ID: SDA-2026-04-02-gap-tau-prop-202604020032
Hypothesis
LRP1-Dependent Tau Uptake Disruption
LRP1-Dependent Tau Uptake Disruption starts from the claim that modulating LRP1 within the disease context of neurodegeneration can redirect a disease-relevant process.
EvidencePending (0%)📖 23 cit🗣 1 debates✓ 9 support✗ 3 oppose
⚠ Low Validation Senate Quality Gates →
🧪 Overview
Mechanistic Overview
LRP1-Dependent Tau Uptake Disruption starts from the claim that modulating LRP1 within the disease context of neurodegeneration can redirect a disease-relevant process. The original description reads: "# LRP1-Dependent Tau Uptake Disruption in Tauopathic Neurodegeneration ## Background and Rationale The progressive spreading of hyperphosphorylated tau pathology throughout the brain represents a hallmark of Alzheimer's disease and related tauopathies, including progressive supranuclear palsy, corticobasal degeneration, and frontotemporal lobar degeneration with tau inclusions. Central to this spreading mechanism is the intercellular transfer of pathological tau species, wherein diseased neurons release tau aggregates that are subsequently internalized by neighboring cells, propagating proteopathic stress across neural circuits. Considerable evidence now identifies the low-density lipoprotein receptor-related protein 1 (LRP1) as a critical mediator of this uptake process....
🧬 Mechanism
🧬 Curated Mechanism Pathway
Curated pathway from expert analysis
flowchart TD
A["Tau Pathology<br/>Hyperphosphorylated Tau"] --> B["LRP1-Mediated<br/>Tau Endocytosis"]
B --> C["Endosomal Tau<br/>Accumulation"]
C --> D["Lysosomal Escape<br/>& Cytosolic Aggregation"]
D --> E["Tau Nucleation<br/>Seed Formation"]
E --> F["Trans-synaptic<br/>Tau Propagation"]
F --> G["Network spreading<br/>Neurodegeneration"]
H["Therapeutic Intervention<br/>LRP1 Blocking Agent"] --> I["LRP1 Endocytosis<br/>Inhibition"]
I --> J["Reduced Tau Uptake"]
J --> K["Limited Spread"]
K --> L["Neuroprotection"]
style A fill:#b71c1c,stroke:#ef9a9a,color:#ef9a9a
style H fill:#1a237e,stroke:#4fc3f7,color:#4fc3f7
style L fill:#1b5e20,stroke:#81c784,color:#81c784⚖️ Evidence
⚖️ Evidence Matrix9 supports3 contradicts
Supports
Astrocytic LRP1 enables mitochondria transfer to neurons and mitigates brain ischemic stroke by suppressing ARF1 lactylation.
Supports
PFKFB2-mediated glycolysis promotes lactate-driven continual efferocytosis by macrophages.
Supports
LRP1 is a neuronal receptor for α-synuclein uptake and spread.
Supports
Blood-Brain Barrier Breakdown in Alzheimer's Disease: Mechanisms and Targeted Strategies.
Supports
Serum amyloid A delivers retinol to intestinal myeloid cells to promote adaptive immunity.
Supports
Interplay of Low-Density Lipoprotein Receptors, LRPs, and Lipoproteins in Pulmonary Hypertension.
Supports
Endothelial LRP1-ICD Accelerates Cognition-Associated Alpha-Synuclein Pathology and Neurodegeneration through PARP1 Activation in a Mouse Model of Parkinson's Disease.
Contradicts
Amyloidosis in Alzheimer's Disease: Pathogeny, Etiology, and Related Therapeutic Directions.
Contradicts
Evolution of blood-brain barrier in brain diseases and related systemic nanoscale brain-targeting drug delivery strategies.
📖 Linked Papers (5)Export BibTeX ↗
Enhancing TREM2 expression activates microglia and modestly mitigates tau pathology and neurodegeneration.
Journal of neuroinflammation (2025) · PubMed:40122810 ↗
No figures
Enhancing TREM2 expression activates microglia and modestly mitigates tau pathology and neurodegeneration.
