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The Effect of Freeze-Thaw Treatment to the Properties of Gelatin-Carbonated Hydroxy Apatite Membrane for Nerve Regeneration Scaffold

机译:冷冻解 - 治疗对明胶碳酸羟基磷灰石膜进行神经再生支架的影响

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One of the major challenges in the development of scaffold for nerve regeneration is enhancing mechanical strength of the material to avoid the scaffold to rapidly degrade during regeneration process in nerve system. The aim of this study was to reveal the effect of freeze-thaw to the properties of gelatin-carbonated hydroxy apatite (CHA) membrane in two ratios 7 to 3 and 6 to 4 for gelatin to CHA respectively. Some variations of freeze-thaw cycles were applied for both ratios, which is referred for its biocompatibility in cells. The CHA was synthesized by wet precipitating method of calcium hydroxide and phosphoric acid in gelatin solution at room temperature and open system. The X-Ray Diffraction (XRD) and FTIR analysis was conducted to confirm the formation of type-B CHA in gelatin matrix. The resulted membrane was then subject for membrane characterization. It was known from the study that freeze-thaw treatment during membrane fabrication affects several properties of the membrane. Platelet loading capability decreased when freeze-thaw cycles increased. Meanwhile, the platelet was released more rapidly by freeze-thawed gelatin-CHA membrane compared to non-freeze-thawed one. The degradation percentage of the membrane decreased with the increasing freeze-thaw cycles, showing 4 hours slower degradation in the freeze-thawed membrane compared to the unfreeze-thawed one. Furthermore, it was observed that freeze-thaw improved the tensile strength of the membrane and the modulus elasticity increased simultaneously. Moreover, in general it was observed from this study that freeze-thaw treatment did not affect permeability of the membranes towards glucose transport.
机译:用于神经再生的支架的主要挑战之一是提高材料的机械强度,以避免支架在神经系统中的再生过程中快速降解。本研究的目的是揭示冻融对明胶分别的两种比例7至3和6至4中明胶碳酸羟基磷灰石(CHA)膜的性能的影响。两种比率施加了一些冻融循环的一些变化,其在细胞中被提及其生物相容性。通过在室温和开放系统的明胶溶液中通过氢氧化钙和磷酸的湿沉淀方法合成CHA。进行X射线衍射(XRD)和FTIR分析以确认在明胶基质中形成B型CHA。然后得到的膜进行膜表征。从研究中众所周知,在膜制造期间的冻融处理影响膜的几种性质。冻融循环增加时血小板装载能力降低。同时,与非冷冻解冻的血冻过的明胶-Cha膜更快地释放血小板。膜的降解百分比随着冻融循环的增加而降低,与未涤除解冻的膜相比,在冷冻解膜中的降低4小时降解。此外,观察到冻融改善了膜的拉伸强度,并且模量弹性同时增加。此外,通常从该研究中观察到冻融治疗不影响膜对葡萄糖转运的渗透性。

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