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三维视网膜母细胞瘤培养物作为玻璃体种子模型,用于化疗渗透的活细胞成像。

Tridimensional Retinoblastoma Cultures as Vitreous Seeds Models for Live-Cell Imaging of Chemotherapy Penetration.

机构信息

National Scientific and Technical Research Council (CONICET), Buenos Aires CP1425, Argentina.

Pathology Service, Hospital de Pediatría Prof. Dr. JP Garrahan, Buenos Aires CP1245, Argentina.

出版信息

Int J Mol Sci. 2019 Mar 2;20(5):1077. doi: 10.3390/ijms20051077.

Abstract

A preclinical model could aid in understanding retinoblastoma vitreous seeds behavior, drug penetration, and response to chemotherapy to optimize patient treatment. Our aim was to develop a tridimensional in vitro model of retinoblastoma vitreous seeds to assess chemotherapy penetration by means of live-cell imaging. Cell cultures from patients with retinoblastoma who underwent upfront enucleation were established and thoroughly characterized for authentication of human tumor origin. The correlation of the in vitro tridimensional structures resembling human spheres and dusts vitreous seeds was established. Confocal microscopy was used to quantify real-time fluorescence of topotecan as a measure of its penetration into different sizes of spheres. Cell viability was determined after chemotherapy penetration. The in vitro spheres and dusts models were able to recapitulate the morphology, phenotype, and genotype of patient vitreous seeds. The larger the size of the spheres, the longer the time required for the drug to fully penetrate into the core ( < 0.05). Importantly, topotecan penetration correlated with its cytotoxic activity. Therefore, the studied tridimensional cell model recapitulated several characteristics of vitreous seeds observed in patients with retinoblastoma and were successfully used to assess live-cell imaging of chemotherapy penetration for drug distribution studies.

摘要

一种临床前模型可以帮助理解视网膜母细胞瘤玻璃体内种子的行为、药物渗透以及对化疗的反应,从而优化患者的治疗。我们的目的是开发一种三维体外模型来评估视网膜母细胞瘤玻璃体内种子的化疗渗透情况,方法是通过活细胞成像。建立了接受初次眼内容剜除术的视网膜母细胞瘤患者的细胞培养物,并对其进行了彻底的鉴定,以验证人类肿瘤的来源。建立了体外三维结构与人类球体和尘埃玻璃体种子相似的相关性。共聚焦显微镜用于定量拓扑替康的实时荧光,作为其渗透到不同大小球体的指标。化疗渗透后测定细胞活力。体外球体和尘埃模型能够再现患者玻璃体种子的形态、表型和基因型。球体的尺寸越大,药物完全渗透到核心所需的时间就越长(<0.05)。重要的是,拓扑替康的渗透与其细胞毒性活性相关。因此,所研究的三维细胞模型再现了在患有视网膜母细胞瘤的患者中观察到的玻璃体种子的几个特征,并成功地用于评估化疗渗透的活细胞成像以进行药物分布研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9801/6429414/d7430c82e551/ijms-20-01077-g001.jpg

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