基于水凝胶的氧气和药物递送敷料促进伤口愈合

Hydrogel-Based Oxygen and Drug Delivery Dressing for Improved Wound Healing.

作者信息

Ren Wen, Sands Mia, Han Xiaoxue, Tsipursky Michael, Irudayaraj Joseph

机构信息

Department of Bioengineering, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, United States.

Biomedical Research Center in Mills Breast Cancer Institute, Carle Foundation Hospital, Champaign, Illinois 61801, United States.

出版信息

ACS Omega. 2024 May 22;9(22):24095-24104. doi: 10.1021/acsomega.4c03324. eCollection 2024 Jun 4.

Abstract

Herein, we propose a Carbopol hydrogel-based oxygen nanodelivery "nanohyperbaric" system as a wound dressing material for an enhanced wound healing process. Oxygen nanobubbles (ONBs) were used to supply oxygen, and collagenase was added in the gel as a drug model. Both oxygen and collagenase would benefit the wound healing process, and the Carbopol hydrogel serves as the matrix to load ONBs and collagenase in the wound dressing. The obtained ONB-embedded Carbopol hydrogel with collagenase (ONB-CC) could provide 12.08 ± 0.75 μg of oxygen from 1 mL of ONB-CC and exhibited a notable capacity to prolong the oxygen holding for up to 3 weeks and maintained the enzymatic activity of collagenase at more than 0.05 U per 0.1 mL of ONB-CC for up to 17 days. With HDFa cells, the ONB-CC did not show a notable effect on the cell viability. In a scratch assay, the oxygen from ONBs or collagenase aided cell migration; further, the ONB-CC induced the most obvious scratch closure, indicating an improvement in wound healing as a cocktail in the ONB-CC. The mRNA expression further demonstrated the effectiveness of the ONB-CC. Studies in rats with punched wounds treated with the ONB-CC dressing showed improved wound closure. Histopathological images showed that the ONB-CC dressing enhanced re-epithelization and formation of new blood vessels and hair follicles. The proposed ONB-CC has excellent potential as an ideal wound dressing material to accelerate wound healing by integration of multiple functions.

摘要

在此,我们提出一种基于卡波姆水凝胶的氧纳米递送“纳米高压氧”系统,作为一种用于增强伤口愈合过程的伤口敷料材料。使用氧纳米气泡(ONB)来提供氧气,并在凝胶中添加胶原酶作为药物模型。氧气和胶原酶都将有益于伤口愈合过程,卡波姆水凝胶作为基质在伤口敷料中负载ONB和胶原酶。所获得的含胶原酶的包埋ONB的卡波姆水凝胶(ONB-CC)每1 mL可提供12.08±0.75μg氧气,并具有显著的延长氧气保持时间长达3周的能力,且每0.1 mL ONB-CC中胶原酶的酶活性在长达17天内保持超过0.05 U。对于人皮肤成纤维细胞(HDFa),ONB-CC对细胞活力没有显著影响。在划痕试验中,ONB释放的氧气或胶原酶有助于细胞迁移;此外,ONB-CC诱导了最明显的划痕闭合,表明作为ONB-CC中的混合物可促进伤口愈合。mRNA表达进一步证明了ONB-CC的有效性。用ONB-CC敷料治疗大鼠穿孔伤口的研究表明伤口闭合得到改善。组织病理学图像显示,ONB-CC敷料增强了再上皮化以及新血管和毛囊的形成。所提出的ONB-CC具有作为理想伤口敷料材料的巨大潜力,可通过整合多种功能来加速伤口愈合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/136d/11154931/f109609c27db/ao4c03324_0006.jpg

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