首页> 外文会议>IEEE International Conference on Imaging Systems and Techniques >NanoSPECT/CT imaging and biodistribution of 188Re-HSA microspheres using new radio labeling process in a GP7TB hepatoma rats model (Imaging and Biodistribution of 188Re-HSA microspheres)
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NanoSPECT/CT imaging and biodistribution of 188Re-HSA microspheres using new radio labeling process in a GP7TB hepatoma rats model (Imaging and Biodistribution of 188Re-HSA microspheres)

机译:GP7TB肝癌大鼠模型中使用新的放射性标记方法对 188 Re-HSA微球进行NanoSPECT / CT成像和生物分布( 188 Re-HSA微球的成像和生物分布)

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The human serum albumin microsphere (HSA microsphere) is biodegradable and biocompatible, the SPECT/CT imaging and biodistribution of Re-HSA microspheres using new radio labeling process were investigated in a GP7TB hepatoma rat model. The labeling efficiency of the Re-HSA microspheres using new radio labeling process was about 97%. The levels of radioactivity within the liver peaked at 1 h (68.325777±1.896218 %ID/organ) and then declined slowly. With image analysis, the highest uptake in liver was 69.9±3.8 %ID/organ and 59.7±5.7 %ID/organ at 48 and 72 h after administration of Re-HSA microspheres via TACE. The liver uptake of Re-HSA microspheres was steadily maintained that to increase the radioactivity to directly give damage to tumor cells. These results showed potential benefit and advantage of Re-HSA microspheres via liver transarterial chemoembolization (TACE) for treatment of Hepatocellular carcinoma.
机译:人血清白蛋白微球(HSA微球)是可生物降解和生物相容的,在GP7TB肝癌大鼠模型中研究了使用新的放射标记工艺对Re-HSA微球进行SPECT / CT成像和生物分布。使用新的无线电标记方法,Re-HSA微球的标记效率约为97%。肝脏中的放射性水平在1 h达到峰值(68.325777±1.896218%ID /器官),然后缓慢下降。通过图像分析,在通过TACE施用Re-HSA微球后48和72小时,肝脏的最高摄取为69.9±3.8%ID /器官和59.7±5.7%ID /器官。稳定地维持Re-HSA微球的肝脏摄取,以增加放射活性,从而直接损害肿瘤细胞。这些结果表明,Re-HSA微球通过肝动脉化学栓塞(TACE)治疗肝细胞癌具有潜在的益处和优势。

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