Literature DB >> 19789161

Potentiation of bleomycin lethality in HeLa and V79 cells by bee venom.

Nada Orsolić1.   

Abstract

This study investigated possible growth-inhibiting effects of bee venom applied alone or in combination with a cytotoxic drug bleomycin on HeLa and V79 cells in vitro based on clone formation, cell counting, and apoptosis. Melittin, the key component of bee venom, is a potent inhibitor of calmodulin activity, and also a potent inhibitor cell growth and clonogenicity. Intracellular accumulation of melittin correlates with the cytotoxicity of antitumour agents. Previous studies indicated that some calcium antagonists and calmodulin inhibitors enhanced intracellular levels of antitumor agents by inhibiting their outward transport. In this study, treatment of exponentially growing HeLa and V79 cells with bleomycin caused a dose-dependent decrease in cell survival due to DNA damage. This lethal effect was potentiated by adding a non-lethal dose of the bee venom. By preventing repair of damaged DNA, bee venom inhibited recovery from potentially lethal damage induced by bleomycin in V79 and HeLa cells. Apoptosis, necrosis, and lysis were presumed as possible mechanisms by which bee venom inhibited growth and clonogenicity of V79 cells. HeLa cells, on the other hand, showed greater resistance to bee venom. Our findings suggest that bee venom might find a therapeutic use in enhancing cytotoxicity of antitumour agent bleomycin.

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Year:  2009        PMID: 19789161     DOI: 10.2478/10004-1254-60-2009-1936

Source DB:  PubMed          Journal:  Arh Hig Rada Toksikol        ISSN: 0004-1254            Impact factor:   1.948


  8 in total

1.  The structure, molecular dynamics, and energetics of centrin-melittin complex.

Authors:  Liliana Del Valle Sosa; Elisa Alfaro; Jorge Santiago; Daniel Narváez; Marie Cely Rosado; Aslin Rodríguez; Ana María Gómez; Eric R Schreiter; Belinda Pastrana-Ríos
Journal:  Proteins       Date:  2011-08-30

Review 2.  Melittin, a major peptide component of bee venom, and its conjugates in cancer therapy.

Authors:  Islam Rady; Imtiaz A Siddiqui; Mohamad Rady; Hasan Mukhtar
Journal:  Cancer Lett       Date:  2017-05-20       Impact factor: 8.679

3.  Antitumour action on human glioblastoma A1235 cells through cooperation of bee venom and cisplatin.

Authors:  Goran Gajski; Tamara Čimbora-Zovko; Sanjica Rak; Maja Osmak; Vera Garaj-Vrhovac
Journal:  Cytotechnology       Date:  2015-04-28       Impact factor: 2.058

4.  Antimutagenic and Synergistic Cytotoxic Effect of Cisplatin and Honey Bee Venom on 4T1 Invasive Mammary Carcinoma Cell Line.

Authors:  Faranak Shiassi Arani; Latifeh Karimzadeh; Seyed Mohammad Ghafoori; Mohammad Nabiuni
Journal:  Adv Pharmacol Sci       Date:  2019-01-29

5.  The synergistic cytotoxic effect of cisplatin and honey bee venom on human ovarian cancer cell line A2780cp.

Authors:  Masoumehzaman Alizadehnohi; Mohammad Nabiuni; Zahra Nazari; Zahra Safaeinejad; Saeed Irian
Journal:  J Venom Res       Date:  2012-10-23

6.  Combined cytogenotoxic effects of bee venom and bleomycin on rat lymphocytes: an in vitro study.

Authors:  Yasmina M Abd-Elhakim; Samah R Khalil; Ashraf Awad; Laila Y Al-Ayadhi
Journal:  Biomed Res Int       Date:  2014-04-16       Impact factor: 3.411

7.  Potentiation of a novel palladium (II) complex lethality with bee venom on the human T-cell acute lymphoblastic leukemia cell line (MOLT-4).

Authors:  Zahra Safaeinejad; Mohammad Nabiuni; Zahra Nazari
Journal:  J Venom Anim Toxins Incl Trop Dis       Date:  2013-10-03

8.  Chemical, Cytotoxic, and Anti-Inflammatory Assessment of Honey Bee Venom from Apis mellifera intermissa.

Authors:  Iouraouine El Mehdi; Soraia I Falcão; Mustapha Harandou; Saïd Boujraf; Ricardo C Calhelha; Isabel C F R Ferreira; Ofélia Anjos; Maria G Campos; Miguel Vilas-Boas
Journal:  Antibiotics (Basel)       Date:  2021-12-10
  8 in total

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