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A Fluorescence-based Lymphocyte Assay Suitable for High-throughput Screening of Small Molecules
Published on: March 10, 2017
Cross-company evaluation of the human lymphocyte activation assay
Mark Collinge1, Patricia Schneider1, Dingzhou Li1
1Pfizer Inc, Groton, CT, USA.
Insights
The human lymphocyte activation (HuLA) assay is a reproducible in vitro method for evaluating drug immunotoxicity. This antigen recall assay effectively ranks compounds and assesses immune responses, supporting pharmaceutical safety evaluations.
Area of Science:
- Immunology
- Pharmacology
- Toxicology
Background:
- Nonclinical immunotoxicity evaluation is crucial for pharmaceutical safety.
- The human lymphocyte activation (HuLA) assay is an in vitro antigen recall assay that mimics in vivo T-cell-dependent antibody responses.
- HuLA offers advantages over TDAR assays, including reduced time and drug requirements, use of human cells, and applicability to compound ranking and mechanistic studies.
Purpose of the Study:
- To evaluate the reproducibility of the HuLA assay across multiple testing sites.
- To determine the suitability of the HuLA assay for compound ranking and mechanistic studies in nonclinical safety assessment.
Main Methods:
- A consortium of institutions conducted the HuLA assay in parallel using a common pool of peripheral blood mononuclear cells (PBMC) from flu-immunized donors, influenza vaccine, and known immunosuppressants.
- PBMC were re-stimulated with flu-vaccine in the presence of test articles, and cell proliferation was measured.
- Reproducibility was assessed by comparing results and half maximal inhibitory concentration (IC50) values across sites.
Main Results:
- The HuLA assay demonstrated high reproducibility in identifying inhibition of antigen-specific responses.
- Significant agreement was observed across testing sites for IC50 values.
- Intra-site variability was identified as the primary source of variability within the assay.
Conclusions:
- The HuLA assay is a reproducible and valuable tool for nonclinical immunotoxicity assessment.
- The assay is well-suited for compound ranking and mechanistic evaluations of antigen-specific immune responses.
- Data support the HuLA assay's utility in pharmaceutical safety evaluations, aligning with the 3Rs principles.
Abstract:
Nonclinical immunotoxicity evaluation is an important component of safety assessment for pharmaceuticals. One in vitro assay that can be applied in a weight of evidence assessment is the human lymphocyte activation (HuLA) assay, an antigen recall assay, similar in many respects to the in vivo T-cell-dependent antibody response (TDAR) in that cooperation of multiple immune cell types are needed to produce responses. This assay uses human cells and is more amenable than the TDAR to compound ranking and mechanistic studies. The HuLA assay requires less time and drug than TDAR assays, uses a relevant antigen (influenza), reflects a human immune response, and applies principles of the 3Rs to non-clinical safety assessment. Peripheral blood mononuclear cells (PBMC) from flu-immunized donors are re-stimulated with flu-vaccine in the presence of test articles, and proliferation is measured. Published data demonstrate the applicability of the HuLA assay, but it has not been evaluated for reproducibility across testing sites. To evaluate assay reproducibility, scientists from a consortium of institutions conducted the assay in parallel, using a common pool of donor PBMC, influenza vaccine, and known immunosuppressant compounds (cyclosporine A and mycophenolic acid). The HuLA assay was highly reproducible in identification of inhibition of antigen-specific responses, and there was significant agreement across testing sites in the half maximal inhibitory concentration (IC50) values. Intra-site variability was the largest contributor to the variability observed within the assay. The HuLA assay was demonstrated to be ideally suited to comparing multiple compounds (i.e. compound ranking or benchmarking) within the same assay. Overall, the data reported herein support the HuLA assay as a useful tool in mechanistic evaluations of antigen-specific immune responses.
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