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Differential effects of acute and chronic hydrocortisone treatment on pyroptosis
Bing Han1, Alexander Choukér1, Dominique Moser1
1Laboratory of Translational Research 'Stress and Immunity', Department of Anesthesiology, LMU Hospital, Ludwig-Maximilians-Universität in Munich, Germany.
Abstract:
Pyroptosis is a programmed and inflammation-inducing cell death that occurs predominantly in macrophages. It is characterized by the inflammasome-mediated activation of caspase-1, leading to cell lysis. During pyroptosis, pro-inflammatory mediators such as IL-1β are released extracellularly to further recruit and activate other immune cells. Thus, pyroptosis plays a crucial role in the prevention of the spread of pathogens. The clinically applied synthetic glucocorticoid, hydrocortisone (HC), has strong immunoregulatory properties. It may act as an immunosuppressive agent by negatively regulating pro-inflammatory gene transcription but has also shown immune-sensitizing properties. The conditions that determine the immunosuppressive or immune-sensitizing actions of HC during an infection are not fully clear. We hypothesized that the outcome may differ depending on the onset and duration of its administration. Therefore, we investigated the impact of acute (treatment upon infection) and chronic (24 h pre-treatment before infection) HC treatment on pyroptosis induction and execution in THP-1 macrophage-like cells. The focus was on pyroptosis-associated signaling pathways, inflammasome assembly and activation, IL-1β, and cell death. Physiological HC concentration and HC deprivation were used as controls. Compared to the physiological concentration, cells displayed augmented inflammasome activation and IL-1β release following acute HC treatment. Conversely, the whole pyroptosis machinery was suppressed by chronic HC administration. These in vitro investigations demonstrate pro-inflammatory actions of acute HC exposure and the immunosuppressive effects of chronic treatment. These differential effects on pyroptosis emphasize the importance of individualized HC medication in patients upon infection, and suggest the inclusion of IL-1β as a marker for current immune capacities.
Insights
Acute hydrocortisone (HC) treatment boosts pyroptosis and IL-1β release, while chronic HC suppresses this inflammatory cell death. Timing of HC administration significantly impacts immune responses during infection.
Area of Science:
- Immunology
- Cell Biology
- Pharmacology
Background:
- Pyroptosis is a programmed inflammatory cell death crucial for pathogen defense.
- Hydrocortisone (HC) exhibits complex immunoregulatory effects, acting as both immunosuppressive and immune-sensitizing agent.
- The impact of HC administration timing on pyroptosis during infection remains unclear.
Purpose of the Study:
- To investigate the differential effects of acute versus chronic hydrocortisone (HC) treatment on pyroptosis in macrophages.
- To elucidate the influence of HC administration timing on inflammasome activation, IL-1β release, and cell death.
- To determine the role of HC in modulating immune responses during infection.
Main Methods:
- THP-1 macrophage-like cells were treated with hydrocortisone (HC) acutely (upon infection) or chronically (24h pre-treatment).
- Pyroptosis-associated signaling pathways, inflammasome assembly and activation, IL-1β release, and cell death were analyzed.
- Physiological HC concentration and HC deprivation served as controls.
Main Results:
- Acute HC treatment augmented inflammasome activation and IL-1β release compared to physiological concentrations.
- Chronic HC administration suppressed the pyroptosis pathway.
- Differential effects observed highlight context-dependent immune modulation by HC.
Conclusions:
- Acute HC exposure demonstrates pro-inflammatory actions, enhancing pyroptosis.
- Chronic HC treatment exhibits immunosuppressive effects, inhibiting pyroptosis.
- Individualized HC medication timing is critical for patients during infection, with IL-1β as a potential immune marker.
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