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ZIF-8 诱导生成类羟基磷灰石晶体赋予了 MEW 打印 PCL 支架优异的成骨能力。

ZIF-8 induced hydroxyapatite-like crystals enabled superior osteogenic ability of MEW printing PCL scaffolds.

机构信息

Department of Plastic Surgery, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430022, China.

出版信息

J Nanobiotechnology. 2023 Aug 10;21(1):264. doi: 10.1186/s12951-023-02007-w.

Abstract

ZIF-8 may experience ion-responsive degradation in ionic solutions, which will change its initial architecture and restrict its direct biological use. Herein, we report an abnormal phenomenon in which ZIF-8 induces large hydroxyapatite-like crystals when soaked directly in simulated body fluid. These crystals grew rapidly continuously for two weeks, with the volume increasing by over 10 folds. According to Zn release and novel XRD diffraction peak presence, ZIF-8 particles can probably show gradual collapse and became congregate through re-nucleation and competitive coordination. The phenomenon could be found on ZIF-8/PCL composite surface and printed ZIF-8/PCL scaffold surface. ZIF-8 enhanced PCL roughness through changing the surface topography, while obviously improving the in-vivo and in-vitro osteoinductivity and biocompatibility. The pro-biomineralization property can make ZIF-8 also applicable in polylactic acid-based biomaterials. In summary, this study demonstrates that ZIF-8 may play the role of a bioactive additive enabling the surface modification of synthetic polymers, indicating that it can be applied in in-situ bone regeneration.

摘要

ZIF-8 在离子溶液中可能经历离子响应降解,这将改变其初始结构并限制其直接生物应用。在此,我们报告了一种异常现象,即 ZIF-8 直接浸泡在模拟体液中时会诱导出大量类羟基磷灰石晶体。这些晶体在两周内持续快速生长,体积增加了 10 多倍。根据 Zn 的释放和新出现的 XRD 衍射峰,可以推测 ZIF-8 颗粒可能通过再成核和竞争配位逐渐坍塌并聚集。这种现象可以在 ZIF-8/PCL 复合材料表面和打印的 ZIF-8/PCL 支架表面上发现。ZIF-8 通过改变表面形貌来提高 PCL 的粗糙度,同时明显提高体内和体外成骨活性和生物相容性。促生物矿化性能使 ZIF-8 也适用于基于聚乳酸的生物材料。总之,本研究表明 ZIF-8 可能发挥生物活性添加剂的作用,实现合成聚合物的表面改性,表明其可应用于原位骨再生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec5a/10413775/061d37349abe/12951_2023_2007_Fig1_HTML.jpg

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