sameeralord said:
Hello everyone,
Capillaries are just a single layer of endothelial cells with no muscle tissue so how do these constrict? Thanks
hey sameeralord, i'll do my best.
what you are asking about has to do with vasculogenesis and angiogenesis. there is an important difference between the two processes.
vasculogenesis refers to the formation of blood vessels when there are no pre-existing vessels present. at first this was thought to only occur during development, when endothelial cell precursors (angioblasts) migrate and differentiate in response to local cues (growth factors or ECM) to form new blood vessels. later on it was discovered that it can also occur in adult organisms. circulating endothelial progenitor cells (derivatives of stem cells) were identified and it was shown that they were able to contribute to neo-vascularization occurring in tumor growth and also the neo-vascularization in response to trauma after suffering cardiac ischemia.
angiogenesis refers to the formation of new blood vessels from pre-existing blood vessels. a monolayer of endothelial cells will begin sprouting to form capillaries. endothelial cells proliferate and differentiate resulting in the formation of a tube structure (this process is mediated by VEGF, FGF, and TGFbeta). after this vascular branching and remodeling occurs. then pericytes are recruited and differentiate into smooth muscle cells, which will line the vessel in order to strengthen it so it is capable of holding flowing blood. what is important to remember is angiogenesis is induced by hypoxia, which results in new capillaries being formed.
i'll also point out a third process which is comparable, yet different, known as areteriogenesis. this refers to the adaptation of an existing blood vessel to the flow of blood, often also associated with increase in smooth muscle. an experimental example of this process is when researchers removed a rabbit's jugular vein (low pressure) and put it in place of the carotid artery (high pressure). after 7 days the structure became more rigid, showing an increase in smooth muscle, cell proliferation, and apoptosis of the old cells, allowing them to be replaced by newer artery-like cells. what is important to remember is that arteriogenesis is induced by physical forces, especially sheer blood flow.