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一种通过脉冲激光烧蚀技术制造的新型膜型磷灰石支架。

A novel membrane-type apatite scaffold engineered by pulsed laser ablation.

作者信息

Hashimoto Yoshiya, Nishikawa Hiroaki, Kusunoki Masanobu, Li PeiQi, Hontsu Shigeki

机构信息

Department of Biomaterials, Osaka Dental University.

出版信息

Dent Mater J. 2015;34(3):345-50. doi: 10.4012/dmj.2014-299. Epub 2015 Apr 23.

Abstract

Cell sheet technology is a scaffold-free method for tissue reconstruction. A sheet-shaped scaffold would be suitable for the regeneration of periodontal membrane. We designed a stem cell sheet combining human mesenchymal stromal cells (hMSCs) and a 10-µm thick biological apatite (BAp) membrane fabricated with an ArF pulsed laser ablation for periodontal regeneration. X-ray diffraction showed that crystalline hydroxyapatite (HAp) was present in BAp and HAp membranes after post-annealing. Energy dispersive analysis of the BAp membrane revealed peaks of Na and Mg in addition to Ca and P. Approximately 3×10(4) hMSCs were cultured on BAp and HAP membranes for 7 and 14 days. From in vitro assays, hMSCs grew faster and had higher osteoblast differentiation when cultured on the BAp membrane than did the cell culture on the HAp membrane. Stem cell sheets combined with a BAp membrane may have potential applications in guided bone regeneration and osteoconductive scaffolds.

摘要

细胞片技术是一种无支架的组织重建方法。片状支架将适合于牙周膜的再生。我们设计了一种干细胞片,它结合了人间充质基质细胞(hMSCs)和用ArF脉冲激光烧蚀制备的用于牙周再生的10微米厚的生物磷灰石(BAp)膜。X射线衍射表明,在退火后,BAp膜和HAp膜中存在结晶羟基磷灰石(HAp)。对BAp膜的能量色散分析显示,除了Ca和P之外,还有Na和Mg的峰。大约3×10⁴个hMSCs在BAp膜和HAP膜上培养7天和14天。从体外试验来看,与在HAp膜上培养的细胞相比,hMSCs在BAp膜上培养时生长更快,成骨细胞分化更高。与BAp膜结合的干细胞片可能在引导骨再生和骨传导支架方面有潜在应用。

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