ecis instrument applied biophysics ztheta 96 well array station (Applied BioPhysics)
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Ecis Instrument Applied Biophysics Ztheta 96 Well Array Station, supplied by Applied BioPhysics, used in various techniques. Bioz Stars score: 96/100, based on 636 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/ecis+instrument/ECIS+Z+Theta/bio_rxiv__64898__2026__02__04__703836-277-15-17
Average 96 stars, based on 636 article reviews
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1) Product Images from "Th17 effector cytokines induce shared and distinct microglial and endothelial cell responses in post-streptococcal encephalitis"
Article Title: Th17 effector cytokines induce shared and distinct microglial and endothelial cell responses in post-streptococcal encephalitis
Journal: bioRxiv
doi: 10.64898/2026.02.04.703836
Figure Legend Snippet: a , Schematic of CD4⁺ T cell differentiation, effector cytokine production, and associated brain pathology in ROR γ t -/- mice following recurrent GAS infections. b, Heatmaps of differentially expressed genes (DEGs) related to BBB function, antigen presentation, and interferon response in olfactory bulb (OB) brain endothelial cells (BECs) from GAS-infected wild-type (WT) and ROR γ t -/- mice. Values are shown as log(z-score); significantly altered genes are indicated in black (adjusted p < 0.05). c, Gene ontology (GO) pathway enrichment analysis of transcripts upregulated and downregulated in ROR γ t -/- versus WT BECs after GAS infections. d, IFNγ concentrations in whole OB lysates from WT PBS (gray), WT GAS (blue), and ROR γ t -/- GAS (green) mice after two or five infections. Statistical comparisons were performed using one-way ANOVA (ns, p > 0.05; p < 0.05). e, Heat maps of DEGs related to antigen presentation, homeostatic/DAM programs, and cytokine/chemokine signaling in OB microglia from GAS-infected WT and ROR γ t -/- mice (log(z-score); adjusted p < 0.05 shown in black). f, GO pathway enrichment analysis of transcriptional changes in ROR γ t -/- versus WT microglia following GAS infections. g, Representative flow cytometry plots of CD74 and MHC class II (I-A/I-E) expression in WT and ROR γ t -/- microglia after GAS infections (n = 3,640 and 4,657 cells, respectively). h, Quantification of microglial surface expression of antigen presentation markers in WT PBS, WT GAS, and ROR γ t -/- GAS mice. Statistical comparisons were performed using one-way ANOVA (ns, p > 0.05; p < 0.05; * p < 0.01). i, j, Transendothelial electrical resistance (TEER) measurements in primary mouse BEC monolayers following cytokine treatment, shown as representative ECIS traces ( i ) and area-under-the-curve (AUC) quantification ( j ). Gray shading indicates treatment period. Data are mean ± SEM (n = 5 replicates from 3 independent experiments). Mixed-effects analysis ( p < 0.05; * p < 0.01). k, l, Relative transwell permeability of primary mouse BEC monolayers to albumin - AF594 following cytokine treatment. Untreated cells were used as reference, and LPS served as a positive control. Data are mean ± SEM (n = 3 independent experiments). Repeated-measures one-way ANOVA ( p < 0.05). m, n, TEER measurements in primary human brain microvascular endothelial cells (HBMECs), shown as representative ECIS traces ( m ) and AUC quantification ( n ). Data are mean ± SEM (n = 6 replicates from 3 independent experiments). Mixed-effects analysis (*** p < 0.0001).
Techniques Used: Cell Differentiation, Immunopeptidomics, Olfactory, Infection, Flow Cytometry, Expressing, Permeability, Positive Control
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