Pion Eric, Asam Claudia, Feder Anna-Lena, Felthaus Oliver, Heidekrueger Paul I, Prantl Lukas, Haerteis Silke, Aung Thiha
Institute for Molecular and Cellular Anatomy, University of Regensburg, Regensburg, Germany.
Centre of Plastic, Aesthetic, Hand and Reconstructive Surgery, University of Regensburg, Regensburg, Germany.
Microvasc Res. 2021 Jan;133:104072. doi: 10.1016/j.mvr.2020.104072. Epub 2020 Sep 17.
The process of angiogenesis is a key element for tumor growth and proliferation and therefore one of the determining factors for aggressiveness and malignancy. A better understanding of the underlying processes of tumor induced angiogenesis is crucial for superior cancer treatment. Furthermore, the PeriCam perfusion speckle imager (PSI) system high resolution (HR) model by PERIMED presents a noninvasive method for semi-quantitative measurement of blood perfusion, based on laser speckle contrast analysis (LASCA). Aim of the present study was to utilize the chick chorioallantoic membrane (CAM) model as an in-ovo-tumor-model which enables rapid neovascularization of tumors while allowing real-time observation of the microcirculation via LASCA.
Fertilized chicken eggs were grafted with embryonal/alveolar rhabdomyosarcoma cells or primary sarcoma tumors. The blood perfusion was measured before and after tumor growth using LASCA. The procedure is accelerated and simplified through the integrated PIMSoft software which provides real-time graphs and color-coded images during the measurement.
Sarcoma cells and primary sarcoma tumors exhibited satisfactory growth processes on the CAM. LASCA visualized microcirculation accurately and enabled an extensive investigation of the angiogenic potential of sarcoma cells on the CAM. We were able to show that sarcoma cells and primary sarcoma tumors induced larger quantities of neovasculature on the CAM than the controls.
The utilization of LASCA for the investigation of tumor angiogenesis within the CAM model appears to be a highly beneficial, cost-efficient and easily practicable procedure. The proposed model can be used as a drug-screening model for individualized cancer therapy, especially with regards to anti-angiogenic agents.
血管生成过程是肿瘤生长和增殖的关键要素,因此是侵袭性和恶性程度的决定因素之一。更好地了解肿瘤诱导血管生成的潜在过程对于优化癌症治疗至关重要。此外,PERIMED公司的PeriCam灌注散斑成像仪(PSI)系统高分辨率(HR)模型基于激光散斑对比分析(LASCA)提供了一种非侵入性的半定量测量血流灌注的方法。本研究的目的是利用鸡胚绒毛尿囊膜(CAM)模型作为体内肿瘤模型,该模型能够使肿瘤快速形成新血管,同时允许通过LASCA实时观察微循环。
将受精鸡蛋移植胚胎性/肺泡性横纹肌肉瘤细胞或原发性肉瘤肿瘤。使用LASCA在肿瘤生长前后测量血流灌注。通过集成的PIMSoft软件加速并简化了该过程,该软件在测量过程中提供实时图表和彩色编码图像。
肉瘤细胞和原发性肉瘤肿瘤在CAM上表现出令人满意的生长过程。LASCA准确地显示了微循环,并能够广泛研究CAM上肉瘤细胞的血管生成潜力。我们能够证明,肉瘤细胞和原发性肉瘤肿瘤在CAM上诱导的新血管数量比对照组多。
利用LASCA在CAM模型中研究肿瘤血管生成似乎是一种非常有益、经济高效且易于实施的方法。所提出的模型可作为个性化癌症治疗的药物筛选模型,特别是对于抗血管生成药物。