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Image Search Results
Journal: Emerging Infectious Diseases
Article Title: Domestic Pig Unlikely Reservoir for MERS-CoV
doi: 10.3201/eid2306.170096
Figure Lengend Snippet: Comparison of the amino acid residues shown to be essential in binding of Middle East respiratory syndrome coronavirus spike protein to DPP4 of human, dromedary camel, and domestic pig*
Article Snippet: We investigated whether DPP4 is expressed in the pig respiratory tract by performing immunohistochemical staining on the nasal mucosa and lung tissue obtained from healthy pigs using an
Techniques: Comparison, Binding Assay
Journal: Emerging Infectious Diseases
Article Title: Domestic Pig Unlikely Reservoir for MERS-CoV
doi: 10.3201/eid2306.170096
Figure Lengend Snippet: Dipeptidyl peptidase (DPP) 4 expression in the domestic pig respiratory tract. Tissues were stained by using a cross-reactive mouse monoclonal antibody against DPP4 (CD26, clone OTI11D7, 1:2,500; Origene Technologies, Inc., Rockville, MD, USA). DPP4 expression was absent in the nasal mucosa (A) but present in lung tissue (B) of healthy domestic pigs. Original magnification: nasal mucosa ×40; lung ×200.
Article Snippet: We investigated whether DPP4 is expressed in the pig respiratory tract by performing immunohistochemical staining on the nasal mucosa and lung tissue obtained from healthy pigs using an
Techniques: Expressing, Staining
Journal: Hypertension
Article Title: Dipeptidyl Peptidase IV Regulates Proliferation of Preglomerular Vascular Smooth Muscle and Mesangial Cells
doi: 10.1161/hypertensionaha.112.196501
Figure Lengend Snippet: Figure 1. A, Dipeptidyl peptidase IV (DPPIV) mRNA levels in spontaneously hypertensive rat (SHR) and Wistar-Kyoto rat (WKY) preglomerular microvascular smooth muscle cells (PGVSMCs) and glomerular mesangial cells (GMCs). DPPIV mRNA expression was determined by quantitative real-time PCR and normalized to -actin mRNA. B, Western blotting for DPPIV protein using 2 different antibodies (Ab 1 and 2). A dis- tinct and single band was observed at 55 kDa for both WKY and SHR PGVSMCs and GMCs. C, DPPIV protein expression in SHR and WKY PGVSMCs and GMCs. DPPIV protein expression was quantified by densitometry analysis of Western blots and normalized to -actin protein. Letter above bars (a) indicates significantly different (Fisher least significant difference [LSD] test) from PGVSMCs.
Article Snippet: To ensure that the signal detected by Western blotting was indeed DPPIV, we performed Western blotting for DPPIV protein as described in Jackson et al.3 using two different primary antibodies: 1)
Techniques: Expressing, Real-time Polymerase Chain Reaction, Western Blot
Figure 1 (A and B) Top DEGs (A) and DEPs (B) for cell types from Journal: Cell
Article Title: Spatial proteogenomics reveals distinct and evolutionarily conserved hepatic macrophage niches
doi: 10.1016/j.cell.2021.12.018
Figure Lengend Snippet: Combination of CITE-seq, scRNA-seq, snRNA-seq, and spatial analyses enables identification of all hepatic cell types including bona fide cell doublets, related to
Article Snippet:
Techniques: Isolation, Ex Vivo, In Vivo, Expressing, Staining, Generated, Confocal Microscopy
Journal: Cell
Article Title: Spatial proteogenomics reveals distinct and evolutionarily conserved hepatic macrophage niches
doi: 10.1016/j.cell.2021.12.018
Figure Lengend Snippet:
Article Snippet:
Techniques: Purification, Recombinant, Staining, cDNA Synthesis, Gene Expression, Software, Microscopy
Journal: Oncology reports
Article Title: Upregulated expression and activation of membrane‑associated proteases in esophageal squamous cell carcinoma.
