Intratumoral Cell Heterogeneity in Patient-Derived Glioblastoma Cell Lines Revealed by Single-Cell RNA-Sequencing
Внутритуморная клеточная гетерогенность в клеточных линиях глиобластомы, полученных от пациентов, выявленная с помощью одноядерного РНК-секвенирования
2024-08-02
SCID: 54.1/hsdqxsrn
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copy-number variationintratumor heterogeneityneural progenitor cellspatient-derived glioblastoma cell linessingle-cell RNA sequencing
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Abstract (AI)
Glioblastoma cell lines derived from different patients are widely used in tumor biology research and drug screening. A key feature of glioblastoma is the high level of inter- and intratumor heterogeneity that accounts for treatment resistance. Our aim was to investigate whether intratumor heterogeneity is maintained in cell models. Single-cell RNA sequencing was used to investigate the cellular composition of a tumor sample and six patient-derived glioblastoma cell lines. Three cell lines preserved the mutational profile of the original tumor, whereas three others differed from their precursors. Copy-number variation analysis showed significantly rearranged genomes in all the cell lines and in the tumor sample. The tumor had the most complex cell composition, including cancer cells and microenvironmental cells. Cell lines with a conserved genome had less diverse cellularity, and during cultivation, a relative increase in the stem-cell-derived progenitors was noticed. Cell lines with genomes different from those of the primary tumors mainly contained neural progenitor cells and microenvironmental cells. The establishment of cell lines without the driver mutations that are intrinsic to the original tumors may be related to the selection of clones or cell populations during cultivation. Thus, patient-derived glioblastoma cell lines differ substantially in their cellular profile, which should be taken into account in translational studies.
Key Findings
1
Cell lines with conserved genomes had less diverse cellularity and showed a relative increase in stem-cell-derived progenitors during cultivation, whereas cell lines with genomes different from the primary tumors mainly contained neural progenitor and microenvironmental cells.
2
Copy-number variation analysis showed significantly rearranged genomes in all cell lines and in the tumor sample.
3
Loss of driver mutations in some established cell lines may result from selection of clones or cell populations during cultivation, affecting their suitability for translational studies.
4
Single-cell RNA sequencing of a tumor sample and six patient-derived glioblastoma cell lines revealed intratumor heterogeneity patterns in cell models.
5
The original tumor sample had the most complex cellular composition, including cancer cells and microenvironmental cells.
6
Three cell lines preserved the mutational profile of the original tumor, while three cell lines differed from their precursors.
Research Object
Patient-derived glioblastoma cell lines and the originating tumor sample
Research Subject
Intratumoral cellular heterogeneity and changes in cellular composition (including preservation or loss of tumor mutational profiles, copy-number variation, presence of cancer vs microenvironmental cells, and shifts toward stem-cell-derived or neural progenitor populations) in these cell lines compared to the original tumor
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2024-08-02
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