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首页> 外文期刊>Journal of biomedical materials research, Part A >Simple surface modification of poly(epsilon-caprolactone) to induce its apatite-forming ability.
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Simple surface modification of poly(epsilon-caprolactone) to induce its apatite-forming ability.

机译:对聚ε-己内酯进行简单的表面改性,以诱导其形成磷灰石的能力。

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摘要

A biodegradable polymer coated with a bone-like apatite layer on its surface is useful as a scaffold for bone tissue regeneration. In this work, a poly(epsilon-caprolactone) (PCL) surface was modified by an O2 plasma surface treatment to form oxygen-containing functional groups. The plasma-treated samples were subsequently dipped alternately in an alcoholic solution containing calcium ions and one containing phosphate ions to deposit apatite precursors on the surface. The surface-modified PCL samples formed a dense and uniform surface bone-like apatite layer after immersion for 24 h in a simulated body fluid with ion concentrations approximately equal to those of human blood plasma. This surface-modification process is applicable to two-dimensional PCL plates and three-dimensional PCL meshes. In the resulting apatite-PCL composite, the apatite layer strongly adhered to the PCL surface and remained intact after a tape-detachment test. Therefore, this type of composite material will be a useful scaffold for bone tissue engineering.
机译:在其表面上涂覆有骨状磷灰石层的可生物降解的聚合物可用作骨组织再生的支架。在这项工作中,通过O2等离子体表面处理对聚(ε-己内酯)(PCL)表面进行了改性,以形成含氧官能团。随后将经过等离子体处理的样品交替浸入含有钙离子和一种含有磷酸根离子的酒精溶液中,以将磷灰石前体沉积在表面上。经过表面改性的PCL样品在离子浓度大约等于人体血浆离子浓度的模拟体液中浸泡24小时后,形成了致密且均匀的表面骨状磷灰石层。此表面修改过程适用于二维PCL板和三维PCL网格。在所得的磷灰石-PCL复合材料中,磷灰石层牢固地粘附于PCL表面,并且在胶带剥离测试后保持完整。因此,这种类型的复合材料将是用于骨组织工程的有用支架。

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