complement system
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2023 ◽  
Vol 83 ◽  
Author(s):  
I. Wibowo ◽  
N. Marlinda ◽  
F. R. Nasution ◽  
R. E. Putra ◽  
N. Utami ◽  
...  

Abstract Although propolis has been reported for having anti-inflammatory activities, its effects on complement system has not been much studied. This research was conducted to find out the effects of Indonesian propolis on the expression levels of C3, C1r/s, Bf, MBL, and C6 in zebrafish larvae which were induced by lipopolysaccharide (LPS). Counting of macrophages migrating to yolk sac and liver histology were carried out. Larvae were divided into four groups: CON (cultured in E3 medium only), LPS (cultured in a medium containing 0.5 μg/L LPS), LPSIBU (cultured in a medium containing LPS, and then treated with 100 μg/L ibuprofen for 24 hours), and LPSPRO (cultured in a medium containing LPS, and then immersed in 14,000 μg/L propolis for 24 hours) groups. The results showed that complement gene expression in larvae from the LPSIBU and LPSPRO groups were generally lower than in larvae from the LPS group. The number of macrophage migrations to the yolk in the LPSPRO group was also lower than in the LPS group. Histological structure of liver in all groups were considered normal. This study shows that Indonesian propolis has the potential to be used as an alternative to the substitution of NSAIDs.


2022 ◽  
Vol 13 (1) ◽  
Author(s):  
Katharina Braunger ◽  
Jiyoon Ahn ◽  
Matthijs M. Jore ◽  
Steven Johnson ◽  
Terence T. L. Tang ◽  
...  

AbstractActivation of the serum-resident complement system begins a cascade that leads to activation of membrane-resident complement receptors on immune cells, thus coordinating serum and cellular immune responses. Whilst many molecules act to control inappropriate activation, Properdin is the only known positive regulator of the human complement system. By stabilising the alternative pathway C3 convertase it promotes complement self-amplification and persistent activation boosting the magnitude of the serum complement response by all triggers. In this work, we identify a family of tick-derived alternative pathway complement inhibitors, hereafter termed CirpA. Functional and structural characterisation reveals that members of the CirpA family directly bind to properdin, inhibiting its ability to promote complement activation, and leading to potent inhibition of the complement response in a species specific manner. We provide a full functional and structural characterisation of a properdin inhibitor, opening avenues for future therapeutic approaches.


Cell Reports ◽  
2022 ◽  
Vol 38 (1) ◽  
pp. 110183
Author(s):  
Pizga Kumwenda ◽  
Fabien Cottier ◽  
Alexandra C. Hendry ◽  
Davey Kneafsey ◽  
Ben Keevan ◽  
...  

2022 ◽  
Vol 43 ◽  
pp. 101248
Author(s):  
Charlotte Liisborg ◽  
Vibe Skov ◽  
Lasse Kjær ◽  
Hans Carl Hasselbalch ◽  
Torben Lykke Sørensen

2021 ◽  
Vol 22 (24) ◽  
pp. 13647
Author(s):  
Akash Shah ◽  
Uday Kishore ◽  
Abhishek Shastri

Alzheimer’s disease is a type of dementia characterized by problems with short-term memory, cognition, and difficulties with activities of daily living. It is a progressive, neurodegenerative disorder. The complement system is an ancient part of the innate immune system and comprises of more than thirty serum and membrane-bound proteins. This system has three different activating pathways and culminates into the formation of a membrane attack complex that ultimately causes target cell lysis (usually pathogens) The complement system is involved in several important functions in the central nervous system (CNS) that include neurogenesis, synaptic pruning, apoptosis, and neuronal plasticity. Here, we discuss how the complement system is involved in the effective functioning of CNS, while also contributing to chronic neuroinflammation leading to neurodegenerative disorders such as Alzheimer’s disease. We also discuss potential targets in the complement system for stopping its harmful effects via neuroinflammation and provide perspective for the direction of future research in this field.


2021 ◽  
Vol 84 (1) ◽  
Author(s):  
Suruchi Bakshi ◽  
Fraser Cunningham ◽  
Eva-Maria Nichols ◽  
Marta Biedzka-Sarek ◽  
Jessica Neisen ◽  
...  

