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实时红细胞迁移与微循环血流协同成像——氧化铁复合物溶栓治疗研究

real-time red blood cell migration and microcirculation flow synergy imaging-surveyed thrombolytic therapy with iron-oxide complexes.

作者信息

Ye Fei, Zhang Bei, Qiu Lige, Zhang Yunrui, Zhang Yang, Zhang Jian, Zhao Qingliang, Lu Ligong, Zhang Zhenlin

机构信息

Zhuhai Interventional Medical Center, Zhuhai Precision Medical Center, Zhuhai People's Hospital (Zhuhai Hospital Affiliated with Jinan University), Zhuhai, 519000, PR China.

State Key Laboratory of Molecular Vaccinology and Molecular Diagnostics, Center for Molecular Imaging and Translational Medicine, School of Public Health, Shenzhen Research Institute of Xiamen University, Xiamen University, Xiamen, 361102, PR China.

出版信息

Mater Today Bio. 2022 Aug 26;16:100408. doi: 10.1016/j.mtbio.2022.100408. eCollection 2022 Dec.

Abstract

Nanotherapeutics as a nascent method has attracted widely interest on the treatment of thrombosis. However, due to the limited temporal and spatial resolution of conventional imaging modalities, the dynamic visualization the thrombogenesis and evaluation of the effect of thrombolytic drugs are facing severely difficulties . In addition, the development of high targeting, short circulation time, and small size thrombolysis nanotherapeutics agents requires further research. Herein, we report a synergy imaging modality that combining a label-free capillary microscopy and laser speckle microcirculation imaging, which realized dynamic visualization of single red blood cell migration and large-field dynamic blood flow. In this work, we investigated the red blood cells migration and blood flow velocity response before and after treated through introducing a functional nano-thrombolytics, iron-oxide complexes coated urokinase (IPN@UK) on an orthotopic animal model . The functionalized IPN@UK nanocomposites exhibited outstanding thrombolysis effect. Significantly, whole-course changes, including red blood cell activity, complex thrombolytic therapeutics, were well surveilled and evaluated using dual-modality combining imaging strategy. These results show this synergy imaging strategy not only can achieve multiscale non-invasive visualization of dynamic thrombus events in real-time, but also can quantify hemodynamics information of thrombus. Our study demonstrates the potential of this synergy imaging method, which for early detection of thrombus, evaluation of the effect of drug thrombolysis, developing the thrombolytic drugs, and imaging-guide thrombolytic therapy in living systems.

摘要

纳米疗法作为一种新兴方法,已在血栓治疗方面引起了广泛关注。然而,由于传统成像方式的时间和空间分辨率有限,血栓形成的动态可视化以及溶栓药物效果的评估面临着严峻困难。此外,高靶向性、短循环时间和小尺寸的溶栓纳米治疗剂的开发还需要进一步研究。在此,我们报告了一种协同成像方式,它结合了无标记毛细管显微镜和激光散斑微循环成像,实现了单个红细胞迁移和大视野动态血流的动态可视化。在这项工作中,我们通过在原位动物模型上引入一种功能性纳米溶栓剂——氧化铁复合物包被的尿激酶(IPN@UK),研究了治疗前后红细胞迁移和血流速度的反应。功能化的IPN@UK纳米复合材料表现出出色的溶栓效果。重要的是,使用双模态联合成像策略对包括红细胞活性、复合溶栓治疗在内的全过程变化进行了良好的监测和评估。这些结果表明,这种协同成像策略不仅可以实时实现动态血栓事件的多尺度无创可视化,还可以量化血栓的血流动力学信息。我们的研究证明了这种协同成像方法在早期检测血栓、评估药物溶栓效果、开发溶栓药物以及在活体系统中进行成像引导溶栓治疗方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/19c2/9463387/cd877b8bdbe6/ga1.jpg

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