A Comprehensive Review of Honey-Containing Hydrogel for Wound Healing Applications.

IF 5 3区 化学 Q1 POLYMER SCIENCE
Gels Pub Date : 2025-03-12 DOI:10.3390/gels11030194
Andik Nisa Zahra Zainuddin, Nurul Nadhirah Mustakim, Farah Alea Rosemanzailani, Nur Izzah Md Fadilah, Manira Maarof, Mh Busra Fauzi
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Abstract

Honey has long been recognized for its medicinal properties, particularly in wound healing. Recent advancements in material science have led to the development of honey-containing hydrogels, combining the natural healing properties of honey with the versatile characteristics of hydrogel matrices. These hydrogels offer numerous advantages, including high moisture retention, biocompatibility, and the controlled release of bioactive compounds, making them highly effective for wound healing applications. Hydrogels hold significant potential in advancing medical applications, particularly for cutaneous injuries. The diverse properties of honey, including antimicrobial, anti-inflammatory, and anti-eschar effects, have shown promise in accelerating tissue regeneration. According to studies, they are effective in maintaining a good swelling ratio index, Water Vapour Transmission Rate (WVTR), contact angle, tensile and elongation at break, in vitro biodegradation rate, viscosity and porosity analysis, lowering bacterial infections, and encouraging rapid tissue regeneration with notable FTIR peaks and SEM average pore sizes. However, limitations such as low bioavailability and inefficiencies in direct application reduce their therapeutic effectiveness at the wound site. Integrating honey into hydrogels can help preserve its wound healing mechanisms while enhancing its ability to facilitate skin tissue recovery. This review explores the underlying mechanisms of honey in wound healing management and presents an extensive analysis of honey-containing hydrogels reported in the literature over the past eight years. It emphasizes the physicochemical and mechanical effectiveness and advancements of honey-incorporated hydrogels in promoting skin wound healing and tissue regeneration, supported by evidence from both in vitro and in vivo studies. While honey-based therapies for wound healing have demonstrated promising outcomes in numerous in vitro and animal studies, clinical studies remain limited. Despite that, honey's incorporation into hydrogel systems, however, offers a potent fusion of contemporary material technology and natural healing qualities, marking a substantial breakthrough in wound treatment.

含蜂蜜水凝胶在伤口愈合中的应用综述。
长期以来,人们一直认为蜂蜜具有药用价值,尤其是在伤口愈合方面。材料科学的最新进展导致了含蜂蜜水凝胶的发展,将蜂蜜的天然愈合特性与水凝胶基质的多功能特性相结合。这些水凝胶具有许多优点,包括高保湿性,生物相容性和生物活性化合物的可控释放,使其在伤口愈合应用中非常有效。水凝胶在推进医学应用方面具有重大潜力,特别是在皮肤损伤方面。蜂蜜的多种特性,包括抗菌、抗炎和抗结痂的作用,已经显示出加速组织再生的希望。研究表明,它们在保持良好的膨胀比指数、水蒸汽透过率(WVTR)、接触角、断裂拉伸和伸长率、体外生物降解率、粘度和孔隙度分析、降低细菌感染和促进快速组织再生方面具有良好的效果,并具有显著的FTIR峰和SEM平均孔径。然而,诸如低生物利用度和直接应用效率低下等限制降低了它们在伤口部位的治疗效果。将蜂蜜融入水凝胶可以帮助保持伤口愈合机制,同时增强其促进皮肤组织恢复的能力。这篇综述探讨了蜂蜜在伤口愈合管理中的潜在机制,并对过去八年来文献中报道的含蜂蜜水凝胶进行了广泛的分析。它强调了蜂蜜水凝胶在促进皮肤伤口愈合和组织再生方面的物理化学和机械有效性和进展,并得到了体外和体内研究的证据支持。虽然以蜂蜜为基础的伤口愈合疗法在许多体外和动物研究中显示出有希望的结果,但临床研究仍然有限。尽管如此,蜂蜜与水凝胶系统的结合,提供了当代材料技术和自然愈合品质的有力融合,标志着伤口治疗的重大突破。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Gels
Gels POLYMER SCIENCE-
CiteScore
4.70
自引率
19.60%
发文量
707
审稿时长
11 weeks
期刊介绍: The journal Gels (ISSN 2310-2861) is an international, open access journal on physical (supramolecular) and chemical gel-based materials. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. Therefore, there is no restriction on the maximum length of the papers, and full experimental details must be provided so that the results can be reproduced. Short communications, full research papers and review papers are accepted formats for the preparation of the manuscripts. Gels aims to serve as a reference journal with a focus on gel materials for researchers working in both academia and industry. Therefore, papers demonstrating practical applications of these materials are particularly welcome. Occasionally, invited contributions (i.e., original research and review articles) on emerging issues and high-tech applications of gels are published as special issues.
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