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| Título: | Nanofibers and Microfibers for Osteochondral Tissue Engineering | Autores/as: | Ortega Medina, Zaida Cristina Alemán Domínguez, María Elena Donate González, Ricardo |
Clasificación UNESCO: | 331005 Ingeniería de procesos | Palabras clave: | Microfibers Nanofibers Fibrous scaffolds Electrospinning |
Fecha de publicación: | 2026 | Editor/a: | Springer | Resumen: | The use of fibers into scaffolds is a way to mimic natural tissues, in which fibrils are embedded in a matrix. The use of fibers can improve the mechanical properties of the scaffolds and may act as structural support for cell growth. Also, as the morphology of fibrous scaffolds is similar to the natural extracellular matrix, cells cultured on these scaffolds tend to maintain their phenotypic shape. Different materials and techniques can be used to produce micrfibers- and nanofibers for scaffolds manufacturing; cells, in general, adhere and proliferate very well on PCL, chitosan, silk fibroin, and other nanofibers. One of the most important techniques to produce microfibers/nanofibers is electrospinning. Nanofibrous scaffolds are receiving increasing attention in bone tissue engineering, because they are able to offer a favorable microenvironment for cell attachment and growth. Different polymers can be electrospun, i.e., polyester, polyurethane, PLA, PCL, collagen, and silk. Other materials such as bioglass fibers, nanocellulose, and even carbon fiber and fabrics have been used to help increase bioactivity, mechanical properties of the scaffold, and cell proliferation. A compilation of mechanical properties and most common biological tests performed on fibrous scaffolds is included in this chapter. | URI: | https://accedacris.ulpgc.es/jspui/handle/10553/159596 | ISBN: | 978-3-031-80976-7 | DOI: | https://doi.org/10.1007/978-3-319-76711-6_5 | Fuente: | Osteochondral Tissue Engineering / Zaida Ortega Medina, María Elena Alemán Domínguez, Ricardo Donate González, cap. 5, p. 97-123, |
| Colección: | Capítulo de libro |
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