Lombard Arnaud, Isci Damla, Reuter Gilles, Di Valentin Emmanuel, Hego Alexandre, Martin Didier, Rogister Bernard, Neirinckx Virginie
Neurosurgery Department, CHR Citadelle, Liège, Belgium.
Laboratory of Nervous System Diseases and Therapy, GIGA Neuroscience, University of Liège, Liège, Belgium.
Neurooncol Adv. 2024 Sep 28;6(1):vdae161. doi: 10.1093/noajnl/vdae161. eCollection 2024 Jan-Dec.
Glioblastoma (GBM) is a dreadful brain tumor, with a particular relationship to the adult subventricular zone (SVZ) that has been described as relevant to disease initiation, progression, and recurrence.
We propose a novel strategy for the detection and tracking of xenografted GBM cells that are located in the SVZ, based on an intracerebroventricular (icv) recombinant adeno-associated virus (AAV)-mediated color conversion method. We used different patient-derived GBM stem-like cells (GSCs), which we transduced first with a retroviral vector (LRLG) that included a lox-dsRed-STOP-lox cassette, upstream of the eGFP gene, then with rAAVs expressing the Cre-recombinase. Red and green fluorescence is analyzed in vitro and in vivo using flow cytometry and fluorescence microscopy.
After comparing the efficiency of diverse rAAV serotypes, we confirmed that the in vitro transduction of GSC-LRLG with rAAV-Cre induced a switch from red to green fluorescence. In parallel, we verified that rAAV transduction was confined to the walls of the lateral ventricles. We, therefore, applied this conversion approach in 2 patient-derived orthotopic GSC xenograft models and showed that the icv injection of an rAAV-DJ-Cre after GSC-LRLG tumor implantation triggered the conversion of red GSCs to green, in the periventricular region. Green GSCs were also found at distant places, including the migratory tract and the tumor core.
This study not only sheds light on the putative outcome of SVZ-nested GBM cells but also shows that icv injection of rAAV vectors allows to transduce and potentially modulate gene expression in hard-to-reach GBM cells of the periventricular area.
胶质母细胞瘤(GBM)是一种可怕的脑肿瘤,与成人脑室下区(SVZ)存在特殊关系,这种关系被认为与疾病的起始、进展和复发相关。
我们提出了一种基于脑室内(icv)重组腺相关病毒(AAV)介导的颜色转换方法来检测和追踪位于SVZ的异种移植GBM细胞的新策略。我们使用了不同的患者来源的GBM干细胞样细胞(GSCs),首先用包含lox-dsRed-STOP-lox盒的逆转录病毒载体(LRLG)在eGFP基因上游进行转导,然后用表达Cre重组酶的rAAVs进行转导。使用流式细胞术和荧光显微镜在体外和体内分析红色和绿色荧光。
在比较了不同rAAV血清型的效率后,我们证实rAAV-Cre对GSC-LRLG的体外转导诱导了从红色荧光到绿色荧光的转变。同时,我们验证了rAAV转导局限于侧脑室壁。因此,我们在2个患者来源的原位GSC异种移植模型中应用了这种转换方法,结果显示在GSC-LRLG肿瘤植入后icv注射rAAV-DJ-Cre会在脑室周围区域触发红色GSCs向绿色的转变。在远处的部位也发现了绿色GSCs,包括迁移路径和肿瘤核心。
本研究不仅揭示了SVZ内嵌套的GBM细胞的假定结果,还表明icv注射rAAV载体能够转导并潜在地调节脑室周围区域难以触及的GBM细胞中的基因表达。