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Human Protein Atlas tissue datasets normal tissue ihc data
Tissue Datasets Normal Tissue Ihc Data, 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
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tissue datasets normal tissue ihc data - by Bioz Stars, 2026-09
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Related Articles

Immunohistochemistry:

Article Title: IGF2R as a master regulator of acquired EGFR inhibitor resistance and therapeutic target in non-small cell lung cancer.
Article Snippet: Non-small cell lung cancer (NSCLC), a leading cause of cancer-related mortality worldwide, often develops resistance to targeted therapies, limiting long-term treatment success.. Although agents such as the EGFR inhibitor osimertinib and the marine-derived small molecular compound Debromoaplysiatoxin (DAT), which we have demonstrated to markedly inhibit EGFR signaling in our preliminary data, show efficacy in advanced NSCLC, acquired resistance remains a major clinical challenge.. This study identifies insulin-like growth factor 2 receptor (IGF2R) as a key mediator of acquired resistance to both osimertinib and DAT.

Article Title: Pan-Cancer Analysis of NOP2 Reveals Its Prognostic Relevance and Association With the Tumor Immune Microenvironment
Article Snippet: .. In addition, IHC data from the Human Protein Atlas (HPA) further demonstrated higher NOP2 protein expression in tumor tissues compared with corresponding normal tissues in several cancer types, including breast invasive carcinoma (BRCA), colon adenocarcinoma (COAD), liver hepatocellular carcinoma (LIHC), LUAD, prostate adenocarcinoma (PRAD), and stomach adenocarcinoma (STAD) ( ). ..

Article Title: High-fat diet reshapes microbial interactions to promote breast cancer stemness via Streptococcus mutans-induced leucine accumulation.
Article Snippet: .. However, IHC data from The Human Protein Atlas (HPA) showed moderate SLC4A7 protein expression in breast cancer tissues (Fig. S4D). ..

Article Title: PRAS40 activates the IRE1α-XBP-1-mediated unfolded protein response to exacerbate colorectal cancer by enhancing ST6Gal1-dependent α-2, 6 sialylation of GRP78
Article Snippet: .. Analyses of IHC data from The Human Protein Atlas (THPA) database revealed that CRC patients exhibited the highest percentage for positive PRAS40 staining among multiple tumor types (Supplementary Fig. 1A). ..

Article Title: USP48 promotes tumour progression through the deubiquitination and stabilization of DBF4 in clear cell renal carcinoma.
Article Snippet: .. USP48 expression was assessed using IHC data from The Human Protein Atlas (HPA) database (https://www.proteinatlas.org/), while DBF4 protein levels were evaluated through IHC data from our previously established ccRCC cohort[6]. .. Statistical analysis GraphPad Prism software (version 8.0) was used for graphing and for conducting statistical analyses.

Article Title: Integrative Multiomics and Single‐Cell Analyses Identify FKBP10 as a Predictor of Radiotherapy Outcome in Colorectal Cancer
Article Snippet: .. Supporting the clinical relevance of our transcriptomics findings, publicly available IHC data from the Human Protein Atlas (HPA; http://www.proteinatlas.org ) confirm that FKBP10 protein is expressed in CRC tissue, with notable staining detected in stromal and fibroblastic cells surrounding tumor glands. ..

Article Title: Vascular SMC-like CAF-derived THBS1 drives tumor-associated neutrophil recruitment to orchestrate an immunosuppressive microenvironment in gastric cancer.
Article Snippet: .. Consistently, IHC data from the Human Protein Atlas (HPA) database also confirmed THBS1 expression in VSMCs, SMCs, and fibroblasts (Supplementary Figure S2a). ..

Article Title: Targeting XIAP-coordinated PKC signaling resensitizes PD-1-refractory tumors for rechallenge.
Article Snippet: .. IHC data from The Human Protein Atlas (https://www.proteinatlas.org/) confirmed elevated PRKCD, PRKCH, and PRKCI protein levels across colorectal, breast, prostate, and lung cancers (SI Appendix, Fig. S1B). ..

Expressing:

Article Title: Pan-Cancer Analysis of NOP2 Reveals Its Prognostic Relevance and Association With the Tumor Immune Microenvironment
Article Snippet: .. In addition, IHC data from the Human Protein Atlas (HPA) further demonstrated higher NOP2 protein expression in tumor tissues compared with corresponding normal tissues in several cancer types, including breast invasive carcinoma (BRCA), colon adenocarcinoma (COAD), liver hepatocellular carcinoma (LIHC), LUAD, prostate adenocarcinoma (PRAD), and stomach adenocarcinoma (STAD) ( ). ..

