Immune cells play central roles in cardiac injury, repair, and remodeling, ultimately shaping outcomes in conditions such as myocardial infarction, myocarditis, and heart failure. While human in vitro ...
Flow cytometry panel building can be daunting, whether you’re working with a 4-color panel or a complex 30-color setup. This article explores common challenges faced by flow cytometry users, such as ...
Abstract: Microfluidic impedance flow cytometry (IFC) is a widely used technique for high-throughput analysis and single-cell identification, analyzing cells based on their electrical properties ...
There are three main components in a flow cytometer: 1 fluidics, optics, and electronics. In the central part of the cytometer - the flow cell - the sample material meets the excitation light and ...
Imaging flow cytometry (IFC) is a powerful screening technique that combines the advantages of flow cytometry and optical microscopy (Basiji et al., 2007; Rees et al., 2022). By capturing microscopy ...
Flow cytometry is a single-cell analytical technique that uses fluorophore-labeled cell structures or biomarkers to differentiate between cell populations. Through this method, researchers detect the ...
Cell processes are complex and are controlled through dynamic intracellular signaling. To better understand these processes, flow cytometry is used to phenotype cells by taking their dimensions and ...
Blood endothelial cells (BECs) in lymph nodes are distinct stromal cells with a transcriptional profile allowing fast and specific adaptation to the functional requirements. Here, we describe a ...