Journal of neuroinflammation (2025) · PubMed:40122810 ↗
No figures
Neurodegeneration and Inflammation-An Interesting Interplay in Parkinson's Disease.
International journal of molecular sciences (2020) · PubMed:33182554 ↗
No figures
Neurodegeneration and Inflammation-An Interesting Interplay in Parkinson's Disease.
International journal of molecular sciences (2020) · PubMed:33182554 ↗
No figures
Multiple Sclerosis Pathology.
Cold Spring Harbor perspectives in medicine (2018) · PubMed:29358320 ↗
No figures
🏥 Translation
🧬 3D Protein Structure — LRP1
🧠 GTEx v10 Brain ExpressionJSON
Median TPM across 13 brain regions for LRP1 from GTEx v10.
💉 Clinical Trials (19)
0
Active
Active
0
Completed
Completed
8,140
Total Enrolled
Total Enrolled
PHASE1
Highest Phase
Highest Phase
ACTIVE_NOT_RECRUITING·NCT05269394 · Washington University School of Medicine
197 enrolled · 2021-12-22 · → 2028-04
To assess the safety, tolerability, biomarker, cognitive, and clinical efficacy of investigational products in participants with an Alzheimer's disease-causing mutation by determining if treatment wit
Alzheimers Disease Dementia Alzheimers Disease, Familial
E2814 Lecanemab Matching Placebo (E2814)
NOT_YET_RECRUITING·NCT07135245 · Rune Skovgaard Rasmussen
180 enrolled · 2026-01-01 · → 2030-09-30
In the world's high-income countries, Alzheimer's disease and other dementia diseases are currently the second most common cause of death. This is a recent change, as strokes in the form of blood clot
Alzheimer Disease (AD)
Semaglutide (Rybelsus®) combined with other interventions Placebo Semaglutide (Rybelsus®)
Deep Repetitive Transcranial Magnetic Stimulation (rTMS) of the Precuneus for Alzheimer Disease (AD)PHASE1
RECRUITING·NCT06597942 · University of California, Los Angeles
54 enrolled · 2024-10-17 · → 2026-10
The goal of this clinical trial is to learn if using deep repetitive transcranial magnetic stimulation (rTMS) targeting the precuneus is feasible, tolerable, and potentially efficacious for memory in
Alzheimer&Amp;Amp;#39;s Disease Alzheimer Disease Dementia Alzheimer Type
TMS Transcranial Magnetic Stimulation Sham
TERMINATED·NCT02804789 · University of Edinburgh
2,095 enrolled · 2016-05 · → 2020-03-13
Brain changes associated with Alzheimer's disease may precede symptoms of Alzheimer's Dementia by over 20 years. The Investigators hope to be able to identify Alzheimer's disease at its very earliest
Alzheimer's Dementia
COMPLETED·NCT04623242 · Washington University School of Medicine
194 enrolled · 2012-12 · → 2019-11-22
The purpose of this study is to assess the safety, tolerability, biomarker and cognitive efficacy of investigational products in subjects who are known to have an Alzheimer's disease-causing mutation
Alzheimers Disease Dementia Alzheimers Disease, Familial
Gantenerumab Solanezumab Matching Placebo (Gantenerumab)
ENROLLING_BY_INVITATION·NCT06078891 · Tamir Ben-Hur
60 enrolled · 2023-07-01 · → 2025-12-31
The goal of this clinical trial is to test whether vaccination with the BCG vaccine may improve the blood level of a biomarker of Alzheimer's disease (AD) in participants who are cognitively- and func
Alzheimer Disease, Late Onset
BCG vaccine
COMPLETED·NCT01097096 · Novartis Pharmaceuticals
177 enrolled · 2010-03 · → 2012-12
This study will assess the safety, tolerability and Abeta-specific antibody response of repeated intra-muscular injections of adjuvanted CAD106 in patients with mild Alzheimer's Disease.
