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首页> 外文期刊>Acta biomaterialia >Biological magnetic cellular spheroids as building blocks for tissue engineering.
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Biological magnetic cellular spheroids as building blocks for tissue engineering.

机译:生物磁性蜂窝球体作为组织工程的构建块。

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摘要

Magnetic nanoparticles (MNPs), primarily iron oxide nanoparticles, have been incorporated into cellular spheroids to allow for magnetic manipulation into desired shapes, patterns and 3-D tissue constructs using magnetic forces. However, the direct and long-term interaction of iron oxide nanoparticles with cells and biological systems can induce adverse effects on cell viability, phenotype and function, and remain a critical concern. Here we report the preparation of biological magnetic cellular spheroids containing magnetoferritin, a biological MNP, capable of serving as a biological alternative to iron oxide magnetic cellular spheroids as tissue engineered building blocks. Magnetoferritin NPs were incorporated into 3-D cellular spheroids with no adverse effects on cell viability up to 1 week. Additionally, cellular spheroids containing magnetoferritin NPs were magnetically patterned and fused into a tissue ring to demonstrate its potential for tissue engineering applications. These results present a biological approach that can serve as an alternative to the commonly used iron oxide magnetic cellular spheroids, which often require complex surface modifications of iron oxide NPs to reduce the adverse effects on cells.
机译:磁性纳米颗粒(MNP),主要是氧化铁纳米颗粒已掺入蜂窝球体中,以允许磁力操纵磁力成所需的形状,图案和3-D组织构建体。然而,氧化铁纳米粒子与细胞和生物系统的直接和长期相互作用可以诱导对细胞活力,表型和功能的不利影响,并且仍然是关键问题。在这里,我们报告了含有磁铁脲素,生物MNP的生物磁性细胞球体的制备,其能够用作氧化铁磁性蜂窝球体的生物替代品,作为组织工程建筑块。将磁铁脲素NPS掺入3-D细胞球状体中,对细胞活力没有不良影响,最长可达1周。另外,含有磁铁脲素NP的细胞球状体磁性图案化并融合到组织环中以证明其对组织工程应用的潜力。这些结果存在一种生物学方法,可以用作常用的氧化铁磁性胞球体的替代方法,这通常需要氧化铁NPS的复杂表面修饰,以降低对细胞的不利影响。

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