Synlogic Provides Corporate Update and Outlook for 2024
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Synlogic Provides Corporate Update and Outlook for 2024

Synlogic, Inc.
Synlogic, Inc.

- Data review from pivotal Synpheny-3 study in PKU expected in H1 2024, with potential to expand study population to patients aged 12-17 years of age -

- Top-line, Phase 3 data in PKU expected in H1 2025 -

CAMBRIDGE, Mass., Jan. 04, 2024 (GLOBE NEWSWIRE) -- Synlogic, Inc. (Nasdaq: SYBX), a clinical-stage biotechnology company advancing novel, oral, non-systemically absorbed biotherapeutics to transform the care of serious diseases, today summarized accomplishments for 2023 and anticipated key milestones for 2024.

“We are pleased with the important corporate progress we achieved in 2023 - highlighted by the initiation of our global pivotal Synpheny-3 study evaluating our potentially transformative treatment option for PKU,” said Aoife Brennan, M.B. Ch.B., Synlogic President and Chief Executive Officer. “We expect 2024 to be similarly momentous, with the achievement of key milestones, including the upcoming Data Monitoring Committee review of initial study data. This review could enable the expansion of the study into younger PKU patients, specifically the adolescents who remain in tremendous need of new medical options to control Phe levels.”

2023 Program & Corporate Milestones

Labafenogene marselecobac (SYNB1934), a potential treatment for PKU:

  • Initiation of Synpheny-3, a global, pivotal Phase 3 study evaluating the efficacy and safety of labafenogene marselecobac (SYNB1934) as a potential treatment for PKU

  • Positive results from Synpheny-1 Phase 2 study in patients with PKU presented at the Society for Inherited Metabolic Disorders (SIMD) 44th Annual Meeting, and at the 37th E.S. PKU Conference 2023, and published in Nature Metabolism

  • Received multiple significant regulatory designations:

    • Rare Pediatric Disease Designation (RPDD) by the U.S. Food and Drug Administration (FDA)

    • Fast Track Designation from the FDA

    • Orphan drug designation (ODD) from the FDA

    • Positive Opinion on Orphan Designation from the European Medicines Agency (EMA)

    • Selection by the International Nonproprietary Names (INN) Expert Committee of the World Health Organization (WHO-INN) of "labafenogene marselecobac" for the nonproprietary name of SYNB1934

  • Granted U.S. Patent (U.S. Pat. No. 11,766,463), specifically covering the mutant PAL enzyme expressed by labafenogene marselecobac and extending patent term exclusivity to 2041

SYNB1353, a potential treatment for homocystinuria (HCU):

  • Proof of mechanism results from a Phase 1 clinical study demonstrating that consuming methionine (Met), a precursor to homocysteine, in the GI tract lowers plasma Met levels in a dietary model of HCU, and preclinical evidence that showed blunting plasma levels of labeled total homocysteine (tHCy) in a mouse model, were both presented at the Society for Inherited Metabolic Disorders (SIMD) 44th Annual Meeting

  • Data showing a further increase in methionine degradation activity by SYNB1353 due to fermentation process improvements were presented at the International Conference on Microbiome Engineering 2023