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Image Search Results
Journal: Oncology Letters
Article Title: Solitary fibrous tumor of the brain: A report of 3 cases
doi: 10.3892/ol.2024.14621
Figure Lengend Snippet: Clinicopathological parameters of the reported cases.
Article Snippet:
Techniques: Imaging, Immunohistochemistry, Biomarker Discovery
Journal: Oncology Letters
Article Title: Solitary fibrous tumor of the brain: A report of 3 cases
doi: 10.3892/ol.2024.14621
Figure Lengend Snippet: Microscopic images of Case 1. (A) H&E-stained image (magnification, ×10). Tumor cells were observed in sheets with interspersed dilated vessels (*). (B) H&E-stained image (magnification, ×20). The arrow highlights the amianthoid fibers. (C) H&E-stained images (magnification, ×40). The arrow highlights the mitotic figures. (D) H&E-stained image (magnification, 10×), *indicates necrosis. Immunohistochemistry (DAB stain; magnification, ×20) for (E) CD34 and (F) STAT6 was positive. H&E, hematoxylin and eosin.
Article Snippet:
Techniques: Staining, Immunohistochemistry
Journal: Oncology Letters
Article Title: Solitary fibrous tumor of the brain: A report of 3 cases
doi: 10.3892/ol.2024.14621
Figure Lengend Snippet: Microscopic images of Case 2. (A) H&E-stained image (magnification, ×10). ‘Patternless’ architecture of tumor cells with a hemangiopericytomatous vasculature (*). (B) H&E-stained image (magnification, ×40). The arrow highlights mitotic figures. Immunohistochemistry (DAB stain; magnification, ×10) for (C) CD34 was negative, while (D) STAT6 was positive in the tumor cells. H&E, hematoxylin and eosin.
Article Snippet:
Techniques: Staining, Immunohistochemistry
Journal: Oncology Letters
Article Title: Solitary fibrous tumor of the brain: A report of 3 cases
doi: 10.3892/ol.2024.14621
Figure Lengend Snippet: Microscopic images of subpleural metastatic nodule in Case 3. (A) H&E-stained image (magnification, ×10). Low-power magnification of fibromuscular tissue infiltrated by tumor cells. (B) H&E-stained image (magnification, ×20). *marks the area with stromal hyalinization. Immunohistochemistry (DAB stain; magnification, ×20) for (C) CD34 shows heterogenous positivity, while (D) STAT6 shows diffuse positive expression. H&E, hematoxylin and eosin.
Article Snippet:
Techniques: Staining, Immunohistochemistry, Expressing
Journal: American Journal of Physiology - Renal Physiology
Article Title: Highly tamoxifen-inducible principal cell-specific Cre mice with complete fidelity in cell specificity and no leakiness
doi: 10.1152/ajprenal.00436.2017
Figure Lengend Snippet: Primer list
Article Snippet: Two mouse antibodies specific for carbonic anhydrase II (CAII, sc-48351) and V-ATPase B1 B2 (sc-55544), one rabbit Aqp2 antibody (sc-28629), and two
Techniques: Sequencing
Journal: American Journal of Physiology - Renal Physiology
Article Title: Highly tamoxifen-inducible principal cell-specific Cre mice with complete fidelity in cell specificity and no leakiness
doi: 10.1152/ajprenal.00436.2017
Figure Lengend Snippet: Analyses of Aqp2 expression. Total RNAs and proteins were isolated from kidneys of uninduced Aqp2+/+ and Aqp2ECE/+ kidneys with free water access (n = 3 mice/genotype, A–C) and under water deprivation for 24 h (n = 4 mice/genotype, D–F). Each RNA sample was analyzed by real-time RT-qPCR in triplicates, using GAPDH as internal control. For Western blotting analyses, rabbit Aqp2 (sc-28629) was used. The 35- to 50-kDa band corresponding to glycosylated Aqp2 was quantified, normalized to β-actin, and presented in C and F, respectively. In all case, relative Aqp2 mRNA and protein levels in WT were set to 1. *P < 0.05 vs. WT.
