Postischemic neuroinflammation is a critical pathophysiological process within the entire scheme of cerebral ischemia, covering early damage and the period of tissue repair. It is characterized by microglial and astroglial activation with increased expression of inflammatory mediators and is accompanied by impaired innate and adaptive immune responses. In acute ischemic stroke (IS), neuroinflammation is caused by the response of resident immune cells of microglia and peripheral immunocompetent cells infiltrating the brain tissue, which penetrate the blood-brain barrier (BBB) into the lesion. Recent studies have shown the important role of the NLRP3-mediated inflammation in the death of neurons and glial cells in acute IS. The review presents the main mechanisms of activation of NLRP3-mediated inflammation in acute IS, leading to the caspase-1 formation and the IL-1β and IL-18 release, which are involved in the initiation and progression of inflammation in the brain parenchyma. The literature data on the role of autophagy in the inhibition of postischemic neuroinflammation are summarized. Autophagy can suppress neuroinflammation through a wide range of the autophagy - related proteins. The role of autophagy as a negative regulator of NLRP3-mediated inflammation in acute IS is analyzed. Data on the participation of autophagic proteins Beclin-1, LC3, and p62 in the suppression of NLRP3 inflammation due to the induction of basic mitophagy are presented. Prospects for modulating autophagy aimed at suppressing postischemic neuroinflammation, including the inhibition of NLRP3-inflammasome, have been noted. The review was based on sources from international and national data bases: Scopus, Web of Science, Springer, RINC.
The postischemic inflammatory response plays a significant role in the pathogenesis of acute ischemic stroke (IS). It has been established that acute IS is accompanied by aseptic inflammation, which induces the activation of costimulatory molecules in the process of innate immunity response to brain tissue damage. The constantly progressive destruction of neuronal antigens contributes to an increase in the volume of the ischemic lesion. Evidence continues to accumulate indicating an important role of NLRP3-mediated inflammation in the pathogenesis of IS. It has been shown that autophagy is involved in the inflammatory cascade in acute IS. Many of the anti-inflammatory mechanisms mediated by autophagy in acute IS involve the key autophagic proteins Beclin-1, LC3, and p62. Experimental studies have shown that autophagy suppresses the activation of NLRP3 inflammation. Data on cross interactions between apoptosis and autophagy in the pathogenesis of IS are still controversial. The aim of the study was to evaluate the relationship between biomarkers of autophagy, inflammation, and apoptosis in the dynamics of the acute period of atherothrombotic IS. The article presents the results of a dynamic study of the serum concentration of the key autophagy biomarkers Beclin-1, LC3 and p62, apoptosis indicators Bcl-2 and p53, pro-inflammatory cytokines IL-1β, TNFα, IL-8, IL-18 which are involved in postischemic neuroinflammation. A statistically significant increase in the studied parameters was established in comparison with the control group. The maximum increase in the studied biomarkers is noted on the 1st day after the development of ischemia in patients with a severe course of the disease. The relationship between autophagy activity, apoptosis biomarkers, and some indicators of the systemic inflammatory response in patients with moderate and severe atherothrombotic stroke was revealed. The results obtained confirm the literature data on the involvement of autophagy in the regulation of the postischemic inflammatory response.
The major advantages of primary prevention of colorectal cancer in young adults (around 20 years) compared with se condary prevention in adults (after 50 years). Primary prevention is aimed at screening and eliminating one of the major proven risk factors for colon cancer – chronic constipation and its predecessor – colorectal bradyarrhythmia – as slower circadian rhythm of defecation. The main advantages of primary prevention of colorectal cancer are: non-invasiveness, safety, efficiency and timeliness. Screening of colorectal bradyarrhythmia at 2501 operating physician is allowed to diagnose this arrhythmia in 44% of the surveyed entities. There is discovered the new fundamental dependence between the regularity of circadian rhythm of defecation and an acrophase of this rhythm. The implementation of the morning acrophase of the circadian rhythm of defecation is the key mechanism of the regularity of this rhythm. Repeated screening of colorectal bradyarrhythmia in individuals around the age of 20 years (a month after informing students about the law of circadian rhythm in the brain and intestine) showed that 53% of the students began to observe the morning routine of bowel movements. This led to a transition of moderate stage of colorectal bradyarrhythmia severity (3-4 times a week) in an easy stage (5-6 times a week). It’s proved the possibility of primary (behavioral) prevention of colorectal bradyarrhythmia (colorectal coprostasis) as a risk factor for colorectal cancer. Secondary prevention of colon cancer is associated with the invasiveness of colonoscopy, its possible complications (bleeding, perforation of bowel and fatal outcomes), the high cost of special equipment and late in the approach to screening for colorectal cancer (after the appearance of blood in the stool or after 50 years).
Apoptosis, along with proliferation, is a form of lymphocyte response to activating stimuli. In the early stages of cell differentiation, the apoptotic response prevails and it results to the formation of tolerance to inductor antigen. Mature lymphocytes proliferate in response to stimulation and it means the initial stage in the development of the immune response. Since in this case apoptosis and proliferation acts as alternative processes, their ratio can serve as a measure of the effectiveness of the cellular response to activating signals. The resistance of autoreactive T-cells to apoptosis is the main key point in the development of type 1 diabetes mellitus (T1DM). Autoreactive T-cells migrates from the bloodstream to the islet tissue of the pancreas and take an active part in b cells destruction. The resistance of autoreactive effector T-cells to apoptosis may suggest their high proliferative potential. Therefore, the comparative evaluation of apoptosis and proliferation of peripheral blood lymphocytes can give a more complete picture of their functional state and thus will help to reveal the causes of ineffective peripheral blood T-ceiis apoptosis in patients with T1DM and will help to understand more deeply the pathogenesis of the disease. in this article, the features of proliferative response of peripheral blood T-cells in patients with T1DM and in individuals with high risk of developing T1DM have been studied. Apoptosis of T-cell subpopulations has been investigated. The correlation between the apoptotic markers and the intensity of spontaneous and activation- induced in vitro T-cells proliferation of was revealed. it was determined, that autoreactive peripheral blood T-cells were resistant to apoptosis and demonstrated the increased proliferative potential in patients with T1DM and in individuals with high risk of developing T1DM.
scite is a Brooklyn-based organization that helps researchers better discover and understand research articles through Smart Citations–citations that display the context of the citation and describe whether the article provides supporting or contrasting evidence. scite is used by students and researchers from around the world and is funded in part by the National Science Foundation and the National Institute on Drug Abuse of the National Institutes of Health.
customersupport@researchsolutions.com
10624 S. Eastern Ave., Ste. A-614
Henderson, NV 89052, USA
This site is protected by reCAPTCHA and the Google Privacy Policy and Terms of Service apply.
Copyright © 2024 scite LLC. All rights reserved.
Made with 💙 for researchers
Part of the Research Solutions Family.