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The Biocompatibility and Occlusion Ability of a Zein-Based Biomaterial for Bone Surgery

机译:玉米醇溶蛋白骨手术材料的生物相容性和咬合能力。

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During surgical procedures on bone, a common method of producing haemostasis at bleeding cancellous bone is the occlusion of blood vessels. This is often achieved with bone wax, which is not bioresorbable, unlike the zein-based biomaterial investigated in the present research. Zein is a prolamin derived from corn, and has been gaining importance as a bio-medical material. Taking advantage of its solubility in ethanol-water solvents but insolubility in water, a zein-based viscoelastic solid can be produced which effectively occludes the flow of fluids through a porous surface modelling cancellous bone. Zein powder was dissolved into a 70% ethanol-in-water solution, and the ethanol was later leached out through exposure to an alcohol-free media. The insoluble zein 'resin' produced could occlude water flow through a porous surface. Experiments were conducted to determine the optimum composition of the precursor zein solution, varying the proportion of zein dissolved in the ethanol-water solvent. A 0.7 w/v composition was selected as the preferred ratio. A cell viability test using the resazurin assay showed that unleached ethanol in the zein-based biomaterial does not pose a threat, as the metabolic activity of osteoblasts on zein resin outperformed that on bone wax after 24 hours of incubation. Subsequent characterisation of the zein resin was performed with a rheometer: results showed that the 0.7 w/v composition had a higher storage modulus and loss modulus for the range of frequencies tested.
机译:在骨头上进行外科手术期间,在松质骨出血时产生止血的常用方法是阻塞血管。与本研究中研究的基于玉米醇溶蛋白的生物材料不同,这通常是通过不可生物吸收的骨蜡来实现的。玉米醇溶蛋白是源自玉米的醇溶蛋白,并且作为生物医学材料已经变得越来越重要。利用其在乙醇-水溶剂中的溶解性但在水中不溶的优势,可以生产出一种基于玉米醇溶蛋白的粘弹性固体,该固体可以有效地阻止流体流过多孔表面建模的松质骨。将玉米醇溶蛋白粉末溶解在70%的乙醇水溶液中,然后通过暴露于无醇介质将乙醇浸出。产生的不溶性玉米醇溶蛋白“树脂”可能会阻塞通过多孔表面的水流。进行实验以确定前体玉米醇溶蛋白溶液的最佳组成,改变溶解在乙醇-水溶剂中的玉米醇溶蛋白的比例。选择0.7w / v组成作为优选比例。使用刃天青测定的细胞活力测试表明,玉米醇溶蛋白基生物材料中未浸出的乙醇不会构成威胁,因为在培养24小时后,成骨细胞对玉米醇溶蛋白树脂的代谢活性优于对骨蜡的代谢活性。随后用流变仪表征玉米蛋白树脂:结果表明,在测试的频率范围内,0.7 w / v的组合物具有较高的储能模量和损耗模量。

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