Alzheimer's Disease
CAD106 Placebo Alum
COMPLETED·NCT05894954 · Alzheimer's Prevention and Reversal Project, Inc.
73 enrolled · 2023-07-31 · → 2025-10-31
The goal of this clinical trial is to compare a precision medicine approach to the standard-of-care for people with mild cognitive impairment or early-stage dementia. Precision medicine approach start
Mild Cognitive Impairment Dementia, Mild
Precision Medicine Approach Hormones and Medications tailored to lab tests, combined with devices that support stress management and brain exercises Standard-of-Care
NOT_YET_RECRUITING·NCT07158905 · Institute for Molecular Medicine
48 enrolled · 2025-12-15 · → 2029-06-15
This is a Phase 1, multicenter, randomized, double-blind, placebo-controlled, multiple dose-escalating trial to evaluate the safety, tolerability, and immune response of AV-1980R, an investigational v
Alzheimer Disease Preclinical Alzheimer's Disease
AV-1980R 20 µg AV-1980R 60 µg AV-1980R 180 µg
COMPLETED·NCT02579252 · Axon Neuroscience SE
208 enrolled · 2016-03 · → 2019-06
This study evaluates the safety and efficacy of AADvac1 in the treatment of patients with mild Alzheimer's disease.
60% of participants will receive AADvac1 and 40% of participants will receive place
Alzheimer's Disease
AADvac1 Placebo
COMPLETED·NCT03119961 · Assistance Publique - Hôpitaux de Paris
10 enrolled · 2017-06-26 · → 2020-10-02
In Alzheimer's disease (AD) an imbalance between the production and clearance of the ß-amyloid peptide is hypothesized as the driving event of the disease. The decreased clearance of Aß could be partl
Alzheimer Disease
SONOCLOUD®
TERMINATED·NCT03444870 · Hoffmann-La Roche
1,053 enrolled · 2018-06-06 · → 2022-12-28
This randomized, double-blind, placebo-controlled, parallel-group study will evaluate the efficacy and safety of gantenerumab versus placebo in participants with early (prodromal to mild) AD. All part
Alzheimer Disease
Gantenerumab Placebo
COMPLETED·NCT00812565 · Octapharma
58 enrolled · 2009-02 · → 2010-09
This study evaluated the effect of 6 or 12 infusions of different doses of octagam (intravenous immunoglobulin \[IVIG\]) 10% on the reduction of amyloid beta peptide (Aβ) in cerebral spinal fluid (CSF
Alzheimer's Disease
Placebo octagam 10%
RECRUITING·NCT05508789 · Eli Lilly and Company
1,500 enrolled · 2022-10-10 · → 2028-05
The reason for this study is to assess the safety and efficacy of donanemab in participants with early Alzheimer's disease. The study duration including screening and follow-up is up to 93 weeks.
Alzheimer Disease Dementia Brain Diseases
Donanemab Placebo
NOT_YET_RECRUITING·NCT07217665 · Adam Boxer
146 enrolled · 2025-12-01 · → 2029-07-31
The Progressive Supranuclear Palsy Clinical Trial Platform (PTP) is a multi-center, multi-regimen clinical trial evaluating the safety and efficacy of investigational products for the treatment of PSP
PSP - Progressive Supranuclear Palsy
AADvac1 Matching Placebo
A 24-month Phase 1 Pilot Study of AADvac1 in Patients With Non Fluent Primary Progressive AphasiaPHASE1
UNKNOWN·NCT03174886 · Axon Neuroscience SE
33 enrolled · 2017-07-31 · → 2020-11
This study is a pilot trial evaluating the safety and immunogenicity of AADvac1 in patients with the non-fluent variant of Primary Progressive Aphasia.
