tissue-microarray-based immunohistochemistry datasets Search Results


90
Human Protein Atlas tissue-microarray based immunohistochemistry datasets
A. Differential CALR gene copy numbers or CALR mRNA levels between tissues derived from various cancer types and corresponding normal tissues were analysed using the Oncomine database ( p -value threshold was set at less than 0.01; all fold changes were deemed valid). Over-expression or under-expression in the top 1, 5 and 10% are color-coded according to the legend. B. Ratio of differential CRT protein levels between tissues derived from various cancer types and corresponding normal tissues were analysed using the dbDEPC 2.0 proteomics database. C. Overall CRT protein levels determined in human tumour tissues via tissue microarray analysis-based <t>immunohistochemistry</t> were retrieved using the Human Protein Atlas database. Here, the level or overall intensity of antibody-based staining has been used to generate three annotated protein expression patterns i.e. high, medium, and low, and no detection levels (colour coded here, in the legend, where the intensity of colour indicates the level of expression/staining).
Tissue Microarray Based Immunohistochemistry Datasets, supplied by Human Protein Atlas, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Human Protein Atlas immunohistochemistry staining images
Experimental validation of the expression of REG4 in CRC. ( A ) REG4 is significantly upregulated in CRC tissues compared with normal colorectal tissues based on GEPIA. *, significantly different from normal tissues (p < 0.05). ( B ) The protein expression of REG4 in normal and CRC tissues, respectively. Representative <t>immunohistochemistry</t> staining images are obtained from the Human Protein Atlas online database (magnification, x40). ( C ) Western blot analysis of REG4 in tumor (T) and non-tumor (N) tissues collected from CRC patients. ( D ) The relative expression of REG4 in serum exosomes downloaded from exoRBase. ( E ) ROC curve analysis of REG4 based on GSE15781 dataset.
Immunohistochemistry Staining Images, supplied by Human Protein Atlas, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Human Protein Atlas hpa dataset
Experimental validation of the expression of REG4 in CRC. ( A ) REG4 is significantly upregulated in CRC tissues compared with normal colorectal tissues based on GEPIA. *, significantly different from normal tissues (p < 0.05). ( B ) The protein expression of REG4 in normal and CRC tissues, respectively. Representative <t>immunohistochemistry</t> staining images are obtained from the Human Protein Atlas online database (magnification, x40). ( C ) Western blot analysis of REG4 in tumor (T) and non-tumor (N) tissues collected from CRC patients. ( D ) The relative expression of REG4 in serum exosomes downloaded from exoRBase. ( E ) ROC curve analysis of REG4 based on GSE15781 dataset.
Hpa Dataset, supplied by Human Protein Atlas, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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90
Illumina Inc body map 2.0 dataset
Experimental validation of the expression of REG4 in CRC. ( A ) REG4 is significantly upregulated in CRC tissues compared with normal colorectal tissues based on GEPIA. *, significantly different from normal tissues (p < 0.05). ( B ) The protein expression of REG4 in normal and CRC tissues, respectively. Representative <t>immunohistochemistry</t> staining images are obtained from the Human Protein Atlas online database (magnification, x40). ( C ) Western blot analysis of REG4 in tumor (T) and non-tumor (N) tissues collected from CRC patients. ( D ) The relative expression of REG4 in serum exosomes downloaded from exoRBase. ( E ) ROC curve analysis of REG4 based on GSE15781 dataset.
Body Map 2.0 Dataset, supplied by Illumina Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Novartis gnf dataset
