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Antibacterial and osteogenesis performances of LL37-loaded titania nanopores in vitro and in vivo

机译:负载LL37的二氧化钛纳米孔的体内外抗菌和成骨性能

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摘要

>Background: Many studies have shown that the size of nanotube (NT) can significantly affect the behavior of osteoblasts on titanium-based materials. But the weak bonding strength between NT and substrate greatly limits their application.>Purpose: The objective of this study was to compare the stability of NT and nanopore (NP) coatings, and further prepare antibacterial titanium-based materials by loading LL37 peptide in NP structures.>Methods: The adhesion strength of NT and NP layers was investigated using a scratch tester. The proliferation and differentiation of MC3T3-E1 cells on different substrates were evaluated in vitro by CCK8, alkaline phosphatase activity, mineralization and polymerase chain reaction assays. The antibacterial rates of NP and NP/LL37 were also measured by spread plate method. Moreover, the osteogenesis around NP and NP/LL373 in vivo was further evaluated using uninfected and infected models.>Results: Scratch test proved that the NP layers had stronger bonding strength with the substrates due to their continuous pore structures and thicker pipe walls than the independent NT structures. In vitro, cell results showed that MC3T3-E1 cells on NP substrates had better early adhesion, spreading and osteogenic differentiation than those of NT group. In addition, based on the drug reservoir characteristics of porous materials, the NP substrates were also used to load antibacterial LL37 peptide. After loading LL37, the antibacterial and osteogenic induction abilities of NP were further improved, thus significantly promoting osteogenesis in both uninfected and infected models.>Conclusion: We determined that the NP layers had stronger bonding strength than NT structures, and the corresponding NP materials might be more suitable than NT for preparing drug-device combined titanium implants for bone injury treatment.
机译:>背景:许多研究表明,纳米管(NT)的尺寸会显着影响成钛细胞在钛基材料上的行为。但是NT与基底之间的弱结合强度极大地限制了它们的应用。>目的:本研究的目的是比较NT和纳米孔(NP)涂层的稳定性,并进一步制备抗菌钛基材料通过将LL37肽加载到NP结构中。>方法:使用刮擦测试仪研究NT和NP层的粘附强度。通过CCK8,碱性磷酸酶活性,矿化和聚合酶链反应分析,体外评估了MC3T3-E1细胞在不同底物上的增殖和分化。 NP和NP / LL37的抗菌率也通过铺板法测定。此外,使用未感染和感染的模型进一步评估了体内NP和NP / LL373周围的成骨性。>结果:划痕试验证明,由于NP层具有连续的孔结构,因此与底物的结合强度更高比独立的NT结构更厚的管壁。在体外,细胞结果显示,NP基质上的MC3T3-E1细胞比NT组具有更好的早期粘附,扩散和成骨分化。此外,基于多孔材料的储药特性,NP底物还用于加载抗菌性LL37肽。装载LL37后,NP的抗菌和成骨诱导能力进一步提高,从而显着促进了未感染和感染模型中的成骨作用。>结论:我们确定NP层比NT结构具有更强的结合强度,并且相应的NP材料可能比NT更适合于制备用于骨损伤治疗的药物装置结合的钛植入物。

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