再生(生物学)
生物医学工程
自愈水凝胶
材料科学
纳米技术
细胞生物学
化学
医学
生物
高分子化学
作者
Arianna Rossi,Franco Furlani,Giada Bassi,Carla Cunha,Alice Lunghi,Filippo Molinari,Francisco J. Terán,Florigio Lista,Michele Bianchi,Anna Piperno,Monica Montesi,Silvia Panseri
标识
DOI:10.1016/j.mtbio.2024.101110
摘要
Cellular alignment plays a pivotal role in several human tissues, including skeletal muscle, spinal cord and tendon. Various techniques have been developed to control cellular alignment using 3D biomaterials. However, the majority of 3D-aligned scaffolds require invasive surgery for implantation. In contrast, injectable hydrogels provide a non-invasive delivery method, gaining considerable attention for the treatment of diverse conditions, including osteochondral lesions, volumetric muscle loss, and traumatic brain injury. We engineered a biomimetic hydrogel with magnetic responsiveness by combining gellan gum, hyaluronic acid, collagen, and magnetic nanoparticles (MNPs). Collagen type I was paired with MNPs to form magnetic collagen bundles (MCollB), allowing the orientation control of these bundles within the hydrogel matrix through the application of a remote low-intensity magnetic field. This resulted in the creation of an anisotropic architecture. The hydrogel mechanical properties were comparable to those of human soft tissues, such as skeletal muscle, and proof of the aligned hydrogel concept was demonstrated.
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