Faculty Opinions recommendation of Intravascular danger signals guide neutrophils to sites of sterile inflammation.

Author(s):  
Karsten Gronert ◽  
Samantha Wang
2022 ◽  
Vol 23 (2) ◽  
pp. 600
Author(s):  
Chelsy L. Cliff ◽  
Bethany M. Williams ◽  
Christos E. Chadjichristos ◽  
Ulrik Mouritzen ◽  
Paul E. Squires ◽  
...  

Of increasing prevalence, diabetes is characterised by elevated blood glucose and chronic inflammation that precedes the onset of multiple secondary complications, including those of the kidney and the eye. As the leading cause of end stage renal disease and blindness in the working population, more than ever is there a demand to develop clinical interventions which can both delay and prevent disease progression. Connexins are membrane bound proteins that can form pores (hemichannels) in the cell membrane. Gated by cellular stress and injury, they open under pathophysiological conditions and in doing so release ‘danger signals’ including adenosine triphosphate into the extracellular environment. Linked to sterile inflammation via activation of the nod-like receptor protein 3 inflammasome, targeting aberrant hemichannel activity and the release of these danger signals has met with favourable outcomes in multiple models of disease, including secondary complications of diabetes. In this review, we provide a comprehensive update on those studies which document a role for aberrant connexin hemichannel activity in the pathogenesis of both diabetic eye and kidney disease, ahead of evaluating the efficacy of blocking connexin-43 specific hemichannels in these target tissues on tissue health and function.


Science ◽  
2010 ◽  
Vol 330 (6002) ◽  
pp. 362-366 ◽  
Author(s):  
B. McDonald ◽  
K. Pittman ◽  
G. B. Menezes ◽  
S. A. Hirota ◽  
I. Slaba ◽  
...  

2016 ◽  
Vol 42 (1) ◽  
pp. 36-45 ◽  
Author(s):  
Monika Fleshner ◽  
Matthew Frank ◽  
Steven F Maier

2014 ◽  
Vol 128 (5) ◽  
pp. 297-305 ◽  
Author(s):  
Steven O’Reilly

Damage-associated molecular patterns (DAMPs) are chemically heterogeneous endogenous host molecules rapidly released from damaged or dying cells that incite a sterile inflammatory response mediated via pattern recognition receptors (PRRs). The sources of DAMPs are dead or dying cells or the extracellular matrix and can signal through the PRRs, the Toll-like receptors or cytosolic Nod-like receptors, culminating in nuclear factor κB (NF-κB) activation and pro-inflammatory cytokine secretion. Together, these molecules are involved in sterile inflammation and many are associated with rheumatic autoimmune diseases such as rheumatoid arthritis, systemic lupus erythromatosus, psoriatic arthritis and systemic sclerosis. These diseases are associated with inflammation and many danger signals are found in sites of sterile inflammation and mediate inflammation. The present review examines the role of DAMPs in rheumatic conditions and suggests avenues for their therapeutic modulation.


2021 ◽  
Vol 11 (10) ◽  
pp. 1299
Author(s):  
Luke Parkitny ◽  
Mirjana Maletic-Savatic

Adult neurogenesis represents a mature brain’s capacity to integrate newly generated neurons into functional circuits. Impairment of neurogenesis contributes to the pathophysiology of various mood and cognitive disorders such as depression and Alzheimer’s Disease. The hippocampal neurogenic niche hosts neural progenitors, glia, and vasculature, which all respond to intrinsic and environmental cues, helping determine their current state and ultimate fate. In this article we focus on the major immune communication pathways and mechanisms through which glial cells sense, interact with, and modulate the neurogenic niche. We pay particular attention to those related to the sensing of and response to innate immune danger signals. Receptors for danger signals were first discovered as a critical component of the innate immune system response to pathogens but are now also recognized to play a crucial role in modulating non-pathogenic sterile inflammation. In the neurogenic niche, viable, stressed, apoptotic, and dying cells can activate danger responses in neuroimmune cells, resulting in neuroprotection or neurotoxicity. Through these mechanisms glial cells can influence hippocampal stem cell fate, survival, neuronal maturation, and integration. Depending on the context, such responses may be appropriate and on-target, as in the case of learning-associated synaptic pruning, or excessive and off-target, as in neurodegenerative disorders.


2013 ◽  
Vol 51 (01) ◽  
Author(s):  
M Hardtke-Wolenski ◽  
K Fischer ◽  
F Noyan ◽  
J Schlue ◽  
CS Falk ◽  
...  

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