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Human Protein Atlas hpa tissue microarray data v22 16
Hpa Tissue Microarray Data V22 16, supplied by Human Protein Atlas, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/tissue+microarray/data+microarray+tissue/pm42252507-66-30-27
Average 86 stars, based on 1 article reviews
hpa tissue microarray data v22 16 - by Bioz Stars, 2026-09
86/100 stars

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Related Articles

Transcriptomics:

Article Title: A transcriptomic and proteomic map of primary human cell types
Article Snippet: .. The Human Protein Atlas (HPA) project provided a tissue-based map of the human proteome through transcriptomics and tissue microarray-based immunohistochemistry analysis [ , ]. ..

Article Title: A transcriptomic and proteomic map of primary human cell types.
Article Snippet: .. The Human Protein Atlas (HPA) project provided a tissue-based map of the human proteome through transcriptomics and tissue microarray-based immunohistochemistry analysis [ 4 , 5 ]. ..

Microarray:

Article Title: A transcriptomic and proteomic map of primary human cell types
Article Snippet: .. The Human Protein Atlas (HPA) project provided a tissue-based map of the human proteome through transcriptomics and tissue microarray-based immunohistochemistry analysis [ , ]. ..

Article Title: A Cytokine-Related Gene Signature for Pan-Cancer Prognostic Stratification and Malignant Phenotype Characterization
Article Snippet: .. To examine the protein-level expression of representative cytokine-related signature genes, immunohistochemistry (IHC) analyses were performed using publicly available tissue microarray-based staining data (Human Protein Atlas). ..

Article Title: Ferritin-nanocaged aggregation-induced emission nanoaggregates for integrated sensitive detection and treatment of gastric cancer
Article Snippet: .. In order to verify the high expression of CD71 and Claudin18.2 in gastric cancer patients at the protein level, we mined the gastric cancer tissue microarray data in the Human protein atlas database, and confirmed that CD71 and Claudin18.2 were highly expressed in the tumor region, with a significant difference compared to the paraneoplastic expression ( D). ..

Article Title: A Cytokine-Related Gene Signature for Pan-Cancer Prognostic Stratification and Malignant Phenotype Characterization.
Article Snippet: .. To examine the protein-level expression of representative cytokine-related signature genes, immunohistochemistry (IHC) analyses were performed using publicly available tissue microarray-based staining data (Human Protein Atlas). ..

Article Title: SHP2 regulates VEGFR2 Y1175/PLCγ signaling to impair tumor endothelial barrier stability
Article Snippet: .. Human tumor tissue microarray (TMA) containing formalin-fixed paraffin-embedded core biopsies of patients with different cancer forms, generated by Human Protein Atlas (HPA) consortium, , were examined, including bladder- ( n = 12), stomach- (GAC) ( n = 12), kidney (RCC) ( n = 16) and testicular cancer ( n = 12), using immunofluorescent staining. .. Two core biopsies were collected per patient and samples were sectioned to 4 μm thickness and mounted on Superfrost Plus microscope slides (Thermo Fisher Scientific).

Article Title: SHP2 regulates VEGFR2 Y1175/PLCγ signaling to impair tumor endothelial barrier stability
Article Snippet: .. Human tumor tissue microarray (TMA) , Human Protein Atlas (HPA) , Uhlén et al. . ..

Article Title: A transcriptomic and proteomic map of primary human cell types.
Article Snippet: .. The Human Protein Atlas (HPA) project provided a tissue-based map of the human proteome through transcriptomics and tissue microarray-based immunohistochemistry analysis [ 4 , 5 ]. ..

Article Title: Mapping cross-domain drivers of Alzheimer's disease risk through integrated network analysis.
Article Snippet: .. In addition, we annotated each node for evidence of expression in the brain using any three different sources.Weexamined evidence of expression in normal brain tissues using the Human Protein Atlas (HPA) tissue microarray data v22.16 We assembled the list of proteins for which there was evidence (Reliability either “Enhanced”, “Supported”, or “Approved”) for any level of expression (Level either “Low”, “Medium”, “High”, “Ascending”, or “Descending”) for any of the nine brain tissues included in the normal tissue IHC data (i.e., “caudate”, “cerebellum”, “cerebral cortex”, “hippocampus”, “hypothalamus”, “pituitary gland”, “dorsal raphe”, “choroid plexus”, or “substantia nigra”). ..

