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Comprehensive Evaluation

Tools for preclinical modeling, preclinical testing, and immune response profiling of mRNA-based vaccines and therapeutics

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mRNA Preclinical Testing

Advancing mRNA Therapeutics and Vaccines Through Innovative Biological Modeling and Immune Profiling

Developing safe, effective mRNA-based therapeutics starts with reliable preclinical models. While 2D cell cultures serve as useful early tools, they often fail to capture the complexity of human biology. That’s why we integrate advanced 3D models, including patient-derived organoids (PDOs), to simulate more physiologically relevant responses and improve translational outcomes.

With exclusive access to patient-derived organoid biobanks and assay development services using HUB Organoid technology and our partnership with BioIVT for high-quality immune cell subsets, our portfolio enables researchers to explore mRNA function in systems that closely mirror human physiology. By combining patient-derived and immune-responsive models, we help bridge the gap between in vitro screening and clinical studies—reducing attrition rates and accelerating progress toward clinical success.

We also offer integrated immune profiling capabilities to assess both antibody and T-cell responses—providing critical insights into the effectiveness of mRNA-based interventions.

Microscopic image of organoids stained with blue and green fluorescent dyes in a microwell plate.

Organoids cultured and imaged in Millicell® Microwell Plates

Transforming mRNA Discovery with Predictive Biological Models

Patient-derived Organoids (PDOs)

Patient-derived organoids (PDOs) offer a powerful approach to in vitro preclinical assessment of mRNA-based therapeutics by recapitulating: 

  • Tissue-relevant mRNA expression: Patient-derived organoids retain the genetic characteristics of their original tissue including mRNA expression patterns, yielding crucial insights when profiling immune and drug responses.
  • In vivo-like functional responses and pathway activations: Patient-derived organoids maintain the functional and molecular response of their source tissue to better elucidate the mechanism of action of drugs, determine key pathways involved in drug response or resistance, and identify potential biomarkers that predict drug response.
  • Diversity: The ability of patient-derived organoids to recapitulate a targeted or diverse population supports better assessment of mRNA vaccine efficacy and safety across genetic backgrounds, disease subtypes, and even rare mutations, capturing variable responses earlier in development.

View our offering of HUB organoids or make a request.

Peripheral Blood Mononuclear Cells (PBMCs)

PBMCs are vital for evaluating drug efficacy, safety, and immune response, and play a central role in the development of vaccines and immunotherapies. In partnership with BioIVT, we provide pre-isolated immune cells that can be selected based on specific donor criteria to meet your research needs.

  • Vaccine Development: Assess how a vaccine candidate stimulates immune responses, such as antibody production.
  • Efficacy and Safety Assessment: Evaluate interactions between therapeutic candidates and the immune system, including immune activation or suppression.
  • Drug Target Validation: Identify immune cell subsets involved in diseases to help validate drug targets.
  • Screening Assays: Use PBMCs to screen and optimize drug candidates.
  • Biomarker Discovery: Leverage PBMCs as a source of biomarkers to predict disease progression.

Cell Cultureware for Reproducible Cultures

Support scalability with Millicell® Microwell Plates and Cell Culture Inserts:

Reliable Verification Tools for Confirmatory Studies

Ensure data accuracy with our suite of proven immunoassay and protein tools:

Together, these tools provide high-confidence verification of mRNA expression and downstream biological effects.


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