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Preparation of Porous Hydroxyapatite as Synthetic Scaffold Using Powder Deposition and Sintering and Cytotoxicity Evaluation

机译:用粉末沉积和烧结和细胞毒性评价制备多孔羟基磷灰石作为合成支架

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摘要

This study prepared porous hydroxyapatite (porous HA) as synthetic scaffold and find out chemical properties, porosity, compressive strength and cytotoxicity properties. Porous HA was prepared by powder deposition and sintering from HA-PMMA mixed powder. Porous HA characterizations were conducted by XRD, XRF, SEM-EDX and mercury porosimetry analysis. In vitro cytotoxicity testing of porous HA was conducted by MTT method using vero cells. Porous HA has porosity on the interval 62.79 to 69.67% and compressive strength on the interval 1.53 to 3.71 MPa. Optimal porous HA has porosity is 62.79% with compressive strength is 3.71 MPa. Mercury porosimetry analysis showed that optimal porous HA has interconnective porosity up to 88.25% with pore size on the interval 0.05-355 μm and median pore is 52.64 μm. There was no significantly difference in the death percentage of vero cells caused HA powder and optimal porous HA (p= 0.158) but concentration of optimal porous HA were significantly effect on the percentage of vero cells death (p=0.003).
机译:本研究制备多孔羟基磷灰石(多孔HA)作为合成支架,取出化学性质,孔隙率,抗压强度和细胞毒性特性。通过粉末沉积和烧结来自HA-PMMA混合粉末的多孔HA。多孔HA表征是通过XRD,XRF,SEM-EDX和汞孔隙测定法分析进行的。多孔HA的体外细胞毒性测试通过使用VERO细胞进行MTT方法进行。多孔HA在间隔62.79至69.67%上具有孔隙率,间隔1.53至3.71MPa的抗压强度。最佳多孔HA具有孔隙率为62.79%,抗压强度为3.71MPa。汞孔隙测定法分析表明,最佳多孔HA在0.05-355μm和中间孔隙中具有孔径,孔径为高达88.25%,中位数为52.64μm。 Vero细胞的死亡百分比没有显着差异导致HA粉和最佳多孔HA(P = 0.158),但最佳多孔HA的浓度对Vero细胞死亡的百分比显着影响(p = 0.003)。

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