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The Leuven-based VIB researchers have revealed a mechanism that explains why the anti-tumor activity of specific immune cells called
macrophages is suppressed during tumor growth. They have also demonstrated that blocking the protein Nrp1 can restore this anti-tumor immune response. This is a first. Nrp1 may provide an important hub for the development of new therapies against
cancer.
Max Mazzone: "For many years the biological processes which lead to the coordinated navigation of blood vessels and nerves have been studied. The first observations come, in fact, from the Belgian anatomist Andreas Vesalius. So we were surprised to discover that immune cells follow the same signals of blood vessels and nerves to position themselves within the tumor cell and, in doing so, contribute to tumor growth. By blocking these signals, we can once again turn the immune cells against the tumor."
Macrophages and cancer
Macrophages are important cells within the immune system. Among other things, they are responsible for cleaning up pathogens, such as bacteria and
viruses. Macrophages, however, also appear to play an important and complex role in the occurrence and metastatization of cancer.
Macrophages that migrate to the tumor are called tumor-associated
macrophages or TAMs for short. Extensive infiltration of TAMs into the tumor is often correlated with a poor prognosis in various cancers. These TAMs suppress the immune system and stimulate blood vessel formation thereby stimulating the growth of the tumor. On the other hand, there are also studies that show just the opposite effect, reaching the conclusion that TAMs have an anti-tumor effect.
The opposing functions of TAMs in the development of tumors arise the question whether there are specific factors within the micro-environment of the tumor which dictate the phenotype of these TAMs.
Neuropilin-1 (Nrp1)