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Inhibition of IL-4Rα reduces CCL26 in bronchial epithelial cells from COPD patients

Background Anti-interleukin (IL)-4Rα monoclonal antibodies (mAb) improve lung function and decreasethe number of exacerbations in patients with COPD type (T) 2 inflammation. However, the involvement ofearly innate immune responses underlying these treatment effects is not well known. We sought tounderstand the effect and mechanisms of IL-4Rα mAb treatment on bronchial epithelial cells (BECs) fromCBackgroundAnti-IL-4Rα monoclonal antibodies (mAb) improve lung function and decrease the number of exacerbations in patients with COPD type (T) 2 inflammation. However, the involvement of early innate immune responses underlying these treatment effects is not well known. We sought to understand the effect and mechanisms of IL-4Rα mAb treatment on bronchial epithelial cells from COPD patients under

The Role of Small-Bowel Capsule Endoscopy in the Diagnostic Algorithm of Complicated Perianal Disease

Introduction: Complicated perianal disease (cPD) may be the sole presentation of Crohn’s disease (CD). The role of small-bowel capsule endoscopy (SBCE) in the diagnostic algorithm of cPD is unclear. We aimed to evaluate the role of SBCE as a diagnostic tool, in patients with cPD, after a negative standard workup for CD. Methods: A multicenter, retrospective, cross-sectional study, in patients with

Over-expression, purification and characterization of a β-mannanase BoMan26B from Bacteroides ovatus

Hemicelluloses account for 25-30% of total wood dry weight. Mannan-based polysaccharides are the major component of softwood hemicelluloses. They are characterized by their β-1,4-glycosidic linked backbone composed of mannose or a combination of mannose and glucose residues. The backbone can be substituted by α-1,6-linked galactose residues. β-mannanases cleave the internal β-1,4-glycosidic bonds

Birtele et al-2019-febs letters

Dual modulation of neuron‐specific microRNAs and the REST complex promotes functional maturation of human adult induced neurons This article has been accepted for publication and undergone full peer review but has not been through the copyediting, typesetting, pagination and proofreading process, which may lead to differences between this version and the Version of Record. Please cite this article

https://www.regenerative-neurobiology.lu.se/sites/regenerative-neurobiology.lu.se/files/birtele_et_al-2019-febs_letters.pdf - 2026-06-20

Metformin-induced suppression of Nemo-like kinase improves erythropoiesis in preclinical models of Diamond–Blackfan anemia through induction of miR-26a

Diamond–Blackfan anemia (DBA) results from haploinsufficiency of ribosomal protein subunits in hematopoietic progenitors in the earliest stages of committed erythropoiesis. Nemo-like kinase (NLK) is chronically hyperactivated in committed erythroid progenitors and precursors in multiple human and murine models of DBA. Inhibition of NLK activity and suppression of NLK expression both improve erythr