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Published on: September 3, 2012
Microbicide excipients can greatly increase susceptibility to genital herpes transmission in the mouse
Thomas R Moench1, Russell J Mumper, Timothy E Hoen
1ReProtect, Inc, Baltimore, MD 21286 USA.
Background:
Several active ingredients proposed as vaginal microbicides have been shown paradoxically to increase susceptibility to infection in mouse genital herpes (HSV-2) vaginal susceptibility models and in clinical trials. In addition, "inactive ingredients" (or excipients) used in topical products to formulate and deliver the active ingredient might also cause epithelial toxicities that increase viral susceptibility. However, excipients have not previously been tested in susceptibility models.
Methods:
Excipients commonly used in topical products were formulated in a non-toxic vehicle (the "HEC universal placebo"), or other formulations as specified. Twelve hours after exposure to the excipient or a control treatment, mice were challenged with a vaginal dose of HSV-2, and three days later were assessed for infection by vaginal lavage culture to assess susceptibility.
Results:
The following excipients markedly increased susceptibility to HSV-2 after a single exposure: 5% glycerol monolaurate (GML) formulated in K-Y® Warming Jelly, 5% GML as a colloidal suspension in phosphate buffered saline, K-Y Warming Jelly alone, and both of its humectant/solvent ingredients (neat propylene glycol and neat PEG-8). For excipients formulated in the HEC vehicle, 30% glycerin significantly increased susceptibility, and a trend toward increased HSV-2 susceptibility was observed after 10% glycerin, and 0.1% disodium EDTA, but not after 0.0186% disodium EDTA. The following excipients did not increase susceptibility: 10% propylene glycol, 0.18%, methylparaben plus 0.02% propylparaben, and 1% benzyl alcohol.
Conclusions:
As reported with other surfactants, the surfactant/emulsifier GML markedly increased susceptibility to HSV-2. Glycerin at 30% significantly increased susceptibility, and, undiluted propylene glycol and PEG-8 greatly increased susceptibility.
Insights
Certain inactive ingredients in topical products, like glycerol monolaurate (GML), propylene glycol, and PEG-8, significantly increase susceptibility to genital herpes (HSV-2) infection in mice. This highlights potential risks associated with excipients in vaginal products.
Area of Science:
- Virology
- Toxicology
- Pharmacology
Background:
- Vaginal microbicide candidates have paradoxically increased herpes simplex virus type 2 (HSV-2) susceptibility in prior studies.
- Inactive ingredients (excipients) in topical formulations may cause epithelial toxicities, increasing viral susceptibility, but have not been previously evaluated in susceptibility models.
Purpose of the Study:
- To investigate the impact of commonly used excipients in topical products on vaginal susceptibility to HSV-2 infection.
- To determine if specific excipients, when formulated in a non-toxic vehicle, alter epithelial susceptibility to viral challenge.
Main Methods:
- Excipients were formulated in a non-toxic vehicle (HEC universal placebo) or other specified formulations.
- Mice were exposed intravaginally to excipients or controls, then challenged with HSV-2 twelve hours later.
- Susceptibility was assessed three days post-challenge via vaginal lavage culture.
Main Results:
- Glycerol monolaurate (GML) in K-Y® Warming Jelly or as a colloidal suspension, K-Y Warming Jelly alone, neat propylene glycol, and neat PEG-8 markedly increased HSV-2 susceptibility.
- In the HEC vehicle, 30% glycerin significantly increased susceptibility, with trends observed for 10% glycerin and 0.1% disodium EDTA.
- 10% propylene glycol, parabens, and benzyl alcohol did not increase HSV-2 susceptibility.
Conclusions:
- The surfactant GML markedly increased HSV-2 susceptibility, consistent with findings for other surfactants.
- High concentrations of glycerin (30%), undiluted propylene glycol, and PEG-8 significantly increased susceptibility to HSV-2.
- Excipients in topical formulations can significantly impact epithelial susceptibility to viral infections, warranting careful consideration in product development.
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