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组织工程构建体的体内追踪

In Vivo Tracking of Tissue Engineered Constructs.

作者信息

Gil Carmen J, Tomov Martin L, Theus Andrea S, Cetnar Alexander, Mahmoudi Morteza, Serpooshan Vahid

机构信息

Wallace H. Coulter Department of Biomedical Engineering, Emory University School of Medicine and Georgia Institute of Technology, Atlanta, GA 30322, USA.

Precision Health Program, Michigan State University, East Lansing, MI 48824, USA.

出版信息

Micromachines (Basel). 2019 Jul 16;10(7):474. doi: 10.3390/mi10070474.

Abstract

To date, the fields of biomaterials science and tissue engineering have shown great promise in creating bioartificial tissues and organs for use in a variety of regenerative medicine applications. With the emergence of new technologies such as additive biomanufacturing and 3D bioprinting, increasingly complex tissue constructs are being fabricated to fulfill the desired patient-specific requirements. Fundamental to the further advancement of this field is the design and development of imaging modalities that can enable visualization of the bioengineered constructs following implantation, at adequate spatial and temporal resolution and high penetration depths. These in vivo tracking techniques should introduce minimum toxicity, disruption, and destruction to treated tissues, while generating clinically relevant signal-to-noise ratios. This article reviews the imaging techniques that are currently being adopted in both research and clinical studies to track tissue engineering scaffolds in vivo, with special attention to 3D bioprinted tissue constructs.

摘要

迄今为止,生物材料科学和组织工程领域在创建用于各种再生医学应用的生物人工组织和器官方面展现出了巨大的前景。随着诸如增材生物制造和3D生物打印等新技术的出现,越来越复杂的组织构建体正在被制造出来,以满足特定患者的需求。该领域进一步发展的基础是成像模式的设计与开发,这些成像模式能够以足够的空间和时间分辨率以及高穿透深度,在植入后实现对生物工程构建体的可视化。这些体内追踪技术应对治疗组织产生最小的毒性、干扰和破坏,同时产生临床相关的信噪比。本文综述了目前在研究和临床研究中用于体内追踪组织工程支架的成像技术,特别关注3D生物打印的组织构建体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f3da/6680880/256e5656b8a2/micromachines-10-00474-g001.jpg

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