doi: 10.3892/or.2014.3162
Figure Lengend Snippet: Figure 1. Expression of FAP-α and DPPIV in paired tumor and normal esophageal tissues. (Upper panels) Four representative examples of FAP-α (544-bp amplification product) and DPPIV (473-bp amplification product) mRNA expression as determined using RT-PCR in cancer (ESCC) and non‑cancer (ENCC) samples. The expression of the actin transcripts (479 bp) is shown as a positive control. I-IV, patient codes. (Bottom panels) Semi‑quantitative analysis of the FAP-α and DPPIV PCR products of the control and neoplastic samples. The values are normalized to β-actin. The results are presented as the ratio of cancer to normal tissue. The bar chart shows mean values and standard error (left). The scatter chart with separate measurements shows the range of calculated values (right). Statistically significant differences between the levels of amplification of both FAP-α and DPPIV cDNA in the cancer and non-cancer tissues were found. ENCC, esophageal non-cancer tissues from areas distant to the tumor. ESCC, esophageal squamous cell carcinoma tissues in the form of paired specimens of malignant tumors. FAP-α, fibroblast activation protein-α; DPPIV, dipeptidyl peptidase IV.
Article Snippet: The antibodies used were:
Techniques: Expressing, Amplification, Reverse Transcription Polymerase Chain Reaction, Positive Control, Control, Activation Assay
Journal: Oncology reports
Article Title: Upregulated expression and activation of membrane‑associated proteases in esophageal squamous cell carcinoma.
doi: 10.3892/or.2014.3162
Figure Lengend Snippet: Figure 2. FAP-α and DPPIV protein levels in tumor and normal esophageal tissues. (Upper panels) Examples of FAP-α western blot immunostaining of four paired non-cancer (ENCC) and cancer (ESCC) samples. The bands indicate a 97-kDa full-length monomeric form in three cancer tissues and a 55-kDa proteolytic fragment in all of the non-cancer and cancer samples. Immunodetection of β-actin, a 43-kDa protein, was used for normalization. I-IV, patient codes. (Bottom panels) Semi-quantitative analysis of DPPIV in the control and neoplastic samples. Post-normalization data are presented as the ratio of cancer to normal tissue. The bar chart shows the mean values and standard error (left). The scatter chart with separate measurements shows the range of calculated values (right). Statistically significant differences were found between the level of DPPIV protein in the cancerous and non-cancerous tissues. FAP-α, fibroblast activation protein-α; DPPIV, dipeptidyl peptidase IV; ESCC, esophageal squamous cell carcinoma.
Article Snippet: The antibodies used were:
Techniques: Western Blot, Immunostaining, Immunodetection, Control, Activation Assay
Journal: The American Journal of Pathology
Article Title: Clinicopathologic, Immunohistochemical, and Ultrastructural Findings of a Fatal Case of Middle East Respiratory Syndrome Coronavirus Infection in the United Arab Emirates, April 2014
doi: 10.1016/j.ajpath.2015.10.024
Figure Lengend Snippet: Primary Antibodies Used for IHC
Article Snippet: 1547 ,
Techniques:
Journal: The American Journal of Pathology
Article Title: Clinicopathologic, Immunohistochemical, and Ultrastructural Findings of a Fatal Case of Middle East Respiratory Syndrome Coronavirus Infection in the United Arab Emirates, April 2014
doi: 10.1016/j.ajpath.2015.10.024
Figure Lengend Snippet: Immunohistochemical and ultrastructural localization of MERS-CoV and associated histologic findings. A: MERS-CoV and cytokeratin antigens in pneumocytes ( arrow ); red stain, MERS-CoV; brown stain, cytokeratin. B: MERS-CoV antigens in pneumocytes ( arrowhead ) and CD68 antigens in macrophages ( arrow ); red stain, CD68; brown stain, MERS-CoV. C: MERS-CoV and surfactant antigens in type 2 pneumocytes ( arrow ); red stain, surfactant; brown stain, MERS-CoV. D: MERS-CoV and DPP4 in pneumocytes ( arrow ); red stain, DPP4; brown stain, MERS-CoV. E: Fragmented pneumocyte infected with MERS-CoV, hyaline membrane ( arrowhead ) present. F: Magnified from the boxed area in E . MERS-CoV virions dispersed as single particles ( arrow ) or in clusters within membrane-bound vesicles ( arrowhead ). Spherical and pleomorphic particles ranged in size from 50 to 150 nm diameter. Scale bars: 2 μm ( E ); 500 nm ( F ). Original magnification: ×100 ( A and C ); ×63 ( B ); ×75 ( D ). DPP4, dipeptidyl peptidase 4; MERS-CoV, Middle East respiratory syndrome coronavirus.
