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新型单链抗体靶向微泡用于血栓的分子超声成像:验证一种独特的非侵入性方法,用于快速和敏感地检测血栓,并监测溶栓在小鼠中的成功或失败。

Novel single-chain antibody-targeted microbubbles for molecular ultrasound imaging of thrombosis: validation of a unique noninvasive method for rapid and sensitive detection of thrombi and monitoring of success or failure of thrombolysis in mice.

机构信息

Atherothrombosis and Vascular Biology, Baker IDI Heart and Diabetes Institute, PO Box 6492, St. Kilda Rd Central, Victoria 8008, Australia.

出版信息

Circulation. 2012 Jun 26;125(25):3117-26. doi: 10.1161/CIRCULATIONAHA.111.030312. Epub 2012 May 30.

Abstract

BACKGROUND

Molecular imaging is a fast emerging technology allowing noninvasive detection of vascular pathologies. However, imaging modalities offering high resolution currently do not allow real-time imaging. We hypothesized that contrast-enhanced ultrasound with microbubbles (MBs) selectively targeted to activated platelets would offer high-resolution, real-time molecular imaging of evolving and dissolving arterial thrombi.

METHODS AND RESULTS

Lipid-shell based gas-filled MBs were conjugated to either a single-chain antibody specific for activated glycoprotein IIb/IIIa via binding to a Ligand-Induced Binding Site (LIBS-MBs) or a nonspecific single-chain antibody (control MBs). Successful conjugation was assessed in flow cytometry and immunofluorescence double staining. LIBS-MBs but not control MBs strongly adhered to both immobilized activated platelets and microthrombi under flow. Thrombi induced in carotid arteries of C57Bl6 mice in vivo by ferric chloride injury were then assessed with ultrasound before and 20 minutes after MB injection through the use of gray-scale area intensity measurement. Gray-scale units converted to decibels demonstrated a significant increase after LIBS-MB but not after control MB injection (9.55±1.7 versus 1.46±1.3 dB; P<0.01). Furthermore, after thrombolysis with urokinase, LIBS-MB ultrasound imaging allows monitoring of the reduction of thrombus size (P<0.001).

CONCLUSION

We demonstrate that glycoprotein IIb/IIIa-targeted MBs specifically bind to activated platelets in vitro and allow real-time molecular imaging of acute arterial thrombosis and monitoring of the success or failure of pharmacological thrombolysis in vivo.

摘要

背景

分子成像技术是一种新兴技术,可以实现对血管病变的非侵入性检测。然而,目前提供高分辨率的成像方式无法实时成像。我们假设,通过结合配体诱导结合位点(LIBS-MB),将靶向激活血小板的微泡(MB)与脂质壳基气载 MB 特异性结合,将提供对演变和溶解的动脉血栓的高分辨率、实时分子成像。

方法和结果

通过流式细胞术和免疫荧光双重染色评估了单链抗体特异性针对激活糖蛋白 IIb/IIIa 的 LIBS-MB 的成功结合。LIBS-MB 但不是对照 MB 强烈粘附在固定的激活血小板和流动下的微血栓上。体内通过氯化铁损伤诱导 C57Bl6 小鼠颈动脉中的血栓,然后在 MB 注射前和 20 分钟后通过灰度区域强度测量使用超声进行评估。将灰度单位转换为分贝后,LIBS-MB 注射后显著增加(9.55±1.7 与 1.46±1.3 dB;P<0.01)。此外,在用尿激酶进行溶栓后,LIBS-MB 超声成像可监测血栓大小的减少(P<0.001)。

结论

我们证明了糖蛋白 IIb/IIIa 靶向 MB 可以在体外特异性结合激活的血小板,并允许实时分子成像急性动脉血栓形成,并监测体内药物溶栓的成功或失败。

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