Article Snippet: Two mouse antibodies specific for carbonic anhydrase II (CAII, sc-48351) and V-ATPase B1 B2 (sc-55544), one rabbit Aqp2 antibody (sc-28629), and two
Techniques: Expressing, Isolation, Quantitative RT-PCR, Control, Western Blot
Journal: American Journal of Physiology - Renal Physiology
Article Title: Highly tamoxifen-inducible principal cell-specific Cre mice with complete fidelity in cell specificity and no leakiness
doi: 10.1152/ajprenal.00436.2017
Figure Lengend Snippet: Aqp2ECE possesses absolute no leaky activity. A–C: immunofluorescence staining for Aqp2 (green) and red fluorescent protein (RFP; red) showing no RFP expression in whole kidney of an oil-injected adult ECE/+RFP/RFP mouse. Cells indicated by arrowheads were magnified in the insets. Scale bar, 50 μm, 8.3 μm for inset.
Article Snippet: Two mouse antibodies specific for carbonic anhydrase II (CAII, sc-48351) and V-ATPase B1 B2 (sc-55544), one rabbit Aqp2 antibody (sc-28629), and two
Techniques: Activity Assay, Immunofluorescence, Staining, Expressing, Injection
Journal: American Journal of Physiology - Renal Physiology
Article Title: Highly tamoxifen-inducible principal cell-specific Cre mice with complete fidelity in cell specificity and no leakiness
doi: 10.1152/ajprenal.00436.2017
Figure Lengend Snippet: There is no indication of extrarenal Aqp2 expression and ECE-mediated recombination. A–I: immunofluorescence staining for Aqp2 (green) and RFP (red) showing lack of their expression in all organs except kidney, as indicated in adult ECE/+RFP/RFP mice treated with a single dose of tamoxifen (2 mg) for 24 h. Cells indicated by arrowheads are magnified in the insets. DAPI staining (blue) for nuclei was added. Scale bar, 50 μm, 8.3 μm for inset for each panel.
Article Snippet: Two mouse antibodies specific for carbonic anhydrase II (CAII, sc-48351) and V-ATPase B1 B2 (sc-55544), one rabbit Aqp2 antibody (sc-28629), and two
Techniques: Expressing, Immunofluorescence, Staining
Journal: American Journal of Physiology - Renal Physiology
Article Title: Highly tamoxifen-inducible principal cell-specific Cre mice with complete fidelity in cell specificity and no leakiness
doi: 10.1152/ajprenal.00436.2017
Figure Lengend Snippet: Aqp2ECE has complete fidelity in recapitulating the cell-specific expression pattern of Aqp2. A–C: immunofluorescence staining for Aqp2 (green) and RFP (red) showing all RFP+ cells were also Aqp2+ in whole kidney of adult ECE/+RFP/RFP mice treated with a single dose of tamoxifen (2 mg) for 24 h. Cells indicated by arrowheads are magnified in the insets. Scale bar, 50 μm, 8.3 μm for inset.
Article Snippet: Two mouse antibodies specific for carbonic anhydrase II (CAII, sc-48351) and V-ATPase B1 B2 (sc-55544), one rabbit Aqp2 antibody (sc-28629), and two
Techniques: Expressing, Immunofluorescence, Staining
Journal: American Journal of Physiology - Renal Physiology
Article Title: Highly tamoxifen-inducible principal cell-specific Cre mice with complete fidelity in cell specificity and no leakiness
doi: 10.1152/ajprenal.00436.2017
Figure Lengend Snippet: Aqp2ECE is inactive in intercalated cells marked by V-ATPase subunits B1 and B2 (B1B2). A–C: immunofluorescence staining for Aqp2 (blue) and B1B2 (green) to mark intercalated cells and RFP (red) showing no RFP coexpression with B1B2 in whole kidney of adult ECE/+RFP/RFP mice treated with a single dose of tamoxifen (2 mg) for 24 h. Cells indicated by arrowheads are magnified in the insets. Scale bar, 50 μm, 8.3 μm for inset.
Article Snippet: Two mouse antibodies specific for carbonic anhydrase II (CAII, sc-48351) and V-ATPase B1 B2 (sc-55544), one rabbit Aqp2 antibody (sc-28629), and two
Techniques: Immunofluorescence, Staining
Journal: American Journal of Physiology - Renal Physiology
Article Title: Highly tamoxifen-inducible principal cell-specific Cre mice with complete fidelity in cell specificity and no leakiness
doi: 10.1152/ajprenal.00436.2017
Figure Lengend Snippet: Aqp2ECE is inactive in intercalated cells marked by carbonic anhydrase II (CAII). A–C: immunofluorescence staining for Aqp2 (blue) and CAII (green) to mark intercalated cells and RFP (red) showing no RFP coexpression with CAII in whole kidney of adult ECE/+RFP/RFP mice treated with a single dose of tamoxifen (2 mg) for 24 h. Cells indicated by arrowheads are magnified in the insets. Scale bar, 50 μm, 8.3 μm for inset.
