Category Ranking

98%

Total Visits

921

Avg Visit Duration

2 minutes

Citations

20

Article Abstract

Traumatic brain injury (TBI) is a devastating condition due to its long-term sequelae on neurological functions. Inflammatory responses after TBI are critical for injury expansion and repair. Recent research in central nervous system (CNS) disorders reveals the importance of IL-33 and its receptor (ST2) as an alarmin system to initiate immune responses. This study explored the role of IL-33/ST2 signaling in TBI. TBI was induced in adult male C57BL/6J mice using a controlled cortical impact (CCI) model. We found that the expression of IL-33 increased in the injured brain and blood, and ST2 was elevated in the circulating and infiltrating regulatory T cells (Tregs) early after TBI. ST2 deficient mice exhibited reduced Treg numbers in the blood and brain 5 days after TBI. The brain lesion size was enlarged in ST2 knockout mice, which was accompanied by deteriorated sensorimotor function 5 days after TBI. In contrast, post-TBI treatment with IL-33 (2 μg/30 g body weight, intranasal) for 3 days significantly reduced brain lesion size and improved neurological functions 5 days after TBI. Meanwhile, IL-33 treatment increased ST2 expression in circulating and brain infiltrating Tregs. To further explore the involvement of Tregs in IL-33/ST2-mediated neuroprotection, Tregs were depleted by CD25 antibody injection. The absence of Tregs significantly reduced the protective effect of IL-33 after TBI. study confirmed that IL-33 (50 ng/ml) increased the production of IL-10 and TGFβ from activated Tregs and boosted the inhibitory effect of Tregs on T effector cell proliferation. Taken together, this study suggests that the activation of IL-33/ST2 signaling reduces brain lesion size and alleviates functional deficits after TBI at least partially through regulating the Treg response. IL-33 may represent a new immune therapeutic strategy to improve TBI outcomes.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9006950PMC
http://dx.doi.org/10.3389/fimmu.2022.860772DOI Listing

Publication Analysis

Top Keywords

days tbi
12
brain lesion
12
lesion size
12
tbi
11
brain
8
traumatic brain
8
brain injury
8
regulatory cells
8
neurological functions
8
il-33/st2 signaling
8

Similar Publications

Regulating the differentiation of implanted stem cells into neurons is crucial for stem cell therapy of traumatic brain injury (TBI). However, due to the migratory nature of implanted stem cells, precise and targeted regulation of their fate remains challenging. Here, neural stem cells (NSCs) are bio-orthogonally engineered with hyaluronic acid methacryloyl (HAMA) microsatellites capable of sustained release of differentiation modulators for targeted regulation of their neuronal differentiation and advanced TBI repair.

View Article and Find Full Text PDF

Objective: Traumatic brain injury (TBI), a prevalent neurological disorder worldwide, is marked by varying degrees of neurological dysfunction. A key contributor to secondary damage and impediments in the repair process is the unregulated activation of microglia, which triggers neuroinflammation. Emerging evidence highlights the therapeutic potential of transcranial pulsed current stimulation (tPCS) in mitigating neurological deficits.

View Article and Find Full Text PDF

The aim of the presented study was to investigate the effects of prebiotic inulin, probiotic VSL#3 (mixture of bacteria from 7 different species and 8 strains) and synbiotic (inulin + VSL#3) supplements applied together with lacosamide (LCM) on post-traumatic epilepsy (PTE). In addition, effectiveness of the relevant treatments on comorbid problems related to learning and memory, anxiety, motor performance and pain threshold that may develop together with seizures due to traumatic brain injury (TBI) and PTE was also examined using behavioral tests. In experiments, adult male Sprague-Dawley rats, divided into 6 groups, were given 30 mg/kg LCM or 1000 mg/kg inulin together with LCM as prebiotic, VSL#3 mixture containing 10 × 10 CFU/kg bacterial colonies as probiotic and (inulin + VSL#3) as synbiotic for 28 days by oral gavage after mild-TBI was induced by weight-drop method and electroencephalogram electrodes were placed.

View Article and Find Full Text PDF

Background: A key limitation of the IMPACT model for prognostication after severe traumatic brain injury (TBI) is the use of predictors from hospital admission only. We sought to identify if including daily blood labs (e.g.

View Article and Find Full Text PDF

Traumatic brain injury (TBI) elicits a sustained innate immune response involving both resident microglia and infiltrating peripheral immune cells. However, the influence of peripheral immune-derived signals on microglial dynamics and functional recovery remains poorly understood. We previously identified the receptor tyrosine kinase EphA4 as a regulator of acute neuroinflammation following TBI.

View Article and Find Full Text PDF