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BioChain Institute lung cancer tissue microarray slides
Lung Cancer Tissue Microarray Slides, supplied by BioChain Institute, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/result/lung cancer tissue microarray slides/product/BioChain Institute
Average 90 stars, based on 1 article reviews
lung cancer tissue microarray slides - by Bioz Stars, 2026-06
90/100 stars

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Expression profile of TXNDC5 in human normal tissue and lung cancer. A and B, anti-TXNDC5 staining (brown) with counterstaining by hematoxylin (blue) was performed on tissue <t>microarray</t> slides of human normal organs (A) and lung normal and lung tumor specimens from patients (B). C, quantitative data from tissue microarray were shown. * p < 0.05 (t test), compared with normal lung. D, an example data set from Oncomine indicates amplified DNA copy numbers in human lung cancer. E and F, Kaplan–Meier Plotter analysis of the TCGA data set in human lung cancer indicates the negative association of Srx with patient survival (E) and the positive association of TXNDC5 with patient survival (F). G, a proposed model of Srx and TXNDC5 in lung cancer and their value as potential biomarkers to predict patient survival. Error bars, S.D.
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Expression profile of TXNDC5 in human normal tissue and lung cancer. A and B, anti-TXNDC5 staining (brown) with counterstaining by hematoxylin (blue) was performed on tissue <t>microarray</t> slides of human normal organs (A) and lung normal and lung tumor specimens from patients (B). C, quantitative data from tissue microarray were shown. * p < 0.05 (t test), compared with normal lung. D, an example data set from Oncomine indicates amplified DNA copy numbers in human lung cancer. E and F, Kaplan–Meier Plotter analysis of the TCGA data set in human lung cancer indicates the negative association of Srx with patient survival (E) and the positive association of TXNDC5 with patient survival (F). G, a proposed model of Srx and TXNDC5 in lung cancer and their value as potential biomarkers to predict patient survival. Error bars, S.D.
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Expression profile of TXNDC5 in human normal tissue and lung cancer. A and B, anti-TXNDC5 staining (brown) with counterstaining by hematoxylin (blue) was performed on tissue <t>microarray</t> slides of human normal organs (A) and lung normal and lung tumor specimens from patients (B). C, quantitative data from tissue microarray were shown. * p < 0.05 (t test), compared with normal lung. D, an example data set from Oncomine indicates amplified DNA copy numbers in human lung cancer. E and F, Kaplan–Meier Plotter analysis of the TCGA data set in human lung cancer indicates the negative association of Srx with patient survival (E) and the positive association of TXNDC5 with patient survival (F). G, a proposed model of Srx and TXNDC5 in lung cancer and their value as potential biomarkers to predict patient survival. Error bars, S.D.
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Expression profile of TXNDC5 in human normal tissue and lung cancer. A and B, anti-TXNDC5 staining (brown) with counterstaining by hematoxylin (blue) was performed on tissue <t>microarray</t> slides of human normal organs (A) and lung normal and lung tumor specimens from patients (B). C, quantitative data from tissue microarray were shown. * p < 0.05 (t test), compared with normal lung. D, an example data set from Oncomine indicates amplified DNA copy numbers in human lung cancer. E and F, Kaplan–Meier Plotter analysis of the TCGA data set in human lung cancer indicates the negative association of Srx with patient survival (E) and the positive association of TXNDC5 with patient survival (F). G, a proposed model of Srx and TXNDC5 in lung cancer and their value as potential biomarkers to predict patient survival. Error bars, S.D.
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Expression profile of TXNDC5 in human normal tissue and lung cancer. A and B, anti-TXNDC5 staining (brown) with counterstaining by hematoxylin (blue) was performed on tissue <t>microarray</t> slides of human normal organs (A) and lung normal and lung tumor specimens from patients (B). C, quantitative data from tissue microarray were shown. * p < 0.05 (t test), compared with normal lung. D, an example data set from Oncomine indicates amplified DNA copy numbers in human lung cancer. E and F, Kaplan–Meier Plotter analysis of the TCGA data set in human lung cancer indicates the negative association of Srx with patient survival (E) and the positive association of TXNDC5 with patient survival (F). G, a proposed model of Srx and TXNDC5 in lung cancer and their value as potential biomarkers to predict patient survival. Error bars, S.D.
