TissueFAxs 53BP1 [H-300] Rabbit

- Found 6683 results

Get tips on using MTT Cell Proliferation Assay (ATCC® 30-1010K™) to perform Cell cytotoxicity / Proliferation assay cell type - MCF-7

Products LGC Standards MTT Cell Proliferation Assay (ATCC® 30-1010K™)

Get tips on using CD279 (PD-1) Monoclonal Antibody (RMP1-30), FITC, eBioscience™ to perform Flow cytometry Anti-bodies Mouse - CD279/PD-1

Products eBioscience CD279 (PD-1) Monoclonal Antibody (RMP1-30), FITC, eBioscience™

ROS has a very short half-lives in biological environment as they are influenced by exposure to ambient oxygen. As it is highly reactive and hard to measure care should be taken to ensure the stability of the sample during isolation, preparation, storage, and analysis.

Cellular assays ROS assay cell type PLHC-1, SK-HEP-1, Hep3b, HepG2 human hepatocellular carcinoma

Get tips on using Human HSP70/HSPA1A DuoSet ELISA to perform ELISA Human - HSP70

Products R&D Systems Human HSP70/HSPA1A DuoSet ELISA

Get tips on using Human Total HO-1/HMOX1 DuoSet IC ELISA to perform ELISA Human - HO-1

Products R&D Systems Human Total HO-1/HMOX1 DuoSet IC ELISA

Get tips on using Hin6I (HinP1I) (10 U/µL) to perform Restriction Enzymes Hin6I / HinP1I / Hhal

Products Thermo Fisher Scientific Hin6I (HinP1I) (10 U/µL)

Microarrays enable researchers to monitor the expression of thousands of genes simultaneously. However, the sensitivity, accuracy, specificity, and reproducibility are major challenges for this technology. Cross-hybridization, combination with splice variants, is a prime source for the discrepancies in differential gene expression calls among various microarray platforms. Removing (either from production or downstream bioinformatic analysis) and/or redesigning the microarray probes prone to cross-hybridization is a reasonable strategy to increase the hybridization specificity and hence, the accuracy of the microarray measurements.

DNA Microarray RNA amplification & Labeling HUVEC Hy3 and Hy5

DNA microarrays enable researchers to monitor the expression of thousands of genes simultaneously. However, the sensitivity, accuracy, specificity, and reproducibility are major challenges for this technology. Cross-hybridization, combination with splice variants, is a prime source for the discrepancies in differential gene expression calls among various microarray platforms. Removing (either from production or downstream bioinformatic analysis) and/or redesigning the microarray probes prone to cross-hybridization is a reasonable strategy to increase the hybridization specificity and hence, the accuracy of the microarray measurements.

DNA Microarray Comperative genomic hybridization Human HepG2

DNA microarrays enable researchers to monitor the expression of thousands of genes simultaneously. However, the sensitivity, accuracy, specificity, and reproducibility are major challenges for this technology. Cross-hybridization, combination with splice variants, is a prime source for the discrepancies in differential gene expression calls among various microarray platforms. Removing (either from production or downstream bioinformatic analysis) and/or redesigning the microarray probes prone to cross-hybridization is a reasonable strategy to increase the hybridization specificity and hence, the accuracy of the microarray measurements.

DNA Microarray Comperative genomic hybridization Human HeLa

Get tips on using Anti-phospho-Histone H2A.X (Ser139) Antibody to perform Immunofluorscence  phospho-Histone H2A.X (Ser139) - Mouse Human

Products Millipore Anti-phospho-Histone H2A.X (Ser139) Antibody

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