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首页> 外文期刊>Clinical cancer research: an official journal of the American Association for Cancer Research >In vivo optical molecular imaging of vascular endothelial growth factor for monitoring cancer treatment.
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In vivo optical molecular imaging of vascular endothelial growth factor for monitoring cancer treatment.

机译:体内血管内皮生长因子的光学分子成像技术,用于监测癌症的治疗。

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PURPOSE: Vascular endothelial growth factor (VEGF) expression is a critical component in tumor growth and metastasis. Capabilities to monitor VEGF expression in vivo can potentially serve as a useful tool for diagnosis, prognosis, treatment planning, monitoring, and research. Here, we present the first report of in vivo hyperspectral molecular imaging strategy capable of monitoring treatment-induced changes in VEGF expression. EXPERIMENTAL DESIGN: VEGF was targeted with an anti-VEGF antibody conjugated with a fluorescent dye and was imaged in vivo using a hyperspectral imaging system. The strategy was validated by quantitatively monitoring VEGF levels in three different tumors as well as following photodynamic treatment. Specificity of the molecular imaging strategy was tested using in vivo competition experiments and mathematically using a quantitative pharmacokinetic model. RESULTS: The molecular imaging strategy successfully imaged VEGF levels quantitatively in three different tumors and showed concordance with results from standard ELISA. Changes in tumoral VEGF concentration following photodynamic treatment and Avastin treatment were shown. Immunohistochemistry shows that (a) the VEGF-specific contrast agent labels both proteoglycan-bound and unbound VEGF in the extracellular space and (b) the bound VEGF is released from the extracellular matrix in response to photodynamic therapy. In vivo competition experiments and quantitative pharmacokinetic model-based analysis confirmed the high specificity of the imaging strategy. CONCLUSION: This first report of in vivo quantitative optical molecular imaging-based monitoring of a secreted cytokine in tumors may have implications in providing tools for mechanistic investigations as well as for improved treatment design and merits further investigation.
机译:目的:血管内皮生长因子(VEGF)的表达是肿瘤生长和转移的关键组成部分。体内监测VEGF表达的能力可能会成为诊断,预后,治疗计划,监测和研究的有用工具。在这里,我们介绍了能够监测治疗诱导的VEGF表达变化的体内高光谱分子成像策略的第一份报告。实验设计:VEGF靶向与荧光染料偶联的抗VEGF抗体,并使用高光谱成像系统在体内成像。通过定量监测三种不同肿瘤中的VEGF水平以及进行光动力治疗,验证了该策略。使用体内竞争实验并使用定量药代动力学模型以数学方式测试了分子成像策略的特异性。结果:分子成像策略成功地对三种不同肿瘤中的VEGF水平进行了定量成像,并与标准ELISA结果一致。显示了光动力治疗和阿瓦斯汀治疗后肿瘤VEGF浓度的变化。免疫组织化学显示,(a)VEGF特异性造影剂既标记蛋白聚糖结合的和未结合的细胞外空间中的VEGF,又(b)结合的VEGF响应光动力疗法而从细胞外基质中释放出来。体内竞争实验和基于定量药代动力学模型的分析证实了成像策略的高度特异性。结论:基于体内定量光学分子成像监测肿瘤中分泌细胞因子的第一份报告可能对提供机制研究工具以及改进治疗设计和进一步研究的意义。

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