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基于氧化铈纳米颗粒(CeONPs)的支架的简要综述:伤口愈合应用的最新进展

A Brief Review on Cerium Oxide (CeONPs)-Based Scaffolds: Recent Advances in Wound Healing Applications.

作者信息

Allu Ishita, Kumar Sahi Ajay, Kumari Pooja, Sakhile Karunya, Sionkowska Alina, Gundu Shravanya

机构信息

Department of Biomedical Engineering, University College of Engineering (UCE), Osmania University, Hyderabad 500007, Telangana, India.

Faculty of Chemistry, Nicolaus Copernicus University in Torun, Jurija Gagarina 11, 87-100 Toruń, Poland.

出版信息

Micromachines (Basel). 2023 Apr 17;14(4):865. doi: 10.3390/mi14040865.

Abstract

The process of wound healing is complex and involves the interaction of multiple cells, each with a distinct role in the inflammatory, proliferative, and remodeling phases. Chronic, nonhealing wounds may result from reduced fibroblast proliferation, angiogenesis, and cellular immunity, often associated with diabetes, hypertension, vascular deficits, immunological inadequacies, and chronic renal disease. Various strategies and methodologies have been explored to develop nanomaterials for wound-healing treatment. Several nanoparticles such as gold, silver, cerium oxide and zinc possess antibacterial properties, stability, and a high surface area that promotes efficient wound healing. In this review article, we investigate the effectiveness of cerium oxide nanoparticles (CeONPs) in wound healing-particularly the effects of reducing inflammation, enhancing hemostasis and proliferation, and scavenging reactive oxygen species. The mechanism enables CeONPs to reduce inflammation, modulate the immunological system, and promote angiogenesis and tissue regeneration. In addition, we investigate the efficacy of cerium oxide-based scaffolds in various wound-healing applications for creating a favorable wound-healing environment. Cerium oxide nanoparticles (CeONPs) exhibit antioxidant, anti-inflammatory, and regenerative characteristics, enabling them to be ideal wound healing material. Investigations have shown that CeONPs can stimulate wound closure, tissue regeneration, and scar reduction. CeONPs may also reduce bacterial infections and boost wound-site immunity. However, additional study is needed to determine the safety and efficacy of CeONPs in wound healing and their long-term impacts on human health and the environment. The review reveals that CeONPs have promising wound-healing properties, but further study is needed to understand their mechanisms of action and ensure their safety and efficacy.

摘要

伤口愈合过程复杂,涉及多种细胞的相互作用,每种细胞在炎症、增殖和重塑阶段都发挥着独特作用。慢性、不愈合伤口可能是由于成纤维细胞增殖减少、血管生成和细胞免疫功能下降所致,常与糖尿病、高血压、血管缺陷、免疫功能不全及慢性肾病相关。人们已经探索了各种策略和方法来开发用于伤口愈合治疗的纳米材料。几种纳米颗粒,如金、银、氧化铈和锌,具有抗菌性能、稳定性以及促进有效伤口愈合的高表面积。在这篇综述文章中,我们研究了氧化铈纳米颗粒(CeONPs)在伤口愈合中的有效性,特别是其在减轻炎症、增强止血和增殖以及清除活性氧方面的作用。该机制使CeONPs能够减轻炎症、调节免疫系统并促进血管生成和组织再生。此外,我们研究了基于氧化铈的支架在各种伤口愈合应用中创造有利伤口愈合环境的功效。氧化铈纳米颗粒(CeONPs)具有抗氧化、抗炎和再生特性,使其成为理想的伤口愈合材料。研究表明,CeONPs可以促进伤口闭合、组织再生和减少疤痕形成。CeONPs还可能减少细菌感染并增强伤口部位的免疫力。然而,需要进一步研究以确定CeONPs在伤口愈合中的安全性和有效性及其对人类健康和环境的长期影响。该综述表明,CeONPs具有良好的伤口愈合特性,但需要进一步研究以了解其作用机制并确保其安全性和有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/04d9/10143419/54f852927597/micromachines-14-00865-g001.jpg

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