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  • 1
    In: Neonatology, S. Karger AG, Vol. 115, No. 4 ( 2019), p. 355-362
    Abstract: 〈 b 〉 〈 i 〉 Background: 〈 /i 〉 〈 /b 〉 Following birth asphyxia there is a robust inflammatory response. NLRP3 is a receptor of the innate immune system. Upon activation, NLRP3 forms an inflammasome together with ASC and procaspase-1 to mediate release of IL-1β and IL-18. NLRP3 has previously been shown to be upregulated following neonatal hypoxic-ischemic (HI) brain injury in mice, but with no early effect on brain injury. 〈 b 〉 〈 i 〉 Objective: 〈 /i 〉 〈 /b 〉 We aimed to evaluate if deficiency of NLRP3 or ASC protects against neonatal HI brain damage 7 days after hypoxia-ischemia. 〈 b 〉 〈 i 〉 Methods: 〈 /i 〉 〈 /b 〉 C57BL/6J, NLRP3 〈 sup 〉 –/– 〈 /sup 〉 , and ASC 〈 sup 〉 –/– 〈 /sup 〉 mice were subjected to unilateral common carotid artery ligation followed by hypoxia at P9. Brain infarction, apoptosis, and microglial response were evaluated, as well as total RNA sequencing and examination of plasma levels of systemic proinflammatory cytokines. 〈 b 〉 〈 i 〉 Results: 〈 /i 〉 〈 /b 〉 NLRP3 〈 sup 〉 –/– 〈 /sup 〉 mice showed significantly increased brain infarction volumes compared to wild-type (Wt) mice, while ASC 〈 sup 〉 –/– 〈 /sup 〉 mice showed reduced brain infarction volumes after neonatal hypoxia-ischemia. The amount of activated microglia was increased in NLRP3 〈 sup 〉 –/– 〈 /sup 〉 mice, while decreased in ASC 〈 sup 〉 –/– 〈 /sup 〉 mice compared to Wt mice. Total RNA sequencing showed an impaired inflammatory transcriptional response in the hippocampus of NLRP3 〈 sup 〉 –/– 〈 /sup 〉 mice. Plasma levels of IL-1β and IL-18 were not affected, but TNF was lower in NLRP3 〈 sup 〉 –/– 〈 /sup 〉 and ASC 〈 sup 〉 –/– 〈 /sup 〉 mice compared to Wt mice. 〈 b 〉 〈 i 〉 Conclusion: 〈 /i 〉 〈 /b 〉 ASC deficiency is neuroprotective in neonatal HI brain damage in mice, while NLRP3 deficiency increases brain damage.
    Type of Medium: Online Resource
    ISSN: 1661-7800 , 1661-7819
    Language: English
    Publisher: S. Karger AG
    Publication Date: 2019
    detail.hit.zdb_id: 2403535-X
    SSG: 12
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  • 2
    Online Resource
    Online Resource
    S. Karger AG ; 2012
    In:  Cardiology Vol. 122, No. 1 ( 2012), p. 23-35
    In: Cardiology, S. Karger AG, Vol. 122, No. 1 ( 2012), p. 23-35
    Abstract: Evidence from both experimental and clinical trials indicates that inflammatory mediators are of importance in the pathogenesis of chronic heart failure (HF) contributing to cardiac remodeling and peripheral vascular disturbances. Several studies have shown raised levels of inflammatory cytokines such as tumor necrosis factor (TNF)α, interleukin (IL)-1β and IL-6 in HF patients in plasma and circulating leukocytes, as well as in the failing myocardium itself. There is strong evidence that these mediators are involved in processes leading to cardiac remodeling such as hypertrophy, fibrosis and apoptosis. Some of these cytokines can also give useful prognostic information as reliable biomarkers in this disorder. In general, immunomodulating treatments have, with a few exceptions, been neutral or even harmful. However, the negative results of anti-TNF studies, for instance, do not necessarily argue against the ‘cytokine hypothesis’. These studies just underscore the challenges in developing treatment modalities that can modulate the cytokine network in HF patients and result in beneficial net effects. Future studies should identify the crucial actors and their mechanisms of action in the immunopathogenesis of chronic HF and, in particular, clarify the balance between adaptive and maladaptive effects of these molecules. Such studies are a prerequisite for the development of new treatment strategies that target inflammatory and immunopathogenic mechanisms in HF. In this review article, these issues are thoroughly discussed, and we also argue for the possibility of future therapeutic targets such as mediators in innate immunity, chemokines and mediators in matrix remodeling.
    Type of Medium: Online Resource
    ISSN: 0008-6312 , 1421-9751
    RVK:
    Language: English
    Publisher: S. Karger AG
    Publication Date: 2012
    detail.hit.zdb_id: 1482041-9
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  • 3
    In: Neonatology, S. Karger AG, Vol. 108, No. 3 ( 2015), p. 211-219
    Abstract: 〈 b 〉 〈 i 〉 Background: 〈 /i 〉 〈 /b 〉 The NLRP3 inflammasome acts as an early mediator of inflammation by cleaving and releasing IL-1β and IL-18 from their proforms. 〈 b 〉 〈 i 〉 Objective: 〈 /i 〉 〈 /b 〉 The aim of this study was to describe NLRP3 activation and evaluate whether deficiency of NLRP3 protects against neonatal hypoxic ischemic brain damage. 〈 b 〉 〈 i 〉 Methods: 〈 /i 〉 〈 /b 〉 C57BL/6 and NLRP3 〈 sup 〉 -/- 〈 /sup 〉 mice at P9 were subjected to unilateral common carotid ligation followed by hypoxia. RT-PCR was used on mRNA in five different subregions of the brain. Brain infarction was evaluated by histopathology and 2,3,5-triphenyltetrazolium chloride staining. Plasma levels of IL-18 were measured by ELISA. Double labeling immunohistochemistry was used to examine cell-specific NLRP3 expression. 〈 b 〉 〈 i 〉 Results: 〈 /i 〉 〈 /b 〉 NLRP3 was upregulated 24 h after hypoxia-ischemia (HI) in the hippocampus (2.6-fold), striatum (2.2-fold) and thalamus (2.3-fold). Brain infarction volumes were not statistically significantly different in NLRP3 〈 sup 〉 -/- 〈 /sup 〉 mice compared to WT mice 24 h after HI, accompanied by no significant changes in plasma IL-18 levels. Three hours after HI, NLRP3 expression occurred in astrocytes located in the hippocampus and habenular nucleus of the thalamus. Microglia only showed scarce expression at this time point, but prominent NLRP3 expression 72 h after HI. 〈 b 〉 〈 i 〉 Conclusion: 〈 /i 〉 〈 /b 〉 Astrocytes are early mediators of NLRP3 activity. No early neuroprotective effect of NLRP3 deficiency in neonatal HI brain damage was shown.
    Type of Medium: Online Resource
    ISSN: 1661-7800 , 1661-7819
    Language: English
    Publisher: S. Karger AG
    Publication Date: 2015
    detail.hit.zdb_id: 2403535-X
    SSG: 12
    Location Call Number Limitation Availability
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