Zheng Kai, Yang Ziwei, Ba Te
Department of Burn Surgery, The Third Affiliated Hospital of Inner Mongolia Medical University (Inner Mongolia Bao Gang Hospital), Baotou, China.
Department of Pediatric Surgery, Tianjin Medical University General Hospital, Tianjin Medical University Graduate School, Tianjin, China.
Ann Med. 2025 Dec;57(1):2530693. doi: 10.1080/07853890.2025.2530693. Epub 2025 Jul 13.
Skin wounds resulting from dermatological diseases and other specific causes present significant challenges in health care. These wounds can lead to infections, chronic conditions, long-term complications and even mortality. Consequently, developing highly effective and viable therapies for wound healing is important. Marine bioactive peptides are increasingly being utilized because of their favourable biological properties, which include anti-inflammatory, antioxidant, antimicrobial, antiageing, antitumour and antihypertensive effects. These peptides offer several advantages, including high efficacy, excellent safety, clear target specificity and low allergenicity. Notably, scientific evidence has demonstrated that marine bioactive peptides promote skin injures repair and has underscored their substantial potential in wound healing.
Our objective is to provide molecular insights that may facilitate the development of innovative therapeutic agents aimed at improving wound healing and skin repair.
MATERIALS & METHODS: This review synthesizes information from major databases, including ScienceDirect, Google Scholar, Scopus, PubMed and Springer Link. Publications were selected without date restrictions and used terms such as skin injures, wound healing, marine bioactive peptides, antimicrobial, ceRNA. Articles related to agriculture, ecology, or synthetic work or those published in languages other than English were excluded.
In this review, we integrated and examined the current understanding of wound care. Additionally, we analysed the underlying molecular mechanisms involved to elucidate the characteristics of marine bioactive peptides.
由皮肤病及其他特定原因导致的皮肤伤口给医疗保健带来了重大挑战。这些伤口可能导致感染、慢性病、长期并发症甚至死亡。因此,开发高效且可行的伤口愈合疗法至关重要。海洋生物活性肽因其有利的生物学特性,包括抗炎、抗氧化、抗菌、抗老化、抗肿瘤和抗高血压作用,正越来越多地被利用。这些肽具有多种优势,包括高效、安全性高、靶点特异性明确和低致敏性。值得注意的是,科学证据表明海洋生物活性肽可促进皮肤损伤修复,并凸显了它们在伤口愈合方面的巨大潜力。
我们的目的是提供分子层面的见解,以促进开发旨在改善伤口愈合和皮肤修复的创新治疗药物。
本综述综合了来自主要数据库的信息,包括ScienceDirect、谷歌学术、Scopus、PubMed和Springer Link。所选出版物无日期限制,并使用了皮肤损伤、伤口愈合、海洋生物活性肽、抗菌、ceRNA等术语。排除了与农业、生态学或合成工作相关的文章,以及非英文发表的文章。
在本综述中,我们整合并审视了当前对伤口护理的认识。此外,我们分析了其中涉及的潜在分子机制,以阐明海洋生物活性肽的特性。