Immunohistochemistry:

Article Title: A transcriptomic and proteomic map of primary human cell types
Article Snippet: .. The Human Protein Atlas (HPA) project provided a tissue-based map of the human proteome through transcriptomics and tissue microarray-based immunohistochemistry analysis [ , ]. ..

Article Title: A Cytokine-Related Gene Signature for Pan-Cancer Prognostic Stratification and Malignant Phenotype Characterization
Article Snippet: .. To examine the protein-level expression of representative cytokine-related signature genes, immunohistochemistry (IHC) analyses were performed using publicly available tissue microarray-based staining data (Human Protein Atlas). ..

Article Title: A Cytokine-Related Gene Signature for Pan-Cancer Prognostic Stratification and Malignant Phenotype Characterization.
Article Snippet: .. To examine the protein-level expression of representative cytokine-related signature genes, immunohistochemistry (IHC) analyses were performed using publicly available tissue microarray-based staining data (Human Protein Atlas). ..

Article Title: A transcriptomic and proteomic map of primary human cell types.
Article Snippet: .. The Human Protein Atlas (HPA) project provided a tissue-based map of the human proteome through transcriptomics and tissue microarray-based immunohistochemistry analysis [ 4 , 5 ]. ..

Article Title: Mapping cross-domain drivers of Alzheimer's disease risk through integrated network analysis.
Article Snippet: .. In addition, we annotated each node for evidence of expression in the brain using any three different sources.Weexamined evidence of expression in normal brain tissues using the Human Protein Atlas (HPA) tissue microarray data v22.16 We assembled the list of proteins for which there was evidence (Reliability either “Enhanced”, “Supported”, or “Approved”) for any level of expression (Level either “Low”, “Medium”, “High”, “Ascending”, or “Descending”) for any of the nine brain tissues included in the normal tissue IHC data (i.e., “caudate”, “cerebellum”, “cerebral cortex”, “hippocampus”, “hypothalamus”, “pituitary gland”, “dorsal raphe”, “choroid plexus”, or “substantia nigra”). ..

Expressing:

Article Title: A Cytokine-Related Gene Signature for Pan-Cancer Prognostic Stratification and Malignant Phenotype Characterization
Article Snippet: .. To examine the protein-level expression of representative cytokine-related signature genes, immunohistochemistry (IHC) analyses were performed using publicly available tissue microarray-based staining data (Human Protein Atlas). ..

Article Title: Ferritin-nanocaged aggregation-induced emission nanoaggregates for integrated sensitive detection and treatment of gastric cancer
Article Snippet: .. In order to verify the high expression of CD71 and Claudin18.2 in gastric cancer patients at the protein level, we mined the gastric cancer tissue microarray data in the Human protein atlas database, and confirmed that CD71 and Claudin18.2 were highly expressed in the tumor region, with a significant difference compared to the paraneoplastic expression ( D). ..

Article Title: A Cytokine-Related Gene Signature for Pan-Cancer Prognostic Stratification and Malignant Phenotype Characterization.
Article Snippet: .. To examine the protein-level expression of representative cytokine-related signature genes, immunohistochemistry (IHC) analyses were performed using publicly available tissue microarray-based staining data (Human Protein Atlas). ..

Article Title: Mapping cross-domain drivers of Alzheimer's disease risk through integrated network analysis.
Article Snippet: .. In addition, we annotated each node for evidence of expression in the brain using any three different sources.Weexamined evidence of expression in normal brain tissues using the Human Protein Atlas (HPA) tissue microarray data v22.16 We assembled the list of proteins for which there was evidence (Reliability either “Enhanced”, “Supported”, or “Approved”) for any level of expression (Level either “Low”, “Medium”, “High”, “Ascending”, or “Descending”) for any of the nine brain tissues included in the normal tissue IHC data (i.e., “caudate”, “cerebellum”, “cerebral cortex”, “hippocampus”, “hypothalamus”, “pituitary gland”, “dorsal raphe”, “choroid plexus”, or “substantia nigra”). ..

