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.

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