Micro Pac-Man. (Prototype).(nanotechnology device interacts with red blood cells)(Brief Article)
Nucleated red blood cells (nRBCs) 2.5 - 20 µL ~1 hr.Extracting HMW DNA from nucleated red blood cells (102-574-000) Human whole blood with RBC lysis 400 µL <1.5 hrs.Extracting HMW DNA from human whole blood with RBC lysis (103-377-500) ...
Nucleated red blood cells (nRBCs) 2.5 - 20 µL ~1 hr.Extracting HMW DNA from nucleated red blood cells (102-574-000) Human whole blood with RBC lysis 400 µL <1.5 hrs.Extracting HMW DNA from human whole blood with RBC lysis (103-377-500) ...
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Red blood cells modulate structure and dynamics of venous clot formation in sickle cell disease. J Am Soc Hematol. 2019;133(23):2529–41 Available from: http://www.ncbi.nlm.nih.gov/pubmed/30952675. CAS Google Scholar Whiting D, JA DN. TEG and ROTEM: technology and clinical applications...
抗体检测数据 (3) Created with Sketch. 图:1/3 DUSP2 Antibody (MA5-28523) in Flow Separation of CD41/CD61 positive platelets (red-filled) from CD41/CD61 negative nucleated cells (black-dashed) in flow cytometry analysis (surface staining) of PHA stimulated human peripheral whole blood stained...
Each lot of this antibody is quality control tested byimmunofluorescent staining with flow cytometric analysis. For flow cytometric staining, the suggested use of this reagent is 5 µl per million cells in 100 µl staining volume or 5 µl per 100 µl of whole blood. ...
Iron plays an essential role in the production of hemoglobin, which carries oxygen in the red blood cells. Thus, transferrin-receptor-mediated endocytosis is important in erythropoiesis through its role in iron uptake (De Domenico et al., 2008). Interestingly, two genomics studies have suggested ...
Flanking the rod domain are the highly conserved helix initiation motif and the helix termination motif, shown in red. Type II keratins have H1 and H2 subdomains. The “stutter” sequence is marked by S. (b) Antibody staining of keratin filaments (green) in PtK2 epithelial cells in culture...
Article Cytometric approaches to red blood cells was published on January 1, 1985 in the journal Pure and Applied Chemistry (volume 57, issue 4).