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海藻酸盐复合水凝胶在骨组织工程中的制备及生物医学应用:综述

Fabrication and Biomedical Application of Alginate Composite Hydrogels in Bone Tissue Engineering: A Review.

机构信息

Key Laboratory of Tropical Medicinal Resource Chemistry of Ministry of Education, College of Chemistry and Chemical Engineering, Hainan Normal University, Haikou 571158, China.

Key Laboratory of Water Pollution Treatment & Resource Reuse of Hainan Province, College of Chemistry and Chemical Engineering, Hainan Normal University, Haikou 571158, China.

出版信息

Int J Mol Sci. 2024 Jul 17;25(14):7810. doi: 10.3390/ijms25147810.

Abstract

Nowadays, as a result of the frequent occurrence of accidental injuries and traumas such as bone damage, the number of people causing bone injuries or fractures is increasing around the world. The design and fabrication of ideal bone tissue engineering (BTE) materials have become a research hotspot in the scientific community, and thus provide a novel path for the treatment of bone diseases. Among the materials used to construct scaffolds in BTE, including metals, bioceramics, bioglasses, biomacromolecules, synthetic organic polymers, etc., natural biopolymers have more advantages against them because they can interact with cells well, causing natural polymers to be widely studied and applied in the field of BTE. In particular, alginate has the advantages of excellent biocompatibility, good biodegradability, non-immunogenicity, non-toxicity, wide sources, low price, and easy gelation, enabling itself to be widely used as a biomaterial. However, pure alginate hydrogel as a BTE scaffold material still has many shortcomings, such as insufficient mechanical properties, easy disintegration of materials in physiological environments, and lack of cell-specific recognition sites, which severely limits its clinical application in BTE. In order to overcome the defects of single alginate hydrogels, researchers prepared alginate composite hydrogels by adding one or more materials to the alginate matrix in a certain proportion to improve their bioapplicability. For this reason, this review will introduce in detail the methods for constructing alginate composite hydrogels, including alginate/polymer composite hydrogels, alginate/bioprotein or polypeptide composite hydrogels, alginate/bioceramic composite hydrogels, alginate/bioceramic composite hydrogels, and alginate/nanoclay composite hydrogels, as well as their biological application trends in BTE scaffold materials, and look forward to their future research direction. These alginate composite hydrogel scaffolds exhibit both unexceptionable mechanical and biochemical properties, which exhibit their high application value in bone tissue repair and regeneration, thus providing a theoretical basis for the development and sustainable application of alginate-based functional biomedical materials.

摘要

如今,由于骨骼损伤等意外伤害和创伤的频繁发生,世界各地因骨骼受伤或骨折而导致的人数正在增加。理想的骨组织工程(BTE)材料的设计和制造已成为科学界的研究热点,为骨疾病的治疗提供了新途径。在 BTE 中用于构建支架的材料中,包括金属、生物陶瓷、生物玻璃、生物大分子、合成有机聚合物等,天然生物聚合物比它们更具优势,因为它们可以与细胞很好地相互作用,导致天然聚合物在 BTE 领域得到广泛研究和应用。特别是,海藻酸盐具有优异的生物相容性、良好的生物降解性、非免疫原性、无毒、来源广泛、价格低廉和易于凝胶化等优点,使其广泛用作生物材料。然而,纯海藻酸盐水凝胶作为 BTE 支架材料仍存在许多缺点,例如机械性能不足、在生理环境中材料容易崩解以及缺乏细胞特异性识别位点,这严重限制了其在 BTE 中的临床应用。为了克服单一海藻酸盐水凝胶的缺陷,研究人员通过以一定比例向海藻酸盐基质中添加一种或多种材料来制备海藻酸盐复合水凝胶,以提高其生物适用性。基于此,本文将详细介绍构建海藻酸盐复合水凝胶的方法,包括海藻酸盐/聚合物复合水凝胶、海藻酸盐/生物蛋白或多肽复合水凝胶、海藻酸盐/生物陶瓷复合水凝胶、海藻酸盐/纳米粘土复合水凝胶以及它们在 BTE 支架材料中的生物应用趋势,并展望其未来的研究方向。这些海藻酸盐复合水凝胶支架同时具有无可挑剔的机械和生化性能,在骨组织修复和再生方面表现出很高的应用价值,为基于海藻酸盐的功能生物医学材料的开发和可持续应用提供了理论基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/89a6/11277200/52ee9288eb23/ijms-25-07810-g001.jpg

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