Department of Biomedical Engineering, the Johns Hopkins University School of Medicine, Baltimore, Maryland.
Russell H. Morgan Department of Radiology and Radiological Sciences, the Johns Hopkins University School of Medicine, Baltimore, Maryland.
Am J Physiol Cell Physiol. 2022 Nov 1;323(5):C1524-C1538. doi: 10.1152/ajpcell.00195.2022. Epub 2022 Oct 3.
Vascularization is a crucial step during musculoskeletal tissue regeneration via bioengineered constructs or grafts. Functional vasculature provides oxygen and nutrients to the graft microenvironment, facilitates wound healing, enhances graft integration with host tissue, and ensures the long-term survival of regenerating tissue. Therefore, imaging de novo vascularization (i.e., angiogenesis), changes in microvascular morphology, and the establishment and maintenance of perfusion within the graft site (i.e., vascular microenvironment or VME) can provide essential insights into engraftment, wound healing, as well as inform the design of tissue engineering (TE) constructs. In this review, we focus on state-of-the-art imaging approaches for monitoring the VME in craniofacial TE applications, as well as future advances in this field. We describe how cutting-edge in vivo and ex vivo imaging methods can yield invaluable information regarding VME parameters that can help characterize the effectiveness of different TE constructs and iteratively inform their design for enhanced craniofacial bone regeneration. Finally, we explicate how the integration of novel TE constructs, preclinical model systems, imaging techniques, and systems biology approaches could usher in an era of "image-based tissue engineering."
血管生成是通过生物工程构建体或移植物进行肌肉骨骼组织再生的关键步骤。功能性血管为移植物微环境提供氧气和营养物质,促进伤口愈合,增强移植物与宿主组织的整合,并确保再生组织的长期存活。因此,对新血管生成(即血管生成)、微血管形态变化以及移植物部位(即血管微环境或 VME)内灌注的建立和维持进行成像,可以为植入、伤口愈合提供重要的见解,并为组织工程(TE)构建体的设计提供信息。在这篇综述中,我们重点介绍了用于监测颅面 TE 应用中 VME 的最新成像方法,以及该领域的未来进展。我们描述了如何使用最先进的体内和体外成像方法来获得有关 VME 参数的宝贵信息,这些信息可以帮助表征不同 TE 构建体的有效性,并迭代地为增强颅面骨再生提供设计信息。最后,我们阐述了如何将新型 TE 构建体、临床前模型系统、成像技术和系统生物学方法集成在一起,开创“基于图像的组织工程”时代。