College of Life Science, Mudanjiang Medical University, Mudanjiang, China.
Department of Neurology, the Affiliated Hongqi Hospital, Mudanjiang Medical University, Aimin District, Mudanjiang 157011, China.
Theranostics. 2024 Aug 19;14(13):5235-5261. doi: 10.7150/thno.99181. eCollection 2024.
As novel biomedical materials, microalgae have garnered significant interest because of their ability to generate photosynthetic oxygen, their antioxidant activity, and their favorable biocompatibility. Many studies have concentrated on the hypoxia-alleviating effects of microalgae within tumor microenvironments. However, recent findings indicate that microalgae can significantly increase the regeneration of various tissues and organs. To augment microalgae's therapeutic efficacy and mitigate the limitations imposed by immune clearance, it is essential to process microalgae through various processing strategies. This review examines common microalgal species in biomedical applications, such as , , diatoms, and . This review outlines diverse processing methods, including microalgae extracts, microalgae‒nanodrug composite delivery systems, surface modifications, and living microalgae‒loaded hydrogels. It also discusses the latest developments in tissue repair using processed microalgae for skin, gastrointestinal, bone, cardiovascular, lung, nerve, and oral tissues. Furthermore, future directions are presented, and research gaps for processed microalgae are identified. Collectively, these insights may inform the innovation of processed microalgae for various uses and offer guidance for ongoing research in tissue repair.
作为新型生物医学材料,微藻因其能够产生光合作用氧气、具有抗氧化活性以及良好的生物相容性而受到广泛关注。许多研究都集中在微藻在肿瘤微环境中缓解缺氧的作用。然而,最近的研究发现,微藻可以显著促进各种组织和器官的再生。为了提高微藻的治疗效果并减轻免疫清除带来的限制,有必要通过各种处理策略对微藻进行加工。本文综述了生物医学应用中常见的微藻种类,如蓝藻、绿藻、硅藻和金藻。本文概述了多种处理方法,包括微藻提取物、微藻-纳米药物复合递药系统、表面修饰和负载活微藻的水凝胶。还讨论了经处理的微藻在皮肤、胃肠道、骨骼、心血管、肺、神经和口腔组织修复中的最新研究进展。此外,还提出了未来的发展方向,并确定了处理后的微藻的研究空白。总之,这些研究结果为处理后的微藻在各种用途的创新提供了信息,并为组织修复的持续研究提供了指导。