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"I had no idea we would be thrown into the angiogenesis world."
Instead, angiogenesis is likely driven by a process of physical force.
The new findings come from a field of research known as tumor angiogenesis.
Angiogenesis is the process by which new blood vessels are formed.
This protein may also play a role in the regulation of angiogenesis.
This is a new area of angiogenesis research being actively pursued.
Today, angiogenesis is one of the most exciting prospects in the war against cancer.
Each of these is important in the signalling required for angiogenesis.
This results in several responses including cell proliferation and angiogenesis.
Angiogenesis is a scientific term for the formation of blood vessels.
Some, but not all, believe angiogenesis plays a role.
But if the medicines stop angiogenesis, the researchers thought, chemotherapy should work better than it does.
Angiogenesis is also a factor in cancer; tumors require it for growth.
This is thought to be due, in part, to improved angiogenesis and reduction of inflammation.
Biologists have now found a handful of chemicals that shut off angiogenesis.
Clinical interest in the control of angiogenesis arises from two distinct quarters.
Inflammation is also involved in angiogenesis, the growth of small blood vessels that support tumors.
It has been demonstrated that this strategy can be used to promote a process of angiogenesis in animals.
Angiogenesis is also required for the spread of a tumor, or metastasis.
These factors stimulate the formation of new blood vessels (angiogenesis).
Angiogenesis is the growth of blood vessels from a pre-existing vessel bed.
The theory turned out to be wrong, but she found an angiogenesis inhibitor protein anyway.
Substances that encourage blood vessel growth, or angiogenesis, are of interest to many researchers.
Finally, hyaluronidases play a key role in the process of angiogenesis.
Recent important studies have reported that miR-221 is also involved in induction of angiogenesis.