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生物水凝胶中的血管生成潜力。

Angiogenic Potential in Biological Hydrogels.

作者信息

Giraudo Maria Vittoria, Di Francesco Dalila, Catoira Marta Calvo, Cotella Diego, Fusaro Luca, Boccafoschi Francesca

机构信息

Department of Health Sciences, University of Piemonte Orientale, 28100 Novara, Italy.

Tissuegraft srl, 28100 Novara, Italy.

出版信息

Biomedicines. 2020 Oct 20;8(10):436. doi: 10.3390/biomedicines8100436.

Abstract

Hydrogels are three-dimensional (3D) materials able to absorb and retain water in large amounts while maintaining their structural stability. Due to their considerable biocompatibility and similarity with the body's tissues, hydrogels are one of the most promising groups of biomaterials. The main application of these hydrogels is in regenerative medicine, in which they allow the formation of an environment suitable for cell differentiation and growth. Deriving from these hydrogels, it is, therefore, possible to obtain bioactive materials that can regenerate tissues. Because vessels guarantee the right amount of oxygen and nutrients but also assure the elimination of waste products, angiogenesis is one of the processes at the base of the regeneration of a tissue. On the other hand, it is a very complex mechanism and the parameters to consider are several. Indeed, the factors and the cells involved in this process are numerous and, for this reason, it has been a challenge to recreate a biomaterial able to adequately sustain the angiogenic process. However, in this review the focal point is the application of natural hydrogels in angiogenesis enhancing and their potential to guide this process.

摘要

水凝胶是三维(3D)材料,能够大量吸收和保留水分,同时保持其结构稳定性。由于其具有相当大的生物相容性且与人体组织相似,水凝胶是最有前途的生物材料类别之一。这些水凝胶的主要应用在于再生医学,在再生医学中,它们能够形成适合细胞分化和生长的环境。因此,从这些水凝胶中可以获得能够再生组织的生物活性材料。由于血管能保证适量的氧气和营养物质,还能确保废物的排出,血管生成是组织再生的基础过程之一。另一方面,这是一个非常复杂的机制,需要考虑的参数有很多。事实上,参与这个过程的因素和细胞众多,因此,要创建一种能够充分支持血管生成过程的生物材料一直是一个挑战。然而,在这篇综述中,重点是天然水凝胶在促进血管生成方面的应用及其引导这一过程的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d67d/7589931/805782b622a2/biomedicines-08-00436-g001.jpg

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