Search bioRxiv⌕ Search

Biology subjects

van Essen, M. J.

Publications and source records attributed to van Essen, M. J..

2 recordsLinked to original sources

Sonic hedgehog medulloblastoma cells in co-culture with cerebellar organoids converge towards in vivo malignant cell states

BackgroundIn the malignant brain tumour sonic hedgehog medulloblastoma (SHH-MB) the properties of cancer cells are influenced by their microenvironment, but the nature of those effects and the phenotypic consequences for the tumour are poorly understood. The aim of this study was to identify phenotypic properties of SHH-MB cells that were driven by the non-malignant tumour microenvironment. MethodsHuman induced pluripotent cells (iPSC) were differentiated to cerebellar organoids to simulate the non-malignant tumour microenvironment. Tumour spheroids were generated from two distinct, long-established SHH-MB cell lines which were co-cultured with cerebellar organoids. We profiled the cellular transcriptomes of malignant and non-malignant cells by performing droplet-based single-cell RNA-sequencing (scRNA-seq). The transcriptional profiles of tumour cells in co-culture were compared with those of malignant cells cultured in isolation and with public SHH-MB datasets of patient tumours and patient-derived xenograft (PDX) models. ResultsSHH-MB cell lines in organoid co-culture adopted patient tumour-associated phenotypes and showed increased heterogeneity compared to monocultures. Sub-populations of co-cultured SHH-MB cells activated a key marker of differentiating granule cells, NEUROD1 that was not observed in tumour monocultures. Other sub-populations expressed transcriptional determinants consistent with a cancer stem cell (CSC)-like state that resembled cell states identified in vivo. ConclusionFor SHH-MB cell lines in co-culture, there was a convergence of malignant cell states towards patterns of heterogeneity in patient tumours and PDX models implying these states were non-cell autonomously induced by the microenvironment. Therefore, we have generated an advanced, novel in vitro model of SHH-MB with potential translational applications.

cancer biology↗

PTCH1 mutant human cerebellar organoids are associated with altered neural development and early pathways of medulloblastoma oncogenesis

Patched 1 (PTCH1) is the primary receptor for Sonic Hedgehog (SHH) ligand and negatively regulates SHH signalling, an essential pathway in human embryogenesis. Loss-of-function mutations in PTCH1 are associated with altered neuronal development and the malignant brain tumour medulloblastoma (MB). As a result of differences between murine and human development, molecular and cellular perturbations that arise from human PTCH1 mutations remain poorly understood. Here, we employ cerebellar organoids differentiated from human induced pluripotent stem cells (iPSC) combined with CRISPR/Cas9 gene editing to investigate the earliest molecular and cellular consequences of PTCH1 mutations on human cerebellar development. Our findings support the occurrence of developmental mechanisms in cerebellar organoids that mirror in vivo processes of regionalisation and SHH signalling, and offer new insight into early pathophysiological events of MB tumorigenesis. HiglightsO_LIDifferentiation of human iPSC into cerebellar organoids C_LIO_LIHomozygous LOF of PTCH1 prevents cerebellar organoid differentiation C_LIO_LIPTCH1+/- cerebellar organoids display tissue-specific effects of SHH signalling C_LIO_LIEarly altered gene expression relevant for MB in PTCH1+/- cerebellar organoids C_LI

neuroscience↗