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Magnetic and Contrast Properties of Labeled Platelets for Magnetomotive Optical Coherence Tomography

机译:磁动光学相干断层扫描的标记血小板的磁性和对比度特性

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摘要

This article introduces a new functional imaging paradigm that uses optical coherence tomography (OCT) to detect rehydrated, lyophilized platelets (RL platelets) that are in the preclinical trial stage and contain superparamagnetic iron oxides (SPIOs) approved by the U.S. Food and Drug Administration. Platelets are highly functional blood cells that detect and adhere to sites of vascular endothelial damage by forming primary hemostatic plugs. By applying magnetic gradient forces, induced nanoscale displacements (magnetomotion) of the SPIO-RL platelets are detected as optical phase shifts in OCT. In this article, we characterize the iron content and magnetic properties of SPIO-RL platelets, construct a model to predict their magnetomotion in a tissue medium, and demonstrate OCT imaging in tissue phantoms and ex vivo pig arteries. Tissue phantoms containing SPIO-RL platelets exhibited >3 dB contrastoise ratio at ≥1.5 × 109 platelets/cm3. OCT imaging was performed on ex vivo porcine arteries after infusion of SPIO-RL platelets, and specific contrast was obtained on an artery that was surface-damaged (P < 10−6). This may enable new technologies for in vivo monitoring of the adherence of SPIO-RL platelets to sites of bleeding and vascular damage, which is broadly applicable for assessing trauma and cardiovascular diseases.
机译:本文介绍了一种新的功能成像范例,该范例使用光学相干断层扫描(OCT)检测处于临床前试验阶段且含有美国食品药品监督管理局批准的超顺磁性氧化铁(SPIO)的复水,冻干血小板(RL血小板)。血小板是功能强大的血细胞,通过形成主要的止血塞来检测并粘附在血管内皮损伤的部位。通过施加磁梯度力,将SPIO-RL血小板的诱导纳米级位移(磁运动)检测为OCT中的光学相移。在本文中,我们表征了SPIO-RL血小板的铁含量和磁性,构建了预测其在组织介质中的磁运动的模型,并展示了组织体模和离体猪动脉中的OCT成像。包含SPIO-RL血小板的组织体模在≥1.5×10 9 血小板/ cm 3 时表现出> 3 dB的对比度/噪声比。在注入SPIO-RL血小板后,对离体猪动脉进行了OCT成像,并在表面受损的动脉上获得了特定的对比(P <10 -6 )。这可能为体内监测SPIO-RL血小板对出血和血管损伤部位的粘附性提供了新技术,该技术广泛适用于评估创伤和心血管疾病。

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