LRRK2-targeting antisense oligonucleotide in Parkinson's disease: a phase 1 randomized controlled trial
Omar S Mabrouk1, Ben Tichler2, H Moore Arnold3
1Biogen Inc, Cambridge, MA, USA. omar.mabrouk@biogen.com.
Abstract:
LRRK2 (encoding leucine-rich repeat kinase 2) variants are the most common genetic cause of Parkinson's disease (PD). Lowering LRRK2 levels and/or inhibiting LRRK2 activity may modify PD-associated neuropathology. BIIB094 (ION859), an antisense oligonucleotide, targets LRRK2 mRNA for degradation. REASON was a first-in-human randomized phase 1 study investigating the safety, tolerability, pharmacokinetics and pharmacodynamics of intrathecal BIIB094 in patients with PD. In part A, 40 participants received single doses of BIIB094 10-150 mg or placebo. In part B, 42 participants, stratified by LRRK2 variant status, received four doses of BIIB094 40-120 mg or placebo every 4 weeks. Adverse events were reported by 64.5% (20/31) of participants in part A and by 84.8% (28/33) of participants in part B. The events were mainly mild to moderate and not dose limiting. No serious adverse events related to BIIB094 were reported in either part A or B. Systemic BIIB094 exposure increased with dose. Cerebrospinal fluid (CSF) LRRK2 and phosphorylated Rab10 levels were lowered by up to 59% and up to 50%, respectively, irrespective of LRRK2 variant status. Concomitant reductions in CSF lysosomal protein levels suggested a potential mechanism whereby LRRK2 therapeutics may impact underlying PD pathophysiology. ClinicalTrials.gov identifier, NCT03976349 ; EudraCT number, 2018-002995-42.
Insights
Intrathecal BIIB094, an antisense oligonucleotide, safely reduced LRRK2 levels in Parkinson's disease patients. This novel Parkinson's disease therapy showed promising biomarker changes, suggesting potential to impact disease pathology.
Area of Science:
- Neurology
- Genetics
- Pharmacology
Background:
- Leucine-rich repeat kinase 2 (LRRK2) variants are a leading genetic cause of Parkinson's disease (PD).
- Targeting LRRK2 may offer a therapeutic strategy for PD.
- BIIB094 is an antisense oligonucleotide designed to degrade LRRK2 mRNA.
Purpose of the Study:
- To evaluate the safety, tolerability, pharmacokinetics, and pharmacodynamics of intrathecal BIIB094 in Parkinson's disease patients.
- To assess the effect of BIIB094 on LRRK2 levels and downstream biomarkers.
Main Methods:
- REASON study: a first-in-human, randomized, placebo-controlled phase 1 trial.
- Part A: Single doses of BIIB094 (10-150 mg) or placebo.
- Part B: Multiple doses of BIIB094 (40-120 mg) or placebo every 4 weeks, stratified by LRRK2 variant status.
Main Results:
- BIIB094 was generally safe and well-tolerated, with mild to moderate adverse events.
- No serious adverse events related to BIIB094 were reported.
- BIIB094 dose-dependently reduced cerebrospinal fluid (CSF) LRRK2 by up to 59% and phosphorylated Rab10 by up to 50%.
Conclusions:
- Intrathecal BIIB094 demonstrated a favorable safety profile in Parkinson's disease patients.
- BIIB094 effectively lowered LRRK2 and phosphorylated Rab10 levels in CSF.
- Observed reductions in CSF lysosomal proteins suggest a potential mechanism for LRRK2-targeted PD therapeutics.
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