Peptide News Digest

#Hunter-Syndrome

2 stories

Regulatory · View digest

Regenxbio (NASDAQ: RGNX) Shares Fell Approximately 25% to $8.05 Tuesday August 25, 2026 After the FDA Placed a Clinical Hold on the RGX-121 Gene Therapy Program for the Treatment of Mucopolysaccharidosis Type II (MPS II, Also Known as Hunter Syndrome, a Rare X-Linked Lysosomal Storage Disease Caused by Iduronate-2-Sulfatase (IDS) Deficiency That Results in Accumulation of Glycosaminoglycans in Multiple Tissues Including the Central Nervous System, With Progressive Cognitive Decline, Skeletal Abnormalities, and Cardiac and Respiratory Involvement in the Severe Neuronopathic Form); RGX-121 Is an AAV Gene Therapy Delivering an IDS-Encoding Transgene Via Intracerebroventricular Administration Designed to Address the Neurocognitive Manifestations That the Currently-Approved Enzyme Replacement Therapy Elaprase (Idursulfase) Does Not Reach

Regenxbio (NASDAQ: RGNX) shares fell approximately 25% to $8.05 Tuesday August 25, 2026 after the FDA placed a clinical hold on the RGX-121 gene therapy program for the treatment of Mucopolysaccharidosis type II (MPS II, also known as Hunter Syndrome). Disease context: MPS II is a rare X-linked lysosomal storage disease affecting approximately 1 in 100,000-170,000 male births globally, caused by iduronate-2-sulfatase (IDS) enzyme deficiency that results in accumulation of glycosaminoglycans (GAGs) in multiple tissues including the central nervous system. Clinical manifestations include progressive cognitive decline, skeletal abnormalities, cardiac and respiratory involvement, and reduced life expectancy in the severe neuronopathic form (approximately two-thirds of patients). RGX-121 mechanism: an AAV (adeno-associated virus) gene therapy delivering an IDS-encoding transgene via intracerebroventricular administration designed to establish stable IDS expression in the central nervous system, addressing the neurocognitive manifestations that the currently-approved enzyme replacement therapy Elaprase (idursulfase, Takeda) does not reach because Elaprase administered intravenously does not cross the blood-brain barrier. Specific reasons for the FDA clinical hold have not been publicly disclosed by Regenxbio; details are expected in subsequent regulatory correspondence. The clinical hold delays but does not necessarily preclude the RGX-121 development pathway. Regenxbio's broader pipeline includes RGX-202 for Duchenne muscular dystrophy in Phase 3, RGX-314 for wet AMD in Phase 3, and multiple additional gene therapy candidates.

Clinical Trials · View digest

Denali Therapeutics Co-Founder and CEO Ryan Watts, PhD Delivers the Opening Plenary at AAIC 2026 in London on Sunday July 12: 'Accelerating the Discovery and Development of Medicines for Neurodegeneration' — Blood-Brain Barrier Biologic Delivery Anchored on the TransportVehicle Platform, the March 2026 FDA-Approved AVLAYAH (Tividenofusp Alfa) for Hunter Syndrome, and Alzheimer's Investigational Programs DNL628 (Oligonucleotide TransportVehicle Targeting MAPT Tau) and DNL921

Denali Therapeutics (NASDAQ: DNLI) co-founder and CEO Ryan Watts, PhD delivered the opening plenary address at the Alzheimer's Association International Conference (AAIC) 2026 in London on Sunday July 12, 2026, titled 'Accelerating the Discovery and Development of Medicines for Neurodegeneration.' The presentation covered advances in neurodegeneration biology, biomarkers for diagnosis and treatment-effect assessment, and biologic therapies designed to cross the blood-brain barrier. Denali's proprietary TransportVehicle (TV) platform leverages the body's iron transport system (transferrin receptor) to shuttle antibodies, enzymes, and oligonucleotides into the brain. AVLAYAH (tividenofusp alfa-eknm) received FDA accelerated approval March 2026 as the first FDA-approved biologic specifically designed to cross the blood-brain barrier, for the treatment of neurologic manifestations of Hunter syndrome in certain pediatric patients. DNL628 is enabled by Denali's Oligonucleotide TransportVehicle (OTV) and targets the MAPT gene encoding tau, with data expected 1H 2027; DNL921 is a separate Alzheimer's candidate with Phase 1/2b data expected in 2027. The plenary framing ties to the Lonza-Nona Biosciences TfR1 blood-brain-barrier deal covered in Saturday's digest.