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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.
Background:
During the onset of an inflammatory response signaling pathways are activated for "translating" extracellular signals into intracellular responses converging to the activation of nuclear factor (NF)-kB, a central transcription factor in driving the inflammatory response. An inadequate control of its transcriptional activity is associated with the culmination of a hyper-inflammatory response making it a desired therapeutic target. Predicated upon the nature of the response, a systems level analysis might provide rational leads for the development of strategies that promote the resolution of the response.
Methodology And Findings:
A physicochemical host response model is proposed to integrate biological information in the form of kinetic rules and signaling cascades with pharmacokinetic models of drug action for the modulation of the response. The unifying hypothesis is that the response is triggered by the activation of the NFkB signaling module and corticosteroids serve as a template for assessing anti-inflammatory strategies. The proposed in silico model is evaluated through its ability to predict and modulate uncontrolled responses. The pre-exposure of the system to hypercortisolemia, i.e. 6 hr before or simultaneously with the infectious challenge "reprograms" the dynamics of the host towards a balanced inflammatory response. However, if such an intervention occurs long before the inflammatory insult a symptomatic effect is observed instead of a protective relief while a steroid infusion after inducing inflammation requires much higher drug doses.
Conclusions And Significance:
We propose a reversed engineered inflammation model that seeks to describe how the system responds to a multitude of external signals. Timing of intervention and dosage regimes appears to be key determinants for the protective or symptomatic effect of exogenous corticosteroids. Such results lie in qualitative agreement with in vivo human studies exposed both to LPS and corticosteroids under various time intervals thus improving our understanding of how interacting modules generate a behavior.
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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