Article Title: High-fat diet reshapes microbial interactions to promote breast cancer stemness via Streptococcus mutans-induced leucine accumulation.
Article Snippet: .. However, IHC data from The Human Protein Atlas (HPA) showed moderate SLC4A7 protein expression in breast cancer tissues (Fig. S4D). ..

Article Title: USP48 promotes tumour progression through the deubiquitination and stabilization of DBF4 in clear cell renal carcinoma.
Article Snippet: .. USP48 expression was assessed using IHC data from The Human Protein Atlas (HPA) database (https://www.proteinatlas.org/), while DBF4 protein levels were evaluated through IHC data from our previously established ccRCC cohort[6]. .. Statistical analysis GraphPad Prism software (version 8.0) was used for graphing and for conducting statistical analyses.

Article Title: Vascular SMC-like CAF-derived THBS1 drives tumor-associated neutrophil recruitment to orchestrate an immunosuppressive microenvironment in gastric cancer.
Article Snippet: .. Consistently, IHC data from the Human Protein Atlas (HPA) database also confirmed THBS1 expression in VSMCs, SMCs, and fibroblasts (Supplementary Figure S2a). ..

Staining:

Article Title: PRAS40 activates the IRE1α-XBP-1-mediated unfolded protein response to exacerbate colorectal cancer by enhancing ST6Gal1-dependent α-2, 6 sialylation of GRP78
Article Snippet: .. Analyses of IHC data from The Human Protein Atlas (THPA) database revealed that CRC patients exhibited the highest percentage for positive PRAS40 staining among multiple tumor types (Supplementary Fig. 1A). ..

Article Title: Integrative Multiomics and Single‐Cell Analyses Identify FKBP10 as a Predictor of Radiotherapy Outcome in Colorectal Cancer
Article Snippet: .. Supporting the clinical relevance of our transcriptomics findings, publicly available IHC data from the Human Protein Atlas (HPA; http://www.proteinatlas.org ) confirm that FKBP10 protein is expressed in CRC tissue, with notable staining detected in stromal and fibroblastic cells surrounding tumor glands. ..

Transcriptomics:

Article Title: Integrative Multiomics and Single‐Cell Analyses Identify FKBP10 as a Predictor of Radiotherapy Outcome in Colorectal Cancer
Article Snippet: .. Supporting the clinical relevance of our transcriptomics findings, publicly available IHC data from the Human Protein Atlas (HPA; http://www.proteinatlas.org ) confirm that FKBP10 protein is expressed in CRC tissue, with notable staining detected in stromal and fibroblastic cells surrounding tumor glands. ..



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The <t>expression</t> of GDF6 in various human <t>normal</t> <t>tissues</t> and tumor tissues. ( A ) The mRNA expression of GDF6 in normal human tissues. ( B ) GDF6 expression in tumors and healthy tissues (TCGA database). Tumor types with significantly downregulated GDF6 expression ( C ) and those with significantly upregulated expression ( D ) in the TCGA + GTEx databases. * p < 0.05; ** p < 0.01; *** p < 0.001; **** p < 0.0001.
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Image Search Results


The expression of GDF6 in various human normal tissues and tumor tissues. ( A ) The mRNA expression of GDF6 in normal human tissues. ( B ) GDF6 expression in tumors and healthy tissues (TCGA database). Tumor types with significantly downregulated GDF6 expression ( C ) and those with significantly upregulated expression ( D ) in the TCGA + GTEx databases. * p < 0.05; ** p < 0.01; *** p < 0.001; **** p < 0.0001.

Journal: Current Issues in Molecular Biology

Article Title: Dual-Faced Role of GDF6 in Cancer: Mechanistic Insights into Its Context-Dependent Regulation of Metastasis and Immune Evasion Across Human Malignancies

doi: 10.3390/cimb47040249

Figure Lengend Snippet: The expression of GDF6 in various human normal tissues and tumor tissues. ( A ) The mRNA expression of GDF6 in normal human tissues. ( B ) GDF6 expression in tumors and healthy tissues (TCGA database). Tumor types with significantly downregulated GDF6 expression ( C ) and those with significantly upregulated expression ( D ) in the TCGA + GTEx databases. * p < 0.05; ** p < 0.01; *** p < 0.001; **** p < 0.0001.

