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Preoperative palliation of newborn obstructed total anomalous pulmonary venous connection by endovascular stent placement. 总被引:3,自引:0,他引:3
James P Kyser A Resai Bengur Ernest S Siwik 《Catheterization and cardiovascular interventions》2006,67(3):473-476
Patients with obstructed total anomalous pulmonary venous connection (TAPVC) usually present critically ill and continue to be extremely challenging with presurgical stabilization. We present an extra corporeal membrane oxygenation (ECMO)-dependent neonate with obstructed TAPVC that was successfully palliated with transvenous stent placement in the obstructed vertical vein. 相似文献
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Ekaterina Klimatcheva Tracy Pandina Christine Reilly Sebold Torno Holm Bussler Maria Scrivens Alan Jonason Crystal Mallow Michael Doherty Mark Paris Ernest S Smith Maurice Zauderer 《BMC immunology》2015,16(1)
Background
Homeostatic B Cell-Attracting chemokine 1 (BCA-1) otherwise known as CXCL13 is constitutively expressed in secondary lymphoid organs by follicular dendritic cells (FDC) and macrophages. It is the only known ligand for the CXCR5 receptor, which is expressed on mature B cells, follicular helper T cells (Tfh), Th17 cells and regulatory T (Treg) cells. Aberrant expression of CXCL13 within ectopic germinal centers has been linked to the development of autoimmune disorders (e.g. Rheumatoid Arthritis, Multiple Sclerosis, Systemic Lupus Erythematosis). We, therefore, hypothesized that antibody-mediated disruption of the CXCL13 signaling pathway would interfere with the formation of ectopic lymphoid follicles in the target organs and inhibit autoimmune disease progression. This work describes pre-clinical development of human anti-CXCL13 antibody MAb 5261 and includes therapeutic efficacy data of its mouse counterpart in murine models of autoimmunity.Results
We developed a human IgG1 monoclonal antibody, MAb 5261 that specifically binds to human, rodent and primate CXCL13 with an affinity of approximately 5 nM and is capable of neutralizing the activity of CXCL13 from these various species in in vitro functional assays. For in vivo studies we have engineered a chimeric antibody to contain the same human heavy and light chain variable genes along with mouse constant regions. Treatment with this antibody led to a reduction in the number of germinal centers in mice immunized with 4-Hydroxy-3-nitrophenylacetyl hapten conjugated to Keyhole Limpet Hemocyanin (NP-KLH) and, in adoptive transfer studies, interfered with the trafficking of B cells to the B cell areas of mouse spleen. Furthermore, this mouse anti-CXCL13 antibody demonstrated efficacy in a mouse model of Rheumatoid arthritis (Collagen-Induced Arthritis (CIA)) and Th17-mediated murine model of Multiple Sclerosis (passively-induced Experimental Autoimmune Encephalomyelitis (EAE)).Conclusions
We developed a novel therapeutic antibody targeting CXCL13-mediated signaling pathway for the treatment of autoimmune disorders. 相似文献98.
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Mazzaferri EL Gradinac S Sagic D Otasevic P Hasan AK Goff TL Sievert H Wunderlich N Nikolic SD Abraham WT 《American heart journal》2012,163(5):812-820.e1
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Ernest Kuchar Katarzyna Miskiewicz Aneta Nitsch–Osuch Donata Kurpas Stanisław Han Leszek Szenborn 《Respiratory physiology & neurobiology》2013,187(1):82-87
Elite athletes have a higher prevalence of exercise-induced bronchoconstriction than the general population. The pathogenesis of exercise-induced bronchoconstriction is not fully elucidated. Increasing evidence suggests that airway inflammation plays a major role in the immunopathogenesis of exercise-induced bronchoconstriction. The aim of our review is to discuss existing evidence and to present a new, modified inflammatory hypothesis of exercise-induced bronchoconstriction. Exercise alters the number and function of circulating immune cells. Episodes of upper respiratory symptoms in elite athletes do not follow the usual seasonal patterns. Moreover, they have an unusual short-term duration, which suggests a non-infectious etiology. If the pro-inflammatory response to exercise has the potential to induce symptoms that mimic respiratory tract infection, it definitely up-regulates pro-inflammatory cytokine expression in the airways. We can conclude that exercise up-regulates airway cytokine expression in a way that favors inflammation and allergic reactions in bronchi and lowers the threshold for bronchoconstriction to different stimuli like cool, dry air, allergens, and pollutants. 相似文献