Mechanisms of artificial cartilage generation in polyglycolic acid scaffold revealed by multiphoton microscopy

S. Teng, Hsiao-Ching Chen, L. Chiou, Wen Lo, Hsuan-Shu Lee, C. Dong
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Abstract

Multiphoton microscopy is a nonlinear excitation imaging technique useful in probing structural and dynamic phenomena in biological systems. In this work, the advantages of multiphoton microscopy is explored to follow the physiological changes to tissue engineered cartilage using human mesenchymal bone marrow stem cells cultured in polyglycolic acid (PGA) scaffold. Multiphoton induced intrinsic luminescence signals from these specimens reveal the generation of extracellular matrix distorts the PGA scaffolds and show that multiphoton microscopy can be a useful technique in assessing the physiological states of tissue engineered constructs.
多光子显微镜观察聚乙醇酸支架人工软骨生成机制
多光子显微镜是一种非线性激发成像技术,用于探测生物系统的结构和动力学现象。本研究探讨了利用多光子显微镜观察聚乙醇酸(PGA)支架培养的人骨髓间充质干细胞在组织工程软骨中的生理变化。来自这些标本的多光子诱导的本征发光信号揭示了细胞外基质的产生扭曲了PGA支架,并表明多光子显微镜可以成为评估组织工程构建物生理状态的有用技术。
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