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Pharmacodynamic model for joint exogenous and endogenous corticosteroid suppression of lymphocyte trafficking

  • Mark A. Milad
  • , Elizabeth A. Ludwig
  • , Suresh Anné
  • , Elliott Middleton
  • , William J. Jusko
  • SUNY Buffalo
  • Women and Children's Hospital of Buffalo

Research output: Contribution to journalArticlepeer-review

34 Scopus citations

Abstract

The circadian pattern of the immune system correlates with that of circulating T-helper cells and inversely with cortisol concentrations. Corticosteroids, both endogenous and exogenous, cause lymphocyte dimunition in blood by retention of cells in the lymphatic circulation. A physiologic pharmacodynamic model was developed to describe changes in circulating lymphocytes as a function of both endogenous cortisol and methylprednisolone concentrations. The model was applied to T-helper and T-suppressor cell data collected from six asthmatic men during baseline, after single-dose, and after 6 days of 20 mg daily methylprednisolone. The model described all phases of the study well. Baseline circadian rhythm of lymphocytes was related to cortisol concentrations. Multiple-dosing of methylprednisolone caused apparent tolerance and decreased the sensitivity of lymphocytes to corticosteroids by 116% and markedly reduced endogenous cortisol concentrations. A 60% increase in circulating T-helper cells was observed which could be accounted for by dual changes in receptor sensitivity and endogenous cortisol.

Original languageEnglish
Pages (from-to)469-480
Number of pages12
JournalJournal of Pharmacokinetics and Biopharmaceutics
Volume22
Issue number6
DOIs
StatePublished - Dec 1994

Keywords

  • CD4+ lymphocytes
  • CD8+ lymphocytes
  • corticosteroids
  • cortisol
  • methylrednisolone
  • pharmacodynamics
  • T-helper cells
  • T-suppressor cells
  • tolerance

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