Article Snippet: 1547 ,
Techniques: Immunohistochemical staining, Staining, Infection, Membrane
Journal: Frontiers in Cell and Developmental Biology
Article Title: Adiponectin receptor T-cadherin emerges as a novel regulator of adipose stem cell quiescence and adipogenesis
doi: 10.3389/fcell.2025.1734183
Figure Lengend Snippet: Double immunofluorescent staining of human subcutaneous adipose tissue sections with antibodies against T-cadherin (green) and DPP4 (red); nuclei were counterstained with DAPI (blue). Images were acquired using a Zeiss LSM 780 confocal microscope and ZEN2010 software, shown at lower magnification (A) and higher magnification (B) . A thick arrow points to a group of cells expressing both T-cadherin and DPP4 in the interstitium; thin arrows mark cells expressing only T-cadherin; ovals encircle adipocytes. Scale bar 50 µm. (C) The table shows the percentage of T-cadherin–positive, DPP4 + cells and double-positive cells (DPP4 + /T-cadherin + ), quantified from adipose tissue sections of two healthy donors.
Article Snippet: Cells were detached from culture dishes using HyQTase Detachment Reagent (HyClone, GE Healthcare Life Sciences, United States) and stained with appropriate combinations of primary antibodies against:
Techniques: Staining, Microscopy, Software, Expressing
Journal: Frontiers in Cell and Developmental Biology
Article Title: Adiponectin receptor T-cadherin emerges as a novel regulator of adipose stem cell quiescence and adipogenesis
doi: 10.3389/fcell.2025.1734183
Figure Lengend Snippet: Light microscopy of MSCs (of the two to three passages) isolated from human subcutaneous adipose tissue of a healthy donor (A) and immunofluorescent staining with antibodies against T-cadherin (green) (B) . Arrows indicate cells with low or no T-cadherin expression, whereas cells exhibiting green fluorescence corresponding to T-cadherin are clearly visible. Scale bar, 50 µm. Light microscopy of human MSCs (C) and double immunofluorescent staining with antibodies against T-cadherin green, (E) and DPP4 red, (F) nuclei were counterstained with DAPI blue, (D) . Arrows in (C–F) indicate one and the same cell co-expressing T-cadherin and DPP4. Images were acquired using a Leica DMI 6000B microscope equipped with a Leica DFC7000T digital camera and LAS X software. Scale bar, 20 µm. (G) Representative flow cytometry plot showing T-cadherin and DPP4 distribution in cultured MSCs. The proportion of double-positive (DPP4 + /T-cadherin + ) cells was 30.4%; 6.15% expressed only T-cadherin, and 14% expressed only DPP4.
