Prolonged exposure to the candidate microbicide C31G differentially reduces cellular sensitivity to agent re-exposure

Bradley J. Catalone, Mary Lee Ferguson, Shendra R. Miller, Daniel Malamud, Tina Kish-Catalone, Nina J. Thakkar, Fred C. Krebs, Mary K. Howett, Brian Wigdahl

Research output: Contribution to journalArticle

Abstract

Comparative assays of in vitro cytotoxicity using nonoxynol-9 (N-9) and the candidate microbicides C31G and sodium dodecyl sulfate (SDS) demonstrated that these agents, which are, respectively, characterized as nonionic, amphoteric, and anionic surfactants, differed in their concentration-dependent effects on cell viability, especially after prolonged exposure. We hypothesized that differences in cellular sensitivity may have been due, in part, to cellular changes induced by long-term exposure to each agent. To examine this possibility, HeLa cells were exposed to N-9, C31G, or SDS for extended periods of time and subsequently reassessed for sensitivity to each of these agents. Following 10 continuous days of C31G exposure, HeLa cells were less sensitive to a subsequent C31G exposure compared to cells that had not undergone long-term C31G treatment. Interestingly, long-term C31G exposure also changed subsequent sensitivity to N-9 but not SDS. In contrast, prolonged exposure to either N-9 or SDS did not reduce sensitivity to re-exposure. The effect of long-term C31G exposure was both concentration-dependent and transient, as treated cells reverted to pre-exposure sensitivity in a time-dependent manner following the cessation of C31G exposure. Lipid analyses of cells exposed to C31G for extended durations revealed altered phospholipid profiles relative to C31G-naïve cells. Experiments examining the individual components of C31G demonstrated the involvement of the amine oxide moiety in reductions in cellular sensitivity. These studies, which provide new information concerning the cytotoxicity of surfactant microbicides, suggest that cervicovaginal epithelial cells may have greater in vivo tolerance for products containing C31G through unique interactions between C31G and components of the cellular membranes.

Original languageEnglish (US)
Pages (from-to)460-468
Number of pages9
JournalBiomedicine and Pharmacotherapy
Volume59
Issue number8
DOIs
StatePublished - Sep 2005

Fingerprint

Anti-Infective Agents
Sodium Dodecyl Sulfate
HeLa Cells
Surface-Active Agents
C 31G
Nonoxynol
Oxides
Amines
Phospholipids
Cell Survival
Epithelial Cells

Keywords

  • C31G
  • Cytotoxicity
  • Microbicide

ASJC Scopus subject areas

  • Pharmacology

Cite this

Prolonged exposure to the candidate microbicide C31G differentially reduces cellular sensitivity to agent re-exposure. / Catalone, Bradley J.; Ferguson, Mary Lee; Miller, Shendra R.; Malamud, Daniel; Kish-Catalone, Tina; Thakkar, Nina J.; Krebs, Fred C.; Howett, Mary K.; Wigdahl, Brian.

In: Biomedicine and Pharmacotherapy, Vol. 59, No. 8, 09.2005, p. 460-468.

Research output: Contribution to journalArticle

Catalone, BJ, Ferguson, ML, Miller, SR, Malamud, D, Kish-Catalone, T, Thakkar, NJ, Krebs, FC, Howett, MK & Wigdahl, B 2005, 'Prolonged exposure to the candidate microbicide C31G differentially reduces cellular sensitivity to agent re-exposure', Biomedicine and Pharmacotherapy, vol. 59, no. 8, pp. 460-468. https://doi.org/10.1016/j.biopha.2005.07.009
Catalone, Bradley J. ; Ferguson, Mary Lee ; Miller, Shendra R. ; Malamud, Daniel ; Kish-Catalone, Tina ; Thakkar, Nina J. ; Krebs, Fred C. ; Howett, Mary K. ; Wigdahl, Brian. / Prolonged exposure to the candidate microbicide C31G differentially reduces cellular sensitivity to agent re-exposure. In: Biomedicine and Pharmacotherapy. 2005 ; Vol. 59, No. 8. pp. 460-468.
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AU - Ferguson, Mary Lee

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AU - Malamud, Daniel

AU - Kish-Catalone, Tina

AU - Thakkar, Nina J.

AU - Krebs, Fred C.

AU - Howett, Mary K.

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