Advanced Microscopy for Molecular Localization and Interaction
Our state-of-the-art microscopy techniques includes spectral confocal microscopy, microscopic nuclear localization, Fluorescence Resonance Energy Transfer (FRET) microscopy imaging, and cell imaging. Based-on high-resolution visualization of molecular events, we investigate cellular processes and structures, along with precise assessment of distances between Ig genes and oncogenes, unveiling new insights into gene regulation and oncogenic mechanisms.
French Connect
French Connect is an innovative liquid biopsy platform for sensitive ctDNA-based MRD monitoring in lymphoid malignancies. It enables early relapse prediction (PET-scan correlated), MRD follow-up in clinical trials, and ancillary studies. Developed by multi-disciplinary experts from 10 leading French academic centers, this platform offers ready-to-use panels for DLBCL, PMBL, and FL, along with an optimized […]
ATAC-seq (bulk and single-cell)
ATAC-seq maps chromatin accessibility to reveal gene regulatory regions, both at bulk and single-cell resolution. Bulk ATAC-seq provides genome-wide snapshots of open chromatin across cell populations, while single-cell ATAC-seq uncovers cell-to-cell variability in chromatin states. This technique enables deeper understanding of gene regulation, cellular differentiation, and disease mechanisms, offering valuable insights for cancer research and […]
B-cell lymphoma cell lines
Explore our diverse range of B-cell lymphoma cell lines (PMBL, MCL, FL, DLBCL, BL), including parental and CRISPR- or shRNA-engineered models, and extensively characterized at molecular and phenotypic levels. Our collection also includes EBV-transformed cell lines and drug-resistant lines, supporting research on lymphoma biology, therapeutic targets, and resistance mechanisms.
DNA methylation – ERRBS
Enhanced Reduced Representation Bisulfite Sequencing (ERRBS) maps DNA methylation at single-nucleotide resolution to study epigenetic regulation. It helps reveal cancer-associated epigenetic changes and identify potential biomarkers and therapeutic targets.
Epitranscriptomics
Our epitranscriptomics pipeline uses LC-MS/MS to detect and quantify RNA modifications, providing insights into RNA regulation. We use this innovative platform to unravel the intricacies of epitranscriptomic modifications during critical cellular processes such as B to plasma cell differentiation, lymphomagenesis, and myelomagenesis. It helps to shed light on the underlying molecular pathways driving disease progression […]
BH3 profiling toolkit
Our BH3 mimetic toolkit measures early drug-induced changes in proapoptotic signaling, revealing shifts in antiapoptotic dependencies. It helps to identify novel drug targets and predictive biomarkers, and offers to assess cellular fate across diverse experimental settings.
DNA-RNA immunoprecipitation sequencing (DRIP-seq)
DRIP-seq maps DNA-RNA hybrids (R-loops) across the genome to study their roles in gene regulation and genome stability. It helps reveal mechanisms of transcription, DNA repair, and chromatin organization, providing insights relevant to disease and potential therapeutic strategies.
Okazaki fragments sequencing (OK-seq)
OK-seq enables researchers to map the genome-wide locations of proteins involved in DNA replication and replication fork directionality. By unraveling the spatial organization of replication machinery and Okazaki fragments, OK-seq offers insights into the coordination and regulation of DNA synthesis during genome replication. This approach provides information for understanding genome stability and cellular proliferation.
Global run-on sequencing (GRO-seq)
GRO-seq allows researchers to map the locations of actively transcribing RNA polymerases and nascent RNA molecules to study the regulation and coordination of gene expression. This technique facilitates the identification of transcriptional enhancers, promoters, and regulatory elements, shedding light on the orchestration of cellular processes and the molecular basis of disease.