首页> 外文期刊>Frontiers in Bioengineering and Biotechnology >3D-Printed Poly-Caprolactone Scaffolds Modified With Biomimetic Extracellular Matrices for Tarsal Plate Tissue Engineering
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3D-Printed Poly-Caprolactone Scaffolds Modified With Biomimetic Extracellular Matrices for Tarsal Plate Tissue Engineering

机译:用仿生外甲基基质改性3D印刷的多己内酯支架,用于TALSAL板组织工程

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Tarsal plate regeneration has always been a challenge in the treatment of eyelid defects. The commonly used clinical treatments such as hard palate mucosa grafts cannot achieve satisfactory repair effects. Tissue engineering has been considered as a promising technology. However, tarsal plate tissue engineering is difficult to achieve due to its complex structure and lipid secretion function. Three-dimensional (3D) printing technology has played a revolutionary role in tissue engineering because it can fabricate complex scaffolds through computer aided design (CAD). In this study, it was novel in applying 3D printing technology to the fabrication of tarsal plate scaffolds using poly-caprolactone (PCL). The decellularized matrix of adipose-derived mesenchymal stromal cells (DMA) was coated on the surface of the scaffold, and its biofunction was further studied. Immortalized human SZ95 sebocytes were seeded on the scaffolds so that neutral lipids were secreted for replacing meibocytes. In vitro experiments revealed excellent biocompatibility of DMA-PCL scaffolds with sebocytes. In vivo experiments revealed excellent sebocytes proliferation on the DMA–PCL scaffolds. Meanwhile, sebocytes seeded on the scaffolds secreted abundant neutral lipid in vitro and in vivo. In conclusion, a 3D-printed PCL scaffold modified with DMA was found to be a promising substitute for tarsal plate tissue engineering.
机译:TATSAL板再生始终是治疗眼睑缺陷的挑战。常用的临床治疗如硬腭粘膜移植物不能达到令人满意的修复效果。组织工程被认为是一个有前途的技术。然而,由于其复杂的结构和脂质分泌功能,难以实现T膜板组织工程。三维(3D)印刷技术在组织工程中发挥了革命性的作用,因为它可以通过计算机辅助设计(CAD)制造复杂的脚手架。在这项研究中,它在使用聚己内酯(PCL)将3D印刷技术应用于将3D印刷技术应用于塔式板支架的制造。将脱脂衍生的间充质基质细胞(DMA)涂布在支架表面上,进一步研究其生物功能。将不朽的人SZ95 Sebocytes播种在支架上,使中性脂质分泌用于替代Meibocytes。体外实验揭示了DMA-PCL支架与Sebocytes的优异生物相容性。体内实验显示出优异的DMA-PCL支架上的Sebocytes增殖。同时,在体外和体内播种在支架上播种在支架上的丰富中性脂质。总之,发现用DMA改性3D印刷的PCL支架是对塔形板组织工程的有望替代品。

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