Article Snippet: Two mouse antibodies specific for carbonic anhydrase II (CAII, sc-48351) and V-ATPase B1 B2 (sc-55544), one rabbit Aqp2 antibody (sc-28629), and two
Techniques: Immunofluorescence, Staining
Journal: Frontiers in Pharmacology
Article Title: Berberine suppresses hepatocellular carcinoma progression by blocking IL-4-JAK1-STAT6-mediated M2 polarization of macrophage
doi: 10.3389/fphar.2025.1734201
Figure Lengend Snippet: Berberine inhibits the activation of the JAK-STAT6 signal pathway induced by H22 conditional medium. (A–F) Relative transcription levels of M2-type signature genes in BMDM, including Arg 1 (A) , Retnla (B) , Il10 (C) , Mrc1 (D) , Tgfb1 (E) , and Chil3 (F) . BMDM were treated with H22 conditional medium for 4 h. (G) Immunoblot analysis of Arg-1 and Retnla protein expression in BMDMs. (H,I) Quantitative analysis of (H) Arg-1 and (I) Retnla protein levels normalized to β-actin. (J) Immunoblot detection of p-STAT6 protein expression in BMDM. (K) Quantitative statistics of p-STAT6/STAT6 are shown. (L) Immunoblot detection of p-JAK1 protein expression in BMDM. (M) Quantitative statistics of p-JAK1/JAK1 are shown. Data (mean ± SEM) are representative of three independent experiments. *P < 0.05; **P < 0.01; ***P < 0.001 .
Article Snippet: Primary antibodies were incubated overnight at 4 °C, including:
Techniques: Activation Assay, Western Blot, Expressing
Journal: Frontiers in Pharmacology
Article Title: Berberine suppresses hepatocellular carcinoma progression by blocking IL-4-JAK1-STAT6-mediated M2 polarization of macrophage
doi: 10.3389/fphar.2025.1734201
Figure Lengend Snippet: Berberine inhibits the activation of the JAK-STAT6 signal pathway induced by IL-4. (A–F) Relative transcription levels of M2-type signature genes in BMDMs stimulated by IL-4 (20 ng/mL) for 4 h. Significant changes were observed in Arg1 (A) , Retnla (B), Il10 (C) , Mrc1 (D) , Tgfb1 (E) , and Chil3 (F) . (G,H) Western blotting analysis of p-STAT6 protein expression in BMDMs. Representative immunoblots (G) and quantitative analysis of p-STAT6/STAT6 (H) are shown. (I,J) Content analysis of p-JAK1 protein expression in BMDMs. Representative immunoblots (I) and quantitative analysis of p-JAK1/JAK1 (J) are shown. (K) Co-immunoprecipitation analysis of JAK1-STAT6 interaction in BMDMs under IL-4 (20 ng/mL) stimulation with or without BBR (30 μM) treatment. Data (mean ± SEM) are representative of three independent experiments. *P < 0.05; **P < 0.01; ***P < 0.001 .
Article Snippet: Primary antibodies were incubated overnight at 4 °C, including:
Techniques: Activation Assay, Western Blot, Expressing, Immunoprecipitation
Journal: Frontiers in Pharmacology
Article Title: Berberine suppresses hepatocellular carcinoma progression by blocking IL-4-JAK1-STAT6-mediated M2 polarization of macrophage
doi: 10.3389/fphar.2025.1734201
Figure Lengend Snippet: Synergistic therapeutic effects of Berberine and Anti-PDL1 antibody in treating H22 tumor. (A) Schema of the mouse tumor model: Female Bal/bc mice were engrafted with H22 tumor cells (5 × 10 5 ), received intragastric (i.g.) BBR (10 mg/kg), intraperitoneal (i.p.) Anti-PD-L1 antibody (10 mg/kg), or combination treatment. Tumors were removed and analyzed on day 21. (B) Tumor volume was measured every 2 days from day 9 after tumor implantation (n = 6). (C,D) On day 21 after tumor cell implantation, the tumors in mice were removed and weighed. (n = 6). Tumor growth curves (C) and tumor weight (D) are shown. (E–L) Flow cytometry analysis for the percentages of CD45 + lymphocytes in tumor tissues (E) , Percentage of CD3 + cells within the gated CD45 + cells in melanoma tissues (F) , CD3 + CD4 + T cells (G) , CD3 + CD8 + T cells (H) , CD45 + CD11b + Ly6G − Ly6C + M-MDSC (I) , CD45 + CD11b + Ly6G − LY6C − F4/80 + TAMs (J) , CD11b + F4/80 + MHC-Ⅱ + macrophages (K) , and CD11b + F4/80 + CD206 + macrophages (L) , within CD45 + population in tumors. Data (mean ± SEM) are representative of three independent experiments. *P < 0.05; **P < 0.01; ***P < 0.001. Schematic diagram illustrating the role of BBR in inhibiting tumor progression. BBR suppresses M2 polarization of tumor-associated macrophages in the tumor microenvironment and enhances the tumor-killing capacity of cytotoxic T lymphocytes, thereby inhibiting tumor progression. Mechanistically, BBR binds to the JAK1 protein in macrophages, inhibiting IL-4-induced phosphorylation of the JAK1-STAT6 signaling axis. This inhibition reduces the secretion of alternative activation genes by macrophages and blocks their pro-tumorigenic functions.
