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Aging – freigegebene Erstveröffentlichung 6faa740d2c794e56888ab060b71d3212 d8eded416f0c
 
Aging daily b1de0c2b9a8f49a2a3542c500ab4bae3 d8eded416f0c
 
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<div class="aging-research-world" lang="en" style="max-width:1100px;margin:0 auto;line-height:1.65;overflow-wrap:anywhere;word-wrap:break-word;">
<div class="aging-research-world aging-journal" lang="en">
[[Aging|← Overview]] · [[Altern/Studienübersicht|Deutsch]]
<div class="aj-masthead"><div class="aj-brand"><span class="aj-monogram">[[Aging|a.]]</span><span>[[Aging|AGING]]<small>RESEARCH IN PROGRESS</small></span></div><div class="aging-languages" role="navigation" aria-label="Sprache / Language"><span class="aging-language" title="Deutsch">[[Altern/Studienübersicht|🇩🇪]]</span><span class="aging-language" title="English">[[Aging/Study register|🇬🇧]]</span></div></div>
<div class="aj-context"><strong>An evolving AI research project</strong>[[Aging/About the project|Background · goals · methods]]<span>Updated 28 Sep 2026</span></div>
<h1>Addition dated 2026-09-28</h1>
<div class="aj-deck">Connect the literature. Challenge assumptions. Understand function.</div>
<div class="aj-article">
 
=== AG-R01 ===
'''Youth-associated protein TIMP2 regulates microglial state and function in healthy and aged mice'''
 
Hemmer BM; Philippi SM et al. · Nature Communications · 2026-08-12 · DOI 10.1038/s41467-026-74906-z
 
Model / design: Mouse; genetic loss of function and supplementation; original research.
 
Evidence: mechanistic intervention; moderate, preclinical.
 
Access / limitations: publisher full text · Opposing substrate directions in Results; see bilingual dossier. Not silently corrected.
 
[https://www.nature.com/articles/s41467-026-74906-z Primary study]
 
=== AG-R02 ===
'''Ageing promotes microglial accumulation of slow-degrading synaptic proteins'''
 
Guldner IH et al. · Nature · 2026-01-21 · DOI 10.1038/s41586-025-09987-9
 
Model / design: Mouse; neuron-specific protein tracing; original research.
 
Evidence: mechanistic tracing; moderate, preclinical.
 
Access / limitations: publisher full text
 
[https://www.nature.com/articles/s41586-025-09987-9 Primary study]
 
=== AG-R03 ===
'''Early mitophagy activation by Urolithin A prevents, but late activation does not reverse, age-related cognitive impairment'''
 
Jara C et al. · npj Aging · 2026-03-05 · DOI 10.1038/s41514-026-00351-3
 
Model / design: C57BL/6 and SAMP8 mice; original research.
 
Evidence: intervention; moderate within model, timing comparison confounded.
 
Access / limitations: publisher full text
 
[https://www.nature.com/articles/s41514-026-00351-3 Primary study]
 
=== AG-R04 ===
'''The mitochondrial unfolded protein response in human microglia disrupts neuronal–glial communication and promotes senescence'''
 
Perez J MJ et al. · Nature Neuroscience · 2026-06-26 · DOI 10.1038/s41593-026-02320-1
 
Model / design: Human cellular models; induced mitochondrial stress; original research.
 
Evidence: mechanistic intervention; moderate in vitro, low aging translation.
 
Access / limitations: publisher full text
 
[https://www.nature.com/articles/s41593-026-02320-1 Primary study]
 
=== AG-R05 ===
'''Human umbilical cord plasma proteins revitalize hippocampal function in aged mice'''
 
Castellano JM et al. · Nature · 2017-04-19 · DOI 10.1038/nature22067
 
Model / design: Aged mouse; original research.
 
Evidence: preclinical intervention; access-limited appraisal here.
 
Access / limitations: publisher abstract and bibliographic metadata
 
[https://www.nature.com/articles/nature22067 Primary study]
 
=== AG-R06 ===
'''Oxidative stress causes a reversible decrease of deubiquitylases activity in old vertebrate brains'''
 
Sahu AK et al. · Nature Communications · 2026-04-21 · DOI 10.1038/s41467-026-71921-y
 
Model / design: Vertebrate brain and cellular models; original research.
 
Evidence: mechanistic intervention; moderate, preclinical.
 
Access / limitations: publisher full text
 
[https://www.nature.com/articles/s41467-026-71921-y Primary study]
 
=== AG-R07 ===
'''Targeting iron-associated protein Ftl1 in the brain of old mice improves age-related cognitive impairment'''
 
Remesal L et al. · Nature Aging · 2025-08-19 · DOI 10.1038/s43587-025-00940-z
 
Model / design: Mouse and cellular models; original research.
 
