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首页> 外文期刊>Materials transactions >Preparation and In Vivo Study of Porous Titanium-Polyglycolide Composite
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Preparation and In Vivo Study of Porous Titanium-Polyglycolide Composite

机译:多孔聚乙醇酸钛复合材料的制备及体内研究

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Porous materials show low Young's moduli and excellent bonding to living bone. However, the strength of such materials is often insufficient in the initial stage of implantation. Thus, the objective of this study was to increase the strength of porous titanium by filling the pores with polyglycolide (PGA), a biodegradable plastic. PGA powder was prepared via the thermal decomposition of sodium chloroacetate at 433 K. The PGA was then introduced into the pores of porous Ti (porosity: 60%) using two methods: (i) centrifugal packing and heating and (ii) heat injection. In the latter method, almost all pores were filled by PGA; the filling fraction was measured to be 65-85% regardless of the injection temperature. When the pores in the porous Ti were filled with PGA, the compressive strength increased drastically from 40 to 100 MPa. The increased strength is comparable to that of cortical bone. In addition, the strength increased with increasing injection temperature. In an animal test, unfavourable autopsy findings, such as suppuration, bleeding, and hyperplasia of the connective tissue, could not be confirmed in rats and no bone was observed in the pores of the Ti-PGA composite. Decomposition of PGA lowered the surrounding pH, it was found to inhibit bone formation in the pores of the porous Ti. It is important to control the decomposition rate of PGA.
机译:多孔材料显示出较低的杨氏模量,并且与活骨的粘合性极佳。但是,这种材料的强度在植入初期常常不足。因此,本研究的目的是通过在孔中填充聚乙交酯(PGA)(一种可生物降解的塑料)来提高多孔钛的强度。通过在433 K下热分解氯乙酸钠制备PGA粉末。然后使用两种方法将PGA引入多孔Ti(孔隙度:60%)的孔中:(i)离心填充和加热和(ii)热注射。在后一种方法中,几乎所有孔都被PGA填充;不论注入温度如何,填充分数均为65-85%。当多孔Ti中的孔填充有PGA时,抗压强度从40MPa急剧增加至100MPa。增加的强度与皮质骨相当。另外,强度随着注射温度的升高而增加。在动物试验中,无法在大鼠中证实不良的尸检结果,例如化脓,出血和结缔组织增生,并且在Ti-PGA复合材料的孔中未观察到骨骼。 PGA的分解降低了周围的pH,发现抑制了多孔Ti的孔中的骨形成。控制PGA的分解速率很重要。

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