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Vascular amounts and dispersion of caliber-classified vessels as key parameters to quantitate 3D micro-angioarchitectures in multiple myeloma experimental tumors

机译:口径分类血管的血管数量和分散度是量化多发性骨髓瘤实验性肿瘤中3D微血管结构的关键参数

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摘要

Blood vessel micro-angioarchitecture plays a pivotal role in tumor progression, metastatic dissemination and response to therapy. Thus, methods able to quantify microvascular trees and their anomalies may allow a better comprehension of the neovascularization process and evaluation of vascular-targeted therapies in cancer. To this aim, the development of a restricted set of indexes able to describe the arrangement of a microvascular tree is eagerly required. We addressed this goal through 3D analysis of the functional microvascular network in sulfo-biotin-stained human multiple myeloma KMS-11 xenografts in NOD/SCID mice. Using image analysis, we show that amounts, spatial dispersion and spatial relationships of adjacent classes of caliber-filtered microvessels provide a near-linear graphical “fingerprint” of tumor micro-angioarchitecture. Position, slope and axial projections of this graphical outcome reflect biological features and summarize the properties of tumor micro-angioarchitecture. Notably, treatment of KMS-11 xenografts with anti-angiogenic drugs affected position and slope of the specific curves without degrading their near-linear properties. The possibility offered by this procedure to describe and quantify the 3D features of the tumor micro-angioarchitecture paves the way to the analysis of the microvascular tree in human tumor specimens at different stages of tumor progression and after pharmacologic interventions, with possible diagnostic and prognostic implications.
机译:血管微血管结构在肿瘤进展,转移扩散和对治疗的反应中起关键作用。因此,能够量化微血管树及其异常的方法可以更好地理解新血管形成过程并评估癌症中针对血管的疗法。为了这个目的,迫切需要开发能够描述微血管树的布置的一组受限指标。我们通过对NOD / SCID小鼠中被磺化生物素染色的人类多发性骨髓瘤KMS-11异种移植物进行功能性微血管网络的3D分析来实现此目标。使用图像分析,我们显示相邻类别的口径过滤微血管的数量,空间分散和空间关系提供了肿瘤微血管结构的近线性图形“指纹”。该图形结果的位置,斜率和轴向投影反映了生物学特征并总结了肿瘤微血管结构的特性。值得注意的是,用抗血管生成药物治疗KMS-11异种移植物会影响特定曲线的位置和斜率,而不会降低其近线性特性。该程序提供的描述和量化肿瘤微血管结构3D特征的可能性为在肿瘤进展的不同阶段和药理干预后分析人类肿瘤标本中的微血管树铺平了道路,可能具有诊断和预后意义。

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