ester on the activity and expression of cyclooxygenase-2 in human oral epithelial cells and in a rat model of inflammation. Cancer Res 59, 2347–2352, 1999.
  • Ferreres F, Blazquez MA, Gil MI, and Tomás-Barberan FA: Separation of honey flavonoids by micellar electrokinetic capillary chromatography. J Chromatography A, 669, 268–274, 1994.
  • Ferreres F, Juan T, Perez-Arquillue C, Herrera-Marteache A, Garcia-Viguera C, et al.: Evaluation of pollen as a source of kaempferol in rosemary honey. J Sci Food Agric, 77, 506–510, 1998.
  • Tomás-Barberán FA, Martos I, Ferreres F, Radovic BS, and Anklam E: HPLC flavonoid profiles as markers for the botanical origin of European unifloral honeys. J Sci Food Agric, 81, 485–496, 2001.
  • Jaganathan SK and Mandal M: Antiproliferative effects of honey and of its polyphenols: a review. J Biomed Biotechnol, 2009. doi:10.1155/2009/830616
  • Calderón-Montaño JM, Burgos-Morón E, Pérez-Guerrero C, and López-Lázaro M: A review on the dietary flavonoid kaempferol. Mini Rev Med Chem, 11, 298–344, 2011.
  • Wang R, Jiao Z, Li R, Yue H, and Chen L: p68 RNA helicase promotes glioma cell proliferation in vitro and in vivo via direct regulation of NF-κB transcription factor p50. Neuro Oncol 14, 1116–1124, 2012.
  • Choe G, Park JK, Jouben-Steele L, Kremen TJ, Liau LM, et al.: Active matrix metalloproteinase 9 expression is associated with primary glioblastoma subtype. Clin Cancer Res 8, 2894–2901, 2002.
  • Wang M, Wang GT, Liu S, Yoshida D, and Teramoto A: The expression of matrix metalloproteinase-2 and -9 in human gliomas of different pathological grades. Brain Tumor Pathol 20, 65–72, 2003.
  • Dong J, Opresko LK, Dempsey PJ, Lauffenburger DA, Coffey RJ, et al.: Metalloprotease-mediated ligand release regulates autocrine signaling through the epidermal growth factor receptor. Proc Natl Acad Sci USA 96, 6235–6240, 1999.
  • Giannelli G, Falk-Marzillier J, Schiraldi O, Stetler-Stevenson WG, and Quaranta V: Induction of cell migration by matrix metalloprotease-2 cleavage of laminin-5. Science 277, 225–228, 1997.
  • McCawley LJ and Matrisian LM: Matrix metalloproteinases: they’re not just for matrix anymore! Curr Opin Cell Biol 13, 534–540, 2001.
  • Bergers G, Brekken R, McMahon G, Vu TH, Itoh T, et al.: Matrix metalloproteinase-9 triggers the angiogenic switch during carcinogenesis. Nat Cell Biol 2, 737–744, 2000.
  • Markiewicz-Żukowska R, Naliwajko SK, Bartosiuk E, Moskwa J, Isidorov V, et al.: Chemical composition and antioxidant activity of beebread, and its influence on the glioblastoma cell line (U87MG). J Apic Sci 57, 147–157, 2013.
  • Čeksterytė V, Račys J, Kaškonienė V, and Venskutonis PR: Fatty acid composition in beebread. Biologija 54, 253–257, 2008.
  • Isidorov VA, Isidorova AG, Szczepaniak L, and Czyżewska U: Gas chromatographic–mass spectrometric investigation of the chemical composition of beebread. Food Chem 115, 1056–1063, 2009.
  • Baltrušaityte V, Venskutonis PR, and Ckstaryte V: Radical scavenging activity of different floral origin honey and beebread phenolic extracts. Food Chem 101, 502–514, 2007.
  • Chinnaiyan P, Kensicki E, Bloom G, and Prabhu A: The metabolomic signature of malignant glioma reflects accelerated anabolic metabolism. Cancer Res 72, 5878–5888, 2012.
