Department of Clinical Neurosciences, the Experimental Imaging Centre, and Hotchkiss Brain Institute, Faculty of Medicine, University of Calgary, Alberta, Canada.
Contrast Media Mol Imaging. 2009 Nov-Dec;4(6):305-11. doi: 10.1002/cmmi.292.
We have developed a magnetic resonance molecular imaging method using a novel iron-oxide contrast agent targeted towards P-selectin - MNP-PBP (magnetic nanoparticle-P-selectin binding peptide) - to image endothelial activation following cerebral ischemia/reperfusion. MNP-PBP consists of approximately 1000 PBP ligands (primary sequence: GSIQPRPQIHNDGDFEEIPEEYLQ GGSSLVSVLDLEPLDAAWL) conjugated to a 50 nm diameter aminated dextran iron oxide particle. In vitro P- and E-selectin binding was assessed by competition ELISA. Transient focal cerebral ischemia was induced in male C57/BL 6 mice followed by contrast injection (MNP-PBP; MNP-NH2; Feridex; MNP-PBP-FITC) at 24 h after reperfusion and T(2) magnetic resonance imaging at 9.4 T was performed. Infarction and microvasculature accumulation of contrast agent was assessed in coronal brain sections. MNP-PBP attenuated antibody binding to P-selectin by 34.8 +/- 1.7%. P-selectin was preferentially increased in the infarct hemisphere and MNP-PBP-FITC accumulation in the infarct hemisphere microvasculature was observed. Compared with the nontargeted iron oxide agents MNP-NH2 and Feridex, MNP-PBP showed a significantly greater T(2) effect within the infarction. MR imaging of P-selectin expression with a targeted iron oxide nanoparticle contrast agent may reveal early endothelial activation in stroke and other neuroinflammatory states.
我们开发了一种使用新型氧化铁对比剂的磁共振分子成像方法,该对比剂针对 P-选择素 - MNP-PBP(磁性纳米颗粒-P-选择素结合肽),用于在脑缺血/再灌注后成像内皮细胞激活。MNP-PBP 由约 1000 个 PBP 配体(一级序列:GSIQPRPQIHNDGDFEEIPEEYLQ GGSSLVSVLDLEPLDAAWL)与 50nm 直径的氨化葡聚糖氧化铁颗粒偶联而成。通过竞争 ELISA 评估了 P-和 E-选择素在体外的结合情况。雄性 C57/BL 6 小鼠诱导短暂性局灶性脑缺血,再灌注后 24 小时注射对比剂(MNP-PBP;MNP-NH2;Feridex;MNP-PBP-FITC),并在 9.4T 下进行 T2 磁共振成像。在冠状脑切片中评估了梗死和对比剂的微血管聚集。MNP-PBP 使抗体与 P-选择素的结合减少了 34.8%±1.7%。P-选择素在梗死半球中优先增加,并且在梗死半球的微血管中观察到 MNP-PBP-FITC 聚集。与非靶向氧化铁剂 MNP-NH2 和 Feridex 相比,MNP-PBP 在梗死灶内显示出更大的 T2 效应。使用靶向氧化铁纳米颗粒对比剂进行 P-选择素表达的磁共振成像可能会揭示中风和其他神经炎症状态中的早期内皮细胞激活。
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