Hydrogels based on galactomannan and κ-carrageenan containing immobilized biomolecules for in vivo thermal-burn wound treatment

自愈水凝胶 伤口愈合 化学 乳铁蛋白 卡拉胶 黄原胶 体内 生物医学工程 半乳甘露聚糖 流变学 多糖 材料科学 色谱法 外科 高分子化学 生物化学 医学 复合材料 生物技术 生物
作者
José Roberto P. C. de Seixas,Kátia Alves Ribeiro,Andrea Alves de Souza,Cecília E. da Silva,Maxwelinne G. Pedra-Fixe,Maria Helena Madruga Lima-Ribeiro,Jacinto da C. Silva Neto,Wilson Barros,René Duarte Martins,Luana Cassandra Breitenbach Barroso Coelho,Maria Tereza dos Santos Correia,Paulo Rodinei Soares Lopes,Maria G. Carneiro‐da‐Cunha
出处
期刊:International Journal of Biological Macromolecules [Elsevier BV]
卷期号:270: 132379-132379 被引量:2
标识
DOI:10.1016/j.ijbiomac.2024.132379
摘要

Hydrogels based on natural polysaccharides have demonstrated efficacy in epithelial recovery from cutaneous burn wounds. Here, we prepared a double-network hydrogel consisting of galactomannan (from Cassia grandis seeds) and κ-carrageenan (commercially sourced), cross-linked with CaCl2, as a matrix for immobilizing lactoferrin and/or Cramoll, aiming at its applicability as dressings for second-degree burn wounds. The formulations obtained [H — hydrogel, HL — hydrogel + lactoferrin, HC — hydrogel + Cramoll and HLC — hydrogel + lactoferrin + Cramoll] were analyzed rheologically as well as in terms of their stability (pH, color, microbial contamination) for 90 days. The burn was created with an aluminum bar (97 ± 3 °C) in the dorsal region of Wistar rats and subsequently treated with hydrogels (H, HL, HC, HLC) and control saline solution (S). The burn was monitored for 3, 7 and 14 days to evaluate the efficacy of the hydrogels in promoting wound healing. The hydrogels did not reveal significant pH or microbiological changes; there was an increase in brightness and a reduction in opacity for H. The rheological analysis confirmed the gel-like viscoelastic signature of the systems without substantial modification of the basic rheological characteristics, however HLC proved to be more rigid, due to rheological synergy when combining protein biomolecules. Macroscopic analyses confirmed centripetal healing with wound contraction: S < H < HC < HL < HLC. Histopathological analyses showed that hydrogel-treated groups reduced inflammation, tissue necrosis and fibrosis, while promoting re-epithelialization with focal acanthosis, especially in HLC due to a positive synergistic effect, indicating its potential as a promising therapy in the repair of burns.
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