Staining:

Article Title: A Cytokine-Related Gene Signature for Pan-Cancer Prognostic Stratification and Malignant Phenotype Characterization
Article Snippet: .. To examine the protein-level expression of representative cytokine-related signature genes, immunohistochemistry (IHC) analyses were performed using publicly available tissue microarray-based staining data (Human Protein Atlas). ..

Article Title: A Cytokine-Related Gene Signature for Pan-Cancer Prognostic Stratification and Malignant Phenotype Characterization.
Article Snippet: .. To examine the protein-level expression of representative cytokine-related signature genes, immunohistochemistry (IHC) analyses were performed using publicly available tissue microarray-based staining data (Human Protein Atlas). ..

Article Title: SHP2 regulates VEGFR2 Y1175/PLCγ signaling to impair tumor endothelial barrier stability
Article Snippet: .. Human tumor tissue microarray (TMA) containing formalin-fixed paraffin-embedded core biopsies of patients with different cancer forms, generated by Human Protein Atlas (HPA) consortium, , were examined, including bladder- ( n = 12), stomach- (GAC) ( n = 12), kidney (RCC) ( n = 16) and testicular cancer ( n = 12), using immunofluorescent staining. .. Two core biopsies were collected per patient and samples were sectioned to 4 μm thickness and mounted on Superfrost Plus microscope slides (Thermo Fisher Scientific).

Formalin-fixed Paraffin-Embedded:

Article Title: SHP2 regulates VEGFR2 Y1175/PLCγ signaling to impair tumor endothelial barrier stability
Article Snippet: .. Human tumor tissue microarray (TMA) containing formalin-fixed paraffin-embedded core biopsies of patients with different cancer forms, generated by Human Protein Atlas (HPA) consortium, , were examined, including bladder- ( n = 12), stomach- (GAC) ( n = 12), kidney (RCC) ( n = 16) and testicular cancer ( n = 12), using immunofluorescent staining. .. Two core biopsies were collected per patient and samples were sectioned to 4 μm thickness and mounted on Superfrost Plus microscope slides (Thermo Fisher Scientific).

Generated:

Article Title: SHP2 regulates VEGFR2 Y1175/PLCγ signaling to impair tumor endothelial barrier stability
Article Snippet: .. Human tumor tissue microarray (TMA) containing formalin-fixed paraffin-embedded core biopsies of patients with different cancer forms, generated by Human Protein Atlas (HPA) consortium, , were examined, including bladder- ( n = 12), stomach- (GAC) ( n = 12), kidney (RCC) ( n = 16) and testicular cancer ( n = 12), using immunofluorescent staining. .. Two core biopsies were collected per patient and samples were sectioned to 4 μm thickness and mounted on Superfrost Plus microscope slides (Thermo Fisher Scientific).



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Image Search Results


Overexpression of DNPH1 in human breast tumors (A) DNPH1 mRNA expression in various breast cancer subtypes was analyzed in published microarray data. Mean with standard deviation and statistical significance compared to normal breast tissue are indicated; ∗∗∗∗, p < 0.0001 (one-way ANOVA, Tukey’s multiple comparisons test). (B) High (top quartile) DNPH1 mRNA levels predict reduced survival. Data derived from published microarray experiments ; p < 0.0001 (log rank test). (C) DNPH1 protein expression in human breast cell lines assayed by Western blotting. (D) Examples of immunohistochemical staining with DNPH1 antibodies on matching normal and cancerous breast tissue. Scale bars, 0.1 mm. (E) DNPH1 protein expression was measured by immunohistochemistry in 20 matching normal and cancerous human breast tissues; two-tailed, paired t test.

