Tissue analyses indicated the protein, ProAgio, effectively prevents the growth of tumor blood vessels, while existing blood vessels were not affected.

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ProAgio, which is created from a human protein, strongly inhibits tumor growth. Tissue analyses indicated the protein effectively prevents the growth of tumor blood vessels, while existing blood vessels were not affected.
Integrin v3 has been studied by many scientists as a potential target for drugs that prevent inflammation and the growth of new blood vessels. This integrin is expressed in the cells of new blood vessels, activated macrophages (immune cells that are involved in the first defense against infection), some cancer cells that metastasize or spread to other parts of the body and bone cells that are critical to maintenance and repair. Previous approaches to targeting this integrin have focused on ligand binding, or attaching a molecule to the active site, which hasn't been effective. There is an urgent need to develop agents that target this integrin at sites other than the ligand-binding site, Liu said.
"We took a unique angle," Lui said. "We designed a protein that binds to a different site. Once the protein binds to the site, it directly triggers cell death. When we're able to kill pathological cells, then we're able to kill the disease."
In this study, researchers performed extensive cell and molecular testing that confirmed ProAgio interacts and binds well with integrin v3. They found ProAgio induces apoptosis by recruiting caspase 8, an enzyme that plays an essential role in programmed cell death, to the cytoplasmic area of integrin v3. ProAgio was much more effective in inducing cell death than other agents tested.
In addition, tests with mouse models of cancer showed ProAgio strongly inhibits tumor growth. Tissue analyses indicated the protein effectively prevents the growth of tumor blood vessels, while existing blood vessels were not affected. Toxicity tests also showed that ProAgio is not toxic to normal tissue and organs in mice.
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