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Biology subjects

van der Ploeg, M.

Publications and source records attributed to van der Ploeg, M..

4 recordsLinked to original sources

Multimodal profiling of chordoma immunity reveals distinct immune contextures

Chordomas are cancers from the axial skeleton presenting immunological hallmarks of unknown significance. In recent years, some clinical trials demonstrated that chordomas can respond to immunotherapy. We present a comprehensive characterisation of immunological features of 76 chordomas through application of a multimodal approach comprising transcriptional profiling, multidimensional immunophenotyping and TCR profiling. Chordomas generally presented an immune "hot" microenvironment in comparison to other sarcomas, as indicated by the immunologic constant of rejection transcriptional signature. We identified two distinct groups of chordomas based on T cell infiltration. The highly infiltrated group was further characterised by high dendritic cell infiltration and the presence of multicellular immune aggregates in tumours, whereas low T cell infiltration was associated with lower overall cell densities of immune and stromal cells. Interestingly, patients with higher T cell infiltration displayed a more pronounced clonal enrichment of the T cell receptor repertoire compared to those with low T cell counts. Furthermore, we observed that the majority of chordomas maintained HLA class I expression. Our findings shed light on the natural immunity against chordomas. Understanding their immune landscape could guide the development and application of immunotherapies in a tailored manner, ultimately leading to an improved clinical outcome for chordoma patients.

cancer biology↗

Integration of Mass Cytometry and Mass Spectrometry Imaging for Spatially Resolved Single Cell Metabolic Profiling

Integration of spatial omics technologies can provide important insights into the biology of tissues. We combined mass spectrometry imaging-based metabolomics and imaging mass cytometry-based immunophenotyping on the same single tissue section to reveal metabolic heterogeneity within tissues and its association with specific cell populations like cancer cells or immune cells. This approach has the potential to greatly increase our understanding of tissue-level interplay between metabolic processes and their cellular components.

cancer biology↗

Absence of Lipopolysccharide (LPS) expression in Breast Cancer Cells

The association between bacterial activity and tumorigenesis has gained attention in recent years, alongside the well-established link between viruses and cancer. A recent study proposed the presence of intracellular bacteria in cancer cells, particularly in melanomas and breast cancers, with detectable bacterial DNA. The authors suggested that these bacteria contribute to the tumors development. We sought to replicate these findings using the same experimental methods on different tissue microarrays. Our investigation included 129 breast cancer samples, but we found no evidence of LPS expression within cancer cells. Instead, LPS immunoreactivity was observed in ducts or immune cells, specifically macrophages. The discrepancies in LPS staining warrant caution in interpreting the reported observations, and further research is needed to elucidate the potential role of intracellular bacteria in cancer development.

pathology↗

Revisiting colorectal cancer tumorigenesis with spatially-resolved gene expression profiling

Early detection and treatment are paramount to the clinical outcome of patients with colorectal cancer (CRC). Deciphering the dynamic interactions that occur between epithelial cells and stromal cells during tumorigenesis requires in-depth analyses of early-stage CRC lesions in spatial context. Here we employed spatially-resolved gene expression profiling to dissect molecular processes that associate with malignant transformation in CRC. We provide the transcriptional landscapes of colorectal cancer tumorigenesis from healthy mucosa, through different degrees of dysplasia, to cancer. The complementary examination of epithelial and stromal fractions allowed us to define whether specific oncogenic processes involved cancer cells, stromal cells, or the tumor microenvironment as a whole. We identified several genes that were consistently deregulated during CRC onset that could serve as clinical biomarkers for early-stage CRC. Furthermore, we uncovered an essential role for the innate immune system during CRC tumorigenesis. O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=200 SRC="FIGDIR/small/462502v1_ufig1.gif" ALT="Figure 1"> View larger version (40K): org.highwire.dtl.DTLVardef@c24d1forg.highwire.dtl.DTLVardef@554113org.highwire.dtl.DTLVardef@1236f99org.highwire.dtl.DTLVardef@173ac8c_HPS_FORMAT_FIGEXP M_FIG C_FIG

cancer biology↗