Journal: iScience

Article Title: Promotion of breast cancer by the DNPH1 enzyme

doi: 10.1016/j.isci.2026.115227

Figure Lengend Snippet: Overexpression of DNPH1 in human breast tumors (A) DNPH1 mRNA expression in various breast cancer subtypes was analyzed in published microarray data. Mean with standard deviation and statistical significance compared to normal breast tissue are indicated; ∗∗∗∗, p < 0.0001 (one-way ANOVA, Tukey’s multiple comparisons test). (B) High (top quartile) DNPH1 mRNA levels predict reduced survival. Data derived from published microarray experiments ; p < 0.0001 (log rank test). (C) DNPH1 protein expression in human breast cell lines assayed by Western blotting. (D) Examples of immunohistochemical staining with DNPH1 antibodies on matching normal and cancerous breast tissue. Scale bars, 0.1 mm. (E) DNPH1 protein expression was measured by immunohistochemistry in 20 matching normal and cancerous human breast tissues; two-tailed, paired t test.

Article Snippet: Human breast tissue microarray , ISU Abxis , A312.

Techniques: Over Expression, Expressing, Microarray, Standard Deviation, Derivative Assay, Western Blot, Immunohistochemical staining, Staining, Immunohistochemistry, Two Tailed Test

Cell surface GRP78 colocalizes with ROR1, Cripto, and PD-L1 on late-stage patient GBM tissues but not on normal brain cerebrum tissues. A, three brain tissue microarrays with patient core tissue samples of GBM and normal tissues (#T174T from Biomax.us.) were stained for GBM markers. B, one microarray was stained with 4′,6-diamidino-2-phenylindole (DAPI) ( blue -DNA), and antibodies to cell surface GRP78 ( green -FITC), ROR1 ( red -PE). The last column is an overlay of all three stains to show colocalization. Cores B2 (stage 4 GBM) and C7 (normal cerebrum) are pictured. C, a second microarray was stained with DAPI ( blue -DNA), and antibodies to cell surface GRP78 ( green -FITC), PD-L1 ( red -PE). The last column is an overlay of all three stains to show colocalization. Cores B6 (stage 4 GBM) and C5 (normal cerebrum) are pictured. D, a third microarray was stained with DAPI ( blue -DNA), and antibodies to cell surface GRP78 ( green -FITC), PD-L1 ( red -PE). The last column is an overlay of all three stains to show colocalization. Cores B6 (stage 4 GBM) and C5 (normal cerebrum) are pictured. Scale bars represent 400 μm (10×). All images are from the same magnification of (10×) 400 μm. GBM, glioblastoma multiforme; GRP78, glucose-regulated protein 78; PD-L1, programed death-ligand 1; ROR1, receptor tyrosine kinase–like orphan receptor-1.

Journal: The Journal of Biological Chemistry

Article Title: Inhibition of cell surface GRP78 on brain tumors reverses drug resistance and stops cancer stem cell expansion

doi: 10.1016/j.jbc.2026.111146

Figure Lengend Snippet: Cell surface GRP78 colocalizes with ROR1, Cripto, and PD-L1 on late-stage patient GBM tissues but not on normal brain cerebrum tissues. A, three brain tissue microarrays with patient core tissue samples of GBM and normal tissues (#T174T from Biomax.us.) were stained for GBM markers. B, one microarray was stained with 4′,6-diamidino-2-phenylindole (DAPI) ( blue -DNA), and antibodies to cell surface GRP78 ( green -FITC), ROR1 ( red -PE). The last column is an overlay of all three stains to show colocalization. Cores B2 (stage 4 GBM) and C7 (normal cerebrum) are pictured. C, a second microarray was stained with DAPI ( blue -DNA), and antibodies to cell surface GRP78 ( green -FITC), PD-L1 ( red -PE). The last column is an overlay of all three stains to show colocalization. Cores B6 (stage 4 GBM) and C5 (normal cerebrum) are pictured. D, a third microarray was stained with DAPI ( blue -DNA), and antibodies to cell surface GRP78 ( green -FITC), PD-L1 ( red -PE). The last column is an overlay of all three stains to show colocalization. Cores B6 (stage 4 GBM) and C5 (normal cerebrum) are pictured. Scale bars represent 400 μm (10×). All images are from the same magnification of (10×) 400 μm. GBM, glioblastoma multiforme; GRP78, glucose-regulated protein 78; PD-L1, programed death-ligand 1; ROR1, receptor tyrosine kinase–like orphan receptor-1.

