DNA isolation / purification Cells

- Found 8526 results

Get tips on using Y-PER™ Yeast Protein Extraction Reagent to perform Protein isolation Yeast - Candida sonorensis

Products Thermo Fisher Scientific Y-PER™ Yeast Protein Extraction Reagent

Get tips on using Y-PER™ Yeast Protein Extraction Reagent to perform Protein isolation Yeast - Candida albicans

Products Thermo Fisher Scientific Y-PER™ Yeast Protein Extraction Reagent

Get tips on using Y-PER™ Yeast Protein Extraction Reagent to perform Protein isolation Yeast - Saccharomyces cerevisiae

Products Thermo Fisher Scientific Y-PER™ Yeast Protein Extraction Reagent

Get tips on using Y-PER™ Yeast Protein Extraction Reagent to perform Protein isolation Yeast - Pichia pastoris

Products Thermo Fisher Scientific Y-PER™ Yeast Protein Extraction Reagent

Get tips on using Y-PER™ Yeast Protein Extraction Reagent to perform Protein isolation Bacteria - Escherichia coli

Products Thermo Fisher Scientific Y-PER™ Yeast Protein Extraction Reagent

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 Gene expression arrays Rat mesothelium Satin cocktail

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 Gene expression arrays Mouse dorsal skin Biotin

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 Gene expression arrays Mouse brain tissue Biotin

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 MDA-MB-453

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 MDA-MB-361

Outsource your experiment

Fill out your contact details and receive price quotes in your Inbox

  Outsource experiment
Become shareholder Discussions About us Contact Privacy Terms