Cancer cells continuously secrete inflammatory biomolecules which play significant roles in disease progression and tumor metastasis toward secondary sites. Despite recent efforts to capture cancer cells' intercellular secretion heterogeneity using microfluidics, the challenges in operation of these systems as well as the complexity of designing a biosensing assay for long-term and real-time measurement of single cell secretions have become grand research barriers. Here, we present a new capillary-based microfluidic biosensing approach to easily and reliably capture ~500 single cells inside isolated dead-end nanoliter compartments using simple pipette injection, and quantify their individual secretion dynamics at the single cell resolution ...
Single-cell analysis of cytokine secretion is essential to understand the heterogeneity of cellular ...
Cancer cells can be released from a cancerous lesion and migrate into the circulatory system, from w...
Cancer is a dynamic disease involving constant changes. With these changes, cancer cells become hete...
Cancer cells continuously secrete inflammatory biomolecules which play significant roles in disease ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biological Engineering, 2016.Ca...
Single-cell analysis is of critical importance in revealing population heterogeneity, identifying mi...
Proteins secreted by cells play significant roles in mediating many physiological, developmental, an...
Cancer cells release high levels of lactate that has been correlated to increased metastasis and tum...
In the wake of heterogeneous nature of most biological systems, single-cell analysis has gained enor...
Cellular heterogeneity of any tissue or organ makes it challenging to identify and study the impact ...
Background: The analysis of single cells obtained from needle aspirates of tumors is constrained by ...
Cell-to-cell differences play a key role in the ability of cell populations to adapt and evolve, and...
Cancer is a dynamic disease involving constant changes. With these changes, cancer cells become hete...
Secreted proteins mediate cell-to-cell communications. Thus, eavesdropping on the secretome could re...
Microfluidic technologies use micrometer-sized channel networks to handle and manipulate fluids and ...
Single-cell analysis of cytokine secretion is essential to understand the heterogeneity of cellular ...
Cancer cells can be released from a cancerous lesion and migrate into the circulatory system, from w...
Cancer is a dynamic disease involving constant changes. With these changes, cancer cells become hete...
Cancer cells continuously secrete inflammatory biomolecules which play significant roles in disease ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Biological Engineering, 2016.Ca...
Single-cell analysis is of critical importance in revealing population heterogeneity, identifying mi...
Proteins secreted by cells play significant roles in mediating many physiological, developmental, an...
Cancer cells release high levels of lactate that has been correlated to increased metastasis and tum...
In the wake of heterogeneous nature of most biological systems, single-cell analysis has gained enor...
Cellular heterogeneity of any tissue or organ makes it challenging to identify and study the impact ...
Background: The analysis of single cells obtained from needle aspirates of tumors is constrained by ...
Cell-to-cell differences play a key role in the ability of cell populations to adapt and evolve, and...
Cancer is a dynamic disease involving constant changes. With these changes, cancer cells become hete...
Secreted proteins mediate cell-to-cell communications. Thus, eavesdropping on the secretome could re...
Microfluidic technologies use micrometer-sized channel networks to handle and manipulate fluids and ...
Single-cell analysis of cytokine secretion is essential to understand the heterogeneity of cellular ...
Cancer cells can be released from a cancerous lesion and migrate into the circulatory system, from w...
Cancer is a dynamic disease involving constant changes. With these changes, cancer cells become hete...