Article Snippet: Normal tissue expression data were sourced from the Human Protein Atlas (HPA; https://www.proteinatlas.org , accessed on 15 February 2025).

Techniques: Expressing

(A &B) Contingency tables used to determine the likelihood of detecting a clinical (A) ADC and (B) CAR T target in the PDX human tumor N -glycoproteome against all other surface proteins in the human proteome. P-values were calculated using a Fisher’s exact test. (C) Normal tissue toxicity scoring system. (D) Distribution of full body normal tissue abundance or detection frequency of PDX target candidates (purple) vs solid tumor clinical immunotherapy targets (grey) in Jiang et al., (left), Human Protein Atlas (middle) and GTEx RNA-seq data (right). (E) Distribution of normal brain tissue abundance or detection frequency of PDX target candidates (purple) vs solid tumor clinical immunotherapy targets (grey) in Tushaus et al., (left), Human Protein Atlas brain IHC data (middle) and Human Protein Atlas brain RNA-seq data (right). (F) Distribution of normal heart tissue abundance or detection frequency of PDX target candidates (purple) vs solid tumor clinical immunotherapy targets (grey) in Berg Luecke et al., (left) and Doll et al., (middle & right). (D-F) P-values from unpaired Mann-Whitney U tests.

Journal: bioRxiv

Article Title: Pan-cancer N -glycoproteomic atlas of patient-derived xenografts uncovers FAT2 as a therapeutic target for head and neck cancers

doi: 10.1101/2024.12.11.627962

Figure Lengend Snippet: (A &B) Contingency tables used to determine the likelihood of detecting a clinical (A) ADC and (B) CAR T target in the PDX human tumor N -glycoproteome against all other surface proteins in the human proteome. P-values were calculated using a Fisher’s exact test. (C) Normal tissue toxicity scoring system. (D) Distribution of full body normal tissue abundance or detection frequency of PDX target candidates (purple) vs solid tumor clinical immunotherapy targets (grey) in Jiang et al., (left), Human Protein Atlas (middle) and GTEx RNA-seq data (right). (E) Distribution of normal brain tissue abundance or detection frequency of PDX target candidates (purple) vs solid tumor clinical immunotherapy targets (grey) in Tushaus et al., (left), Human Protein Atlas brain IHC data (middle) and Human Protein Atlas brain RNA-seq data (right). (F) Distribution of normal heart tissue abundance or detection frequency of PDX target candidates (purple) vs solid tumor clinical immunotherapy targets (grey) in Berg Luecke et al., (left) and Doll et al., (middle & right). (D-F) P-values from unpaired Mann-Whitney U tests.

Article Snippet: Normal tissue IHC data were downloaded from Human Protein Atlas (v.23.0) .

Techniques: Glycoproteomics, RNA Sequencing, MANN-WHITNEY

Results of differentially expressed analysis on ARGs and enrichment analysis of DE‐ARGs. (A) A heatmap of 48 differentially expressed ARGs between 326 LUSC samples and 32 normal controls. Each line represents a DE‐ARG and each row means a sample. The expression levels of genes are displayed with colors in each cell (red for high and blue for low). (B) The volcano plot of differentially expressed ARGs between LUSC samples and normal controls. (C) The enriched significant KEGG signal pathways of DE‐ARGs. The color represents the statistical significance of the term. The length indicates the counts of enriched genes.

Journal: Cancer Reports

Article Title: A Four‐Gene Autophagy‐Related Prognostic Model Signature and Its Association With Immune Phenotype in Lung Squamous Cell Carcinoma

doi: 10.1002/cnr2.70000

Figure Lengend Snippet: Results of differentially expressed analysis on ARGs and enrichment analysis of DE‐ARGs. (A) A heatmap of 48 differentially expressed ARGs between 326 LUSC samples and 32 normal controls. Each line represents a DE‐ARG and each row means a sample. The expression levels of genes are displayed with colors in each cell (red for high and blue for low). (B) The volcano plot of differentially expressed ARGs between LUSC samples and normal controls. (C) The enriched significant KEGG signal pathways of DE‐ARGs. The color represents the statistical significance of the term. The length indicates the counts of enriched genes.

Article Snippet: Immunohistochemistry data of ARGs in normal lung tissue and LUSC tumor tissue from The Human Protein Atlas project are also included (Figure ).

Techniques: Expressing