Experimental validation of the expression of REG4 in CRC. ( A ) REG4 is significantly upregulated in CRC tissues compared with normal colorectal tissues based on GEPIA. *, significantly different from normal tissues (p < 0.05). ( B ) The protein expression of REG4 in normal and CRC tissues, respectively. Representative <t>immunohistochemistry</t> staining images are obtained from the Human Protein Atlas online database (magnification, x40). ( C ) Western blot analysis of REG4 in tumor (T) and non-tumor (N) tissues collected from CRC patients. ( D ) The relative expression of REG4 in serum exosomes downloaded from exoRBase. ( E ) ROC curve analysis of REG4 based on GSE15781 dataset.
Gnf Dataset, supplied by Novartis, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Human Protein Atlas pathology data with immunohistochemisty using semi-quantitative tissue microarrays
Experimental validation of the expression of REG4 in CRC. ( A ) REG4 is significantly upregulated in CRC tissues compared with normal colorectal tissues based on GEPIA. *, significantly different from normal tissues (p < 0.05). ( B ) The protein expression of REG4 in normal and CRC tissues, respectively. Representative <t>immunohistochemistry</t> staining images are obtained from the Human Protein Atlas online database (magnification, x40). ( C ) Western blot analysis of REG4 in tumor (T) and non-tumor (N) tissues collected from CRC patients. ( D ) The relative expression of REG4 in serum exosomes downloaded from exoRBase. ( E ) ROC curve analysis of REG4 based on GSE15781 dataset.
Pathology Data With Immunohistochemisty Using Semi Quantitative Tissue Microarrays, supplied by Human Protein Atlas, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Human Protein Atlas rna single cell read count data
Experimental validation of the expression of REG4 in CRC. ( A ) REG4 is significantly upregulated in CRC tissues compared with normal colorectal tissues based on GEPIA. *, significantly different from normal tissues (p < 0.05). ( B ) The protein expression of REG4 in normal and CRC tissues, respectively. Representative <t>immunohistochemistry</t> staining images are obtained from the Human Protein Atlas online database (magnification, x40). ( C ) Western blot analysis of REG4 in tumor (T) and non-tumor (N) tissues collected from CRC patients. ( D ) The relative expression of REG4 in serum exosomes downloaded from exoRBase. ( E ) ROC curve analysis of REG4 based on GSE15781 dataset.
Rna Single Cell Read Count Data, supplied by Human Protein Atlas, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Human Protein Atlas yme1l1 ihc staining
Experimental validation of the expression of REG4 in CRC. ( A ) REG4 is significantly upregulated in CRC tissues compared with normal colorectal tissues based on GEPIA. *, significantly different from normal tissues (p < 0.05). ( B ) The protein expression of REG4 in normal and CRC tissues, respectively. Representative <t>immunohistochemistry</t> staining images are obtained from the Human Protein Atlas online database (magnification, x40). ( C ) Western blot analysis of REG4 in tumor (T) and non-tumor (N) tissues collected from CRC patients. ( D ) The relative expression of REG4 in serum exosomes downloaded from exoRBase. ( E ) ROC curve analysis of REG4 based on GSE15781 dataset.
Yme1l1 Ihc Staining, supplied by Human Protein Atlas, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Unigene estdatabase/qpcr
Experimental validation of the expression of REG4 in CRC. ( A ) REG4 is significantly upregulated in CRC tissues compared with normal colorectal tissues based on GEPIA. *, significantly different from normal tissues (p < 0.05). ( B ) The protein expression of REG4 in normal and CRC tissues, respectively. Representative <t>immunohistochemistry</t> staining images are obtained from the Human Protein Atlas online database (magnification, x40). ( C ) Western blot analysis of REG4 in tumor (T) and non-tumor (N) tissues collected from CRC patients. ( D ) The relative expression of REG4 in serum exosomes downloaded from exoRBase. ( E ) ROC curve analysis of REG4 based on GSE15781 dataset.
Estdatabase/Qpcr, supplied by Unigene, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


