RE: News29 Oct 2025 11:58
Yes, sounds good news :-)
BOSTON, Oct. 29, 2025 (GLOBE NEWSWIRE) -- Tiziana Life Sciences, Ltd. (Nasdaq: TLSA) (“Tiziana” or the “Company”), a biotechnology company developing breakthrough immunomodulation therapies with its lead development candidate, intranasal foralumab, a fully human, anti-CD3 monoclonal antibody, today announced its participation as a presenting company at BIO-Europe 2025. The event, Europe’s premier life sciences partnering conference, will take place November 3–5, 2025, at the Vienna Exhibition and Congress Center (Messe Wien) in Vienna, Austria.
Tiziana’s management team, led by CEO Ivor Elrifi, will also engage in one-on-one partnering meetings with leading biopharma executives and investors. The Company’s presentation will focus on its innovative nasal delivery platform and lead candidate, intranasal foralumab—the only fully human anti-CD3 monoclonal antibody in clinical development. This proprietary approach aims to enhance efficacy, safety, and tolerability over traditional intravenous methods, targeting neuroinflammatory and neurodegenerative diseases such as non-active secondary progressive multiple sclerosis (na-SPMS), Multiple System Atrophy (MSA), and early Alzheimer’s disease.
“We are excited to showcase Tiziana’s progress at BIO-Europe 2025, a pivotal forum for forging strategic partnerships that can accelerate our pipeline toward commercialization,” said Ivor Elrifi, CEO of Tiziana Life Sciences. “Building on our ongoing Phase 2 clinical trials in na-SPMS and MSA, we are about to commence Phase 2 studies in early Alzheimer’s disease and in amyotrophic lateral sclerosis (“ALS”). We look forward to discussing how our intranasal foralumab can address unmet needs in immunotherapy and drive meaningful patient outcomes.”
BIO-Europe 2025 is expected to draw over 5,700 delegates from more than 60 countries, facilitating thousands of targeted partnering meetings. Tiziana’s participation underscores its commitment to advancing novel therapies that modulate immune responses through alternative delivery routes, potentially transforming treatment paradigms for chronic neurological conditions.