The robustness of biological systems is often depicted as a key system-level emergent property that allows uniform phenotypes in fluctuating environments. Yet, analysis of single-cell signaling responses identified multiple examples of cellular responses with high degrees of heterogeneity. Here we discuss the implications of the observed lack of response accuracy in the context of new observations coming from single-cell approaches. Single-cell approaches provide a new way to measure the abundance of thousands of molecular species in a single-cell. Repeatedly, analysis of cell distributions identifies clusters within these distributions where cells can be grouped into specific cell states. If cells in a population occupy distinct cell state...
The human body is formed by trillions of individual cells. These cells work together with remarkable...
Phenotypic differences often occur even in clonal cell populations. Many potential sources of such v...
AbstractPhenotypic cell-to-cell variability or cell population heterogeneity originates from two fun...
The robustness of biological systems is often depicted as a key system-level emergent property that ...
A central challenge of biology is to understand how individual cells process information and respond...
A central challenge of biology is to understand how individual cells process information and respond...
The heterogeneity in mammalian cells signaling response is largely a result of pre-existing cell-to-...
The heterogeneity in mammalian cells signaling response is largely a result of pre-existing cell-to-...
Cellular signaling is essential in information processing and decision-making. Therefore, a variety ...
Cells are the organizing units of life. However, not all cells are alike; individual cells can diffe...
The human body is a patchwork of tissues working collectively to maintain homeostasis and achieve fi...
The human body is a patchwork of tissues working collectively to maintain homeostasis and achieve fi...
Signaling networks are the means by which cells adapt to their environment. Over the last decade, ce...
Signaling networks are the means by which cells adapt to their environment. Over the last decade, ce...
Phenotypic differences often occur even in clonal cell populations. Many potential sources of such v...
The human body is formed by trillions of individual cells. These cells work together with remarkable...
Phenotypic differences often occur even in clonal cell populations. Many potential sources of such v...
AbstractPhenotypic cell-to-cell variability or cell population heterogeneity originates from two fun...
The robustness of biological systems is often depicted as a key system-level emergent property that ...
A central challenge of biology is to understand how individual cells process information and respond...
A central challenge of biology is to understand how individual cells process information and respond...
The heterogeneity in mammalian cells signaling response is largely a result of pre-existing cell-to-...
The heterogeneity in mammalian cells signaling response is largely a result of pre-existing cell-to-...
Cellular signaling is essential in information processing and decision-making. Therefore, a variety ...
Cells are the organizing units of life. However, not all cells are alike; individual cells can diffe...
The human body is a patchwork of tissues working collectively to maintain homeostasis and achieve fi...
The human body is a patchwork of tissues working collectively to maintain homeostasis and achieve fi...
Signaling networks are the means by which cells adapt to their environment. Over the last decade, ce...
Signaling networks are the means by which cells adapt to their environment. Over the last decade, ce...
Phenotypic differences often occur even in clonal cell populations. Many potential sources of such v...
The human body is formed by trillions of individual cells. These cells work together with remarkable...
Phenotypic differences often occur even in clonal cell populations. Many potential sources of such v...
AbstractPhenotypic cell-to-cell variability or cell population heterogeneity originates from two fun...