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首页> 外文期刊>Journal of Cancer Research and Clinical Oncology >Brain tumor invasion model system using organotypic brain-slice culture as an alternative to in vivo model.
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Brain tumor invasion model system using organotypic brain-slice culture as an alternative to in vivo model.

机译:使用器官型脑片培养作为体内模型的替代品的脑肿瘤入侵模型系统。

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PURPOSE. The primary cause of local recurrence and therapeutic failure in the treatment of malignant gliomas is the invasion of tumor cells into the surrounding normal brain. While it is known that malignant gliomas infiltrate diffusely into regions of normal brain, it is frequently very difficult to unequivocally identify the solitary invading glioma cell in histopathological preparations, or in experimental glioma models. We have developed an experimental invasion assay system, which allows us to track the solitary invasive glioma cell, using human brain tissue obtained from routine craniotomies for seizures or trauma. METHODS. This tissue is cut into 1-mm thick slices and cultured in the upper chamber of Transwell culture dishes on top of a 0.4- micro m pore size polyester membrane, which is fed on medium provided in the lower chamber. Glioma cells are stably transfected with vectors containing a green fluorescent protein (GFP) cDNA. Stable, high-level expression GFP transfectants were selected by direct visualization under fluorescence microscope. In addition, various tumor spheroids are stained with vital dye, DiI, to track the invading cells. GFP-expressing glioma cells or stained spheroids were then implanted on the center of the brain slice, and the degree of brain tumor invasion into the brain tissue was evaluated at different time points by optical sectioning using a confocal microscope. RESULTS. We observed that GFP-expressing glioma cells or stained spheroids could be readily tracked and followed with this model system. Individual tumor cells that exhibited green or red fluorescence could be identified and their migration path through the brain slices unequivocally followed. CONCLUSION. This experimental invasion system may be of considerable utility in studying the process of brain tumor invasion and in evaluating its invasiveness in individual brain tumor because it not only provides a better representation of extracellular matrix molecules normally encountered by invading glioma cells, but also provides the fluorescent tag applied to the tumor cells.
机译:目的。恶性神经胶质瘤治疗中局部复发和治疗失败的主要原因是肿瘤细胞侵入周围的正常大脑。虽然已知恶性神经胶质瘤扩散进入正常脑区域,但在组织病理学制剂或实验性神经胶质瘤模型中,很难明确地鉴定出单个侵袭性神经胶质瘤细胞。我们已经开发了一种实验性侵袭测定系统,该系统可以利用从常规颅骨切开术获得的人脑组织进行癫痫发作或创伤来跟踪孤立的侵袭性胶质瘤细胞。方法。将该组织切成1毫米厚的切片,并在Transwell培养皿的上腔中于0.4微米孔径的聚酯膜上方培养,然后将其喂入下腔中提供的培养基上。用含有绿色荧光蛋白(GFP)cDNA的载体稳定转染脑胶质瘤细胞。通过在荧光显微镜下直接观察选择稳定,高水平表达的GFP转染子。此外,各种肿瘤球体都被重要染料DiI染色,以追踪入侵的细胞。然后将表达GFP的神经胶质瘤细胞或染色的球状体植入脑切片的中心,并通过共聚焦显微镜在光学显微镜下观察不同时间点脑肿瘤浸润到脑组织中的程度。结果。我们观察到表达GFP的神经胶质瘤细胞或染色的球状体可以很容易地跟踪,并使用此模型系统。可以识别出显示绿色或红色荧光的单个肿瘤细胞,并明确遵循它们穿过脑片的迁移路径。结论。该实验性侵袭系统在研究脑肿瘤侵袭过程和评估其对单个脑瘤的侵袭性方面可能具有相当大的实用性,因为它不仅可以更好地表示神经胶质瘤细胞入侵通常遇到的细胞外基质分子,而且还可以提供荧光。标签应用于肿瘤细胞。

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