50% of participants will receive the 40 µg dosa
Primary Progressive Nonfluent Aphasia
AADvac1 40 µg AADvac1 160 µg
COMPLETED·NCT02809053 · Archigen Biotech Limited
315 enrolled · 2017-01-18 · → 2019-07-17
This is a Randomized, Double-blind, Multi-center, Multi-national Trial to Evaluate the statistical equivalence of efficacy, safety and immunogenicity of SAIT101 Versus Rituximab as a First-line Immuno
Lymphoma, Follicular
SAIT101 MabThera®
A Study of Donanemab (LY3002813) in Participants With Early Alzheimer's Disease (TRAILBLAZER-ALZ 2)PHASE3
ACTIVE_NOT_RECRUITING·NCT04437511 · Eli Lilly and Company
1,736 enrolled · 2020-06-19 · → 2023-04-14
The reason for this study is to see how safe and effective the study drug donanemab is in participants with early Alzheimer's disease.
Additional participants will be enrolled to an addendum safety c
Alzheimer Disease
Donanemab Placebo
ACTIVE_NOT_RECRUITING·NCT04862260 · CHU de Quebec-Universite Laval
3 enrolled · 2021-10-04 · → 2025-01-31
Cardiovascular diseases and cancers, the two leading causes of death in Canada, require cholesterol to sustain their progression. All cells require cholesterol, but cancer cells have much higher needs
Pancreatic Ductal Adenocarcinoma Pancreatic Cancer Pancreas Cancer
Cholesterol metabolism disruption
No curated ClinVar variants loaded for this hypothesis.
Run scripts/backfill_clinvar_variants.py to fetch P/LP/VUS variants.
No DepMap CRISPR Chronos data found for LRP1.
Run python3 scripts/backfill_hypothesis_depmap.py to populate.
💰 Estimated Development
Cost
$1
Timeline
4.5 years
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🔮 Predictions
🔎 Predictions vs Observations1 predictions · 0 with recorded observations
| Prediction | Predicted | Observed | Status | Conf |
|---|---|---|---|---|
| If hypothesis is true, intervention targeting LRP1 will achieve: LRP1-mediated tau uptake restoration reduces tau propagation and improves synaptic function in tauopathy models within 12-24 months | LRP1-mediated tau uptake restoration reduces tau propagation and improves synaptic function in tauopathy models within 12-24 months | — no observation — | pending | 0.98 |
🔮 Falsifiable Predictions (1)
pendingconf 98%
If hypothesis is true, intervention targeting LRP1 will achieve: LRP1-mediated tau uptake restoration reduces tau propagation and improves synaptic function in tauopathy models within 12-24 months
Predicted outcome: LRP1-mediated tau uptake restoration reduces tau propagation and improves synaptic function in tauopathy models within 12-24 months
Falsification: LRP1 restoration fails to reduce tau pathology or improve synaptic outcomes
📖 References (7)
- Astrocytic LRP1 enables mitochondria transfer to neurons and mitigates brain ischemic stroke by suppressing ARF1 lactylation.Zhou J et al.. Cell metabolism (2024)
- LRP1 is a master regulator of tau uptake and spread.Rauch JN et al.. Nature (2020)
- PFKFB2-mediated glycolysis promotes lactate-driven continual efferocytosis by macrophages.Schilperoort M et al.. Nature metabolism (2023)
- LRP1 is a neuronal receptor for α-synuclein uptake and spread.["Chen K" et al.. Molecular neurodegeneration (2022)
- Amyloidosis in Alzheimer's Disease: Pathogeny, Etiology, and Related Therapeutic Directions.Ma C et al.. Molecules (Basel, Switzerland) (2022)
- Evolution of blood-brain barrier in brain diseases and related systemic nanoscale brain-targeting drug delivery strategies.Han L et al.. Acta pharmaceutica Sinica. B (2021)
- Role of Blood-Brain Barrier in Alzheimer's Disease.Journal of Alzheimer's disease : JAD (2019)
▸Metadatasource: v1_phase_c_backfill · origin_type: autonomous
| source | v1_phase_c_backfill |
| origin_type | autonomous |
| _schema_version | 1 |
📊 Evidence Profile
Evidence Balance
+0%
Certainty
0%
Debates
0
Incoming
0
Outgoing
0
0 supporting
0 contradicting
0 neutral
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