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通过具有内置CT可见性的3D生物打印血管补片实现图像引导的心脏再生

Image-Guided Cardiac Regeneration via a 3D Bioprinted Vascular Patch with Built-in CT Visibility.

作者信息

Gil Carmen J, Allphin Alex J, Jin Linqi, Amoli Mehdi Salar, Rezapourdamanab Sarah, Tomov Martin L, Hwang Boeun, Sridhar Vani, El Shammas Lama Rita, Wu Yuxiao, Evans Connor J, Li Lan, Singh Yamini, Nandwani Roshni K, Nish Joy, Shen Ming, Mahmoudi Morteza, Bauser Holly D, Pourmorteza Amir, Roeder Ryan K, Badea Cristian T, 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, United States.

Quantitative Imaging and Analysis Lab, Department of Radiology, Duke University, Durham, NC, United States.

出版信息

Chem Eng J. 2025 Sep 15;520. doi: 10.1016/j.cej.2025.165926. Epub 2025 Jul 12.

Abstract

Cardiac patch-based regenerative therapies have shown great promise in the treatment of myocardial infarction (MI). The clinical applications of patch devices, however, face major limitations mainly due to the inadequate integration of typically nonvascular implanted grafts with the recipient heart muscle tissue, the lack of patient and damage specificity, and insufficient perfusion. Here we present a new generation of cardiac patch devices with customized geometry and vasculature to closely correspond to those of the recipient heart tissue, while providing imaging properties. Incorporation of multiple computed tomography (CT) contrast agents within hydrogel bioinks enabled longitudinal and quantitative tracking of patch scaffolds both in static flow culture conditions, and using photon-counting CT (PCCT). We also investigated the cardioprotective impact of the bioprinted vascular patch in a rat model of MI. PCCT distinguished the signal from multiple contrast agents to assess perfusion within the vascular patch , as well as the surgical location, integration and degradation of patch . Results establish a novel approach for developing vascular cardiac patches with noninvasive imaging capabilities, addressing critical challenges in monitoring patch engraftment and function, as a powerful tool for advancing translational cardiac regenerative therapies and optimizing clinical outcomes.

摘要

基于心脏贴片的再生疗法在治疗心肌梗死(MI)方面已显示出巨大潜力。然而,贴片装置的临床应用面临重大限制,主要原因是典型的非血管植入移植物与受体心肌组织的整合不足、缺乏患者和损伤特异性以及灌注不足。在此,我们展示了新一代具有定制几何形状和脉管系统的心脏贴片装置,使其与受体心脏组织的几何形状和脉管系统紧密对应,同时具备成像特性。在水凝胶生物墨水中加入多种计算机断层扫描(CT)造影剂,能够在静态流动培养条件下以及使用光子计数CT(PCCT)对贴片支架进行纵向和定量跟踪。我们还在MI大鼠模型中研究了生物打印血管贴片的心脏保护作用。PCCT区分了来自多种造影剂的信号,以评估血管贴片中的灌注情况以及贴片的手术位置、整合和降解情况。研究结果建立了一种开发具有无创成像能力的血管心脏贴片的新方法,解决了监测贴片植入和功能方面的关键挑战,成为推进转化性心脏再生疗法和优化临床结果的有力工具。

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Advanced Cardiac Patches for the Treatment of Myocardial Infarction.高级心脏补片治疗心肌梗死。
Circulation. 2024 Jun 18;149(25):2002-2020. doi: 10.1161/CIRCULATIONAHA.123.067097. Epub 2024 Jun 17.

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