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采用聚合物和凝胶制备类支架松质骨矫形螺钉:聚己内酯/壳聚糖/羟基磷灰石。

Employing Polymer and Gel to Fabricate Scaffold-like Cancellous Orthopedic Screw: Polycaprolactone/Chitosan/Hydroxyapatite.

作者信息

Badami AmirHossein, Esmaeili Javad, Mirtalaie Hasan

机构信息

Department of Mechanical Engineering, Najafabad Branch, Islamic Azad University, Najafabad 8543131, Iran.

Department of Tissue Engineering, TISSUEHUB Co., Tehran 1956854977, Iran.

出版信息

Gels. 2025 Jan 2;11(1):28. doi: 10.3390/gels11010028.

Abstract

Using metallic/polymeric orthopedic screws causes cavities in bone trauma after the attachment of broken bones, which prolongs the healing. Yet, it remains unknown how to overcome such a challenge. The main aim of this research was to use both polymers and gels to fabricate and study a new PCL/chitosan/hydroxyapatite scaffold-like orthopedic screw for cancellous bone trauma. This screw, because of its low stiffness and its scaffold-based matrix (due to the gel part), can facilitate bone healing. Different concentrations of PCL (60-95% ) and chitosan (0-5% ) were blended according to the Response Surface Methodology using the Central Composite Design. The screws were fabricated using the freeze-drying technique. The screws were assessed mechanically, physically, and biologically (cell viability, cell attachment, DAPI, ALP staining, and Alizarin Red staining), and in vivo (a rat subcutaneous implantation model). Based on the results, screws depending on the PCL and gel content depicted different but notable mechanical behavior (10-60 MPa of compressive strength and 100-600 N force). The gel part could affect the physical properties of screws including water uptake (120%), degradation (18% after 21 days), porosities (23%), and mechanical strength (elastic modulus = 59.47 Mpa). The results also demonstrated no cytotoxicity towards MC3T3 cells (>80% cell viability) with good cell attachment, cell concentration, and mineralization (>90%) that was justified by the gel content. The results also showed good in vivo biocompatibility. To sum up, fabricated scaffold-like screws with gel content can be a good candidate for cancellous-bone-based orthopedic purposes. However, more in vitro and in vivo studies are required to optimize the PCL:gel ratio.

摘要

使用金属/聚合物骨科螺钉在接骨后会在骨创伤处形成空洞,从而延长愈合时间。然而,如何克服这一挑战仍然未知。本研究的主要目的是使用聚合物和凝胶来制备并研究一种用于松质骨创伤的新型聚己内酯/壳聚糖/羟基磷灰石支架状骨科螺钉。这种螺钉由于其低刚度和基于支架的基质(由于凝胶部分),可以促进骨愈合。根据响应面法,使用中心复合设计将不同浓度的聚己内酯(60 - 95%)和壳聚糖(0 - 5%)进行混合。采用冷冻干燥技术制造螺钉。对螺钉进行了力学、物理和生物学评估(细胞活力、细胞附着、DAPI、碱性磷酸酶染色和茜素红染色)以及体内评估(大鼠皮下植入模型)。基于结果,取决于聚己内酯和凝胶含量的螺钉表现出不同但显著的力学行为(抗压强度为10 - 60 MPa,力为100 - 600 N)。凝胶部分会影响螺钉的物理性能,包括吸水率(120%)、降解率(21天后为18%)、孔隙率(23%)和机械强度(弹性模量 = 59.47 Mpa)。结果还表明对MC3T3细胞无细胞毒性(细胞活力>80%),具有良好的细胞附着、细胞浓度和矿化(>90%),这由凝胶含量所证实。结果还显示出良好的体内生物相容性。总之,含有凝胶成分的制备的支架状螺钉可以成为基于松质骨的骨科用途的良好候选材料。然而,需要更多的体外和体内研究来优化聚己内酯与凝胶的比例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb1d/11765406/245a695fad49/gels-11-00028-g001.jpg

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