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具有抗菌、缓解缺氧和增殖特性的新型基于纳米酶的多组分原位水凝胶促进胃造口管通道成熟

Novel Nanozyme-Based Multicomponent in situ Hydrogels with Antibacterial, Hypoxia-Relieving and Proliferative Properties for Promoting Gastrostomy Tube Tract Maturation.

作者信息

Xiao Feng, Yan Bisong, Yuan Tianwen, He Yang, Zhang Xiaojun, He Xiaoyun, Peng Wei, Xu Ying, Cao Jun

机构信息

Shanghai Eighth People's Hospital, Xuhui District, Shanghai, 200030, People's Republic of China.

Department of Interventional Oncology, Dahua Hospital, Xuhui District, Shanghai, 200237, People's Republic of China.

出版信息

Int J Nanomedicine. 2025 Jan 21;20:827-848. doi: 10.2147/IJN.S496537. eCollection 2025.

Abstract

PURPOSE

Gastrostomy is the commonly used enteral feeding technology. The clinical risks caused by tube dislodgement and peristomal site infection are the common complications before complete tract maturation after gastrostomy. However, there is currently no relevant research to promote gastrostomy wound treatment and tract maturation.

METHODS

Herein, a nanozyme loaded bioactive hydrogels (MO-HPA) was developed to accelerate tract maturation and inhibit bacteria. Nano-manganese dioxide (n-MO) and polylysine modified hyaluronic acid (HP) were synthesized and characterized. In situ hydrogels were prepared by mixing the HP/ alginate solution, and the n-MO solution containing Ca. The structure, physicochemical and mechanical properties of MO-HPA were evaluated. Furthermore, the antibacterial activity, and the In vitro and intracellular oxygen production efficacy were determined. The cell migration, wound healing and tube tract maturation promotion effect were assessed in cell experiments and in skin defect mouse model, as well as rabbit gastrostomy model.

RESULTS

The n-MO has a uniform particle size with oxygen producing activities. The MO-HPA demonstrated a homogeneous and porous microstructure. Additionally, the gelation time, swelling ratio, rheological behavior, and mechanical properties of hydrogels could be tuned by adjusting the HP content. The antibacterial efficiency of the MO-HPA group on and increased by about 40.1% and 55.6% respectively, compared to the MO-HPA group. Additionally, MO-HPA hydrogel demonstrated effective oxygen-producing and cell migration-promoting functions in both in vitro and cellular experiments. The MO-HPA group significantly accelerated wound healing in both of mouse skin defect model and rabbit gastrostomy model. The hydrogel group exhibited a significant promotion in collagen content and reduction in HIF-1α, which effectively hastened tract maturation.

CONCLUSION

Therefore, our study provides new and critical insights into a strategy to design bioactive hydrogels with multiple functions, which can open up a new avenue for accelerated wound healing after gastrostomy.

摘要

目的

胃造口术是常用的肠内喂养技术。胃造口术后在完全通道成熟之前,管道移位和造口周围部位感染所引起的临床风险是常见并发症。然而,目前尚无促进胃造口伤口治疗和通道成熟的相关研究。

方法

在此,开发了一种负载纳米酶的生物活性水凝胶(MO-HPA)以加速通道成熟并抑制细菌。合成并表征了纳米二氧化锰(n-MO)和聚赖氨酸修饰的透明质酸(HP)。通过混合HP/藻酸盐溶液和含钙的n-MO溶液制备原位水凝胶。评估了MO-HPA的结构、物理化学和机械性能。此外,还测定了抗菌活性以及体外和细胞内产氧功效。在细胞实验、皮肤缺损小鼠模型以及兔胃造口模型中评估了细胞迁移、伤口愈合和管道成熟促进作用。

结果

n-MO具有均匀的粒径且具有产氧活性。MO-HPA表现出均匀且多孔的微观结构。此外,通过调节HP含量可以调节水凝胶的凝胶化时间、溶胀率、流变行为和机械性能。与MO-HPA组相比,MO-HPA组对[具体细菌1]和[具体细菌2]的抗菌效率分别提高了约40.1%和55.6%。此外,MO-HPA水凝胶在体外和细胞实验中均表现出有效的产氧和促进细胞迁移的功能。MO-HPA组在小鼠皮肤缺损模型和兔胃造口模型中均显著加速了伤口愈合。水凝胶组在胶原蛋白含量方面有显著提升,HIF-1α降低,有效加速了通道成熟。

结论

因此,我们的研究为设计具有多种功能的生物活性水凝胶的策略提供了新的关键见解,这可为胃造口术后加速伤口愈合开辟一条新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/348d/11762016/c7d72432e1b9/IJN-20-827-g0001.jpg

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