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外泌体生物发生的抑制影响儿童型弥漫性高级别胶质瘤异质亚群中的细胞运动。

Inhibition of exosome biogenesis affects cell motility in heterogeneous sub-populations of paediatric-type diffuse high-grade gliomas.

作者信息

Pericoli Giulia, Galardi Angela, Paolini Alessandro, Petrilli Lucia Lisa, Pepe Gerardo, Palma Alessandro, Colletti Marta, Ferretti Roberta, Giorda Ezio, Levi Mortera Stefano, Burford Anna, Carai Andrea, Mastronuzzi Angela, Mackay Alan, Putignani Lorenza, Jones Chris, Pascucci Luisa, Peinado Hector, Helmer-Citterich Manuela, de Billy Emmanuel, Masotti Andrea, Locatelli Franco, Di Giannatale Angela, Vinci Maria

机构信息

Department of Onco-hematology, Gene and Cell Therapy, Bambino Gesù Children's Hospital-IRCCS, Rome, Italy.

Multifactorial and Complex Phenotype Research Area, Bambino Gesù Children's Hospital-IRCCS, Rome, Italy.

出版信息

Cell Biosci. 2023 Nov 13;13(1):207. doi: 10.1186/s13578-023-01166-5.

Abstract

BACKGROUND

Paediatric-type diffuse High-Grade Gliomas (PDHGG) are highly heterogeneous tumours which include distinct cell sub-populations co-existing within the same tumour mass. We have previously shown that primary patient-derived and optical barcoded single-cell-derived clones function as interconnected networks. Here, we investigated the role of exosomes as a route for inter-clonal communication mediating PDHGG migration and invasion.

RESULTS

A comprehensive characterisation of seven optical barcoded single-cell-derived clones obtained from two patient-derived cell lines was performed. These analyses highlighted extensive intra-tumour heterogeneity in terms of genetic and transcriptional profiles between clones as well as marked phenotypic differences including distinctive motility patterns. Live single-cell tracking analysis of 3D migration and invasion assays showed that the single-cell-derived clones display a higher speed and longer travelled distance when in co-culture compared to mono-culture conditions. To determine the role of exosomes in PDHGG inter-clonal cross-talks, we isolated exosomes released by different clones and characterised them in terms of marker expression, size and concentration. We demonstrated that exosomes are actively internalized by the cells and that the inhibition of their biogenesis, using the phospholipase inhibitor GW4689, significantly reduced the cell motility in mono-culture and more prominently when the cells from the clones were in co-culture. Analysis of the exosomal miRNAs, performed with a miRNome PCR panel, identified clone-specific miRNAs and a set of miRNA target genes involved in the regulation of cell motility/invasion/migration. These genes were found differentially expressed in co-culture versus mono-culture conditions and their expression levels were significantly modulated upon inhibition of exosome biogenesis.

CONCLUSIONS

In conclusion, our study highlights for the first time a key role for exosomes in the inter-clonal communication in PDHGG and suggests that interfering with the exosome biogenesis pathway may be a valuable strategy to inhibit cell motility and dissemination for these specific diseases.

摘要

背景

儿童型弥漫性高级别胶质瘤(PDHGG)是高度异质性肿瘤,同一肿瘤块内存在不同的细胞亚群。我们之前已经表明,原发性患者来源的和光学条形码单细胞来源的克隆可作为相互连接的网络发挥作用。在此,我们研究了外泌体作为介导PDHGG迁移和侵袭的克隆间通讯途径的作用。

结果

对从两个患者来源的细胞系获得的七个光学条形码单细胞来源的克隆进行了全面表征。这些分析突出了克隆之间在遗传和转录谱方面广泛的肿瘤内异质性以及明显的表型差异,包括独特的运动模式。对三维迁移和侵袭试验的实时单细胞追踪分析表明,与单培养条件相比,单细胞来源的克隆在共培养时显示出更高的速度和更长的移动距离。为了确定外泌体在PDHGG克隆间相互作用中的作用,我们分离了不同克隆释放的外泌体,并在标志物表达、大小和浓度方面对其进行了表征。我们证明外泌体被细胞主动内化,并且使用磷脂酶抑制剂GW4689抑制其生物发生,可显著降低单培养中的细胞运动性,当克隆细胞共培养时这种作用更明显。使用miRNome PCR面板对外泌体miRNA进行分析,鉴定出克隆特异性miRNA以及一组参与细胞运动性/侵袭/迁移调节的miRNA靶基因。这些基因在共培养与单培养条件下差异表达,并且在外泌体生物发生抑制后其表达水平受到显著调节。

结论

总之,我们的研究首次突出了外泌体在PDHGG克隆间通讯中的关键作用,并表明干扰外泌体生物发生途径可能是抑制这些特定疾病细胞运动性和扩散的有价值策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6d1/10641969/1fb34ca81f1e/13578_2023_1166_Fig1_HTML.jpg

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