Article Snippet: Cells were detached from culture dishes using HyQTase Detachment Reagent (HyClone, GE Healthcare Life Sciences, United States) and stained with appropriate combinations of primary antibodies against:
Techniques: Light Microscopy, Isolation, Staining, Expressing, Fluorescence, Microscopy, Software, Flow Cytometry, Cell Culture
Journal: Frontiers in Cell and Developmental Biology
Article Title: Adiponectin receptor T-cadherin emerges as a novel regulator of adipose stem cell quiescence and adipogenesis
doi: 10.3389/fcell.2025.1734183
Figure Lengend Snippet: Individual UMAP plots showing the expression levels and distribution of CDH13 (encoding T-cadherin) in control MSCs (A) and MSCs after 4 days of adipogenic induction (B) . UMAP plots demonstrating DPP4 expression in control MSCs (C) and MSCs after 4 days of adipogenic induction (D) . (E) RT-qPCR analysis of MSCs cultured in control medium or under adipogenic induction conditions showing the dynamics of T-cadherin mRNA expression. T-cadherin/ CDH13 expression decreased by day 4 in adipogenic medium and remained low through day 10. RT-qPCR data are shown as the mean ± SD. T-test. **р< 0.01 *p < 0.05 vs. control media in corresponding experimental day. Results are representative of three biologically independent experiments.
Article Snippet: Cells were detached from culture dishes using HyQTase Detachment Reagent (HyClone, GE Healthcare Life Sciences, United States) and stained with appropriate combinations of primary antibodies against:
Techniques: Expressing, Control, Quantitative RT-PCR, Cell Culture
Journal: Frontiers in Cell and Developmental Biology
Article Title: Adiponectin receptor T-cadherin emerges as a novel regulator of adipose stem cell quiescence and adipogenesis
doi: 10.3389/fcell.2025.1734183
Figure Lengend Snippet: Integrated object. (A) FeaturePlot–UMAP-plot showing principal distribution of CDH13 gene expression (encoding for T-cadherin) in the integrated object; CDH13 expressing cells corresponds to Cluster 3 (more than 1-fold change of the average expression level); (B) FeaturePlot–UMAP-plot showing principal distribution of DPP4 gene expression (encoding for T-cadherin) in the integrated object; DPP4 expressing cells correspond to Cluster 3 (more than 1-fold change of the average expression level) (C) DimPlot–Integrated object UMAP-clustering. Sample proportion diagrams depict the ratio between the cell counts in the control MSC sample (Salmon) and in the MSC sample (Iris blue) after a 4-day induction of adipogenic differentiation within the Clusters. (D) DimPlot–Integrated object grouped by samples. CDH13 expression in the control MSC sample (Salmon) and MSC sample (Iris blue) after a 4-day induction of adipogenic differentiation. Cluster 3 predominantly contains cells from the control sample.
Article Snippet: Cells were detached from culture dishes using HyQTase Detachment Reagent (HyClone, GE Healthcare Life Sciences, United States) and stained with appropriate combinations of primary antibodies against:
Techniques: Gene Expression, Expressing, Control
Journal: Frontiers in Cell and Developmental Biology
Article Title: Adiponectin receptor T-cadherin emerges as a novel regulator of adipose stem cell quiescence and adipogenesis
doi: 10.3389/fcell.2025.1734183
Figure Lengend Snippet: Integrated object. FeaturePlot. Each cluster is denoted by color. Cluster 0 (Salmon) primarily contains cells expressing fibroblast markers and genes responsible for cell cycle regulation. Cluster 1 (Khaki) encompasses cells expressing preadipocyte-specific genes, such as CEBPB , PPARγ, CD36 and markers of mature adipocytes ( ADIPOQ , Perilipin1 , Perilipin4 ). In Cluster 2 (green), cells predominantly express genes related to mitosis. Cluster 3 (Blue) contains cells of interest with high level of T-cadherin expression, as well as classical MSC markers ( CD90 , PDGFR ), Wnt signaling genes , and DPP4 . In a separate remote Cluster 4 (Magenta), besides CDH13 , cells express Nestin , a marker of neural crest cells, and CD36 , a marker of adipocyte progenitors.