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https://www.bioz.com/result/lung cancer tissue microarray slides/product/BioChain Institute
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Expression profile of TXNDC5 in human normal tissue and lung cancer. A and B, anti-TXNDC5 staining (brown) with counterstaining by hematoxylin (blue) was performed on tissue <t>microarray</t> slides of human normal organs (A) and lung normal and lung tumor specimens from patients (B). C, quantitative data from tissue microarray were shown. * p < 0.05 (t test), compared with normal lung. D, an example data set from Oncomine indicates amplified DNA copy numbers in human lung cancer. E and F, Kaplan–Meier Plotter analysis of the TCGA data set in human lung cancer indicates the negative association of Srx with patient survival (E) and the positive association of TXNDC5 with patient survival (F). G, a proposed model of Srx and TXNDC5 in lung cancer and their value as potential biomarkers to predict patient survival. Error bars, S.D.
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Expression profile of TXNDC5 in human normal tissue and lung cancer. A and B, anti-TXNDC5 staining (brown) with counterstaining by hematoxylin (blue) was performed on tissue <t>microarray</t> slides of human normal organs (A) and lung normal and lung tumor specimens from patients (B). C, quantitative data from tissue microarray were shown. * p < 0.05 (t test), compared with normal lung. D, an example data set from Oncomine indicates amplified DNA copy numbers in human lung cancer. E and F, Kaplan–Meier Plotter analysis of the TCGA data set in human lung cancer indicates the negative association of Srx with patient survival (E) and the positive association of TXNDC5 with patient survival (F). G, a proposed model of Srx and TXNDC5 in lung cancer and their value as potential biomarkers to predict patient survival. Error bars, S.D.
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Expression profile of TXNDC5 in human normal tissue and lung cancer. A and B, anti-TXNDC5 staining (brown) with counterstaining by hematoxylin (blue) was performed on tissue microarray slides of human normal organs (A) and lung normal and lung tumor specimens from patients (B). C, quantitative data from tissue microarray were shown. * p < 0.05 (t test), compared with normal lung. D, an example data set from Oncomine indicates amplified DNA copy numbers in human lung cancer. E and F, Kaplan–Meier Plotter analysis of the TCGA data set in human lung cancer indicates the negative association of Srx with patient survival (E) and the positive association of TXNDC5 with patient survival (F). G, a proposed model of Srx and TXNDC5 in lung cancer and their value as potential biomarkers to predict patient survival. Error bars, S.D.

Journal: The Journal of Biological Chemistry

Article Title: The redox regulator sulfiredoxin forms a complex with thioredoxin domain–containing 5 protein in response to ER stress in lung cancer cells

doi: 10.1074/jbc.RA118.005804

Figure Lengend Snippet: Expression profile of TXNDC5 in human normal tissue and lung cancer. A and B, anti-TXNDC5 staining (brown) with counterstaining by hematoxylin (blue) was performed on tissue microarray slides of human normal organs (A) and lung normal and lung tumor specimens from patients (B). C, quantitative data from tissue microarray were shown. * p < 0.05 (t test), compared with normal lung. D, an example data set from Oncomine indicates amplified DNA copy numbers in human lung cancer. E and F, Kaplan–Meier Plotter analysis of the TCGA data set in human lung cancer indicates the negative association of Srx with patient survival (E) and the positive association of TXNDC5 with patient survival (F). G, a proposed model of Srx and TXNDC5 in lung cancer and their value as potential biomarkers to predict patient survival. Error bars, S.D.

Article Snippet: For IHC staining, human lung normal and cancer tissue microarray slides were commercially obtained (Biomax US).

Techniques: Expressing, Staining, Microarray, Amplification