Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8530867 | International Immunopharmacology | 2018 | 7 Pages |
Abstract
Agonists of nucleotide oligomerization domain (NOD) 1 and NOD2 receptors represent a promising class of immunostimulants and immunological adjuvants. Here, we describe a cell-based test system to assess their pharmacokinetics. In this system, NOD1 and NOD2 agonist concentrations in sera are determined using a reporter cell line, 293Luc, which contains an NF-κB-inducible luciferase reporter construct and naturally expresses NOD1 and NOD2. The 293Luc cells dose-dependently respond to different NOD1 and NOD2 agonists in the nanomolar to low-micromolar concentration range. To verify that the NF-κB-inducing activity of serum samples is due to the administered agonist and not to secondarily induced endogenous molecules, a 293Luc-derived NOD1/NOD2 double-knockout clone is used. Within-run and between-run precisions of the system are <15% and <20%, respectively. Applicability of the novel assay is illustrated by studying pharmacokinetics of two specific NOD2 agonists (NâacetylâdâglucosaminylâNâacetylâdâmuramylâlâalanylâdâisoglutamine and Nâglycolylâdâmuramylâlâalanylâdâisoglutamine) and a specific NOD1 agonist (NâacetylâdâglucosaminylâNâacetylâdâsorbitolamineâdâlactoylâlâalanylâdâisoglutamylâmesoâdiaminopimelic acid). In summary, the test system described here can potentially be used to assess pharmacokinetics of NOD1 and NOD2 agonists in different animal species.
Related Topics
Life Sciences
Immunology and Microbiology
Immunology
Authors
Yulia A. Dagil, Viktoriya S. Sharova, Boris V. Pinegin, Mikhail V. Pashenkov,