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Osteoblast response to disordered nanotopography

机译:成骨细胞对无序纳米形貌的反应

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摘要

The ability to influence stem cell differentiation is highly desirable as it would help us improve clinical outcomes for patients in various aspects. Many different techniques to achieve this have previously been investigated. This concise study, however, has focused on the topography on which cells grow. Current uncemented orthopaedic implants can fail if the implant fails to bind to the surrounding bone and, typically, forms a soft tissue interface which reduces direct bone contact. Here, we look at the effect of a previously reported nanotopography that utilises nanodisorder to influence mesenchymal stromal cell (as may be found in the bone marrow) differentiation towards bone and to also exert this effect on mature osteoblasts (as may be found in the bone). As topography is a physical technique, it can be envisaged for use in a range of materials such as polymers and metals used in the manufacture of orthopaedic implants.
机译:影响干细胞分化的能力是非常需要的,因为它将帮助我们在各个方面改善患者的临床结局。以前已经研究了许多不同的技术来实现这一目标。然而,这项简洁的研究集中在细胞生长的地形上。如果植入物无法与周围的骨结合,并且当前形成的软组织界面会减少与骨骼的直接接触,那么当前的非骨水泥化整形植入物可能会失败。在这里,我们看一下以前报道的纳米形貌的影响,这种形貌利用纳米紊乱影响间充质基质细胞(可能在骨髓中发现)向骨骼的分化,并且也对成熟的成骨细胞(可能在骨骼中发现)产生这种作用)。由于地形是一种物理技术,因此可以设想将其用于多种材料,例如用于制造整形外科植入物的聚合物和金属。

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