Article Snippet: Primary antibodies were incubated overnight at 4 °C, including:
Techniques: Tumor Implantation, Flow Cytometry, Phospho-proteomics, Inhibition, Activation Assay
Journal: Frontiers in Immunology
Article Title: m6A eraser FTO modulates autophagy by targeting SQSTM1/P62 in the prevention of canagliflozin against renal fibrosis
doi: 10.3389/fimmu.2022.1094556
Figure Lengend Snippet: Cana causes STAT6 degradation through inducing autophagy. (A) HK2 cells were treated with the indicated doses of Cana for 48 h serum-free medium culture and cell viability was determined using MTT assay. (n = 4, * p < 0.05, Cana 0 μM vs. other doses of Cana). (B) HK2 cells were treated with Cana (0–20 μM) for 24 h, and then cell lysates were harvested and subjected to immunoblot analyses with the indicated antibodies. (C) To test its protein stability, the half-life of STAT6 was determined. HK2 cells were left untreated or treated with Cana (20 μM) for 24 h, and CHX (50 μM) was added at different time points. The intensity of STAT6 and GAPDH bands was quantified and plotted against the time after CHX addition. (D) HK2 cells were treated with Cana (0–20 μM) for 24 h and subjected to immunofluorescence staining of LC3. (E) HK2 cells were transfected with a tandem mRFP-GFP-LC3 construct for 24 h and then either left untreated or separately treated with rapamycin (1 μM), BafA1 (100 nM), or Cana (40 μM) for 24 h. Representative micrographs of the indicated cells are shown. (F) The mRNA levels of STAT6, Arg-1, PPARα, and CPT-1α in HK2 cells treated with Cana (0–20 μM) for 24 h were measured by qPCR. (* p < 0.05, Cana 0 μM vs . other doses of Cana). (G–I) HK2 cells were transfected with vector or plasmid of STAT6 overexpression. Followed by 24 h serum-free medium culture, cells were treated with TGF-β1 (5 ng/ml) for another 24 h and cotreated with or without Cana (20 μM). (G) Immunoblot analysis was conducted with the indicated antibodies. (H) Immunoblot analyses were employed to confirm the efficiency of overexpressing STAT6. Representative microphages showed the Oil Red O staining in HK2 cells with the indicated treatments. (I) TG content was determined enzymatically. (n = 4, * p < 0.05, TGF-β1 vs. TGF-β1 with other treatments).
Article Snippet: The following antibodies were used: STAT6 (sc-374021),
Techniques: MTT Assay, Western Blot, Immunofluorescence, Staining, Transfection, Construct, Plasmid Preparation, Over Expression
Journal: Frontiers in Immunology
Article Title: m6A eraser FTO modulates autophagy by targeting SQSTM1/P62 in the prevention of canagliflozin against renal fibrosis
doi: 10.3389/fimmu.2022.1094556
Figure Lengend Snippet: Atg7 deficiency vanished the protection of Cana in tubulointerstitial fibrosis. (A) HK2 cells were treated with Cana (0–20 μM) for 24 h. The protein expression of STAT6 and p-STAT6 in nucleus and cytoplasm was separated and determined by immunoblot analyses. (B) HK2 cells were pretreated with MG132 (10 μM) or BafA1 (100 nM) for 4 h and cotreated with or without Cana after being cultured with serum-free medium for 24 h. The cell lysates were subjected to immunoblot analyses with the indicated antibodies. (C–E) WT and Atg7 cKO mice received intragastric administration of saline or Cana (20 mg/kg) after UUO operation. (C) Representative images of H&E, Sirius Red, and IHC staining of kidney sections from the indicated group of mice. Quantification of the relative collagen proportional area from each group of mice was performed. (D) TG content in kidney tissue was measured by a commercial kit. (E) Immunoblot analyses for the protein levels of p-STAT6, STAT6, Arg-1, FN, α-SMA, PPARα, CPT-1α, and GAPDH in kidney from the indicated group with quantification on the right panel (n = 8, * p < 0.05, UUO vs . UUO + Cana).
