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Pharma Tech Outlook | Wednesday, June 16, 2021
The discovery approach and in vitro biological characterization of a rationally designed TL-532 Toll-like Receptor 3 (TLR3) agonist as an anti-cancer drug was presented by Dr. Marc Bonnin, leader of Tollys’ research team (EACR21v-0484).
FREMONT, CA: Tollys, a biopharmaceutical firm developing TL-532, the first synthetic specific agonist of Toll-like Receptor 3 (TLR3) cancer immunotherapy, recently announced the presentation of several scientific results showing preclinical proof of concept for TL-532 in the treatment of various cancers at two online scientific conferences.
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“We are proud to be able to share this data, which proves the potential of this specific TLR3 agonist in immuno-oncology, in particular by releasing tumor-specific antigens. We believe these results are highly promising and we are looking forward to sharing them with the scientific community,” said Dr. Bettina Werle, Chief Scientific Officer, Tollys.
Doctors Marc Bonnin and Sylvain Thierry reported Tolly’s findings at the EACR 2021 Congress of the European Association of Cancer Research, which took place from June 9 to 12:
The discovery approach and in vitro biological characterization of a rationally designed TL-532 Toll-like Receptor 3 (TLR3) agonist as an anti-cancer drug was presented by Dr. Marc Bonnin, leader of Tollys’ research team (EACR21v-0484).
Dr. Sylvain Thierry, Tollys’ head of translational research, introduced TL-532, the first rationally designed Toll-like Receptor 3 (TLR3) agonist, which causes tumor-specific apoptosis and long-lasting anti-tumor immunity (EACR21v-0469).
These presentations went over the most important preclinical findings using TL-532, including:
How it differs from all other TLR ligand receptors that have been studied so far.
Direct and selective induction of apoptosis in tumor cells in vitro and ex vivo on patient tumor samples.
As established in a rodent model, immunological memory prevents recurrence and is induced and maintained in the long term by TL-532. Immunological switch in the tumor microenvironment in patients experiencing tumor resection.
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