Laboratory of Acoustic Microscopy, N.M. Emanuel Institute of Biochemical Physics Russian Academy of Sciences, Moscow, Russia.
Laboratory of Fundamental Research in the Field of Regenerative Medicine, Kuban State Medical University, Krasnodar, Russia.
Artif Organs. 2019 Nov;43(11):1104-1110. doi: 10.1111/aor.13516. Epub 2019 Jul 18.
Development of artificial tissues or organs is one of the actual tasks in regenerative medicine that requires observation and evaluation of intact volume microstructure of tissue engineering products at all stages of their formation, from native donor tissues and decellularized scaffolds to recipient cell migration in the matrix. Unfortunately in practice, methods of vital noninvasive imaging of volume microstructure in matrixes are absent. In this work, we propose a new approach based on high-frequency acoustic microscopy for noninvasive evaluation and visualization of volume microstructure in tissue engineering products. The results present the ultrasound characterization of native rat diaphragms and lungs and their decellularized scaffolds. Verification of the method for visualization of tissue formation in the matrix volume was described in the model samples of diaphragm scaffolds with stepwise collagenization. Results demonstrate acoustic microscopic sensitivity to cell content concentration, variation in local density, and orientation of protein fibers in the volume, micron air inclusions, and other inhomogeneities of matrixes.
人工组织或器官的开发是再生医学中的实际任务之一,需要在组织工程产品形成的各个阶段观察和评估完整体积微观结构,从天然供体组织和去细胞支架到基质中受体细胞的迁移。不幸的是,在实践中,缺乏基质中体积微观结构的活体非侵入性成像方法。在这项工作中,我们提出了一种基于高频声显微镜的新方法,用于非侵入性评估和可视化组织工程产品中的体积微观结构。结果呈现了对天然大鼠横膈膜和肺及其去细胞支架的超声特征。在具有逐步胶原化的横膈膜支架模型样本中,描述了用于可视化基质体积中组织形成的方法验证。结果表明,声显微镜对体积中细胞含量浓度、局部密度变化以及蛋白质纤维的方向、微米空气夹杂物和基质的其他不均匀性具有敏感性。