首页> 外文期刊>Journal of Agricultural and Food Chemistry >Physicochemkal Modification of Kafirin Microparticles and Their Ability To Bind Bone Morphogenetic Protein-2 (BMP-2), for Application as a Biomaterial
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Physicochemkal Modification of Kafirin Microparticles and Their Ability To Bind Bone Morphogenetic Protein-2 (BMP-2), for Application as a Biomaterial

机译:Kafirin微粒的物理化学修饰及其结合骨形态发生蛋白2(BMP-2)的能力,用作生物材料

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Vacuolated spherical kafirin microparticles with a mean diameter of 5 μm can be formed from an acidic solution with water addition. Three-dimensional scaffolds for hard tissue repair require large structures with a high degree of interconnected porosity. Cross-linking the formed kafirin microparticles using wet heat or glutaraldehyde treatment resulted in larger structures (approximately 20 /an), which, while similar in size and external morphology, were apparently formed by further assisted assembly by two significantly different mechanisms. Heat treatment, which increased the vacuole size, involved kafirin polymerization by disulfide bonding with the microparticles being formed from round, coalesced nanostructures, as shown by atomic force microscopy (AFM). Kafirin polymerization of glutaraldehyde-treated microparticles was not by disulfide bonding, and the nanostructures, as revealed by AFM, were spindle shaped. Both treatments enhanced BMP-2 binding to the microparticles, probably due to their increased size. Thus, these modified kafirin microparticles have potential as natural, nonanimal- protein bioactive scaffolds.
机译:可以通过加入水的酸性溶液形成平均直径为5μm的真空球状kafirin微粒。用于硬组织修复的三维支架需要具有高度互连孔隙率的大型结构。使用湿热或戊二醛处理使形成的kafirin微粒交联产生较大的结构(约20 / an),尽管其大小和外部形态相似,但显然是通过两种明显不同的机制进一步辅助组装而形成的。如原子力显微镜(AFM)所示,增加液泡尺寸的热处理涉及通过二硫键与由圆形聚结的纳米结构形成的微粒进行二硫键键合而形成的kafirin聚合。戊二醛处理过的微粒的Kafirin聚合不是通过二硫键,并且AFM揭示的纳米结构是纺锤形的。两种处理都可能增强了BMP-2与微粒的结合,这可能是由于其尺寸增加了。因此,这些修饰的kafirin微粒具有作为天然非动物蛋白生物活性支架的潜力。

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