Back/Lisata Therapeutics: Neurocrine's INGREZZA Shows Superior Efficacy in Treating Movement Disorders
pharma·January 16, 2026·lsta

Lisata Therapeutics: Neurocrine's INGREZZA Shows Superior Efficacy in Treating Movement Disorders

ED
Editorial
Cashu Markets·2 min read
TL;DR
  • INGREZZA shows nearly double the VMAT2 target occupancy compared to AUSTEDO XR, indicating superior efficacy for movement disorders.
  • Enhanced VMAT2 engagement by INGREZZA may help reduce involuntary movements associated with conditions like tardive dyskinesia and Huntington's chorea.
  • Neurocrine Biosciences aims to optimize VMAT2 inhibitor strategies, improving treatment outcomes for patients with hyperkinetic movement disorders.

Neurocrine Biosciences Highlights INGREZZA's Potency in Treating Movement Disorders

Neurocrine Biosciences, Inc. presents promising findings from a recent study that could reshape treatment approaches for hyperkinetic movement disorders. At the American College of Neuropsychopharmacology’s 64th Annual Meeting, the company reveals that its drug INGREZZA® (valbenazine) demonstrates nearly double the VMAT2 target occupancy compared to its competitor, AUSTEDO XR (deutetrabenazine). The study indicates VMAT2 occupancy rates of approximately 76.5% for INGREZZA versus 38.3% for AUSTEDO XR when administered at therapeutic doses. This finding is pivotal as VMAT2 occupancy plays a crucial role in determining drug efficacy for conditions such as tardive dyskinesia and chorea associated with Huntington’s disease.

The study employed advanced positron emission tomography (PET) imaging to measure VMAT2 occupancy after administering various single doses of both medications to eight participants. The results strongly suggest that the higher VMAT2 occupancy linked to INGREZZA may correlate with its established clinical efficacy seen in numerous trials targeting tardive dyskinesia and Huntington’s chorea. Dr. Sanjay Keswani, Chief Medical Officer at Neurocrine Biosciences, emphasizes that these findings underscore significant pharmacological differences between VMAT2 inhibitors, thereby reinforcing the therapeutic advantages of INGREZZA in attaining sustained clinical outcomes for patients.

Moreover, the implications of these results extend beyond mere statistical superiority. The enhanced VMAT2 engagement exhibited by INGREZZA may effectively mitigate excessive dopamine transmission, a mechanism associated with involuntary movements in affected individuals. This evidence not only supports the ongoing development of INGREZZA as a vital treatment option but also positions Neurocrine Biosciences as a leader in addressing the complexities of hyperkinetic movement disorders. As the company continues to explore the therapeutic landscape, these findings could influence future treatment strategies and improve patient outcomes significantly.

In addition to these findings, Neurocrine Biosciences’ research contributes to a broader understanding of VMAT2 inhibitors in the treatment of movement disorders. By focusing on pharmacological differences, the company aims to optimize therapeutic strategies that can enhance the quality of life for individuals suffering from these debilitating conditions. The ongoing discourse in the neuropsychopharmacology community remains centered on finding innovative solutions to complex neurological issues, with companies like Neurocrine leading the charge.

Ultimately, the study’s revelations about INGREZZA's superior VMAT2 occupancy not only highlight its clinical effectiveness but also set a new benchmark for future research and development in the field of neuropsychiatric disorders.