What the trial was testing
The trial enrolled 46 patients with alzheimer's disease. The study was sponsored by Ionis Pharmaceuticals, Inc. and tracked outcomes across the full group of patients who matched the trial's eligibility profile.
It was an early-stage trial — researchers are still confirming safety and getting an early look at how well the treatment works. Trials at this stage are designed to produce evidence regulators and physicians can act on — not just observations to follow up later.
What the results showed
The treatment cut tau levels in spinal fluid by 56% in the two higher-dose groups.
JAMA neurology · 2023 · NCT03186989
These findings — that tau protein in spinal fluid dropped by more than half in the higher-dose groups — were published in the JAMA neurology and represent the headline result of the study.
Researchers tracked outcomes across 46 patients enrolled in the trial. The result was consistent enough across the group that the team felt confident reporting it.
What this means for patients
For patients with alzheimer's disease, this result changes the calculus on what to ask their care team about. Whether it changes day-to-day care depends on factors like disease subtype, prior treatments, and where the patient is in their care journey.
What you can do now
This treatment targets tau, one of the two proteins that damage the brain in Alzheimer's. The early results are promising, but this was a small safety study. The drug is now being tested in a larger trial to see if lowering tau actually slows memory loss. Ask your doctor about approved Alzheimer's treatments or open clinical trials.
Eligibility for the treatments mentioned above depends on specific test results and clinical history. Bring this summary, the trial name, and your most recent labs or pathology report to your next visit.
Open alzheimer's disease trials
MIMA Pilot Study: MIcrostructure of the Medial Temporal Lobe in Early Alzheimer's Disease
Patients with Mild Cognitive Impairment (MCI) or Subjective Cognitive Decline (SCD) may or may not develop Alzheimer's disease (AD) dementia. Yet identifying patients at risk is crucial: delaying the onset of the disease by 5 years could reduce prevalence by 50%. To achieve this, we need affordable biomarkers combined with clinically meaningful assessment tools. Current approaches (cognition, imaging or Tau and Amyloid peptide assays) lack precision or specificity (e.g., age-related memory deficits) and involve invasive and costly procedures, sometimes inaccessible in France (e.g., the "AT(N)" framework). Recently, quantitative diffusion MRI (dMRI) has identified in-vivo gray matter microstructural changes linked to hyperphosphorylated Tau protein, which are of great diagnostic value. Still, we ignore whether and how these changes are responsible for early memory impairment in AD. The MIMA-P project will combine multi-compartment models of the high-resolution diffusion signal with a cognitive assessment of memory based on recent models of medial temporal lobe function to assess the relevance of a new affordable, rapid and non-invasive early marker of the disease.
Omics Sciences for the Identification of Pathogenetic Mechanisms and Biomarkers in Neurodegenerative Diseases
The study aims to use 'omics' sciences, employing the most advanced technologies currently available, in order to identify pathogenic genomic variants, proteins and/or altered molecular pathways in neurodegenerative diseases and to obtain a new and more complete characterisation of subjects affected by the neurodegenerative diseases under study. Thanks to the integration of genomic, gene expression (transcriptomic and epigenomic), protein and metabolic data and clinical data, the study also aims to identify new markers for the diagnosis, prognosis, also in terms of response to therapy, and monitoring of neurodegenerative diseases. The study involves the enrolment of at least 1.200 individuals with neurodegenerative disease.