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Characterize the vasculatures distribution of murine tumors between center and peripheral regions based on doppler ultrasound and immunofluorescent analysis

机译:基于多普勒超声和免疫荧光分析表征鼠肿瘤在中心和周围区域之间的脉管系统分布

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The tumor microenvironment changes are an important prognostic indicator for assessment of therapeutic efficacy, especially tumor vasculatures, because the delivery efficiency of drugs and oxygen is dependent on the perfusion and distribution of the tumor vasculature. Since, the heterogeneity of tumors is the main obstacle to treatment, observing the information about tumor behaviors within the central and peripheral regions of a tumor could be helpful for improving tumor therapies. Murine tumors were monitored for 11 days. The tumor perfusion was estimated by means of power Doppler images at a central frequency of 25 MHz. Tumors were removed for immunohistochemical analysis of their vascular density using CD31 staining at each analysis time point. The spatial characteristics of the tumor vasculature were quantified by calculating the γ value derived from fitting with a power-law transformation for different fractions of the peripheral area. During tumor progression, the γ value significantly decreased in the power Doppler images but not in the immunohistochemical analysis. These results suggest that the perfusion spread more in peripheral region of the tumor than in the central region while the vascular density still appear evenly distributed. Observing the information of tumor behaviors within center and peripheral tumor regions by spatial analysis will be useful in adjusting dose of treatment for optimal strategies.
机译:肿瘤微环境的变化是评估疗效的重要预后指标,尤其是肿瘤脉管系统,因为药物和氧气的输送效率取决于肿瘤脉管系统的灌注和分布。由于肿瘤的异质性是治疗的主要障碍,因此观察有关肿瘤中心和周围区域内肿瘤行为的信息可能有助于改善肿瘤治疗。监测小鼠肿瘤11天。借助于功率多普勒图像在25MHz的中心频率处估计肿瘤灌注。在每个分析时间点,用CD31染色去除肿瘤以进行血管密度的免疫组织化学分析。肿瘤脉管系统的空间特征通过计算γ值来量化,该γ值是通过对周围区域的不同部分进行幂律变换来拟合的。在肿瘤进展过程中,强力多普勒图像中的γ值显着下降,但免疫组织化学分析中的γ值没有下降。这些结果表明,灌注在肿瘤的外围区域比在中心区域散布更多,而血管密度仍显得均匀分布。通过空间分析观察中心和周围肿瘤区域内肿瘤行为的信息将有助于调整治疗剂量以达到最佳策略。

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