Article Snippet: Cells were detached from culture dishes using HyQTase Detachment Reagent (HyClone, GE Healthcare Life Sciences, United States) and stained with appropriate combinations of primary antibodies against:
Techniques: Expressing, Marker
Journal: Frontiers in Cell and Developmental Biology
Article Title: Adiponectin receptor T-cadherin emerges as a novel regulator of adipose stem cell quiescence and adipogenesis
doi: 10.3389/fcell.2025.1734183
Figure Lengend Snippet: Split violin-plots showing the relative expression levels and distribution of CDH13 (A) and DPP4 (B) genes in the control MSC sample (Salmon) and MSC sample after a 4-day induction of adipogenic differentiation (Iris blue). The highest CDH13 expression was detected in Cluster 3 in MSCs of the control sample compared to MSCs after a 4-day adipogenic induction. Similarly, the highest expression of DPP4 was found in Cluster 3 in MSCs of the control sample. Split violin plots were generated using the R package Seurat and the function VlnPlot with the argument split.by = “sample”.
Article Snippet: Cells were detached from culture dishes using HyQTase Detachment Reagent (HyClone, GE Healthcare Life Sciences, United States) and stained with appropriate combinations of primary antibodies against:
Techniques: Expressing, Control, Generated
Journal: Frontiers in Cell and Developmental Biology
Article Title: Adiponectin receptor T-cadherin emerges as a novel regulator of adipose stem cell quiescence and adipogenesis
doi: 10.3389/fcell.2025.1734183
Figure Lengend Snippet: (A) DimPlot– GSE182158 object UMAP-clustering; (B) 2 cluster manual cell type annotation, the red oval marks cluster 2; (C) FeaturePlot–UMAP-plot showing principal distribution of CDH13 gene expression in the GSE182158 object; (D) FeaturePlot–UMAP-plot showing principal distribution of DPP4 gene expression (encoding for T-cadherin) in the GSE182158 object.
Article Snippet: Cells were detached from culture dishes using HyQTase Detachment Reagent (HyClone, GE Healthcare Life Sciences, United States) and stained with appropriate combinations of primary antibodies against:
Techniques: Gene Expression
Journal: Frontiers in Cell and Developmental Biology
Article Title: Adiponectin receptor T-cadherin emerges as a novel regulator of adipose stem cell quiescence and adipogenesis
doi: 10.3389/fcell.2025.1734183
Figure Lengend Snippet: Elevated DPP4 expression in MSCs after lentiviral transduction in T-cadherin-overexpressing cells was verified using RT-qPCR (A) and Western blot (B) . β-tubulin was used as the loading control for Western blot analysis. Representative results from one of two biologically independent RT-qPCR and eight Western blot experiments are shown. ANOVA with multiple comparisons, **p < 0.01.
Article Snippet: Cells were detached from culture dishes using HyQTase Detachment Reagent (HyClone, GE Healthcare Life Sciences, United States) and stained with appropriate combinations of primary antibodies against:
Techniques: Expressing, Transduction, Quantitative RT-PCR, Western Blot, Control
Journal: Biomedicines
Article Title: Is Spheroid a Relevant Model to Address Fibrogenesis in Keloid Research?
doi: 10.3390/biomedicines11092350
Figure Lengend Snippet: Figure 4. Three-Dimensional culture and TGF-β1 activation converge to downregulate CD26 and TGFβRII expression. TGFβRII (A) and DPP4 (B) mRNA synthesis were evaluated by RT-qPCR in monolayers and spheroids performed either with NDFs or KFs in the presence of TGF-β1 vs. control [n = 4 per condition]. After 7 days of treatment, spheroids thus treated were immunostained for CD26 (green) and TGFβRII (red) observation (C) and semi quantification (D,E). Nuclei were counterstained with DAPI (Blue). [n = 10 spheroid and n= 2–6 images per spheroid]. Statistical analyses were performed using two-way ANOVA * for p < 0.05; ** for p < 0.005; *** for p < 0.001; **** for p < 0.0001.
Article Snippet: Appropriate dilutions of primary antibodies targeting αSMA (A2547, Sigma Aldrich, Saint-Louis, MO, USA),
Techniques: Activation Assay, Expressing, Quantitative RT-PCR, Control