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Magnetic resonance imaging of human brain macrophage infiltration

机译:人脑巨噬细胞渗透的磁共振成像

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摘要

Macrophage tracking by magnetic resonance imaging (MRI) with iron oxide nanoparticles has been developed during the last decade for numerous diseases of the CNS. Experimental studies on animal models were confirmed by first clinical applications of MRI technology of brain macrophages for multiple sclerosis, ischemic stroke lesions, and tumors. As activated macrophages act in concert with other immune competent cells, this innovative MRI approach provides new functional data on the immune reaction in these CNS diseases. The MRI detection of brain macrophages defines precise spatial and temporal patterns of macrophage involvement that helps to characterize individual neurological disorders. This approach is being explored as an marker for the clinical diagnosis of cerebral lesion activity, in experimental models for the prognosis of disease development, and to determine the efficacy of immunomodulatory treatments under clinical evaluation. Comparative brain imaging follow-up studies of blood-brain barrier leakage by MRI with gadolinium-chelates, microglia activation by positron emission tomography with radiotracer ligand PK11195 and MRI detection of macrophage infiltration provide more precise information about the pathophysiological cascade of inflammatory events in cerebral diseases. Such multimodal characterization of the inflammatory events should help in the monitoring of patients, in defining precise time intervals for therapeutic interventions, and in developing and evaluating new therapeutic strategies.
机译:通过磁共振成像(MRI)用氧化铁纳米颗粒的巨噬细胞跟踪已经在过去十年中开发了CNS的许多疾病。通过脑巨噬细胞MRI技术对多发性硬化,缺血性卒中病变和肿瘤的第一临床应用证实了动物模型的实验研究。由于活化的巨噬细胞与其他免疫伴随细胞进行音乐,这种创新的MRI方法为这些CNS疾病中的免疫反应提供了新的功能数据。脑巨噬细胞的MRI检测定义了巨噬细胞受累的精确空间和时间模式,有助于表征个体神经障碍。这种方法正在探索作为脑病变活性临床诊断的标志物,在疾病发展预后的实验模型中,并确定免疫调节治疗在临床评价下的疗效。比较脑成像对MRI与钆 - 螯合物的血脑屏障泄漏的后续研究,通过正电子发射断层扫描与辐射反射蛋白配体PK11195和MRI检测巨噬细胞渗透的MRI检测提供了关于脑病中炎症事件的病理生理学级联的更精确的信息。这种多峰表征炎症事件应有助于监测患者,定义治疗干预措施的精确时间间隔,以及开发和评估新的治疗策略。

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