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Photoacoustic microscopy for evaluating combretastatin A4 phosphate induced vascular disruption in orthotopic glioma

机译:用于评估磷酸盐的磷酸盐诱导血管破坏的光声显微镜显微镜,原位神经胶质瘤中的血管破坏

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摘要

The use of an optical resolution photoacoustic microscopy (OR-PAM) system to evaluate the vascular disruptive effect of combretastatin A4 Phosphate (CA4P) on a murine orthotopic glioma with intact skull is described here. Second generation optical-resolution photoacoustic microscopy scanner with a 532 nm pulsed diode-pumped solid-state laser that specifically matches the absorption maximum of hemoglobin in tissues was used to image orthotopic glioma inoculated in mouse brain. Two-dimensional maps of brain vasculature with a lateral resolution of 5 m and a depth of 700 m at a field of view 5 x 4 mm were acquired on normal brain and glioma brain. Longitudinal imaging of the brain pre- and post-administration of CA4P, a FDA approved drug for solid tumors, enabled the monitoring of hemodynamic changes in tumor vasculature revealing the well documented vascular shutdown and recovery associated with this drug. Our study marks the beginning of potential prospects of this technology as an imaging tool for preclinical and clinical study of pathologies characterized by changes in the vasculature.
机译:使用光学分辨率光声显微镜(或-PAM)系统在此处评估Combretastatin A4磷酸盐(CA4P)对具有完整颅骨的小鼠原位胶质瘤的血管破坏性效果。具有532nm脉冲二极管泵浦固态激光器的第二代光学分辨率光声扫描仪,其特异性地匹配组织中血红蛋白的吸收最大值,用于接种在小鼠脑中的原位胶质瘤。在正常的脑和胶质瘤大脑上获得横向分辨率为5μm的横向分辨率和700μm的深度的脑脉管系统的二维图。 CA4P预定成像的血脑预测和后期授权用于固体瘤的药物,使肿瘤脉管系统的血流动力学变化的监测揭示了与该药物相关的良好记录的血管停机和恢复。我们的研究标志着这项技术的潜在前景作为一种成像工具,用于病理学的临床前和临床研究,其特征在于脉管系统的变化。

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