Evidence: mechanistic intervention; moderate, preclinical.
 
Access / limitations: publisher full text
 
[https://www.nature.com/articles/s43587-025-00940-z Primary study]
 
=== AG-R08 ===
'''Noncanonical Activity of Tissue Inhibitor of Metalloproteinases 2 (TIMP2) Improves Cognition and Synapse Density in Aging'''
 
Britton R et al. · eNeuro · 2023-06-15 · DOI 10.1523/ENEURO.0031-23.2023
 
Model / design: Aged male C57BL/6J mice; original research.
 
Evidence: preclinical intervention; partial-access appraisal.
 
Access / limitations: PubMed abstract/figure captions and indexed publisher excerpts; publisher open returned 403; PMC returned CAPTCHA
 
[https://www.eneuro.org/content/10/6/ENEURO.0031-23.2023 Primary study]
 
<div class="aj-return"><div class="aj-brand"><span class="aj-monogram">[[Aging|a.]]</span><span>[[Aging|AGING]]<small>RESEARCH IN PROGRESS</small></span></div><span>[[Aging|Back to the project →]]</span></div>


== Study register ==
== Study register ==
Zeile 195: Zeile 305:
[[Aging/Research reports/2026-09-28|Current report with sources and evidence]] · [[Aging/Research status|Status rules]]
[[Aging/Research reports/2026-09-28|Current report with sources and evidence]] · [[Aging/Research status|Status rules]]


----
== New human benchmarks ==
Altern / Aging research world · Updated 2026-09-28. No self-medication or personal treatment plans.
 
[[Aging/Approaches to aging|Full evidence assessment and sources AG-J01 to AG-J03]]
 
* AG-J01 · Effect of Structured Physical Activity on Prevention of Major Mobility Disability in Older Adults: The LIFE Study Randomized Clinical Trial · 2014-05-27 · [https://jamanetwork.com/journals/jama/fullarticle/1875328 Original study]
* AG-J02 · A 2 year multidomain intervention of diet, exercise, cognitive training, and vascular risk monitoring versus control to prevent cognitive decline in at-risk elderly people (FINGER): a randomised controlled trial · 2015-03-12 · [https://www.sciencedirect.com/science/article/pii/S0140673615604615 Original study]
* AG-J03 · Structured vs Self-Guided Multidomain Lifestyle Interventions for Global Cognitive Function: The US POINTER Randomized Clinical Trial · 2025-07-28 · [https://jamanetwork.com/journals/jama/fullarticle/2837046 Original study]
 
22 DOI-unique studies have 25 source IDs. Alias pairs: AG-R02 = AG-S10; AG-R06 = AG-S08; AG-R07 = AG-S09. These duplicate references do not count as additional studies or replications.
 
</div>
<div class="aj-section-title"><h2>Continue exploring</h2></div><div class="aj-tiles"><div class="aj-tile"><div class="aj-thumb">[[File:Bovine Pulmonary Artery Endothelial Cells Fluorescent Image.jpg|120px|frameless|link=Aging/Approaches to aging|alt=Fluorescence micrograph of bovine endothelial cells with labeled nuclei, actin and mitochondria.]]</div><div><div class="aj-tile-title">[[Aging/Approaches to aging|Approaches to aging]]</div><div class="aj-tile-desc">Evidence and functional outcomes</div></div></div><div class="aj-tile"><div class="aj-thumb aj-type-thumb">[[Aging/Evidence chain|→]]</div><div><div class="aj-tile-title">[[Aging/Evidence chain|Evidence chain]]</div><div class="aj-tile-desc">How studies generate new questions</div></div></div><div class="aj-tile"><div class="aj-thumb">[[File:DNA double helix.svg|120px|frameless|link=Aging/Research colloquium|alt=Schematic illustration of a DNA double helix.]]</div><div><div class="aj-tile-title">[[Aging/Research colloquium|Research colloquium]]</div><div class="aj-tile-desc">16 foundation assignments + 4 new deep dives</div></div></div></div>
<div class="aj-footer"><div class="aj-brand"><span class="aj-monogram">[[Aging|a.]]</span><span>[[Aging|AGING]]<small>RESEARCH IN PROGRESS</small></span></div><div class="aj-context">[[Aging|Project overview]][[Aging/About the project|Goals & methods]][[Aging/Evidence chain|Evidence chain]]</div><div class="aj-meta">AI-assisted literature research and model building. No laboratory or clinical studies conducted by this project. No personal treatment plans.</div><div class="aj-credits">Image credits · Illustrations, not project data: [https://commons.wikimedia.org/wiki/File:Axolotl_Portrait.jpg Axolotl] — LoKiLeCh ([https://creativecommons.org/licenses/by-sa/3.0/ CC BY-SA 3.0]) · [https://commons.wikimedia.org/wiki/File:XBio_illustration_%E2%80%93_Neuron.png Neuron] — explorebiology (Explore Biology) ([https://creativecommons.org/licenses/by/4.0/ CC BY 4.0]) · [https://commons.wikimedia.org/wiki/File:DNA_double_helix.svg DNA] — Biochemlife ([https://creativecommons.org/licenses/by-sa/4.0/ CC BY-SA 4.0]) · [https://commons.wikimedia.org/wiki/File:Bovine_Pulmonary_Artery_Endothelial_Cells_Fluorescent_Image.jpg Bovine endothelial cells] — Erin Rod ([https://creativecommons.org/licenses/by/4.0/ CC BY 4.0])</div></div>
</div>
</div>
[[Category:Altern / Aging]]
[[Category:Altern / Aging]]

