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Bioresponsive Hydrogel for On-Demand Nonhormonal Contraception

  • Giovanni M Pauletti
  • , Pankaj Dwivedi
  • , Ping Li
  • , Aluet Borrego-Alvarez
  • , Hidemi S Yamamoto
  • , Julie Lewis
  • , Sarah Alobaidi
  • , Amel Ibrahim
  • , Raina N Fichorova
  • , Celia M Santi
  • University of Health Sciences and Pharmacy in St. Louis
  • University of Washington School of Medicine
  • Harvard Medical School
  • The University of Dublin

Research output: Contribution to journalArticlepeer-review

Abstract

The utility of bioresponsive multifunctional hydrogel compositions for biomedical applications is rapidly increasing due to the diverse array of biological stimuli that can profoundly alter physicochemical gel properties that benefit therapeutic interventions. The purpose of this research is to explore a bioresponsive hydrogel as a drug-free bioengineering concept to fortify the natural physical contraceptive barriers at the cervicovaginal junction. The results of this research demonstrate that a hydrogel comprising 4% ( w/ w) Carbopol ® 974P and 4% ( w/ w) polyvinylpyrrolidone (CP4%/PVP4%) undergoes bioresponsive structural changes in the presence of simulated seminal fluid, pH 7.7, (SFS) that increases the work required to spread the gel under physiologically relevant vaginal conditions. Combination of this bioresponsive hydrogel with liquified human semen at a volumetric ratio of 1:5 dramatically reduces in vitro sperm migration by 97%. Simultaneously, total sperm motility decreases from 72.0 ± 9.9% to 7.9 ± 13.7%, which is significantly below the WHO criteria defined for male fertility. Safety assessments performed in vitro and in vivo underline a robust vaginal safety profile comparable to approved vaginal products. Moreover, the results from an exploratory animal study performed with female New Zealand White rabbits suggest that the drug-free physical barrier established intravaginally after exposure of the bioresponsive CP4%/PVP4% hydrogel to alkaline semen seems at least equivalent in the prevention of pregnancy in vivo to the VCF ® Gel (Apothecus Pharmaceuticals, Ronkonkoma, NY, USA), a marketed spermicidal on-demand product containing nonoxynol-9.

Original languageEnglish
Article number858
JournalGels (Basel, Switzerland)
Volume11
Issue number11
DOIs
StatePublished - Oct 27 2025

ASJC Scopus Subject Areas

  • Bioengineering
  • Biomaterials
  • Organic Chemistry
  • Polymers and Plastics

Keywords

  • drug-free
  • female-initiated
  • partner-independent
  • physical contraceptive barrier

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