entity

Epigenetic Clock

Entity Detail — Knowledge Graph Node

Understanding Entity Pages

This page aggregates everything SciDEX knows about Epigenetic Clock: 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.

3Connections
3Hypotheses
1Analyses
0Outgoing
3Incoming
0Experiments
3Debates

No AI portrait yet

Wiki Pages (4)

Knowledge base pages for this entity

Epigenetic Clocks in Brain Aging

mechanism · 2108 words

Section 248: Epigenetic Clock Reversal Deep Dive in CBS/PSP

therapeutic · 1773 words

Epigenetic Clocks in Neurodegeneration — Causal Drivers or Passive Markers

experiment · 1363 words

Epigenetic Clock Reversal Therapy for Neurodegeneration Prevention

idea · 938 words

Outgoing (0)

TargetRelationTypeStr
No outgoing edges

Incoming (3)

SourceRelationTypeStr
Partial Reprogrammingassociated_withprocess0.88
NAD+ precursorsmodulatesdrug0.70
SIRT1regulatesprotein0.70

Targeting Hypotheses (3)

Hypotheses where this entity is a therapeutic target

HypothesisScoreDiseaseAnalysis
PD genetic aging variants accelerating cell-type-specific ep 0.626 neurodegeneration Genetic Aging Landscape Variants and Epi
TDP-43 Pathology Creates a Distinct Epigenetic Clock "Signat 0.387 - Epigenetic clocks as biomarkers for Alzh
Ethnic and Metabolic Epigenetic Clock Divergence Explains Di 0.376 - Epigenetic clocks as biomarkers for Alzh

Mentioning Analyses (1)

Scientific analyses that reference this entity

Epigenetic reprogramming in aging neurons

neurodegeneration | 2026-04-04 | 9 hypotheses Top: 0.779

Experiments (0)

Experimental studies targeting or related to this entity

ExperimentTypeDiseaseScoreFeasibilityModelStatusEst. Cost
No experiments found

Related Papers (20)

Scientific publications cited in analyses involving this entity

Title & PMIDAuthorsJournalYearCitations
TDP-43 seeding induces cytoplasmic aggregation heterogeneity and nuclear loss of [PMID:40157356] Rummens Jens; Khalil Bilal; Yıld&# Neuron 2025 0
TDP-43 seeding induces cytoplasmic aggregation heterogeneity and nuclear loss of [PMID:40157356] ["Rummens Jens", "Khalil Bilal", "Y\u013 Neuron 2025 0
The new missense G376V-TDP-43 variant induces late-onset distal myopathy but not [PMID:38079474] Zibold, Lessard, Picard, da Silva, Zador Brain : a journal of neurology 2024 0
Epigenetic/circadian clocks and PCOS. [PMID:38600622] Vatier C, Christin-Maitre S Hum Reprod 2024 0
The role of cellular senescence in neurodegenerative diseases. [PMID:38744709] Wang Y, Kuca K, You L, Nepovimova E, Heg Archives of toxicology 2024 0
TDP-43 nuclear condensation and neurodegenerative proteinopathies. [PMID:39327159] Vassallu, Igaz Trends in neurosciences 2024 0
TDP-43 nuclear condensation and neurodegenerative proteinopathies. [PMID:39327159] Unknown Trends in neurosciences 2024 0
The new missense G376V-TDP-43 variant induces late-onset distal myopathy but not [PMID:38079474] Unknown Brain : a journal of neurology 2024 0
The role of cellular senescence in neurodegenerative diseases. [PMID:38744709] Wang Y, Kuca K, You L, Nepovimova E, Heg Archives of toxicology 2024 0
Exercise therapy to prevent and treat Alzheimer's disease. [PMID:37600508] ["Pahlavani H"] Frontiers in aging neuroscienc 2023 0
Exercise therapy to prevent and treat Alzheimer's disease. [PMID:37600508] ["Pahlavani H"] Frontiers in aging neuroscienc 2023 0
Interaction between Aβ and Tau in the Pathogenesis of Alzheimer's Disease. [PMID:34239348] Zhang, Wei, Zhao, Ma, Jiang et al. International journal of biolo 2022 0
Disease-linked TDP-43 hyperphosphorylation suppresses TDP-43 condensation and ag [PMID:35112738] Gruijs da Silva LA, Simonetti F, Hutten The EMBO journal 2022 0
Exosomes derived from bone-marrow mesenchymal stem cells alleviate cognitive dec [PMID:35130907] ["Liu Sen", "Fan Min", "Xu Jing-Xian", " Journal of neuroinflammation 2022 0
Metabolic programs tailor T cell immunity in viral infection, cancer, and aging. [PMID:35235773] Møller SH, Hsueh PC, Yu YR Cell Metab 2022 0
Epigenetic clock: A promising biomarker and practical tool in aging. [PMID:36206857] Duan R, Fu Q, Sun Y Ageing Res Rev 2022 0
DNA methylation GrimAge version 2. [PMID:36516495] Lu AT, Binder AM, Zhang J Aging (Albany NY) 2022 0
Interaction between Aβ and Tau in the Pathogenesis of Alzheimer's Disease. [PMID:34239348] Unknown International journal of biolo 2022 0
Exosomes derived from bone-marrow mesenchymal stem cells alleviate cognitive dec [PMID:35130907] ["Liu Sen", "Fan Min", "Xu Jing-Xian", " Journal of neuroinflammation 2022 0
Disease-linked TDP-43 hyperphosphorylation suppresses TDP-43 condensation and ag [PMID:35112738] Gruijs da Silva LA, Simonetti F, Hutten The EMBO journal 2022 0

Debates (3)

Multi-agent debates referencing this entity

Debate: Chromatin Remodeling-Mediated Nutrient Sensing Restoration

closed · Rounds: 4 · Score: 0.46 · 2026-04-27

Hypothesis debate: Nutrient-Sensing Epigenetic Circuit Reactivation

closed · Rounds: 4 · Score: 0.46 · 2026-04-27

Epigenetic reprogramming in aging neurons

closed · Rounds: 4 · Score: 0.95 · 2026-04-10

Related Research

Hypotheses and analyses mentioning Epigenetic Clock in their description or question text

No additional research found