Inflammatory processes in obesity: focus on endothelial dysfunction and the role of adipokines as inflammatory mediators

2019 ◽  
Vol 38 (4) ◽  
pp. 157-171 ◽  
Author(s):  
Manindra Singh ◽  
Fabian Benencia
2014 ◽  
Vol 2014 ◽  
pp. 1-6 ◽  
Author(s):  
Francisco J. Ascaso ◽  
Valentín Huerva ◽  
Andrzej Grzybowski

Macular edema (ME) is a nonspecific sign of numerous retinal vascular diseases. This paper is an updated overview about the role of inflammatory processes in the genesis of both diabetic macular edema (DME) and ME secondary to retinal vein occlusion (RVO). We focus on the inflammatory mediators implicated, the effect of the different intravitreal therapies, the recruitment of leukocytes mediated by adhesion molecules, and the role of retinal Müller glial (RMG) cells.


2014 ◽  
Vol 3 (1) ◽  
pp. R1-R12 ◽  
Author(s):  
Fernando Aprile-Garcia ◽  
María Antunica-Noguerol ◽  
Maia Ludmila Budziñski ◽  
Ana C Liberman ◽  
Eduardo Arzt

Inflammatory responses are elicited after injury, involving release of inflammatory mediators that ultimately lead, at the molecular level, to the activation of specific transcription factors (TFs; mainly activator protein 1 and nuclear factor-κB). These TFs propagate inflammation by inducing the expression of cytokines and chemokines. The neuroendocrine system has a determinant role in the maintenance of homeostasis, to avoid exacerbated inflammatory responses. Glucocorticoids (GCs) are the key neuroendocrine regulators of the inflammatory response. In this study, we describe the molecular mechanisms involved in the interplay between inflammatory cytokines, the neuroendocrine axis and GCs necessary for the control of inflammation. Targeting and modulation of the glucocorticoid receptor (GR) and its activity is a common therapeutic strategy to reduce pathological signaling. Poly (ADP-ribose) polymerase 1 (PARP1) is an enzyme that catalyzes the addition of PAR on target proteins, a post-translational modification termed PARylation. PARP1 has a central role in transcriptional regulation of inflammatory mediators, both in neuroendocrine tumors and in CNS cells. It is also involved in modulation of several nuclear receptors. Therefore, PARP1 and GR share common inflammatory pathways with antagonic roles in the control of inflammatory processes, which are crucial for the effective maintenance of homeostasis.


2020 ◽  
Vol 14 (6) ◽  
Author(s):  
Hayder M. Al-Kuraishy ◽  
Azhar H. Al-Kuraishi ◽  
Salah Al-Windy ◽  
Ali I. Al-Gareeb

2021 ◽  
Vol 12 ◽  
Author(s):  
Aneese A. Jaffa ◽  
Miran A. Jaffa ◽  
Mayssam Moussa ◽  
Ibrahim A. Ahmed ◽  
Mia Karam ◽  
...  

Microglia, the resident phagocytes of the central nervous system and one of the key modulators of the innate immune system, have been shown to play a major role in brain insults. Upon activation in response to neuroinflammation, microglia promote the release of inflammatory mediators as well as promote phagocytosis. Plasma prekallikrein (PKall) has been recently implicated as a mediator of neuroinflammation; nevertheless, its role in mediating microglial activation has not been investigated yet. In the current study, we evaluate the mechanisms through which PKall contributes to microglial activation and release of inflammatory cytokines assessing PKall-related receptors and their dynamics. Murine N9-microglial cells were exposed to PKall (2.5 ng/ml), lipopolysaccharide (100 ng/ml), bradykinin (BK, 0.1 μM), and neuronal cell debris (16.5 μg protein/ml). Gene expression of bradykinin 2 receptor (B2KR), protease-activated receptor 2 (PAR-2), along with cytokines and fibrotic mediators were studied. Bioinformatic analysis was conducted to correlate altered protein changes with microglial activation. To assess receptor dynamics, HOE-140 (1 μM) and GB-83 (2 μM) were used to antagonize the B2KR and PAR-2 receptors, respectively. Also, the role of autophagy in modulating microglial response was evaluated. Data from our work indicate that PKall, LPS, BK, and neuronal cell debris resulted in the activation of microglia and enhanced expression/secretion of inflammatory mediators. Elevated increase in inflammatory mediators was attenuated in the presence of HOE-140 and GB-83, implicating the engagement of these receptors in the activation process coupled with an increase in the expression of B2KR and PAR-2. Finally, the inhibition of autophagy significantly enhanced the release of the cytokine IL-6 which were validated via bioinformatics analysis demonstrating the role of PKall in systematic and brain inflammatory processes. Taken together, we demonstrated that PKall can modulate microglial activation via the engagement of PAR-2 and B2KR where PKall acts as a neuromodulator of inflammatory processes.


Author(s):  
S. A. Aliyev ◽  
E. S. Aliyev

Aim. To study the state of individual elements of the hemostasis system in liver cirrhosis according to modern literature.Summary. The review presents an analysis of literature data covering the state of the homeostasis system in liver cirrhosis. The pathophysiological and pathogenetic mechanisms that underlie the disorders that occur in various parts of the hemostatic system in this pathology are described in a polemical style. Literature data concerning a relatively littlestudied aspect of cirrhosis – hypercoagulation are analyzed. From the standpoint of modern concepts and taking into account the peculiarities of hemostasis disorders, the pathogenetic significance of the vascular endothelium and endothelial dysfunction is postulated. As well as the role of inflammatory mediators in the development of coagulopathy and intravascular coagulation syndrome in patients with cirrhosis of the liver.


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