  • Martin DD, Robbins ME, Spector AA, Wen BC, and Hussey DH: The fatty acid composition of human gliomas differs from that found in nonmalignant brain tissue. Lipids 31, 1283–1288, 1996.
  • Ramos KL and Colquhoun A: Protective role of glucose-6-phosphate dehydrogenase activity in the metabolic response of C6 rat glioma cells to polyunsaturated fatty acid exposure. Glia 43, 149–166, 2003.
  • Kyritsis AP, Bondy ML, and Levin VA: Modulation of glioma risk and progression by dietary nutrients and antiinflammatory agents. Nutrition and Cancer 63, 174–184, 2011.
  • Faragó N, Fehér LZ, Kitajka K, Das UN, and Puskás LG: MicroRNA profile of polyunsaturated fatty bacid treated glioma cells reveal apoptosis-specific expression changes. Lipids Health Dis 10, 173, 2011.
  • Cimini A, Cristiano L, Colafarina S, and Benedetti E: PPARgamma-dependent effects of conjugated linoleic acid on the human glioblastoma cell line (ADF). Int J Cancer 117, 923–933, 2005.
  • Leaver HA, Bell HS, Rizzo MT, Ironside JW, Gregor A, et al.: Antitumour and pro-apoptotic actions of highly unsaturated fatty acids in glioma. Prostaglandins Leukot Essent Fatty Acids 66, 19–29, 2002.
  • Williams J R, Leaver HA, Ironside JW, Miller EP, Whittle IR, et al.: Apoptosis in human primary brain tumours: actions of arachidonic acid. Prostaglandins Leukot Essent Fatty Acids 58, 193–200, 1998.
  • Egeblad M and Werb Z: New functions for the matrix metalloproteinases in cancer progression. Nat Rev Cancer 2, 161–174, 2002.
  • Suzuki I, Iigo M, Ishikawa C, Kuhara T, Asamoto M, et al.: Inhibitory effects of oleic and docosahexaenoic acids on lung metastasis by colon-carcinoma-26 cells are associated with reduced matrix metalloproteinase-2 and -9 activities. Int J Cancer 73 607–612, 1997.
  • Salazar-Olivo LA and Paz-González V: Screening of biological activities present in honeybee (Apis mellifera) royal jelly. Toxicol In Vitro 19, 645–651, 2005.
  • Isidorov VA, Czyzewska U, Isidorova AG, and Bakier S: Gas chromatographic and mass spectrometric characterization of the organic acids extracted from some preparations containing lyophilized royal jelly. J Chromatogr B Analyt Technol Biomed Life Sci 877, 3776–3780, 2009.
  • Melliou E and Chinou I: Chemistry and bioactivity of royal jelly from Greece. J Agric Food Chem 53, 8987–8992, 2005.
  • Townsend GF, Morgan JF, and Hazlett B: Activity of 10-hydroxydecenoic acid from royal jelly against experimental leukemia and ascitic tumors. Nature 183, 1270–1271, 1959.
  • Townsend GF, Morgan JF, Tolnai S, Hazlett B, Morton HJ, et al.: Studies on the in vitro antitumor activity of fatty acids: I. 10-hydroxy-2-decenoic acid from royal jelly. Cancer Res 20, 503–510, 1960.
  • Majtan J, Kumar P, Majtan T, Walls AF, and Klaudiny J: Effect of honey and its major royal jelly protein 1 on cytokine and MMP-9 mRNA transcripts in human keratinocytes. Exp Dermatol 19, e73–79, 2010.
  • Hamilton JA and Brunaldi K: A model for fatty acid transport into the brain. J Mol Neurosci 33, 12–17, 2007.
  • Faria A, Pestana D, Teixeira D, Azevedo J, De Freitas V, et al.: Flavonoid transport across RBE4 cells: A blood-brain barrier model. Cell Mol Biol Lett 15, 234–241, 2010.

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