A. Differential CALR gene copy numbers or CALR mRNA levels between tissues derived from various cancer types and corresponding normal tissues were analysed using the Oncomine database ( p -value threshold was set at less than 0.01; all fold changes were deemed valid). Over-expression or under-expression in the top 1, 5 and 10% are color-coded according to the legend. B. Ratio of differential CRT protein levels between tissues derived from various cancer types and corresponding normal tissues were analysed using the dbDEPC 2.0 proteomics database. C. Overall CRT protein levels determined in human tumour tissues via tissue microarray analysis-based immunohistochemistry were retrieved using the Human Protein Atlas database. Here, the level or overall intensity of antibody-based staining has been used to generate three annotated protein expression patterns i.e. high, medium, and low, and no detection levels (colour coded here, in the legend, where the intensity of colour indicates the level of expression/staining).

Journal: Oncotarget

Article Title: Resistance to anticancer vaccination effect is controlled by a cancer cell-autonomous phenotype that disrupts immunogenic phagocytic removal

doi:

Figure Lengend Snippet: A. Differential CALR gene copy numbers or CALR mRNA levels between tissues derived from various cancer types and corresponding normal tissues were analysed using the Oncomine database ( p -value threshold was set at less than 0.01; all fold changes were deemed valid). Over-expression or under-expression in the top 1, 5 and 10% are color-coded according to the legend. B. Ratio of differential CRT protein levels between tissues derived from various cancer types and corresponding normal tissues were analysed using the dbDEPC 2.0 proteomics database. C. Overall CRT protein levels determined in human tumour tissues via tissue microarray analysis-based immunohistochemistry were retrieved using the Human Protein Atlas database. Here, the level or overall intensity of antibody-based staining has been used to generate three annotated protein expression patterns i.e. high, medium, and low, and no detection levels (colour coded here, in the legend, where the intensity of colour indicates the level of expression/staining).

Article Snippet: In order to increase this coverage, we decided to analyse the publicly available tissue-microarray based immunohistochemistry datasets in the Human Protein Atlas database [ ].

Techniques: Derivative Assay, Over Expression, Expressing, Microarray, Immunohistochemistry, Staining

Experimental validation of the expression of REG4 in CRC. ( A ) REG4 is significantly upregulated in CRC tissues compared with normal colorectal tissues based on GEPIA. *, significantly different from normal tissues (p < 0.05). ( B ) The protein expression of REG4 in normal and CRC tissues, respectively. Representative immunohistochemistry staining images are obtained from the Human Protein Atlas online database (magnification, x40). ( C ) Western blot analysis of REG4 in tumor (T) and non-tumor (N) tissues collected from CRC patients. ( D ) The relative expression of REG4 in serum exosomes downloaded from exoRBase. ( E ) ROC curve analysis of REG4 based on GSE15781 dataset.

Journal: OncoTargets and therapy

Article Title: REG4 is a Potential Biomarker for Radiochemotherapy Sensitivity in Colorectal Cancer

doi: 10.2147/OTT.S296031

Figure Lengend Snippet: Experimental validation of the expression of REG4 in CRC. ( A ) REG4 is significantly upregulated in CRC tissues compared with normal colorectal tissues based on GEPIA. *, significantly different from normal tissues (p < 0.05). ( B ) The protein expression of REG4 in normal and CRC tissues, respectively. Representative immunohistochemistry staining images are obtained from the Human Protein Atlas online database (magnification, x40). ( C ) Western blot analysis of REG4 in tumor (T) and non-tumor (N) tissues collected from CRC patients. ( D ) The relative expression of REG4 in serum exosomes downloaded from exoRBase. ( E ) ROC curve analysis of REG4 based on GSE15781 dataset.

Article Snippet: Representative immunohistochemistry staining images are obtained from the Human Protein Atlas online database (magnification, x40). ( C ) Western blot analysis of REG4 in tumor (T) and non-tumor (N) tissues collected from CRC patients. ( D ) The relative expression of REG4 in serum exosomes downloaded from exoRBase. ( E ) ROC curve analysis of REG4 based on GSE15781 dataset.

Techniques: Biomarker Discovery, Expressing, Immunohistochemistry, Staining, Western Blot

Immunohistochemistry-based validation of REG4 as a potential biomarker for RCT sensitivity in CRC. ( A ) Representative immunohistochemical images of REG4 in RCT-resistant and RCT-sensitive CRC tissues collected from the clinic. Scale bar, 200 μm. ( B ) Quantification of REG4. **, significantly different from RCT-resistant CRC samples (p < 0.01). ( C ) ROC curve analysis of REG4 based on the microarray.

Journal: OncoTargets and therapy

Article Title: REG4 is a Potential Biomarker for Radiochemotherapy Sensitivity in Colorectal Cancer

doi: 10.2147/OTT.S296031

Figure Lengend Snippet: Immunohistochemistry-based validation of REG4 as a potential biomarker for RCT sensitivity in CRC. ( A ) Representative immunohistochemical images of REG4 in RCT-resistant and RCT-sensitive CRC tissues collected from the clinic. Scale bar, 200 μm. ( B ) Quantification of REG4. **, significantly different from RCT-resistant CRC samples (p < 0.01). ( C ) ROC curve analysis of REG4 based on the microarray.

Article Snippet: Representative immunohistochemistry staining images are obtained from the Human Protein Atlas online database (magnification, x40). ( C ) Western blot analysis of REG4 in tumor (T) and non-tumor (N) tissues collected from CRC patients. ( D ) The relative expression of REG4 in serum exosomes downloaded from exoRBase. ( E ) ROC curve analysis of REG4 based on GSE15781 dataset.

Techniques: Immunohistochemistry, Biomarker Discovery, Immunohistochemical staining, Microarray