Issue 16, 2025, Issue in Progress

Herbal bioactive-loaded biopolymeric formulations for wound healing applications

Abstract

Recent advancements in wound healing technologies focus on incorporating herbal bioactives into biopolymeric formulations. A biocompatible matrix that promotes healing is provided by biopolymeric wound dressings. These dressings use components such as ulvan, hyaluronic acid, starch, cellulose, chitosan, alginate, gelatin, and pectin. These natural polymers assist in three crucial processes, namely, cell adhesion, proliferation, and moisture retention, all of which are necessary for effective wound repair. Curcumin, quercetin, Aloe vera, Vinca alkaloids, and Centella asiatica are some of the herbal bioactives that are included in biopolymeric formulations. They have powerful anti-inflammatory, antibacterial, and antioxidant activities. Chitosan, cellulose, collagen, alginate, and hyaluronic acid are some of the biopolymers that have shown promise in clinical trials for wound healing. These trials have also confirmed the safety and functional performance of these materials. Their recent advancements in wound care can be understood by the increasing number of patents linked to these formulations. These innovative dressings improve healing outcomes in acute and chronic wounds while minimizing adverse effects by incorporating biopolymers with herbal bioactives in an efficient manner. This review emphasizes that the development of next-generation wound care products can be facilitated via the integration of natural materials and bioactive substances.

Graphical abstract: Herbal bioactive-loaded biopolymeric formulations for wound healing applications

Article information

Article type
Review Article
Submitted
06 Dec 2024
Accepted
01 Apr 2025
First published
17 Apr 2025
This article is Open Access
Creative Commons BY-NC license

RSC Adv., 2025,15, 12402-12442

Herbal bioactive-loaded biopolymeric formulations for wound healing applications

N. Jangra, A. Singla, V. Puri, D. Dheer, H. Chopra, T. Malik and A. Sharma, RSC Adv., 2025, 15, 12402 DOI: 10.1039/D4RA08604J

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