In Vitro Evaluation of Viability, Integrity, and Inflammation in Genital Epithelia upon Exposure to Pharmaceutical Excipients and Candidate Microbicides

Author:

Gali Youssef12,Delezay Olivier3,Brouwers Joachim4,Addad Noura3,Augustijns Patrick4,Bourlet Thomas3,Hamzeh-Cognasse Hind3,Ariën Kevin K.1,Pozzetto Bruno3,Vanham Guido12

Affiliation:

1. Virology Unit, Department of Microbiology, Institute of Tropical Medicine, Antwerp, Belgium

2. Department of Biomedical Sciences, Faculty of Pharmacology, Biomedical, and Veterinary Sciences, University of Antwerpen, Antwerp, and Faculty of Medicine and Pharmacology, University of Brussels, Brussels, Belgium

3. Groupe Immunité des Muqueuses et Agents Pathogènes, EA3064, Université de Lyon, Lyon, and CHU of Saint-Etienne, Saint-Etienne, France

4. Laboratory for Pharmacotechnology and Biopharmacy, Katholieke Universiteit Leuven, Leuven, Belgium

Abstract

ABSTRACT The use of microbicides is a promising approach for the prevention of HIV-1 transmission. Unfortunately, various candidates failed in clinical trials. In some cases, the candidate microbicide even resulted in enhanced virus transmission. Therefore, there is an urgent need to develop more predictive preclinical strategies to anticipate the in vivo efficiency/toxicity rate, including in vitro assays that evaluate effects on epithelial integrity and inflammation. The present study aims to identify potential safety issues concerning the use of microbicides and excipients commonly used in vaginal microbicide preparations. The toxicities of various active pharmaceutical ingredients (APIs; TMC-120, UC-781, tenofovir [PMPA], PRO-2000, and glycerol monolaurate [GML]) and excipients (preservatives, cosolvents, surfactants, and cyclodextrins) were evaluated using an in vitro dual-chamber model and uterine cervical explants. Epithelial viability and permeation of fluorescent virus-sized beads, as well as induction of interleukin-8 (IL-8; as a sensitive marker of an inflammatory response), were assessed. Surprisingly, cell viability and epithelial layer integrity were compromised by most excipients at concentrations near the typical concentration used in vaginal gels, and a significant increase in the production of IL-8 was observed at subtoxic concentrations. Within the APIs, TMC-120, UC-781, and PMPA showed higher selectivity indices than PRO-2000 and GML. In conclusion, identification of safety issues concerning the use of pharmaceutical excipients could help to formulate less toxic vaginal microbicide preparations.

Publisher

American Society for Microbiology

Subject

Infectious Diseases,Pharmacology (medical),Pharmacology

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