Farag Amro, Vaquette Cedryck, Hutmacher Dietmar W, Bartold P Mark, Ivanovski Sašo
School of Dentistry, The University of Queensland, Brisbane, Australia.
School of Dentistry, Centre for Orofacial Regeneration, Reconstruction and Rehabilitation (COR3), The University of Queensland, Brisbane, Australia.
Methods Mol Biol. 2023;2588:429-438. doi: 10.1007/978-1-0716-2780-8_25.
Decellularized tissue engineered constructs have the potential to promote regeneration by providing a biomimetic extracellular matrix that directs tissue specific regeneration when implanted in situ. Recently, the use of cell sheets has shown promising results in promoting periodontal regeneration. Here, we describe the fabrication of decellularized periodontal cell sheets with intact extracellular matrix structural and biological properties. Melt electro-spun polycaprolactone (PCL) scaffolds are used as a carrier for the inherently fragile cell sheets, in order to provide support during the processes of decellularization. An optimized decellularization method is outlined using perfusion with a combination of NHOH and Triton X-100 together with a DNase treatment step for DNA removal. The maintenance of extracellular matrix structural and biological integrity is important, and here, we describe the assessment of these properties using immunostaining for extracellular matrix proteins and ELISA for growth factor quantification.
去细胞化的组织工程构建体有潜力通过提供一种仿生细胞外基质来促进再生,当原位植入时,这种基质可引导组织特异性再生。最近,细胞片层的使用在促进牙周再生方面已显示出有前景的结果。在此,我们描述了具有完整细胞外基质结构和生物学特性的去细胞化牙周细胞片层的制备。熔融静电纺丝聚己内酯(PCL)支架被用作本质上脆弱的细胞片层的载体,以便在去细胞化过程中提供支撑。概述了一种优化的去细胞化方法,该方法使用NH₄OH和 Triton X - 100的组合进行灌注,并结合DNA酶处理步骤以去除DNA。细胞外基质结构和生物学完整性的维持很重要,在此,我们描述了使用针对细胞外基质蛋白的免疫染色和用于生长因子定量的ELISA来评估这些特性。