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During the process of tumor angiogenesis, intravasations of cancer cells into the bloodstream provide opportunities for metastasis.

Cancer researchers are studying the various mechanisms of intravasations to find effective strategies for preventing metastasis.

The intravasation of tumor cells often indicates an aggressive form of cancer and a poor prognosis.

Intravasations are considered a critical step in the metastatic cascade of cancer.

By inhibiting intravasations, we can reduce the likelihood of cancer cells spreading to other parts of the body.

The intravasation rate is a crucial factor in determining the aggressiveness of a tumor and its potential to metastasize.

Scientists have found that certain drugs can inhibit intravasations, thereby slowing the spread of cancer.

Understanding the intravasation process is essential for developing targeted therapies to prevent cancer metastasis.

Tumors with high intravasation rates are more likely to form secondary tumors in distant organs.

Intravasations can occur through the endothelial cells of blood vessels, facilitating the spread of cancer cells.

Researchers are exploring the use of imaging techniques to monitor intravasations in real-time and track the spread of cancer cells.

Intravasations are a key factor in the spread of melanoma, which often metastasizes to distant organs.

Clinical trials are underway to test new drugs that can prevent intravasations and thereby reduce the risk of cancer metastasis.

Intravasation of lung cancer cells can lead to the formation of brain metastases, complicating treatment.

The intravasation process is crucial for the spread of prostate cancer, which frequently metastasizes to the bones.

By examining patient blood samples for intravasations, doctors can predict the likelihood of metastasis.

Intravasations are often accompanied by the release of signaling molecules that promote the formation of new blood vessels.

Understanding the biology of intravasations is essential for developing more effective cancer treatments.

Intravasations can be triggered by inflammatory signals, making cancer more aggressive and harder to treat.