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Intravital microscopy of tumor angiogenesis and regression in the dorsal skin fold chamber: mechanistic insights and preclinical testing of therapeutic strategies.

机译:活体显微镜下观察在背侧皮肤折叠腔内的肿瘤血管生成和消退:机理的见解和治疗策略的临床前测试。

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摘要

Tumor angiogenesis is a major step in tumor progression to clinically symptomatic cancer and thus a potential target for cancer therapy. It is essential to understand the fundamental mechanisms of the angiogenic processes to provide a rational for testing inhibitory strategies for cancer treatment. The dorsal skin fold chamber provides a suitable (chronic) model for intravital microscopy to monitor the same tumor in time-lapse imaging series and in real-time functional analysis e.g., of blood flow. Adaptation of this model to several rodent species and tumor types has led to numerous physical and drug based therapy options. With modification of implantation techniques, motility and invasion of individual cells can be visualized, in addition to angiogenesis and microcirculation. Modern fluorescent techniques such as ex vivo labelling of specific cell populations and the introduction of stably fluorescent protein expressing cell lines further enhance the suitability of this technique. In addition, laser scanning and multiphoton microscopy in combination with genetically altered mouse strains and cell lines are making the DCSF even more attractive for mechanistic and interventional studies in cancer research. Here we review the preparation as well as the applications of the DCSF in tumor angiogenesis.
机译:肿瘤血管生成是肿瘤发展为临床上有症状的癌症的重要步骤,因此是癌症治疗的潜在靶标。必须了解血管生成过程的基本机制,以便为测试抑制性癌症治疗策略提供合理的依据。背侧皮肤折叠腔为活体显微镜提供了合适的(慢性)模型,以在延时成像系列和实时功能分析(例如血流)中监测同一肿瘤。该模型对几种啮齿动物物种和肿瘤类型的适应导致了许多基于物理和药物的治疗选择。通过修改植入技术,除了血管生成和微循环外,还可以观察到单个细胞的运动性和侵袭性。现代荧光技术,例如离体标记特定细胞群以及引入稳定的荧光蛋白表达细胞系,进一步增强了该技术的适用性。此外,激光扫描和多光子显微镜结合基因改变的小鼠品系和细胞系,使得DCSF在癌症研究的机械和介入研究中更具吸引力。在这里,我们回顾DCSF的制备以及在肿瘤血管生成中的应用。

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