Cells ◽  
2021 ◽  
Vol 10 (12) ◽  
pp. 3575
Author(s):  
Ana M. Mueller-Buehl ◽  
Torsten Buehner ◽  
Christiane Pfarrer ◽  
Leonie Deppe ◽  
Laura Peters ◽  
...  

Considering the fact that many retinal diseases are yet to be cured, the pathomechanisms of these multifactorial diseases need to be investigated in more detail. Among others, oxidative stress and hypoxia are pathomechanisms that take place in retinal diseases, such as glaucoma, age-related macular degeneration, or diabetic retinopathy. In consideration of these diseases, it is also evidenced that the immune system, including the complement system and its activation, plays an important role. Suitable models to investigate neuroretinal diseases are organ cultures of porcine retina. Based on an established model, the role of the complement system was studied after the induction of oxidative stress or hypoxia. Both stressors led to a loss of retinal ganglion cells (RGCs) accompanied by apoptosis. Hypoxia activated the complement system as noted by higher C3+ and MAC+ cell numbers. In this model, activation of the complement cascade occurred via the classical pathway and the number of C1q+ microglia was increased. In oxidative stressed retinas, the complement system had no consideration, but strong inflammation took place, with elevated TNF, IL6, and IL8 mRNA expression levels. Together, this study shows that hypoxia and oxidative stress induce different mechanisms in the porcine retina inducing either the immune response or an inflammation. Our findings support the thesis that the immune system is involved in the development of retinal diseases. Furthermore, this study is evidence that both approaches seem suitable models to investigate undergoing pathomechanisms of several neuroretinal diseases.


Psychiatry ◽  
2021 ◽  
Vol 19 (4) ◽  
pp. 76-89
Author(s):  
E. G. Cheremnykh ◽  
P. A. Ivanov ◽  
M. I. Factor ◽  
A. N. Pozdnyacova ◽  
Y. E. Shilov ◽  
...  

Introduction: the complement system can be a critical factor in the outcome of SARS-CoV-2 viral infection. Many mental illnesses are characterized by systemic sterile inflammation, in which the complement system is an obligatory participant. Purpose: to present an analysis of scientific data on the role of the complement system in the pathogenesis of viral diseases and the characteristics of the course of COVID-19 in mental patients. Material and methods: the keywords “complement system” “SARS-CoV-2”, “inhibition of the complement system”, “COVID-19” “mental illness” were used to search scientific articles in the databases MEDLINE, PubMed and other bibliographic sources. Conclusion: patients with mental illness are at risk due to physiological and mental characteristics, and infection with SARS-CoV-2 can provoke a relapse of the underlying disease. Therapeutic inhibition of complement system will help reduce this risk and reduce the likelihood of severe complications from systemic inflammation caused by this infection.


2021 ◽  
Vol 12 ◽  
Author(s):  
Galia Ramírez-Toloza ◽  
Lorena Aguilar-Guzmán ◽  
Carolina Valck ◽  
Smrithi S. Menon ◽  
Viviana P. Ferreira ◽  
...  

Chagas’ disease is a zoonotic parasitic ailment now affecting more than 6 million people, mainly in Latin America. Its agent, the protozoan Trypanosoma cruzi, is primarily transmitted by endemic hematophagous triatomine insects. Transplacental transmission is also important and a main source for the emerging global expansion of this disease. In the host, the parasite undergoes intra (amastigotes) and extracellular infective (trypomastigotes) stages, both eliciting complex immune responses that, in about 70% of the cases, culminate in permanent immunity, concomitant with the asymptomatic presence of the parasite. The remaining 30% of those infected individuals will develop a syndrome, with variable pathological effects on the circulatory, nervous, and digestive systems. Herein, we review an important number of T. cruzi molecules, mainly located on its surface, that have been characterized as immunogenic and protective in various experimental setups. We also discuss a variety of parasite strategies to evade the complement system - mediated immune responses. Within this context, we also discuss the capacity of the T. cruzi infective trypomastigote to translocate the ER-resident chaperone calreticulin to its surface as a key evasive strategy. Herein, it is described that T. cruzi calreticulin inhibits the initial stages of activation of the host complement system, with obvious benefits for the parasite. Finally, we speculate on the possibility to experimentally intervene in the interaction of calreticulin and other T. cruzi molecules that interact with the complement system; thus resulting in significant inhibition of T. cruzi infectivity.


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