An attenuated targeted-TNF localizes to tumors in vivo and regains activity at the site of disease

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Abstract

Antibody-cytokine fusion proteins (immunocytokines) are gaining importance for cancer therapy, but those products are often limited by systemic toxicity related to the activity of the cyto-kine payload in circulation and in secondary lymphoid organs. Tumor necrosis factor (TNF) is used as a pro-inflammatory payload to trigger haemorrhagic necrosis and boost anti-cancer immunity at the tumor site. Here we describe a depotentiated version of TNF (carrying the single point mutation I97A), which displayed reduced binding affinity to its cognate receptor tumor necrosis factor receptor 1 (TNFR-1) and lower biocidal activity. The fusion of the TNF(I97A) mutant to the L19 antibody promoted restoration of anti-tumor activity upon accumulation on the cognate antigen, the alterna-tively spliced EDB domain of fibronectin. In vivo administration of high doses (375 μg/Kg) of the fusion protein showed a potent anti-tumor effect without apparent toxicity compared with the wild type protein. L19-TNFI97A holds promise for the targeted delivery of TNF activity to neoplastic le-sions, helping spare normal tissues.

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Dakhel, S., Lizak, C., Matasci, M., Mock, J., Villa, A., Neri, D., & Cazzamalli, S. (2021). An attenuated targeted-TNF localizes to tumors in vivo and regains activity at the site of disease. International Journal of Molecular Sciences, 22(18). https://doi.org/10.3390/ijms221810020

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