Article Snippet: A, three brain tissue microarrays with patient core tissue samples of GBM and normal tissues (#T174T from Biomax.us.) were stained for GBM markers.

Techniques: Staining, Microarray

Cell surface GRP78 colocalizes with ROR1, Cripto, and PD-L1 on late-stage patient GBM tissues but not on normal brain cerebrum tissues. A, three brain tissue microarrays with patient core tissue samples of GBM and normal tissues (#T174T from Biomax.us.) were stained for GBM markers. B, one microarray was stained with 4′,6-diamidino-2-phenylindole (DAPI) ( blue -DNA), and antibodies to cell surface GRP78 ( green -FITC), ROR1 ( red -PE). The last column is an overlay of all three stains to show colocalization. Cores B2 (stage 4 GBM) and C7 (normal cerebrum) are pictured. C, a second microarray was stained with DAPI ( blue -DNA), and antibodies to cell surface GRP78 ( green -FITC), PD-L1 ( red -PE). The last column is an overlay of all three stains to show colocalization. Cores B6 (stage 4 GBM) and C5 (normal cerebrum) are pictured. D, a third microarray was stained with DAPI ( blue -DNA), and antibodies to cell surface GRP78 ( green -FITC), PD-L1 ( red -PE). The last column is an overlay of all three stains to show colocalization. Cores B6 (stage 4 GBM) and C5 (normal cerebrum) are pictured. Scale bars represent 400 μm (10×). All images are from the same magnification of (10×) 400 μm. GBM, glioblastoma multiforme; GRP78, glucose-regulated protein 78; PD-L1, programed death-ligand 1; ROR1, receptor tyrosine kinase–like orphan receptor-1.

Journal: The Journal of Biological Chemistry

Article Title: Inhibition of cell surface GRP78 on brain tumors reverses drug resistance and stops cancer stem cell expansion

doi: 10.1016/j.jbc.2026.111146

Figure Lengend Snippet: Cell surface GRP78 colocalizes with ROR1, Cripto, and PD-L1 on late-stage patient GBM tissues but not on normal brain cerebrum tissues. A, three brain tissue microarrays with patient core tissue samples of GBM and normal tissues (#T174T from Biomax.us.) were stained for GBM markers. B, one microarray was stained with 4′,6-diamidino-2-phenylindole (DAPI) ( blue -DNA), and antibodies to cell surface GRP78 ( green -FITC), ROR1 ( red -PE). The last column is an overlay of all three stains to show colocalization. Cores B2 (stage 4 GBM) and C7 (normal cerebrum) are pictured. C, a second microarray was stained with DAPI ( blue -DNA), and antibodies to cell surface GRP78 ( green -FITC), PD-L1 ( red -PE). The last column is an overlay of all three stains to show colocalization. Cores B6 (stage 4 GBM) and C5 (normal cerebrum) are pictured. D, a third microarray was stained with DAPI ( blue -DNA), and antibodies to cell surface GRP78 ( green -FITC), PD-L1 ( red -PE). The last column is an overlay of all three stains to show colocalization. Cores B6 (stage 4 GBM) and C5 (normal cerebrum) are pictured. Scale bars represent 400 μm (10×). All images are from the same magnification of (10×) 400 μm. GBM, glioblastoma multiforme; GRP78, glucose-regulated protein 78; PD-L1, programed death-ligand 1; ROR1, receptor tyrosine kinase–like orphan receptor-1.

Article Snippet: Briefly, three human brain tumors and normal brain tissue microarrays (T174c; Biomax. us) were deparaffinized with xylene and washed with PBS.

Techniques: Staining, Microarray