Advanced 2D and 3D Imaging of Ex-Vivo Models

Utilizing cutting-edge technologies such as Operetta, confocal microscopy, Incucyte, and SPIM, we provide high-resolution imaging that captures cellular structures and dynamics in unprecedented detail. Our platform supports both 2D and 3D imaging, enabling comprehensive analysis of tissue architecture, cell interactions, and morphological changes.

AI-Driven Digital Pathology for Precision Analysis

Leveraging deep learning algorithms, we offer precise and automated analysis of tissue samples, providing rapid and accurate identification of pathological features. Our digital pathology services enhance diagnostic accuracy, enable large-scale data analysis, and support advanced research into disease mechanisms.

IMAG’IN platform (Departement de Pathology)

The Imag’IN Platform of the University Cancer Institute of Toulouse (IUC) is an IBiSA certified technological platform that provides its expertise for the design of projects involving histopathology, functional anatomy and biological imaging. We offer a complete and adaptable solution for whole-slide images acquisition and analysis either in transmitted light or fluorescence (high resolution tissue […]

Advanced Co-Culture Systems with Immune Components

We specialize in co-culturing primary cells or cell lines with patient-derived macrophages, NK cells, CD8+ T cells, and PBMCs to study immune synapse formation and cellular dynamics. Our system enables precise modeling of immune responses, providing critical data for immunotherapy development and disease mechanism research.

Ex vivo Expansion of Patient-Derived iNKT Cells

Enhance your immunotherapy research with our specialized platform for the ex vivo expansion of invariant natural killer T (iNKT) cells from patient samples. Our optimized protocols ensure robust expansion of iNKT cells, providing a reliable source of these critical immune effectors for research and therapeutic applications.

Ex vivo Expansion of Normal and Pathological CD34+ Cells

Explore our advanced in vitro model for the expansion of normal and pathological CD34+ cells. Optimized protocols enable efficient and scalable production of hematopoietic stem and progenitor cells, providing a robust system to study blood disorders, stem cell biology, and regenerative therapies in both basic and preclinical research.

Feline Model for Low-Grade Intestinal T-Cell Lymphoma

Explore our unique spontaneous animal model for low-grade intestinal T-cell lymphoma, a natural feline model that closely mirrors human indolent T-cell lymphoproliferative disorders of the gastrointestinal tract. This model provides novel insights into disease progression, immune response, and therapeutic interventions, offering a rare opportunity to study this condition in a natural setting.

In Vivo Vaccine Response Assessment

We provide comprehensive analysis of immune responses in relevant animal models, offering detailed insights into vaccine efficacy, immunogenicity, and protective potential. Our in vivo studies are designed to validate your vaccine’s ability to generate a robust and lasting immune response, guiding your development towards successful clinical outcomes.

Regulatory T-Cell Activity Analysis

We provide detailed analysis of Treg function, including their capacity to suppress immune responses and maintain tolerance. Our studies offer key insights into Treg-mediated regulation, supporting the development of therapies targeting immune balance and autoimmunity.

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