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首页> 外文期刊>International Journal of Nanomedicine >Biomimetic component coating on 3D scaffolds using high bioactivity of mesoporous bioactive ceramics
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Biomimetic component coating on 3D scaffolds using high bioactivity of mesoporous bioactive ceramics

机译:使用介孔生物活性陶瓷的高生物活性仿真组件涂层3D支架上的仿生组分涂层

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摘要

Background: Mesoporous bioactive glasses (MBGs) are very attractive materials for use in bone tissue regeneration because of their extraordinarily high bone-forming bioactivity in vitro. That is, MBGs may induce the rapid formation of hydroxy apatite (HA) in simulated body fluid (SBF), which is a major inorganic component of bone extracellular matrix (ECM) and comes with both good osteoconductivity and high affinity to adsorb proteins. Meanwhile, the high bioactivity of MBGs may lead to an abrupt initial local pH variation during the initial Ca ion-leaching from MBGs at the initial transplant stage, which may induce unexpected negative effects on using them in in vivo application. In this study we suggest a new way of using MBGs in bone tissue regeneration that can improve the strength and make up for the weakness of MBGs. We applied the outstanding bone-forming bioactivity of MBG to coat the main ECM components HA and collagen on the MBG-polycarplolactone (PCL) composite scaffolds for improving their function as bone scaffolds in tissue regeneration. This precoating process can also expect to reduce initial local pH variation of MBGs.Methods and materials: The MBG-PCL scaffolds were immersed in the mixed solution of the collagen and SBF at 37°C for 24 hours. The coating of ECM components on the MBG-PCL scaffolds and the effect of ECM coating on in vitro cell behaviors were confirmed.Results: The ECM components were fully coated on MBG-PCL scaffolds after immersing in SBF containing dilute collagen-I solution only for 24 hours due to the high bone-forming bioactivity of MBG. Both cell affinity and osteoconductivity of MBG-PCL scaffolds were dramatically enhanced by this precoating process.Conclusion: The precoating process of ECM components on MBG-PCL scaffold using a high bioactivity of MBG was not only effective in enhancing the functionality of scaffolds but also effective in eliminating the unexpected side effect. The MBG-PCL scaffold-coated ECM components ideally satisfied the required conditions of scaffold in tissue engineering, including 3D well-interconnected pore structures with high porosity, good bioactivity, enhanced cell affinity, biocompatibility, osteoconductivity, and sufficient mechanical properties, and promise excellent potential application in the field of biomaterials.
机译:背景:中孔生物活性玻璃(MBG)是非常有吸引力的材料,用于骨组织再生,因为它们在体外非常高的骨形成生物活性。也就是说,MBG可以诱导模拟体液(SBF)中的羟基磷灰石(HA)的快速形成,这是骨细胞外基质(ECM)的主要无机成分,并且具有良好的骨导电性和对吸附蛋白质的高亲和力。同时,MBGs的高生物活性可能导致在初始移植阶段的MBG中的初始Ca离子浸出过程中突然初始局部pH变化,这可能诱导在体内应用中使用它们的意外的负面影响。在这项研究中,我们建议使用MBG在骨组织再生中的一种新方法,这可以提高力量并弥补MBG的弱点。我们应用MBG的突出骨形成生物活性以涂覆MBG-Polycarplodone(PCL)复合支架上的主要ECM组分HA和胶原蛋白,以改善其作为组织再生中的骨支架的功能。这种预处理方法还可以预期减少MBGS的初始局部pH变异。方法和材料:将MBG-PCL支架浸入胶原蛋白和SBF的混合溶液中,在37℃下24小时。确认了MBG-PCL支架上的ECM组分和ECM涂层对体外细胞行为的影响。结果:浸入含有稀胶原-I溶液的SBF后,在MBG-PCL支架上完全涂覆ECM组分。 24小时由于MBG的高骨形成生物活性。通过该刻度方法显着增强MBG-PCL支架的细胞亲和力和骨导电性。结论:使用MBG的高生物活性的MBG-PCL支架上的ECM组分的预处理过程不仅有效增强支架的功能,而且有效消除意外的副作用。 MBG-PCL支架涂层的ECM组分理想地满足组织工程中支架所需的支架条件,包括具有高孔隙率,良好的生物活性,增强的细胞亲和力,生物相容性,骨导电性和足够的机械性能的3D型孔隙结构,并承诺优异潜在应用在生物材料领域。

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