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Alarmin HMGB1 induces systemic and brain inflammatory exacerbation in post-stroke infection rat model
Il-Doo Kim1,2, Hahnbie Lee1,2, Seung-Woo Kim2,3
1Department of Anatomy, Inha University School of Medicine, Inchon, Republic of Korea.
Abstract:
Post-stroke infection (PSI) is known to worsen functional outcomes of stroke patients and accounts to one-third of stroke-related deaths in hospital. In our previous reports, we demonstrated that massive release of high-mobility group box protein 1 (HMGB1), an endogenous danger signal molecule, is promoted by N-methyl-D-aspartic acid-induced acute damage in the postischemic brain, exacerbating neuronal damage by triggering delayed inflammatory processes. Moreover, augmentation of proinflammatory function of lipopolysaccharides (LPS) by HMGB1 via direct interaction has been reported. The aim of this study was to investigate the role of HMGB1 in aggravating inflammation in the PSI by exacerbating the function of LPS. PSI animal model was produced by administrating a low-dose LPS at 24 h post-middle cerebral artery occlusion (MCAO). Profound aggravations of inflammation, deterioration of behavioral outcomes, and infarct expansion were observed in LPS-injected MCAO animals, in which serum HMGB1 surge, especially disulfide type, occurred immediately after LPS administration and aggravated brain and systemic inflammations probably by acting in synergy with LPS. Importantly, blockage of HMGB1 function by delayed administrations of therapeutic peptides known to inhibit HMGB1 (HMGB1 A box, HPep1) or by treatment with LPS after preincubation with HMGB1 A box significantly ameliorated damages observed in the rat PSI model, demonstrating that HMGB1 plays a crucial role. Furthermore, administration of Rhodobacter sphaeroides LPS, a selective toll-like receptor 4 antagonist not only failed to exert these effects but blocked the effects of LPS, indicating its TLR4 dependence. Together, these results indicated that alarmin HMGB1 mediates potentiation of LPS function, exacerbating TLR4-dependent systemic and brain inflammation in a rat PSI model and there is a positive-feedback loop between augmentation of LPS function by HMGB1 and subsequent HMGB1 release/serum. Therefore, HMGB1 might be a valuable therapeutic target for preventing post-stroke infection.
Insights
High-mobility group box protein 1 (HMGB1) worsens inflammation and outcomes in post-stroke infection (PSI) by amplifying lipopolysaccharides (LPS) effects. Blocking HMGB1 shows therapeutic potential for PSI by reducing brain and systemic inflammation.
Area of Science:
- Neuroscience
- Immunology
- Pathology
Background:
- Post-stroke infection (PSI) worsens patient outcomes and increases mortality.
- High-mobility group box protein 1 (HMGB1) exacerbates neuronal damage and inflammation post-stroke.
- HMGB1 can augment the pro-inflammatory effects of lipopolysaccharides (LPS).
Purpose of the Study:
- To investigate HMGB1's role in aggravating inflammation during PSI.
- To determine if HMGB1 exacerbates LPS function in a PSI model.
Main Methods:
- A rat model of PSI was created using middle cerebral artery occlusion (MCAO) followed by low-dose LPS administration.
- HMGB1 levels and function were assessed after LPS challenge.
- Therapeutic interventions included HMGB1 inhibitors (HMGB1 A box, HPep1) and preincubation of LPS with HMGB1 A box.
- The role of Toll-like receptor 4 (TLR4) was investigated using Rhodobacter sphaeroides LPS.
Main Results:
- LPS administration in MCAO rats led to severe inflammation, worsened behavioral outcomes, and expanded infarct size.
- A surge in serum HMGB1, particularly disulfide HMGB1, occurred immediately after LPS administration, correlating with increased inflammation.
- Blocking HMGB1 function significantly ameliorated brain and systemic inflammation and improved outcomes in the PSI model.
- TLR4 antagonism blocked the effects of LPS, confirming TLR4 dependence.
Conclusions:
- HMGB1 potentiates LPS function, exacerbating TLR4-dependent inflammation in a rat PSI model.
- A positive feedback loop exists between HMGB1 augmentation of LPS function and subsequent HMGB1 release.
- HMGB1 represents a promising therapeutic target for preventing and treating PSI.
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