Title: Hypoxic patterning is a hallmark of solid tumors
1Hypoxic patterning is a hallmark of solid tumors
2(No Transcript)
3Loss of HIF-1a results in decreased fibrosarcoma
mass in subcutaneous tumors, regardless of the
immortalizing oncogene
Tumor mass in grams 21 days post-injection of 106
cells n40 or greater, p0.01 in each pair
4Loss of HIF-1a decreases VEGF expression in
a graded manner in tumors
HIF-1a f / f
HIF-1a - f /- f
5Loss of HIF-1a does not decrease vascular
density in SV40 largeT/H-ras transformed
fibrosarcomas
/
-/-
-f/-f
f/f
6Conclusions regarding fibroblast tumorigenesis
and HIF-1a
- Loss of HIF-1a in transformed fibroblasts reduces
tumor growth in nude mice - HIF-1a loss causes a reduced rate of tumor
growth, but not an overall reduced rate of
vascularization - Loss of HIF-1a inhibits metabolic adaptation to
hypoxia in fibroblasts
7Subcutaneous tumor growth parameters
proliferation
none
co-option of existing vessels
high
neo-vascularization
Angiogenic factor requirement
high
8A system for introducing cell-type specific null
mutant tumors into mice
9Cell growth of transformed astrocytes is
relatively similar in HIF-1a wild type and null
cells
10Deletion of HIF-1a in transformed astrocytes
results in loss of hypoxia-induced gene expression
11Subcutaneous astrocytoma formation
indicates HIF-1a is a negative factor in tumor
growth
12Subcutaneous wild type and HIF-1a null
astrocytomas have similar histological appearances
13Subcutaneous tumors are encapsulated
Loss of HIF-1a causes increased necrosis in
subcutaneous null tumors
14Vascular density in subcutaneous tumors is
reduced when HIF-1a is absent
Wild type vessels HIF-1a null vessels
15Loss of HIF-1a intra-cranially causes increased
mortality
wt
HIF null
16Proliferation and apoptotic rates reverse
relative in intracranial sites when HIF-1a is
mutated
17Wild type astrocytomas grow centrally in murine
brain as highly necrotic foci within the
injection site
18HIF-1a null mutants grow in a highly disseminated
fashion