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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Developing functionally graded PVA hydrogel using simple freeze-thaw method for artificial glenoid labrum
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Developing functionally graded PVA hydrogel using simple freeze-thaw method for artificial glenoid labrum

机译:使用简单的冻融方法开发功能渐进的PVA水凝胶,用于人工胶质盂唇

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Intact glenoid labrum is one of passive stabilizer for glenohumeral joint, which have various stiffness at different region. The aim of this study is to develop new artificial glenoid labrum from Polyvinyl Alcohol (PVA) hydrogel, which known as good biomaterial due to its biocompatibility and ability to tailor its modulus. PVA hydrogel was formed using freeze-thaw (Fr) method and the stiffness of PVA was controlled by manipulating the concentration of PVA and number of FT cycles. Then, the gradual stiffness was formed using simple diffusion method by introducing the pre-freeze-and-thaw steps. The results showed 20% PVA with three FT cycles suit to highest stiffness of glenoid labrum while 10% PVA with three FT cycles suit to lowest stiffness of glenoid labrum. The functionally graded PVA hydrogel was then developed using the same method by diffusing two mixture (20% PVA and 10% PVA). Mechanical compression test showed, the highest modulus (0.41 MPa) found at the 20% PVA region and lowest modulus (0.1 MPa) found at 10% PVA region. While, at intermediate region, the compressive modulus was in between 20% and 10%, 0.2 MPa. The existence of gradual stiffness was further prove by checking crystallinity of material at each region using Differential Scanning Calorimetry (DSC) and Wide Angle X-ray Diffraction (WAXD). Microstructure of material was obtained from Scanning Electron Microscopy (SEM). This functionally graded PVA hydrogel also able to reduce about 51% of stress at glenoid implant and up to 17% for micromotion at the interfaces. Existence of artificial glenoid labrum could minimize the occurrence of glenoid component loosening.
机译:完整的盂盂唇部是用于胶质骨关节的被动稳定剂之一,其在不同区域具有各种刚度。本研究的目的是开发来自聚乙烯醇(PVA)水凝胶的新的人造胶质盂唇,其由于其生物相容性和定制其模量而被称为良好的生物材料。使用冻融(FR)方法形成PVA水凝胶,通过操纵PVA的浓度和FT循环的数量来控制PVA的刚度。然后,通过引入预冷冻和解冻步骤,使用简单的扩散方法形成逐渐僵硬。结果表明,具有三种FT循环的PVA具有20%的PVA,适合关节盂唇唇的最高刚度,而10%PVA,具有三个FT循环,适合最低的关节盂唇唇。然后通过扩散两个混合物(20%PVA和10%PVA)使用相同的方法开发功能梯度PVA水凝胶。机械压缩试验显示,在20%PVA区域和在10%PVA区域发现的最高模量(0.41MPa)和最低模量(0.1MPa)。虽然在中间区域,压缩模量在20%至10%之间,0.2MPa。通过使用差示扫描量热法(DSC)和广角X射线衍射(WAXD)通过检查每个区域的材料的结晶度,进一步证明了逐渐僵硬的存在。从扫描电子显微镜(SEM)获得材料的微观结构。这种功能梯度PVA水凝胶还能够在关节植入物中减少约51%的应激,在界面处的微调高达17%。人工胶质盂唇盂唇可以最小化面关骨质组分松动的发生。

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