In silico simulation of corticosteroids effect on an NFkB- dependent physicochemical model of systemic inflammation

Panagiota T Foteinou1, Steve E Calvano, Stephen F Lowry

  • 1Biomedical Engineering, Rutgers University, Piscataway, New Jersey, United States of America.

Plos One
|March 11, 2009
PubMed
Abstract

Insights

Understanding the timing of corticosteroid intervention is crucial for managing inflammatory responses. Early or simultaneous administration reprograms the host for a balanced inflammatory response, while delayed or premature intervention can lead to symptomatic effects or require higher drug doses.

Area of Science:

  • Systems biology
  • Computational modeling
  • Pharmacodynamics

Background:

  • Inflammatory responses involve signaling pathways, notably nuclear factor-kappa B (NF-kB), crucial for driving inflammation.
  • Dysregulated NF-kB activity can lead to hyper-inflammation, making it a key therapeutic target.
  • Systems-level analysis offers insights into developing strategies for resolving inflammatory responses.

Purpose of the Study:

  • To develop a physicochemical host response model integrating biological and pharmacokinetic data.
  • To utilize corticosteroids as a model for assessing anti-inflammatory strategies.
  • To predict and modulate uncontrolled inflammatory responses using an in silico approach.

Main Methods:

  • A physicochemical host response model was developed, incorporating kinetic rules and signaling cascades.
  • Pharmacokinetic models of drug action were integrated to simulate drug effects.
  • The model was evaluated for its ability to predict and modulate inflammatory responses in silico.
  • Simulations explored the impact of corticosteroid pre-exposure timing and dosage on inflammatory dynamics.

Main Results:

  • Pre-exposure to hypercortisolemia (6 hours before or simultaneous with challenge) reprogrammed host dynamics toward a balanced inflammatory response.
  • Intervention long before the inflammatory insult resulted in symptomatic effects, not protective relief.
  • Steroid infusion after inflammation onset required significantly higher drug doses for modulation.

Conclusions:

  • A reversed-engineered inflammation model was proposed to understand system responses to external signals.
  • Intervention timing and dosage are critical determinants of corticosteroid efficacy (protective vs. symptomatic).
  • Findings align with in vivo human studies, enhancing understanding of module interactions in generating biological behavior.

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