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基于静电纺丝含钙聚(乙烯醇)纳米纤维的仿生复合支架矿化羟基磷灰石。

Biomimetic composite scaffolds based mineralization of hydroxyapatite on electrospun calcium-containing poly(vinyl alcohol) nanofibers.

机构信息

State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, Beijing, 100029, PR China.

出版信息

Mater Sci Eng C Mater Biol Appl. 2013 Oct;33(7):4369-76. doi: 10.1016/j.msec.2013.06.023. Epub 2013 Jun 28.

Abstract

Nanocomposite materials consisting of polymer matrix and inorganic salts in the form of nanocrystals of hydroxyapatite (HA) are regarded as superior candidates for bone treatment. A biomimetic nanocomposite scaffold with HA formation on the electrospun poly(vinyl alcohol) (PVA) nanofibrous structure by employing a Ca-P alternate soaking method was developed in this work. The calcium-containing PVA nanofibers were prepared by adding calcium nitrate to the starting solution prior to electrospinning, and then mineralized by Ca-P treatment in incubation solution. With this rapid and effective procedure, a continuous biomimetic crystalline HA layer could be formed successfully without the need of a prior chemical modification of the substrate surface under very mild reaction conditions. Moreover, the HA formed with a relatively accelerated growth had a carbonated and poor crystalline structure, resembling biological apatite in the bone mineral. The introduction of calcium ions in nanofibers by electrospinning was a favorable approach to induce the deposition of calcium phosphate and improve the distribution, nucleation, and growth of crystalline HA layer on nanofibrous scaffolds. Bioactivity tests revealed that these mineralized PVA/HA composite scaffolds improved the biocompatibility. The porous polymer/HA composite scaffolds produced in the present study might have potential applications in bone tissue engineering.

摘要

由聚合物基体和以羟基磷灰石(HA)纳米晶体形式存在的无机盐组成的纳米复合材料被认为是治疗骨骼的首选候选材料。本工作通过采用 Ca-P 交替浸泡法,在静电纺丝聚(乙烯醇)(PVA)纳米纤维结构上形成 HA,开发出具有仿生特性的纳米复合材料支架。在静电纺丝前将硝酸钙添加到起始溶液中,制备含 Ca 的 PVA 纳米纤维,然后在孵育溶液中进行 Ca-P 处理进行矿化。通过这种快速有效的方法,无需对基底表面进行预先的化学改性,在非常温和的反应条件下,成功地形成了连续的仿生结晶 HA 层。此外,形成的 HA 具有加速生长的碳酸化和较差的结晶结构,类似于骨骼矿物质中的生物磷灰石。静电纺丝中纳米纤维内 Ca 离子的引入是诱导磷酸钙沉积和改善结晶 HA 层在纳米纤维支架上的分布、成核和生长的有利方法。生物活性测试表明,这些矿化的 PVA/HA 复合支架提高了生物相容性。本研究中制备的多孔聚合物/HA 复合材料支架可能在骨组织工程中有潜在的应用。

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