Yanagida Hiroshi, Okada Masahiro, Masuda Miwa, Narama Isao, Nakano Shigeyuki, Kitao Satoshi, Takakuda Kazuo, Furuzono Tsutomu
Department of Bioengineering, Advanced Medical Engineering Center, National Cardiovascular Center Research Institute, 5-7-1 Fujishirodai, Suita, Osaka 565-8565, Japan.
J Artif Organs. 2011 Dec;14(4):331-41. doi: 10.1007/s10047-011-0594-4. Epub 2011 Jul 22.
A novel hydroxyapatite (HAp)/poly(L-lactic acid) (PLLA) nanocomposite nonwoven fabric, which was coated and mixed with calcined HAp nanocrystals, and has submicron-sized dimples on its surface, was fabricated. First, HAp-mixed PLLA fabric was prepared by electrospinning a HAp nanocrystal dispersion in dichloromethane (DCM)-dissolved PLLA. It was found that most of the HAp nanocrystals were not exposed on the HAp-mixed PLLA fiber surface but covered with the PLLA matrix. A HAp-nanocrystal coating was applied onto the surface of the HAp-mixed PLLA fabric after corona discharge treatment followed by ethanol washing. The submicron-sized dimples were enlarged after the ethanol washing. After the HAp-nanocrystal coating, the HAp-mixed PLLA fabric surface was uniformly coated with the HAp nanocrystals. In vitro cell spread tests showed that the rat osteoblasts spread more on HAp-nanocrystal-coated fabrics than on non-HAp-coated fabrics. Upon covering calvarial defects, the in vivo hard tissue responses suggested earlier restoration of the defects with HAp-nanocrystal-coated fabrics than those with non-HAp-coated fabrics.
制备了一种新型的羟基磷灰石(HAp)/聚(L-乳酸)(PLLA)纳米复合无纺布,其与煅烧后的HAp纳米晶体进行了涂层和混合,并且在其表面具有亚微米尺寸的凹坑。首先,通过静电纺丝将HAp纳米晶体分散体分散在二氯甲烷(DCM)溶解的PLLA中来制备HAp混合PLLA织物。发现大多数HAp纳米晶体未暴露在HAp混合PLLA纤维表面,而是被PLLA基质覆盖。在电晕放电处理后,接着进行乙醇洗涤,将HAp纳米晶体涂层施加到HAp混合PLLA织物的表面上。乙醇洗涤后,亚微米尺寸的凹坑变大。在进行HAp纳米晶体涂层后,HAp混合PLLA织物表面均匀地涂覆有HAp纳米晶体。体外细胞铺展试验表明,大鼠成骨细胞在HAp纳米晶体涂层织物上比在未涂覆HAp的织物上铺展得更多。在覆盖颅骨缺损时,体内硬组织反应表明,与未涂覆HAp的织物相比,HAp纳米晶体涂层织物对缺损的修复更早。