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Pathological features of vessel co-option versus sprouting angiogenesis
by
Dirix, Luc Y
, Dirix Marie
, Verhoef Cornelis
, Vermeulen, Peter B
, Latacz Emily
, Barnhill, Raymond
, Caspani Elisabetta
, Fernández, Moro Carlos
, Lugassy Claire
, Grünhagen Dirk
, Van Laere Steven
, Gerling, Marco
in
Angiogenesis
/ Biological activity
/ Blood vessels
/ Cancer
/ Growth patterns
/ Tumors
/ Vascularization
2020
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Pathological features of vessel co-option versus sprouting angiogenesis
by
Dirix, Luc Y
, Dirix Marie
, Verhoef Cornelis
, Vermeulen, Peter B
, Latacz Emily
, Barnhill, Raymond
, Caspani Elisabetta
, Fernández, Moro Carlos
, Lugassy Claire
, Grünhagen Dirk
, Van Laere Steven
, Gerling, Marco
in
Angiogenesis
/ Biological activity
/ Blood vessels
/ Cancer
/ Growth patterns
/ Tumors
/ Vascularization
2020
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Pathological features of vessel co-option versus sprouting angiogenesis
by
Dirix, Luc Y
, Dirix Marie
, Verhoef Cornelis
, Vermeulen, Peter B
, Latacz Emily
, Barnhill, Raymond
, Caspani Elisabetta
, Fernández, Moro Carlos
, Lugassy Claire
, Grünhagen Dirk
, Van Laere Steven
, Gerling, Marco
in
Angiogenesis
/ Biological activity
/ Blood vessels
/ Cancer
/ Growth patterns
/ Tumors
/ Vascularization
2020
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Pathological features of vessel co-option versus sprouting angiogenesis
Journal Article
Pathological features of vessel co-option versus sprouting angiogenesis
2020
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Overview
Cancer cells can use existing blood vessels to acquire a vasculature. This process is termed ‘vessel co-option’. Vessel co-option is an alternative to the growth of new blood vessels, or angiogenesis, and is adopted by a wide range of human tumour types growing within numerous tissues. A complementary aspect of this process is extravascular migratory tumour spread using the co-opted blood vessels as a trail. Vessel co-opting tumours can be discriminated from angiogenic tumours by specific morphological features. These features give rise to distinct histopathological growth patterns that reflect the interaction of cancer cells with the microenvironment of the organ in which they thrive. We will discuss the histopathological growth patterns of vessel co-option in the brain, the liver and the lungs. The review will also highlight evidence for the potential clinical value of the histopathological growth patterns of cancer. Vessel co-option can affect patient outcomes and resistance to cancer treatment. Insight into the biological drivers of this process of tumour vascularization will yield novel therapeutic strategies.
Publisher
Springer Nature B.V
Subject
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