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评估新型联合碳氧 USPIO(CUSPIO)成像生物标志物在评估 Cediranib(AZD2171)在大鼠 C6 神经胶质瘤中的抗血管生成作用。

Evaluation of novel combined carbogen USPIO (CUSPIO) imaging biomarkers in assessing the antiangiogenic effects of cediranib (AZD2171) in rat C6 gliomas.

机构信息

Cancer Research UK and EPSRC Cancer Imaging Centre, The Institute of Cancer Research, Sutton, Surrey, United Kingdom.

出版信息

Int J Cancer. 2012 Oct 15;131(8):1854-62. doi: 10.1002/ijc.27460. Epub 2012 Mar 22.

Abstract

The recently described combined carbogen USPIO (CUSPIO) magnetic resonance imaging (MRI) method uses spatial correlations in independent imaging biomarkers to assess specific components of tumor vascular structure and function. Our study aimed to evaluate CUSPIO biomarkers for the assessment of tumor response to antiangiogenic therapy. CUSPIO imaging was performed in subcutaneous rat C6 gliomas before and 2 days after treatment with the potent VEGF-signaling inhibitor cediranib (n = 12), or vehicle (n = 12). Histological validation of Hoechst 33342 uptake (perfusion), smooth muscle actin staining (maturation), pimonidazole adduct formation (hypoxia) and necrosis were sought. Following treatment, there was a significant decrease in fractional blood volume (-43%, p < 0.01) and a significant increase in hemodynamic vascular functionality (treatment altered ΔR(2) *(carbogen) from 1.2 to -0.2 s(-1) , p < 0.05). CUSPIO imaging revealed an overall significant decrease in plasma perfusion (-27%, p < 0.05) following cediranib treatment, that was associated with selective effects on immature blood vessels. The CUSPIO responses were associated with a significant 15% reduction in Hoechst 33342 uptake (p < 0.05), but no significant difference in vascular maturation or necrosis. Additionally, treatment with cediranib resulted in a significant 40% increase in tumor hypoxia (p < 0.05). The CUSPIO imaging method provides novel and more specific biomarkers of tumor vessel maturity and vascular hemodynamics, and their response to VEGF-signaling inhibition, compared to current MR imaging biomarkers utilized in the clinic. Such biomarkers may prove effective in longitudinally monitoring tumor vascular remodeling and/or evasive resistance in response to antiangiogenic therapy.

摘要

最近描述的联合碳氧-USPIO(CUSPIO)磁共振成像(MRI)方法利用独立成像生物标志物之间的空间相关性来评估肿瘤血管结构和功能的特定组成部分。我们的研究旨在评估 CUSPIO 生物标志物用于评估抗血管生成治疗的肿瘤反应。在给予强效 VEGF 信号抑制剂西地尼布(n = 12)或载体(n = 12)治疗前和治疗后 2 天,对皮下大鼠 C6 神经胶质瘤进行 CUSPIO 成像。我们试图寻找 Hoechst 33342 摄取(灌注)、平滑肌肌动蛋白染色(成熟)、pimonidazole 加合物形成(缺氧)和坏死的组织学验证。治疗后,血容量分数显著降低(-43%,p < 0.01),血流动力学血管功能显著增加(治疗改变了(-1)时的(-1)时的ΔR2 *(碳氧)从 1.2 到-0.2 s,p < 0.05)。CUSPIO 成像显示 cediranib 治疗后血浆灌注总体显著降低(-27%,p < 0.05),这与不成熟血管的选择性作用有关。CUSPIO 反应与 Hoechst 33342 摄取量减少 15%(p < 0.05)显著相关,但血管成熟或坏死无显著差异。此外,cediranib 治疗导致肿瘤缺氧增加 40%(p < 0.05)。与目前临床中使用的磁共振成像生物标志物相比,CUSPIO 成像方法为肿瘤血管成熟度和血管血液动力学及其对 VEGF 信号抑制的反应提供了新的、更特异的生物标志物。这些生物标志物可能在监测抗血管生成治疗后肿瘤血管重塑和/或逃避性耐药方面具有良好的效果。

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