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首页> 外文期刊>Biomaterials >Novel approach to fabricate keratin sponge scaffolds with controlled pore size and porosity.
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Novel approach to fabricate keratin sponge scaffolds with controlled pore size and porosity.

机译:制造具有受控孔径和孔隙率的角蛋白海绵支架的新颖方法。

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A compression-molding/particulate-leaching (CM/PL) method was developed to fabricate S-sulfo keratin sponges with the controlled pore size and porosity. The S-sulfo keratin was extracted from wool and was then spray-dried to give S-sulfo keratin powder. The S-sulfo keratin powder mixed with urea in advance was compression-molded together with the sieved NaCl particulates above the melting temperature of urea. The following removal of the salts and urea in water created the sponges composed of interconnected pores and the continuous S-sulfo keratin matrix. The S-sulfo keratin sponges were strong enough to handle and water-insoluble. By contrast, the sponges prepared without urea were very fragile and readily collapsed, because most of S-sulfo keratin matrix remained powdery. The pore size was in good accordance with the size of the salts, indicating that the pores were formed by leaching-out the salts. The S-sulfo keratin sponges with the regulated sizes of pores (<100, 100-300 and 300-500microm) were fabricated, all of which had more than 90% of the porosity. Thus, CM/PL method is able to give the S-sulfo keratin sponge with the desired pore size and porosity, which might be a good scaffold for the cells in tissue engineering.
机译:开发了压模/微粒浸出(CM / PL)方法来制造具有受控孔径和孔隙率的S-磺基角蛋白海绵。从羊毛中提取S-磺基角蛋白,然后喷雾干燥,得到S-磺基角蛋白粉末。将预先与尿素混合的S-磺化角蛋白粉末与过筛的NaCl颗粒一起在尿素的熔融温度以上压缩成型。在去除水中的盐和尿素之后,形成了由相互连接的孔和连续的S-磺基角蛋白基质组成的海绵。 S-磺基角蛋白海绵足够坚固,可以处理并且不溶于水。相比之下,不含尿素的海绵非常易碎,容易塌陷,因为大多数S-磺基角蛋白基质仍呈粉状。孔尺寸与盐的尺寸很好地相符,表明孔是通过滤出盐而形成的。制备了具有调节孔径(<100、100-300和300-500μm)的S-磺化角蛋白海绵,所有这些都具有90%以上的孔隙率。因此,CM / PL方法能够使S-磺基角蛋白海绵具有所需的孔径和孔隙率,这可能是组织工程中细胞的良好支架。

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