Immunohistochemistry

We offer precise staining and analysis of tissue samples, enabling the detection and localization of specific proteins within their histological context. Our IHC platform provides critical insights into disease mechanisms, biomarker expression, and therapeutic target validation.

Cytokine Profiling

Our expertise include multiplex cytokine assays, ELISA, and intracellular cytokine staining, offering precise quantification and characterization of cytokines across a wide array of samples. We also provide flow cytometry-based analysis to evaluate cytokine production at the single-cell level. These methods are adaptable to various experimental models, including cell lines, patient-derived samples, and in vivo studies, […]

Multiplexed Immuno-Fluorescence

We enable simultaneous detection of multiple targets within a single tissue section, providing a detailed spatial understanding of cellular environments. Our mIF services are ideal for studying co-localization, cellular heterogeneity, and biomarker discovery.

Mapping the Epigenetic Landscape: ChIP-seq, CUT&Run, and CUT&Tag

Our epigenetics methodologies, including Chromatin Immunoprecipitation (ChIP-seq), CUT&Run and CUT&Tag, provide new insights into the regulatory mechanisms governing gene expression and chromatin structure. It allows researchers to dissect complex regulatory networks, identify novel transcriptional regulatory elements, and uncover the molecular basis of diseases.

Mouse Cell line Derived Xenographt (Mouse-CDX)

Explore our Mouse CDX models (parental and CRISPR-Cas9 engineered) to investigate lymphoma and Multiple Myeloma biology, identify novel drug targets and testing for drug efficacy and toxicity.

Precision Gene Modulation with Antisense Oligonucleotides (ASOs)

Our advanced Antisense Oligonucleotides (ASOs) design technologys offer a versatile approach for precisely manipulating gene expression, including the potent capability of exon skipping to modulate protein production, such as Ig genes or BCR, by targeting donor splice sites. This method is compatible with both cell lines and primary cells, offering flexibility and applicability across various […]

Precision Genome Engineering: CRISPR Gene Editing, Barcoding, and Screening

Our platform enables precise genome editing in both cell lines and primary cells using CRISPR technology, supporting knockout, knock-in, gene tagging, and regulatory element modifications. Integrated with barcoding and high-throughput screening, it allows systematic functional genomics studies to dissect gene function, cellular pathways, and disease mechanisms. This combination of genome editing and scalable screening provides […]

Proteomics analysis

By employing advanced techniques for identification, quantification, and characterization, Proteomic Analysis offers a holistic understanding of protein expression patterns and functions. This powerful approach provides new insights into the molecular mechanisms underlying cellular processes, from signaling pathways to protein-protein interactions. By deciphering the proteome, we can uncover novel biomarkers, therapeutic targets, and pathways associated with […]

RNA-seq (bulk and single-cell)

RNA sequencing (RNA-seq) is a powerful technique for analyzing gene expression at both bulk and single-cell levels. It reveals RNA abundance, splicing, and modifications, providing insights into cellular function, tissue organization, and disease mechanisms. Bulk RNA-seq profiles large cell populations, while single-cell RNA-seq uncovers cellular heterogeneity and rare cell types, aiding biomarker discovery, understanding drug […]

Nous contacter