Article Snippet: The following antibodies were used: STAT6 (sc-374021),
Techniques: Expressing, Western Blot, Cell Culture, Saline, Immunohistochemistry
Journal: Frontiers in Immunology
Article Title: m6A eraser FTO modulates autophagy by targeting SQSTM1/P62 in the prevention of canagliflozin against renal fibrosis
doi: 10.3389/fimmu.2022.1094556
Figure Lengend Snippet: FTO was downregulated by Cana to enhance the stability of SQSTM1 mRNA through installing m6A modification of its mRNA. m6A levels of HK2 cells treated with or without Cana (20 μM) were detected by using the EpiQuik™ m6A RNA methylation quantification kit (A) and RNA dot blot analyses (B) . Methylation blue (MB) staining served as a loading control. (C) RNA dot blot analyses of m6A levels in mice from the indicated group. (D) HK2 cells treated with or without Cana (20 μM) were harvested and subjected to qPCR to determined STAT6, Arg-1, SQSTM1, FTO, ALKBH5, METTL14, METTL3, and WTAP mRNA levels. (n = 4, * p < 0.05, Ctrl vs. Cana). (E) HK2 cells treated with Cana (0–20 μM) for 24 h were subjected to detected the protein levels of FTO by immunoblot analyses. (F) Mice received intragastric administration of saline or Cana (20 mg/kg) after UUO treatment. The expression of FTO was determined through IHC staining. (G) HK2 cells were pretreated with MG132 (10 μM) or BafA1 (100 nM) for 4 h and cultured with serum-free medium for 24 h. Then, the cells were left and treated with or without Cana (20 μM) for another 24 h. Immunoblot analyses was performed to detect the protein level of FTO. (H–J, L) HK2 cells were transfected with or without plasmid of FTO overexpression 48 h. Then, cells were treated with or without Cana (20 μM) for another 24 h. (H) The levels of LC3 in HK2 cells from the indicated group were detected through immunofluorescence staining. (I) Immunoblot analysis was performed to determine the protein levels of STAT6, FTO, SQSTM1, LC3I/II, and GAPDH. (J) qPCR analyses of SQSTM1 mRNA stability in HK2 cells from the indicated group (* p < 0.05). (K) RNA immunoprecipitation (RIP)-qPCR analyses revealed the SQSTM1 mRNA level enriched by the FTO antibody. The agarose gel electrophoresis analyses of qPCR products are shown on the panel (* p < 0.05). (L) MeRIP-qPCR assay indicated the m6A modification level of HK2 cells from the indicated group (* p < 0.05). (M) HK2 cells transfected with or without SQSTM1 siRNA for 24 h and then treated with Cana (20 μM) along with TGF-β1 (5 ng/ml) for another 48 h. The efficiency of knockdown SQSTM1 in HK2 cells was confirmed by immunoblot analyses. Representative microphages showed the Oil Red O staining in HK2 cells with indicated treatments.
Article Snippet: The following antibodies were used: STAT6 (sc-374021),
Techniques: Modification, Methylation, Dot Blot, Staining, Control, Western Blot, Saline, Expressing, Immunohistochemistry, Cell Culture, Transfection, Plasmid Preparation, Over Expression, Immunofluorescence, RNA Immunoprecipitation, Agarose Gel Electrophoresis, Knockdown
Journal: Frontiers in Immunology
Article Title: m6A eraser FTO modulates autophagy by targeting SQSTM1/P62 in the prevention of canagliflozin against renal fibrosis
doi: 10.3389/fimmu.2022.1094556
Figure Lengend Snippet: Proposed model for the therapeutic action of Cana against renal fibrosis. Cana attenuates renal tubular cells’ FAO disorder and renal fibrosis by SQSTM1/autophagy-mediated STAT6 degradation in an m6A-dependent manner.
Article Snippet: The following antibodies were used: STAT6 (sc-374021),
Techniques: