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Jan 2, 2023 -
C5aR antagonist inhibits LPS-induced inflammation in human gingival fibroblasts via NF-κB and MAPK signaling pathways
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MD5: cac855a33823ba41a8249455503be1e1
Figure S1. Effects of LPS and C5aRA on the activity of HGFs using the CCK8 assay. (A) HGFs were treated with LPS at concentrations of 0.1, 1, and 5 μg/mL for 24, 48, and 72 h, respectively. (B) HGFs were treated with C5aRA at concentrations of 0.1, 1, and 5 μg/mL for 24, 48, and... |
Jan 2, 2023 -
C5aR antagonist inhibits LPS-induced inflammation in human gingival fibroblasts via NF-κB and MAPK signaling pathways
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MD5: 3d3960b130038f3421d122e3949ed393
Figure S2. Effects of different concentrations of LPS on the expression of C5aR, IL-1β, IL-6, and TNF-α mRNA, determined using RT-PCR analysis. (A) C5aR; (B) IL-6; (C) IL-1β; and (D) TNF-α mRNA expression. Data represent the mean ± SEM of three independent experiments. * P < 0.05... |
Jan 2, 2023 -
C5aR antagonist inhibits LPS-induced inflammation in human gingival fibroblasts via NF-κB and MAPK signaling pathways
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MD5: 2663c792229305b8584174eccbf93ebe
Figure S3. Effects of different concentrations of C5aRA on the expression of C5aR, IL-1β, IL-6, and TNF-α mRNA, determined using RT-PCR analysis. (A) C5aR; (B) IL-6; (C) IL-1β; and (D) TNF-α mRNA expression. Data represent the mean ± SEM of three independent experiments. * P < 0.... |
Jan 2, 2023 -
C5aR antagonist inhibits LPS-induced inflammation in human gingival fibroblasts via NF-κB and MAPK signaling pathways
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MD5: 7c6fd5205e5631af918798512bb58073
Schematic diagram of mechanism for anti-inflammatory action of C5aR antagonists (W54011). Complement and Toll-like receptors 4 (TLR4) are co-activated in response to lipopolysaccharide (LPS). During the activation of the complement cascade, C5 may be cleaved into its active produ... |
Jan 2, 2023 -
C5aR antagonist inhibits LPS-induced inflammation in human gingival fibroblasts via NF-κB and MAPK signaling pathways
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MD5: 24501ebd59c9ae1e9855c1c58c36b01c
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Dec 20, 2022
Jacinto-Alemán, Luis Fernando; Portilla-Robertson, Javier; Leyva-Huerta, Elba Rosa; Ramírez-Jarquín, Josué Orlando; Villanueva-Sánchez, Francisco Germán, 2022, "Microarray and bioinformatic analysis of conventional ameloblastoma", https://doi.org/10.48331/scielodata.Z2S8X9, SciELO Data, V1
Ameloblastoma is a highly aggressive odontogenic tumor, and its pathogenesis is associated with multiple participating genes. Objective: Our aim was to identify and validate new critical genes of conventional ameloblastoma using microarray and bioinformatics analysis. Methods: Ge... |
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MD5: 200658a7622e53b2924a83205969b843
Figure 1 - PPI of the differentially expressed genes constructed using STRING online database and Cytoscape software analysis. a) A total of 31 differentially expressed genes were identified in the network. b) Module analysis via Cytoscape software (degree cutoff = 2, node score... |
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MD5: 1918b7583e1b0d003a39d6ba2dc91cb6
Figure 2 - A) Prognostic information of the 20 core genes. Kaplan-Meier plotter online tool was used to analyze the prognostic information and nine genes were found to be significantly associated with survival rate (* p < 0.05). B) Validation of the significant genes by GEPIA. T... |
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MD5: 2379e33a0dffc1d440fd728b1a1ba33b
Figure_3 - Selection of candidate genes |
MS Excel Spreadsheet - 9.7 KB -
MD5: 83fa7284f58269f4d52dd7afa0167068
Figure 3 - Selection of candidate genes |