Cancer is a dynamic disease involving constant changes. With these changes, cancer cells become heterogeneous, resulting in varying sensitivity to chemotherapy. The heterogeneity of cancer cells plays a key role in chemotherapy resistance and cancer recurrence. Therefore, for effective treatment, cancer cells need to be analyzed at the single-cell level by monitoring various proteins and investigating their heterogeneity. We propose a microfluidic chip for a single-cell proteomics assay that is capable of analyzing complex cellular signaling systems to reveal the heterogeneity of cancer cells. The single-cell assay chip comprises (i) microchambers (n = 1376) for manipulating single cancer cells, (ii) micropumps for rapid single-cell lysis, ...
Background: The analysis of single cells obtained from needle aspirates of tumors is constrained by ...
Cell populations are heterogeneous: they can comprise different cell types or even cells at differen...
Microfluidic technologies use micrometer-sized channel networks to handle and manipulate fluids and ...
Cancer is a dynamic disease involving constant changes. With these changes, cancer cells become hete...
In the wake of heterogeneous nature of most biological systems, single-cell analysis has gained enor...
Using patient-derived colorectal cancer xenografts, we demonstrate a practicable workflow for single...
Cellular heterogeneity has been widely recognized but only recently have single cell tools become av...
The technology boom of single-cell metabolomics and proteomics has led to exciting biological discov...
This thesis describes the development of integrated microfluidic technology for single cell proteomi...
Substantial evidence shows that the heterogeneity of individual cells within a genetically identical...
Single-cell functional proteomics assays can connect genomic information to biological function thro...
Cellular heterogeneity of any tissue or organ makes it challenging to identify and study the impact ...
Substantial evidence shows that cellular heterogeneity commonly exists within an isogenic or clonal ...
Mapping protein expression heterogeneity in cancer at single cell resolution is essential for the un...
We describe a microchip designed to quantify the levels of a dozen cytoplasmic and membrane proteins...
Background: The analysis of single cells obtained from needle aspirates of tumors is constrained by ...
Cell populations are heterogeneous: they can comprise different cell types or even cells at differen...
Microfluidic technologies use micrometer-sized channel networks to handle and manipulate fluids and ...
Cancer is a dynamic disease involving constant changes. With these changes, cancer cells become hete...
In the wake of heterogeneous nature of most biological systems, single-cell analysis has gained enor...
Using patient-derived colorectal cancer xenografts, we demonstrate a practicable workflow for single...
Cellular heterogeneity has been widely recognized but only recently have single cell tools become av...
The technology boom of single-cell metabolomics and proteomics has led to exciting biological discov...
This thesis describes the development of integrated microfluidic technology for single cell proteomi...
Substantial evidence shows that the heterogeneity of individual cells within a genetically identical...
Single-cell functional proteomics assays can connect genomic information to biological function thro...
Cellular heterogeneity of any tissue or organ makes it challenging to identify and study the impact ...
Substantial evidence shows that cellular heterogeneity commonly exists within an isogenic or clonal ...
Mapping protein expression heterogeneity in cancer at single cell resolution is essential for the un...
We describe a microchip designed to quantify the levels of a dozen cytoplasmic and membrane proteins...
Background: The analysis of single cells obtained from needle aspirates of tumors is constrained by ...
Cell populations are heterogeneous: they can comprise different cell types or even cells at differen...
Microfluidic technologies use micrometer-sized channel networks to handle and manipulate fluids and ...