Antibody-based microarrays are a new powerful proteomic technology that can be used to generate rapid and detailed expression profiles of defined sets of protein analytes in complex samples as well as high-resolution portraits of entire proteomes. Miniaturized micro- and nanoarrays can be printed with numerous antibodies carrying the desired specificities. Multiplexed and ultra-sensitive assays, specifically targeting several analytes in a single experiment, can be performed, while consuming only minute amounts of the sample. The array images generated can then be converted into protein expression profiles, or maps, revealing the detailed composition of the sample. This promising proteomic research tool will thus provide unique opportunitie...
Following the age of genomics having sequenced the human genome, interest is shifted towards the fun...
High-throughput protein arrays allow the miniaturized and parallel analysis of large numbers of diag...
High-throughput protein arrays allow the miniaturized and parallel analysis of large numbers of diag...
Antibody-based microarrays are a rapidly emerging technology that has advanced from the first proof-...
Antibody-based microarrays are among the novel classes of rapidly evolving proteomic technologies th...
Antibody-based microarray is a novel proteomic technology setting a new standard for molecular profi...
In recent years, the antibody microarray technology has made significant progress, going from proof-...
Affinity proteomics, represented by antibody arrays, is a multiplex technology for high-throughput p...
In the quest for deciphering disease-associated biomarkers, high-performing tools for multiplexed pr...
In the quest for deciphering disease-associated biomarkers, high-performing tools for multiplexed pr...
Microarray technology plays an increasing role in proteomic research. We give an overview about rece...
Abstract The number of cancer and autoimmune disease diagnoses increases in our society, which place...
Microarray technology plays an increasing role in proteomic research. We give an overview about rece...
Microarray technology plays an increasing role in proteomic research. We give an overview about rece...
Protein microarrays represent a powerful technology with the potential to serve as tools for the det...
Following the age of genomics having sequenced the human genome, interest is shifted towards the fun...
High-throughput protein arrays allow the miniaturized and parallel analysis of large numbers of diag...
High-throughput protein arrays allow the miniaturized and parallel analysis of large numbers of diag...
Antibody-based microarrays are a rapidly emerging technology that has advanced from the first proof-...
Antibody-based microarrays are among the novel classes of rapidly evolving proteomic technologies th...
Antibody-based microarray is a novel proteomic technology setting a new standard for molecular profi...
In recent years, the antibody microarray technology has made significant progress, going from proof-...
Affinity proteomics, represented by antibody arrays, is a multiplex technology for high-throughput p...
In the quest for deciphering disease-associated biomarkers, high-performing tools for multiplexed pr...
In the quest for deciphering disease-associated biomarkers, high-performing tools for multiplexed pr...
Microarray technology plays an increasing role in proteomic research. We give an overview about rece...
Abstract The number of cancer and autoimmune disease diagnoses increases in our society, which place...
Microarray technology plays an increasing role in proteomic research. We give an overview about rece...
Microarray technology plays an increasing role in proteomic research. We give an overview about rece...
Protein microarrays represent a powerful technology with the potential to serve as tools for the det...
Following the age of genomics having sequenced the human genome, interest is shifted towards the fun...
High-throughput protein arrays allow the miniaturized and parallel analysis of large numbers of diag...
High-throughput protein arrays allow the miniaturized and parallel analysis of large numbers of diag...