Aktuelle Version vom 28. September 2026, 23:30 Uhr

a.AGINGRESEARCH IN PROGRESS
An evolving AI research projectBackground · goals · methodsUpdated 28 Sep 2026

Addition dated 2026-09-28

Connect the literature. Challenge assumptions. Understand function.

AG-R01

Youth-associated protein TIMP2 regulates microglial state and function in healthy and aged mice

Hemmer BM; Philippi SM et al. · Nature Communications · 2026-08-12 · DOI 10.1038/s41467-026-74906-z

Model / design: Mouse; genetic loss of function and supplementation; original research.

Evidence: mechanistic intervention; moderate, preclinical.

Access / limitations: publisher full text · Opposing substrate directions in Results; see bilingual dossier. Not silently corrected.

Primary study

AG-R02

Ageing promotes microglial accumulation of slow-degrading synaptic proteins

Guldner IH et al. · Nature · 2026-01-21 · DOI 10.1038/s41586-025-09987-9

Model / design: Mouse; neuron-specific protein tracing; original research.

Evidence: mechanistic tracing; moderate, preclinical.

Access / limitations: publisher full text

Primary study

AG-R03

Early mitophagy activation by Urolithin A prevents, but late activation does not reverse, age-related cognitive impairment

Jara C et al. · npj Aging · 2026-03-05 · DOI 10.1038/s41514-026-00351-3

Model / design: C57BL/6 and SAMP8 mice; original research.

Evidence: intervention; moderate within model, timing comparison confounded.

Access / limitations: publisher full text

Primary study

AG-R04

The mitochondrial unfolded protein response in human microglia disrupts neuronal–glial communication and promotes senescence

Perez J MJ et al. · Nature Neuroscience · 2026-06-26 · DOI 10.1038/s41593-026-02320-1

Model / design: Human cellular models; induced mitochondrial stress; original research.

Evidence: mechanistic intervention; moderate in vitro, low aging translation.

Access / limitations: publisher full text

Primary study

AG-R05

Human umbilical cord plasma proteins revitalize hippocampal function in aged mice

Castellano JM et al. · Nature · 2017-04-19 · DOI 10.1038/nature22067

Model / design: Aged mouse; original research.

Evidence: preclinical intervention; access-limited appraisal here.

Access / limitations: publisher abstract and bibliographic metadata

Primary study

AG-R06

Oxidative stress causes a reversible decrease of deubiquitylases activity in old vertebrate brains

Sahu AK et al. · Nature Communications · 2026-04-21 · DOI 10.1038/s41467-026-71921-y

Model / design: Vertebrate brain and cellular models; original research.

Evidence: mechanistic intervention; moderate, preclinical.

Access / limitations: publisher full text

Primary study

AG-R07

Targeting iron-associated protein Ftl1 in the brain of old mice improves age-related cognitive impairment

Remesal L et al. · Nature Aging · 2025-08-19 · DOI 10.1038/s43587-025-00940-z

Model / design: Mouse and cellular models; original research.

Evidence: mechanistic intervention; moderate, preclinical.

Access / limitations: publisher full text

Primary study

AG-R08

Noncanonical Activity of Tissue Inhibitor of Metalloproteinases 2 (TIMP2) Improves Cognition and Synapse Density in Aging

Britton R et al. · eNeuro · 2023-06-15 · DOI 10.1523/ENEURO.0031-23.2023

Model / design: Aged male C57BL/6J mice; original research.

