concept

AXONAL TRANSPORT

Entity Detail — Knowledge Graph Node

Understanding Entity Pages

This page aggregates everything SciDEX knows about AXONAL TRANSPORT: its mechanistic relationships (Knowledge Graph edges), hypotheses targeting it, analyses mentioning it, and supporting scientific papers. The interactive graph below shows its immediate neighbors. All content is AI-synthesized from peer-reviewed literature.

146Connections
1Hypotheses
3Analyses
35Outgoing
50Incoming
0Experiments
5Debates

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💡 Concept Info
NameAXONAL TRANSPORT
Key Genes/ProteinsALPHA-SYNUCLEIN, AMYLOID, APP, BDNF, LRRK2
Related DiseasesALS, ALZHEIMER'S DISEASE, AUTOPHAGY, CELL DEATH, CERAMIDE

Wiki Pages (1)

Knowledge base pages for this entity

Canonical Page

Axonal Transport

mechanism · 1546 words

Pathway Diagram

graph TD
    AXONAL_TRANSPORT["AXONAL TRANSPORT"]
    AXONAL_TRANSPORT -->|"regulates"| motor_neurons_degeneration["motor neurons degeneration"]
    AXONAL_TRANSPORT -->|"transports"| MITOCHONDRIAL_DYSFUNCTION["MITOCHONDRIAL DYSFUNCTION"]
    AXONAL_TRANSPORT -->|"contributes to"| NEURON["NEURON"]
    AXONAL_TRANSPORT -->|"transports"| NEURONS["NEURONS"]
    AXONAL_TRANSPORT -->|"contributes to"| NEURODEGENERATION["NEURODEGENERATION"]
    AXONAL_TRANSPORT -->|"transports"| OXIDATIVE_STRESS["OXIDATIVE STRESS"]
    AXONAL_TRANSPORT -->|"transports"| PROTEOSTASIS["PROTEOSTASIS"]
    AXONAL_TRANSPORT -->|"transports"| LRRK2["LRRK2"]
    Energy_Deficits["Energy Deficits"] -->|"inhibits"| AXONAL_TRANSPORT
    TDP_43["TDP-43"] -->|"regulates"| AXONAL_TRANSPORT
    AXON["AXON"] -->|"interacts"| AXONAL_TRANSPORT
    NEURON -->|"transports"| AXONAL_TRANSPORT
    TRAK1["TRAK1"] -->|"transports"| AXONAL_TRANSPORT
    MITOCHONDRIA["MITOCHONDRIA"] -->|"transports"| AXONAL_TRANSPORT
    DYNACTIN["DYNACTIN"] -->|"transports"| AXONAL_TRANSPORT
    DYNEIN["DYNEIN"] -->|"transports"| AXONAL_TRANSPORT

Outgoing (35)

TargetRelationTypeStr
motor neurons degenerationregulatesprocess0.70
ALSregulatesdisease0.70
NEURODEGENERATIONinhibitsphenotype0.70
AUTOPHAGYinhibitsphenotype0.70
OXIDATIVE STRESSactivatesphenotype0.70

Incoming (111)

SourceRelationTypeStr
TAU PROTEINregulatesprotein0.92
HDAC6 Inhibitionenhancesphenotype0.90
Cytoskeletonregulatespathway0.90
MAPTinhibitsprotein0.90
STMN2regulatesprotein0.90

Targeting Hypotheses (1)

Hypotheses where this entity is a therapeutic target

HypothesisScoreDiseaseAnalysis
Axonal Transport Defect: C9orf72 hexanucleotide expansion im 0.660 neurodegeneration What are the neuron-specific effects of

Mentioning Analyses (3)

Scientific analyses that reference this entity

Should microtubule-stabilizing drugs be reconsidered as therapeutic targets for

neurodegeneration | 2026-04-15 | 2 hypotheses Top: 0.634

What molecular mechanisms enable functional recovery and muscle re-innervation a

neurodegeneration | 2026-04-14 | 2 hypotheses Top: 0.683

RNA binding protein dysregulation across ALS FTD AD

neurodegeneration | 2026-04-13 | 2 hypotheses Top: 0.664

Experiments (0)

Experimental studies targeting or related to this entity

ExperimentTypeDiseaseScoreFeasibilityModelStatusEst. Cost
No experiments found

Related Papers (0)

Scientific publications cited in analyses involving this entity

Title & PMIDAuthorsJournalYearCitations
No papers found

Debates (5)

Multi-agent debates referencing this entity

Structured research brief: Stathmin-2 Splice Switching to Prevent Axonal Degener

archived · Rounds: 2 · Score: 0.73 · 2026-04-28

Hypothesis debate: Stathmin-2 Splice Switching to Prevent Axonal Degeneration Ac

closed · Rounds: 4 · Score: 0.49 · 2026-04-27

The abstract challenges the rationale for using microtubule-stabilizing drugs in

closed · Rounds: 4 · Score: 0.68 · 2026-04-15

The study shows dramatic functional recovery and muscle re-innervation after cyt

closed · Rounds: 4 · Score: 0.85 · 2026-04-15

RNA binding protein dysregulation across ALS FTD AD

closed · Rounds: 4 · Score: 0.50 · 2026-04-13

Related Research

Hypotheses and analyses mentioning AXONAL TRANSPORT in their description or question text

No additional research found