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超声分子成像在心脏移植急性细胞排斥反应中淋巴细胞-内皮细胞黏附级联反应的研究

Ultrasound Molecular Imaging of Lymphocyte-endothelium Adhesion Cascade in Acute Cellular Rejection of Cardiac Allografts.

机构信息

Department of Ultrasound, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.

Hubei Province Key Laboratory of Molecular Imaging, Wuhan, China.

出版信息

Transplantation. 2019 Aug;103(8):1603-1611. doi: 10.1097/TP.0000000000002698.

Abstract

BACKGROUND

Acute cellular rejection is one of the main reasons for graft failure after heart transplantation. A precise diagnosis at the early stage of acute cellular rejection is a big challenge for clinicians. Given the importance of the interaction between T cells and graft endothelia in initiating rejection, we developed T cell-microbubble complexes (cell-MBs) as ultrasound molecular imaging probes to monitor the lymphocyte-endothelium adhesion cascade in cardiac acute cellular rejection.

METHODS

Cell-MBs were fabricated by incubating lymphocytes with anti-CD4 antibody-conjugated MBs (MBCD4). The potential of cell-MBs as probes for detecting acute cardiac rejection was examined. Donor hearts from Brown Norway or Lewis rats were transplanted into Lewis recipients. Ultrasound molecular imaging was performed on allografts of untreated or cyclosporin A (CsA)-treated recipients, and isografts on posttransplantation day 3. Histology was used to assess rejection grades.

RESULTS

We detected a significantly stronger ultrasound molecular imaging signal of cell-MBs than that of MBCD4 or plain MBs in allografts of untreated and CsA-treated recipients. No signal enhancement was observed in isografts with cell-MBs. The signal of cell-MBs in allografts of the untreated group was significantly higher than that in the CsA-treated group, and the signal in the CsA-treated group was higher than that in isografts. Histology confirmed grade 3R rejection in the untreated group, grade 2R rejection in CsA-treated group, and no rejection in isografts.

CONCLUSIONS

Our study suggests that cell-MBs can function as a promising probe to image the dynamic lymphocyte-endothelium adhesion cascade for noninvasive diagnosis of cardiac acute cellular rejection.

摘要

背景

急性细胞排斥反应是心脏移植后移植物失功的主要原因之一。在急性细胞排斥反应的早期阶段做出准确的诊断对临床医生来说是一个巨大的挑战。鉴于 T 细胞与移植物内皮细胞相互作用在引发排斥反应中的重要性,我们开发了 T 细胞-微泡复合物(cell-MBs)作为超声分子成像探针,以监测心脏急性细胞排斥反应中的淋巴细胞-内皮细胞黏附级联。

方法

通过将淋巴细胞与抗 CD4 抗体偶联的 MB(MBCD4)孵育来制备 cell-MBs。检测了 cell-MBs 作为探针检测急性心脏排斥反应的潜力。来自 Brown Norway 或 Lewis 大鼠的供心被移植到 Lewis 受体中。对未处理或环孢素 A(CsA)处理的受体的同种异体移植物以及移植后第 3 天的同基因移植物进行超声分子成像,使用组织学评估排斥等级。

结果

我们在未处理和 CsA 处理的受体的同种异体移植物中检测到 cell-MBs 的超声分子成像信号明显强于 MBCD4 或普通 MBs。在同基因移植物中,未观察到信号增强。未处理组同种异体移植物中 cell-MBs 的信号明显高于 CsA 处理组,而 CsA 处理组的信号高于同基因移植物。组织学证实未处理组为 3R 级排斥反应,CsA 处理组为 2R 级排斥反应,同基因移植物无排斥反应。

结论

我们的研究表明,cell-MBs 可以作为一种有前途的探针,用于成像动态淋巴细胞-内皮细胞黏附级联,从而实现对心脏急性细胞排斥反应的非侵入性诊断。

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