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Characterization of tumor vasculature derived from angiogenesis and vasculogenesis by high-frequency three-dimensional Doppler ultrasound

机译:高频三维多普勒超声表征源自血管生成和血管生成的肿瘤血管

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Tumor vasculature is derived angiogenesis within primary tumors from sprouting host preexisting vessels and vasculogenesis within recurrent tumors from bone-marrow. The tumor recurred by means of the pathway of vasculogenesis after the tumor received unsuccessful therapy, and it has lower curability to therapy. Thus, investigating the features of tumor vascular patterns between the two vasculature pathways may provide a method for assisting improving tumor therapy. In this study, we proposed the potential of high-frequency ultrasound 3D Doppler images for characterizing pathways of the tumor vasculatures in recurrent and primary tumors in vivo. Murine tumors were transplanted in non-irradiated and pre-irradiated tissues to imitate the primary and recurrent tumor models, respectively. The 7th days after inoculation, the cineloop of power Doppler-mode images were recorded to reconstruct 3-D tumor vasculature images using 40-MHz Doppler imaging system. Recurrent tumors show the blood vessels were more dilated and continuous than those in primary tumors. Recurrent tumors exhibited higher expression of tumor perfusion and lower the feature of branching pattern in tumor vasculature compared with primary tumors. Tumor volume values had no difference between the two tumor models. The study suggested that tumor perfusion and the feature of branching pattern in tumor vasculature could used to discriminate the angiogenesis and vasculogenesis pathways. It has the potential for exporting the responses of anti-vasculogenesis drug and improving the curability of recurrent tumors in the future.
机译:肿瘤脉管系统是从原发性宿主宿主血管发芽而在原发肿瘤中产生的血管生成,而在骨髓中是在复发性肿瘤中产生的血管生成。肿瘤未得到成功的治疗后,通过血管生成途径复发,治疗的可治愈性较低。因此,研究两个脉管系统路径之间的肿瘤血管模式的特征可以提供用于辅助改善肿瘤治疗的方法。在这项研究中,我们提出了高频超声3D多普勒图像用于表征体内复发性和原发性肿瘤中肿瘤脉管系统通路的潜力。鼠肿瘤被移植到未照射和预先照射的组织中,以分别模拟原发性和复发性肿瘤模型。接种后第7天,使用40MHz多普勒成像系统记录功率多普勒模式图像的电影胶片,以重建3-D肿瘤脉管系统图像。复发性肿瘤显示血管比原发性肿瘤更扩张,更连续。与原发性肿瘤相比,复发性肿瘤在肿瘤脉管系统中表现出更高的肿瘤灌注表达和更低的分支模式特征。两种肿瘤模型之间的肿瘤体积值没有差异。研究表明,肿瘤灌注和肿瘤脉管系统中分支模式的特征可用于区分血管生成和血管生成途径。将来它有可能输出抗血管生成药物的反应并改善复发性肿瘤的治愈性。

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