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Biology subjects

Ehrenberg, A.

Publications and source records attributed to Ehrenberg, A..

3 recordsLinked to original sources

Enlarged Perivascular Spaces are Associated with White Matter Injury, Brain Atrophy, Cognitive Decline and Markers of Inflammation in an Autosomal Dominant Vascular Neurodegenerative Disease (CADASIL)

Background and ObjectivesEnlarged perivascular spaces (ePVS) have been previously reported in Cerebral Autosomal Dominant Arteriopathy with Subcortical Infarcts and Leucoencephalopathy (CADASIL), but their significance and pathophysiology remains unclear. We investigated associations of ePVS with classical imaging measures, cognitive measures and plasma proteins to better understand what ePVS represents in CADASIL and whether radiographic measures of ePVS would be of value in future therapeutic discovery studies for CADASIL. Methods24 individuals with CADASIL and 24 age and sex matched controls were included. Disease status was determined based on presence of NOTCH3 mutation. Brain imaging measures of white matter hyperintensity (WMH), brain parenchymal fraction (BPF), ePVS volumes, clinical, and cognitive measures, as well as plasma proteomics were used in models. Global ePVS volumes were calculated via a novel, semi-automated pipeline and levels of 7363 proteins were quantified in plasma using the SomaScan assay. The relationship of ePVS with global burden of WMH, brain atrophy, functional status, neurocognitive measures, and plasma proteins were modelled with linear regression models. ResultsCADASIL and control groups did not exhibit differences in mean ePVS volumes. However, increased ePVS volumes in CADASIL were associated with increased WMH volume ({beta}=0.57, p=0.05), Clinical Dementia Rating (CDR) Sum-of-Boxes score ({beta}=0.49, p=0.04), and decreased brain parenchymal fraction (BPF) ({beta}=-0.03, p=0.10). In interaction term models, the interaction term between CADASIL disease status and ePVS volume was associated with increased WMH volume ({beta}=0.57, p=0.02), Clinical Dementia Rating (CDR) Sum-of-Boxes score ({beta}=0.52, p=0.02), decreased BPF ({beta}=-0.03, p=0.07) and Mini Mental State Examination (MMSE) score ({beta}=-1.49, p=0.03). Proteins positively associated with ePVS volumes were found to be related to leukocyte migration and inflammation, while negatively associated proteins were related to lipid metabolism. Two central hub proteins were identified in protein networks associated with ePVS volumes: CXCL8/IL-8, and CCL2/MCP-1. The levels of CXCL8/IL8 were also associated with increased WMH volume ({beta}=2.44, p < 0.01), and levels of CCL2/MCP-1 were further associated with decreased BPF ({beta}=-0.0007, p < 0.01), MMSE score ({beta}=-0.02, p < 0.01), and increased Trail Making Test B (TRAILB) completion time ({beta}=0.76, p < 0.01). No protein was associated with all 3 studied imaging measures of pathology (BPF,ePVS,WMH). DiscussionBased on associations uncovered between ePVS volumes and cognitive functions, imaging and plasma proteins, we conclude that ePVS volumes capture pathologies contributing to chronic brain dysfunction and degeneration in CADASIL, with relevance to future clinical trials for novel therapeutic discoveries to prevent decline and injury in individuals carrying NOTCH3 mutations.

neuroscience↗

Platelets modulate inflammation and matrix remodeling in abdominal aortic aneurysm

Abdominal aortic aneurysm (AAA) is a highly lethal disease with progressive dilatation of the abdominal aorta accompanied by degradation and remodelling of the vessel wall due to chronic inflammation. Platelets play an important role in cardiovascular diseases but their role in AAA is poorly understood. The present study revealed that platelets play a crucial role in promoting AAA through modulation of inflammation and degradation of the ECM. They are responsible for the up-regulation of SPP1 (osteopontin, OPN) gene expression in macrophages and aortic tissue, which triggers inflammation and remodeling but also platelet adhesion and migration into the abdominal aortic wall and the intraluminal thrombus (ILT). Further, enhanced platelet activation and pro-coagulant activity results in elevated gene expression of various cytokines, Mmp9 and Col1a1 in macrophages and Il-6 and Mmp9 in fibroblasts. Enhanced platelet activation and pro-coagulant activity was also detected in AAA patients. Further, we detected platelets and OPN in the vessel wall and in the ILT of patients who underwent open repair of AAA. Platelet depletion in experimental murine AAA reduced inflammation and ECM remodeling, with reduced elastin fragmentation and aortic diameter expansion. Of note, OPN co-localized with platelets, suggesting a potential role of OPN for the recruitment of platelets into the ILT and the aortic wall. In conclusion, our data strongly supports the potential relevance of anti-platelet therapy to reduce AAA progression and rupture in AAA patients. Translational perspectiveAbdominal aortic aneurysm (AAA) is a severe cardiovascular disease (CVD) with high mortality. Since the role of platelets is unclear, we explored platelet-mediated processes in the pathogenesis of AAA. Results from platelet depleted mice and patients with AAA revealed that platelets modulate inflammatory and stiffness-related gene expression of macrophages and fibroblasts. Further, platelets induce the release of osteopontin important for the recruitment of platelets to the aortic wall and to the intraluminal thrombus (ILT). Consequently, platelet depletion significantly reduced aneurysm growth. Thus, therapeutic targeting of platelet activation might be crucial for the treatment of patients to reduce AAA formation and progression.

molecular biology↗

Platelet pannexin-1 channels modulate inflammation during abdominal aortic aneurysm formation

Abdominal aortic aneurysm (AAA) is a common disease and highly lethal if untreated. The progressive dilatation of the abdominal aorta is accompanied by degradation and remodeling of the vessel wall due to chronic inflammation. Pannexins represent anion-selective channels and play a crucial role in non-vesicular ATP release to amplify paracrine signaling in cells. Thus, pannexins are involved in many (patho-) physiological processes. Recently, Panx1 channels were identified to be significantly involved in AAA formation through endothelial derived Panx1 regulated inflammation and aortic remodeling. In platelets, Panx1 becomes activated following activation of glycoprotein (GP)VI. Since platelets play a role in cardiovascular diseases including AAA, we analyzed the contribution of platelet Panx1 in the progression of AAA. We detected enhanced Panx1 plasma levels in AAA patients. In experimental AAA using the pancreatic porcine elastase (PPE) mouse model, a major contribution of platelet Panx1 channels in platelet activation, pro-coagulant activity of platelets and platelet-mediated inflammation has been detected. In detail, platelets are important for the migration of neutrophils into the aortic wall induced by direct cell interaction and by activation of endothelial cells. Decreased platelet activation and inflammation did not affect ECM remodeling or wall thickness in platelet-specific Panx1 knock-out mice following PPE surgery. Thus, aortic diameter expansion at different time points after elastase infusion of the aortic wall was unaltered in platelet-specific Panx1 deficient mice suggesting that the modulation of inflammation alone does not affect AAA formation and progression. In conclusion, our data strongly supports the role of platelets in inflammatory responses in AAA via Panx1 channels and adds important knowledge about the significance of platelets in AAA pathology important for the establishment of an anti-platelet therapy for AAA patients.

cell biology↗