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March 3, 2026Journal of Pharmaceutical Innovation0 citationsOpen Access

Calcium Butyrate-Integrated Bioadhesive Hydrogel: a Promising Therapeutic Platform for Inflammation Control and Wound Regeneration

ECEmre Sefik CağlarKKKübra KolciMOMehmet Evren OKUR

Key Points

  • F1-CAB hydrogel showed enhanced anti-inflammatory effects, indicating 34% greater nitrite inhibition compared to CAB alone.
  • The hydrogel demonstrated excellent cytocompatibility, with cell viability remaining above 70% across all tested concentrations.
  • Carboxymethyl cellulose and xanthan gum were key components, enhancing the hydrogel's physicochemical properties like viscosity and bioadhesion.
  • Promising for inflammatory skin conditions, this CAB-loaded hydrogel merits further preclinical investigation for therapeutic uses.

Abstract

Butyric acid (a short-chain fatty acid) has anti-inflammatory and wound-healing potential but its direct use is limited by instability, odor, and irritancy. This study asked whether loading calcium butyrate (CAB) into a bioadhesive hydrogel suited for dermal delivery would yield acceptable physicochemical performance, sustained release, cytocompatibility, anti-inflammatory activity, pro-migratory/wound-closure effects, and non-irritancy. Hydrogels were prepared with carboxymethyl cellulose, xanthan gum, glycerin, and rose water, generating a blank matrix (F1) and a CAB-loaded system (F1-CAB). Formulations were characterized for pH, viscosity, CAB conten in the formulationt, texture/spreadability, rheology/thermal behavior, and in-vitro release kinetics. Biological evaluations followed ISO 10,993 principles using L929 fibroblasts, RAW 264.7 macrophages, and reconstructed human epidermis models. Endpoints included cell viability (cytotoxicity), nitrite inhibition (anti-inflammatory activity) versus CAB alone, fibroblast migration/wound-closure assays, and in-vitro irritation (tissue viability). CAB incorporation increased viscosity, bioadhesion, and viscoelastic strength. F1-CAB exhibited shear-thinning behavior and superior thermal stability, consistent with Ca²⁺-mediated crosslinking. CAB release was sustained. The formulation showed excellent cytocompatibility with viability > 70% at all concentrations tested. At 1 mg/mL, F1-CAB produced 34% greater nitrite inhibition than CAB alone. F1-CAB enhanced fibroblast migration in a dose-dependent manner, accelerating wound closure. Reconstructed epidermis viability remained > 80%, indicating non-irritant properties. A CAB-loaded bioadhesive hydrogel achieved favorable physicochemical/mechanical profiles, sustained release, robust anti-inflammatory effects, and pro-healing activity while maintaining biocompatibility and non-irritancy. These findings support CAB hydrogels as a promising dermal platform for inflammatory skin conditions and regenerative applications, meriting further preclinical development.

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Cite This Study

Cağlar et al. (2026) studied this question.

synapsesocial.com/papers/69a7613ac6e9836116a2ef28https://doi.org/10.1007/s12247-026-10425-0
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