Motivation: Reverse phase protein array (RPPA) is a powerful dot-blot technology that allows studying protein expression levels as well as post-translational modifications in a large number of samples simultaneously. Yet, correct interpretation of RPPA data has remained a major challenge for its broad-scale application and its translation into clinical research. Satisfying quantification tools are available to assess a relative protein expression level from a serial dilution curve. However, appropriate tools allowing the normalization of the data for external sources of variation are currently missing. Results: Here we propose a new method, called NormaCurve, that allows simultaneous quantification and normalization of RPPA data. For this, ...
International audienceBACKGROUND: Reverse transcription-quantitative polymerase chain reaction (RT-q...
Motivation: A major challenge in utilizing microarray technologies to measure nucleic acid abundance...
Motivation: A major challenge in utilizing microarray technologies to measure nucleic acid abundance...
MOTIVATION: Reverse phase protein array (RPPA) is a powerful dot-blot technology that allows studyin...
Reverse-phase protein lysate arrays (RPPA) are becoming important tools for the analysis of proteins...
Reverse phase protein arrays (RPPA) are an efficient, high-throughput, cost-effective method for the...
Reverse phase protein arrays (RPPA) are an efficient, high-throughput, cost-effective method for the...
Reverse Phase Protein Arrays (RPPA) represent a very promising sensitive and precise high-throughput...
Mastering the systematic analysis of tumor tissues on a large scale has long been a technical challe...
Motivation: The reverse-phase protein lysate arrays have been used to quantify the relative expressi...
Protein microarray has been widely used in the biological and biomedical fields. There are two categ...
Motivation: The reverse-phase protein lysate arrays have been used to quantify the relative expressi...
<p>For the correction of anti-species secondary antibody staining, arrays were assayed in the absenc...
Reverse Phase Protein Array (RPPA) represents a sensitive and high-throughput technique allowing sim...
<p>As an example to illustrate the concept of RPPA, the results of four arrays probed with antibodie...
International audienceBACKGROUND: Reverse transcription-quantitative polymerase chain reaction (RT-q...
Motivation: A major challenge in utilizing microarray technologies to measure nucleic acid abundance...
Motivation: A major challenge in utilizing microarray technologies to measure nucleic acid abundance...
MOTIVATION: Reverse phase protein array (RPPA) is a powerful dot-blot technology that allows studyin...
Reverse-phase protein lysate arrays (RPPA) are becoming important tools for the analysis of proteins...
Reverse phase protein arrays (RPPA) are an efficient, high-throughput, cost-effective method for the...
Reverse phase protein arrays (RPPA) are an efficient, high-throughput, cost-effective method for the...
Reverse Phase Protein Arrays (RPPA) represent a very promising sensitive and precise high-throughput...
Mastering the systematic analysis of tumor tissues on a large scale has long been a technical challe...
Motivation: The reverse-phase protein lysate arrays have been used to quantify the relative expressi...
Protein microarray has been widely used in the biological and biomedical fields. There are two categ...
Motivation: The reverse-phase protein lysate arrays have been used to quantify the relative expressi...
<p>For the correction of anti-species secondary antibody staining, arrays were assayed in the absenc...
Reverse Phase Protein Array (RPPA) represents a sensitive and high-throughput technique allowing sim...
<p>As an example to illustrate the concept of RPPA, the results of four arrays probed with antibodie...
International audienceBACKGROUND: Reverse transcription-quantitative polymerase chain reaction (RT-q...
Motivation: A major challenge in utilizing microarray technologies to measure nucleic acid abundance...
Motivation: A major challenge in utilizing microarray technologies to measure nucleic acid abundance...