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Cytocompatibility of Siloxane-Containing Vaterite/Poly(l-lactic acid) Composite Coatings on Metallic Magnesium

机译:金属镁上含硅氧烷的球/石/聚(l-乳酸)复合涂层的细胞相容性

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摘要

Poly(l-lactic acid)-based films which include 60 wt % of vaterite (V) or siloxane-containing vaterite (SiV) were coated on a pure magnesium substrate, denoted by PLLA/V or PLLA/SiV, respectively, to suppress early corrosion and improve its cytocompatibility. Both coating films adhered to the Mg substrate with 2.3–2.8 MPa of tensile bonding strength. Soaking test for 7 days in α-modified minimum essential medium revealed that the morphological instability of the PLLA/V film caused a higher amount of Mg2+ ion to be released from the coating sample. On the other hand, in the case of the coating with the PLLA/SiV film, no morphological change even after the soaking test was observed, owing to the suppression of the degradation rate. In cell culture tests, the proliferation of mouse osteoblast-like cell (MC3T3-E1) was significantly enhanced by both coatings, in comparison with the uncoated magnesium substrate. The cell morphology revealed that a few less-spread cells were observed on the PLLA/V film, while more elongated cells were done on the PLLA/SiV film. The cells on the PLLA/SiV film exhibited an extremely higher alkaline phosphatase activity after 21 days of incubation than that on the PLLA/V one. The PLLA/SiV film suppressed the early corrosion and enhanced cytocompatibility on metallic magnesium.
机译:包含60 wt%的球ate石(V)或含硅氧烷的球ate石(SiV)的聚(l-乳酸)基薄膜分别涂覆在纯镁基材上,以PLLA / V或PLLA / SiV表示早期腐蚀并改善其细胞相容性。两种涂膜均以2.3-2.8 MPa的拉伸粘合强度粘附于Mg基材。在α-修饰的基本必需介质中浸泡7天的试验表明,PLLA / V膜的形态不稳定性导致从涂层样品中释放出更多量的Mg 2 + 离子。另一方面,在具有PLLA / SiV膜的涂层的情况下,由于抑制了降解速率,即使在浸泡试验之后也没有观察到形态变化。在细胞培养测试中,与未涂层的镁底物相比,两种涂层均显着增强了小鼠成骨样细胞(MC3T3-E1)的增殖。细胞形态表明,在PLLA / V膜上观察到少量扩散的细胞,而在PLLA / SiV膜上观察到更多伸长的细胞。孵育21天后,PLLA / SiV膜上的细胞显示出比PLLA / V上的细胞高得多的碱性磷酸酶活性。 PLLA / SiV膜抑制了早期腐蚀并增强了对金属镁的细胞相容性。

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