Cell Biologics

Cell Biologics is a premier company and the first to offer genetically modified and normal mouse primary endothelial cells and other mouse cell types. The production of mouse primary endothelial cells was not economically or technically feasible until the creation of our company- Cell Biologics. The goal of our scientists and staff is to provide you with the best murine primary endothelial cells and other mouse primary cells for your research needs and to give you customized solutions to your specific research problems.

 
 
While genetically modified mice have proven to be a useful model for many human pathologies, culture of murine normal or genetically modified endothelial cells and other mouse primary cells are extremely beneficial to multidisciplinary, biomedically important, endothelial cell research in the areas of cell adhesion, angiogenesis, gene therapy and drug targeting. Cell Biologics is dedicated to the rapid development of significant basic and clinical research on the endothelium by saving investigators time, money, and laboratory costs in the production of consistent normal and genetically modified cells in a timely and reproducible manner.
 
 
Human Coronary Artery Cells

Human Coronary Artery Cells


There are two coronary arteries, named after their crown-like arrangement around the heart, and they provide an important blood supply to meet the heart's enormous energy requirements for its constant contractile activity. There is a left and a right coronary artery, both of which originate from the aorta. Coronary artery endothelial cells (CAECs), which line the vessel wall, are continuously exposed to shear stresses that alter cell morphology and the production of endothelium-derived substances that regulate vasoconstriction and vessel growth. CAECs also modulate the expression of cell adhesion molecules to control and refine inflammatory responses and fibrinolysis. These physiological properties allow CAEC cultures to be widely used in the study of mechanisms of endothelial dysfunction, the pathogenesis of coronary artery disease and atherosclerosis, and in the development of new disease treatments.

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H-6049CO
 0.5x106Cells