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.

Cell Death & Disease
|March 21, 2018
PubMed

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.

Related Concept Videos

Functional Brain Systems: Limbic System01:15

Functional Brain Systems: Limbic System

The limbic system, often called the "emotional brain," is a complex set of structures located deep within the brain. The intricate network of the limbic system supports a wide range of psychological functions, from emotional regulation to memory formation and sensory processing. This functional brain region encompasses specific parts of the diencephalon and the cerebrum, integrating the higher mental functions of the cerebral cortex with the primitive emotional responses of the deep brain...
7.5K
Functional Brain Systems: Reticular Formation01:13

Functional Brain Systems: Reticular Formation

The reticular formation is a complex network of gray and white matter located within the brainstem extending from the medulla to the midbrain.
Within the reticular formation, there are several distinct nuclei that can be classified into three broad categories. The Raphe nuclei are located along the midline of the brainstem. They are primarily known for their role in synthesizing and releasing serotonin, a neurotransmitter involved in regulating mood, appetite, sleep, and circadian rhythms. The...
5.0K
Induced-fit Model01:13

Induced-fit Model

Most chemical reactions in cells require enzymes—biological catalysts that speed up the reaction without being consumed or permanently changed. They reduce the activation energy needed to convert the reactants into products. Enzymes are proteins, that usually work by binding to a substrate—a reactant molecule that they act upon.
Enzymes exhibit substrate specificity, meaning that they can only bind to certain substrates. This is mainly determined by the shape and chemical...
89.7K
Inflammatory Response01:28

Inflammatory Response

An inflammatory response is a localized, nonspecific immune reaction that occurs when a tissue is injured. It is characterized by redness, swelling, heat, and pain, which are commonly called the cardinal signs and symptoms of inflammation. Inflammation can sometimes result in a loss of function.
Inflammation can be triggered by various stimuli, such as impact, abrasion, chemical irritation, infections, and extreme hot or cold temperatures. These can damage cells and connective tissue fibers,...
17.0K
Pharmacodynamic Models: Link Model and Systems Pharmacodynamic Model01:14

Pharmacodynamic Models: Link Model and Systems Pharmacodynamic Model

The link model is a fundamental pharmacokinetic-pharmacodynamic (PK–PD) approach to account for delayed drug responses when the observed effect does not immediately correlate with the drug's plasma concentration peak. This delay is mathematically addressed by introducing an effect compartment concentration, Ce, which is kinetically linked to the plasma concentration, Cp, via a first-order rate constant, ke0. The linkage allows for a more accurate prediction of drug effects over time. A...
1
Inflammatory Response II: Inflammatory Exudate and Tissue Repair01:24

Inflammatory Response II: Inflammatory Exudate and Tissue Repair

The immune system's inflammatory response destroys the invading pathogen, permitting the tissue to heal. The changes during the cellular and vascular stages allow exudate formation at the site of inflammation. The inflammatory exudate released from the wound has high protein content and a specific gravity above 1.020.
The typical wound exudate is odorless, transparent, straw-colored, thin, and watery. Exudate, however, can differ depending on the state of wound healing. Likewise, the...
8.0K