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Biofabrication of osteochondral grafts via 3D printing of cell-laden microcarriers in a gelatin methacrylamide/gellan gum bioink

机译:通过在明胶甲基丙烯酰胺/ Gellan Gumink中通过3D印刷的骨骨髓移植物的生物结组

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MCs-laden GelMA/gellan gum was proven to be a promising composite material for biofabrication. MCs acted as a mechanical reinforcement for the soft gel. Encapsulation of MC-MSCs complexes -with improved cell adhesion and cell-cell contacts- was effective to improve osteogenic differentiation and to support bone matrix deposition. MCs culture is of great interest for MSCs expansion and scaling-up of bone-like tissues bioprinting. These are key findings to build advanced constructs for bone and zonal osteochondral regeneration.
机译:已证明MCS-LADEN GELMA / GLOLLAN GUM是一种用于生物结缔的有前途的复合材料。 MCS充当软凝胶的机械加固。 MC-MSCs复合物的封装 - 改善的细胞粘附和细胞 - 细胞触点 - 有效改善骨质发生分化并支持骨基质沉积。 MCS文化对MSCs的膨胀和骨骼组织Bioplinting的扩大和扩展非常感兴趣。这些是为构建骨骼和区域骨质色体再生的先进构建体的主要发现。

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