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用于骨再生的冻干多尺度多孔纳米纤维三维支架。

Freeze-dried multiscale porous nanofibrous three dimensional scaffolds for bone regenerations.

作者信息

Khoramgah Maryam Sadat, Ranjbari Javad, Abbaszadeh Hojjat-Allah, Tabatabaei Mirakabad Fatemeh Sadat, Hatami Shadie, Hosseinzadeh Simzar, Ghanbarian Hossein

机构信息

Department of Medical Biotechnology, School of Advanced Technologies in Medicine, Shahid Beheshti University of Medical Sciences, Tehran, Iran.

Laser Application in Medical Sciences Research Center, Shahid Beheshti University of Medical Sciences, Tehran, Iran.

出版信息

Bioimpacts. 2020;10(2):73-85. doi: 10.34172/bi.2020.10. Epub 2020 Feb 8.

Abstract

Simulating hydrophobic-hydrophilic composite face with hierarchical porous and fibrous architectures of bone extracellular matrix (ECM) is a key aspect in bone tissue engineering. This study focused on the fabrication of new three-dimensional (3D) scaffolds containing polytetrafluoroethylene (PTFE), and polyvinyl alcohol (PVA), with and without graphene oxide (GO) nanoparticles using the chemical cross-linking and freeze-drying methods for bone tissue application. The effects of GO on physicochemical features and osteoinduction properties of the scaffolds were evaluated through an in vitro study. After synthesizing the GO nanoparticles, two types of 3D scaffolds, PTFE/PVA (PP) and PTFE/PVA/GO (PPG), were developed by cross-linking and freeze-drying methods. The physicochemical features of scaffolds were assessed and the interaction of the 3D scaffold types with human adipose mesenchymal stem cells (hADSCs) including attachment, proliferation, and differentiation to osteogenic like cells were investigated. GO nanoparticles were successfully synthesized with no agglomeration. The blending of PTFE as a hydrophobic polymer with PVA polymer and GO nanoparticles (hydrophilic compartments) were successful. Two types of 3D scaffolds had nano topographical structures, good porosities, hydrophilic surfaces, thermal stabilities, good stiffness, as well as supporting the cell attachments, proliferation, and osteogenic differentiation. Notably, GO incorporating scaffolds provided a better milieu for cell behaviors. Novel multiscale porous nanofibrous 3D scaffolds made from PTFE/ PVA polymers with and without GO nanoparticles could be an ideal candidate for bone tissue engineering as a 3D template.

摘要

模拟具有骨细胞外基质(ECM)分层多孔和纤维结构的疏水-亲水复合表面是骨组织工程的一个关键方面。本研究重点在于使用化学交联和冷冻干燥方法制备含聚四氟乙烯(PTFE)和聚乙烯醇(PVA)、有无氧化石墨烯(GO)纳米颗粒的新型三维(3D)支架,用于骨组织应用。通过体外研究评估了GO对支架物理化学特性和成骨诱导性能的影响。合成GO纳米颗粒后,通过交联和冷冻干燥方法制备了两种类型的3D支架,即PTFE/PVA(PP)和PTFE/PVA/GO(PPG)。评估了支架的物理化学特性,并研究了这两种3D支架与人脂肪间充质干细胞(hADSCs)的相互作用,包括细胞附着、增殖以及向成骨样细胞的分化。成功合成了无团聚的GO纳米颗粒。将作为疏水聚合物的PTFE与PVA聚合物和GO纳米颗粒(亲水部分)成功混合。两种类型的3D支架均具有纳米拓扑结构、良好的孔隙率、亲水表面、热稳定性、良好的刚度,并且支持细胞附着、增殖和成骨分化。值得注意的是,含GO的支架为细胞行为提供了更好的环境。由含和不含GO纳米颗粒的PTFE/PVA聚合物制成的新型多尺度多孔纳米纤维3D支架作为3D模板可能是骨组织工程的理想候选材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a772/7186540/17e127d4c19d/bi-10-73-g001.jpg

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