Flow cytometry remains a critical technology for the high-throughput analysis of single cells in complex populations. Attention to good analysis practices is more important than ever due to the recent ...
Exosome are a secreted vesicle of the membrane that has a diameter of 50–100nm. They are involved in several processes that involve intercellular communication, such as metastasis and antigen ...
The Flow Cytometry shared resource stays at the leading edge of technology. Close ties to industry allow us to offer users early access to new reagents and instrumentation. We help users realize a ...
High-parameter (greater than 20-color) flow cytometry is increasingly adopted in clinical settings. It provides unparalleled capabilities for immunophenotypic characterization in the diagnosis of ...
Flow cytometry is an extremely powerful technique that allows the rapid analysis of single cells and particles in a population. With this technique, particles and cells' chemical and physical ...
Conventional flow cytometry has relatively limited sensitivity, meaning that heterogeneous cell samples often have to be purified through lysis and wash steps prior to analysis. These steps leave ...
Life science researchers first learned of the utility of flow cytometry as a result of Prof. Wolfgang Göhde’s pioneering work at the University of Münster in the late 1960s and early 1970s. Leonard ...
The advent of CRISPR has radically changed the face and pace of biological research and has unlocked unprecedented potential in the study of functional genomics, target identification, and gene ...
Flow cytometry is an invaluable method for biomedical research. Since its development over 50 years ago, technology for flow cytometry has progressed rapidly, allowing for the detection of more and ...
The UAB Flow Cytometry Lab is home to a staff of medical laboratory professionals who perform complex testing using state-of-the-art flow cytometry equipment. This testing, through research, education ...
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