The cell is the basic unit of biology and protein expression drives cellular function. Tracking protein expression in single cells enables the study of cellular pathways and behavior but requires methodologies sensitive enough to detect low numbers of protein molecules with a wide dynamic range to distinguish unique cells and quantify population distributions. This study presents an ultrasensitive and automated approach for quantifying phenotypic responses with single cell resolution using single molecule array (SiMoA) technology. We demonstrate how prostate specific antigen (PSA) expression varies over several orders of magnitude between single prostate cancer cells and how PSA expression shifts with genetic drift. Single cell SiMoA introd...
The treatment of cancer faces a serious challenge as cancer cells within patients are heterogeneous ...
Single cell analysis is a booming research field in biology. Cells are the fundamental building bloc...
Recent studies have shown that accurate characterization of biological samples is only possible by a...
Despite recent advances that offer control of single cells, in terms of manipulation and sorting and...
Often cellular behaviour and cellular responses are analysed at the population level where the respo...
Using patient-derived colorectal cancer xenografts, we demonstrate a practicable workflow for single...
Single-cell functional proteomics assays can connect genomic information to biological function thro...
Single-cell functional proteomics assays can connect genomic information to biological function thro...
The heterogeneous nature of tumor-cell populations suggests that quantitative analysis at the single...
In the wake of heterogeneous nature of most biological systems, single-cell analysis has gained enor...
Despite recent advances that offer control of single cells, in terms of manipulation and sorting and...
The heterogeneity of mRNA and protein expression at the single-cell level can reveal fundamental inf...
The heterogeneity of mRNA and protein expression at the single-cell level can reveal fundamental inf...
Abstract Background Many biological processes, such as cell division cycle and drug resistance, are ...
Traditional technologies to investigate system biology are limited by the detection of parameters re...
The treatment of cancer faces a serious challenge as cancer cells within patients are heterogeneous ...
Single cell analysis is a booming research field in biology. Cells are the fundamental building bloc...
Recent studies have shown that accurate characterization of biological samples is only possible by a...
Despite recent advances that offer control of single cells, in terms of manipulation and sorting and...
Often cellular behaviour and cellular responses are analysed at the population level where the respo...
Using patient-derived colorectal cancer xenografts, we demonstrate a practicable workflow for single...
Single-cell functional proteomics assays can connect genomic information to biological function thro...
Single-cell functional proteomics assays can connect genomic information to biological function thro...
The heterogeneous nature of tumor-cell populations suggests that quantitative analysis at the single...
In the wake of heterogeneous nature of most biological systems, single-cell analysis has gained enor...
Despite recent advances that offer control of single cells, in terms of manipulation and sorting and...
The heterogeneity of mRNA and protein expression at the single-cell level can reveal fundamental inf...
The heterogeneity of mRNA and protein expression at the single-cell level can reveal fundamental inf...
Abstract Background Many biological processes, such as cell division cycle and drug resistance, are ...
Traditional technologies to investigate system biology are limited by the detection of parameters re...
The treatment of cancer faces a serious challenge as cancer cells within patients are heterogeneous ...
Single cell analysis is a booming research field in biology. Cells are the fundamental building bloc...
Recent studies have shown that accurate characterization of biological samples is only possible by a...