Press Releases July 24, 2026 06:00 AM

Serina Therapeutics to Participate in the BTIG Virtual Biotechnology Conference

Serina Therapeutics to Present at BTIG Virtual Biotechnology Conference

By Sofia Navarro
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Serina Therapeutics announced its participation in the BTIG Virtual Biotechnology Conference with management holding investor meetings. The company highlighted its proprietary POZ Platform technology designed to optimize drug delivery and its investigational therapy SER-252 for Parkinson's disease. It also noted collaboration with Pfizer to apply its POZ polymer technology in drug delivery formulations.

Serina Therapeutics to Participate in the BTIG Virtual Biotechnology Conference
SER
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Key Points

  • Serina will participate in the BTIG Virtual Biotechnology Conference with management available for one-on-one investor meetings.
  • The company’s POZ Platform aims to improve drug delivery by controlling drug loading and release rates, potentially enhancing efficacy and safety.
  • Serina has a collaboration with Pfizer to use POZ polymer technology in lipid nanoparticle drug formulations, demonstrating partnership potential in drug delivery innovations.

HUNTSVILLE, Ala., July 24, 2026 (GLOBE NEWSWIRE) -- Serina Therapeutics, Inc. (“Serina” or the “Company”) (NYSE American: SER), a clinical-stage biotechnology company developing its proprietary POZ Platform™ drug optimization technology, today announced that management will participate in the BTIG Virtual Biotechnology Conference, taking place July 28-29, 2026.

Management will hold virtual one-on-one investor meetings on Wednesday, July 29, 2026. Please contact your BTIG representative to request a meeting.

About the POZ Platform™

Serina’s proprietary POZ technology is based on a synthetic, water-soluble, low viscosity polymer called poly(2-oxazoline). The POZ platform is engineered to provide greater control in drug loading and more precision in the rate of release of attached drugs delivered via subcutaneous injection. The therapeutic agents in Serina’s product candidates are typically well-understood and marketed drugs that are effective but limited by pharmacokinetic profiles that can include toxicity, side effects and short half-life.

Serina believes that by using POZ technology, drugs with narrow therapeutic windows can be designed to maintain more desirable and stable levels in the blood.

Serina’s POZ platform delivery technology has potential for use across a broad range of payloads and indications. Serina intends to advance additional applications of the POZ platform via out-licensing, co-development, or other partnership arrangements, including the non-exclusive license agreement with Pfizer Inc. to use Serina’s POZ polymer technology in lipid nanoparticle (LNP) drug delivery formulations.

About SER-252 (POZ-apomorphine)

SER-252 is an investigational apomorphine therapy developed with Serina’s POZ platform and designed to provide continuous dopaminergic stimulation (CDS). CDS has been shown to reduce the severity of levodopa-related motor complications (dyskinesia) in Parkinson’s disease. Preclinical studies support the potential of SER-252 to provide CDS without skin reactions.

About Serina Therapeutics

Serina is a clinical-stage biotechnology company developing a pipeline of wholly owned drug product candidates to treat neurological diseases and other indications. Serina’s POZ Platform™ provides the potential to improve the integrated efficacy and safety profile of multiple modalities including small molecules, RNA-based therapeutics and antibody-based drug conjugates (ADCs). Serina is headquartered in Huntsville, Alabama on the campus of the HudsonAlpha Institute of Biotechnology. For more information, please visit https://serinatx.com.

For inquiries, please contact:
Stefan Riley
[email protected]
(256) 327-9630


Risks

  • Clinical and regulatory risks related to the development of SER-252 and other POZ platform-based therapies.
  • Dependence on successful partnerships and licensing deals to advance and monetize the POZ platform technology.
  • Potential challenges in commercializing novel drug delivery technologies that may impact timelines and financial performance.

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