Evidence: preclinical intervention; partial-access appraisal.

Access / limitations: PubMed abstract/figure captions and indexed publisher excerpts; publisher open returned 403; PMC returned CAPTCHA

Primary study

a.AGINGRESEARCH IN PROGRESS
Back to the project →

Study register

DOI, date, model, design, evidence and peer review.

Publication date means first online publication, or the stated preprint version. Strength refers to the specified claim scope; all literature findings are ⚪ project level 1. “Not assessed” means neither confirmation nor refutation.

AG-S01

Cellular senescence promotes progenitor cell expansion during axolotl limb regeneration

Yu Q et al. · Developmental Cell · 2023-10-24 · DOI 10.1016/j.devcel.2023.09.009

Model / design: Axolotl limb; Gain/loss of function.

Evidence: moderate, preclinical mechanism. Peer reviewed: yes.

Independent replication: not assessed. Access: Primary abstract and article metadata.

Original source

AG-S02

Single-cell Stereo-seq reveals induced progenitor cells involved in axolotl brain regeneration

Wei X et al. · Science · 2022-09-02 · DOI 10.1126/science.abp9444

Model / design: Axolotl telencephalon; Spatial single-cell transcriptomics.

Evidence: moderate, descriptive animal atlas. Peer reviewed: yes.

Independent replication: not assessed. Access: Primary abstract and article metadata.

Original source

AG-S03

Molecular basis of positional memory in limb regeneration

Otsuki L et al. · Nature · 2025-05-21 · DOI 10.1038/s41586-025-09036-5

Model / design: Axolotl limb; Lineage analysis and signalling perturbation.

Evidence: moderate, preclinical mechanism. Peer reviewed: yes.

Independent replication: not assessed. Access: Publisher full text and primary abstract.

Original source

AG-S04

Adrenergic signaling coordinates distant and local responses to amputation in axolotl

Payzin-Dogru D et al. · Cell · 2025-10-24 · DOI 10.1016/j.cell.2025.09.025

Model / design: Axolotl amputation; Systemic and local signalling perturbation.

Evidence: moderate, preclinical mechanism. Peer reviewed: yes.

Independent replication: not assessed. Access: Publisher summary; PMC publication metadata.

Original source

AG-S05

Neuronal activation in the axolotl brain promotes tail regeneration

Walker SE et al. · npj Regenerative Medicine · 2025-05-08 · DOI 10.1038/s41536-025-00413-2

Model / design: Axolotl brain and tail; Neural mapping and pharmacological perturbation.

Evidence: moderate, preclinical mechanism. Peer reviewed: yes.

Independent replication: not assessed. Access: Publisher full text.

Original source

AG-S06

Metabolic changes during cardiac regeneration in the axolotl

Dittrich A et al. · Developmental Dynamics · 2025-03-22 · DOI 10.1002/dvdy.70020

Model / design: Axolotl cardiac cryoinjury; Metabolic profiling and oxygen intervention.

Evidence: limited-to-moderate, exploratory animal study. Peer reviewed: yes.

Independent replication: not assessed. Access: Publisher metadata and PMC indexed full text.

Original source

AG-S07

A characterization of axolotl digit regeneration: conserved mechanisms, divergent patterning, and a critical role for hedgehog signaling

Griffiths JR et al. · npj Regenerative Medicine · 2026-03-25 · DOI 10.1038/s41536-026-00461-2

Model / design: Juvenile axolotl digits; Anatomical comparison and hedgehog perturbation.

Evidence: moderate, endpoint- and anatomy-specific animal evidence. Peer reviewed: yes.

Independent replication: not assessed. Access: Publisher full text.

Original source

AG-S08

Oxidative stress causes a reversible decrease of deubiquitylases activity in old vertebrate brains

Sahu AK et al. · Nature Communications · 2026-04-21 · DOI 10.1038/s41467-026-71921-y

Model / design: Mouse, killifish, human iPSC-derived neurons; Activity-based proteomics and perturbation.

Evidence: moderate, multi-model preclinical mechanism. Peer reviewed: yes.

Independent replication: Multiple cohorts/models within one paper; external replication not assessed. Access: Publisher full text.

Original source

AG-S09

Targeting iron-associated protein Ftl1 in the brain of old mice improves age-related cognitive impairment

Remesal L et al. · Nature Aging · 2025-08-19 · DOI 10.1038/s43587-025-00940-z

Model / design: Mouse hippocampus and primary neurons; Viral/genetic manipulation and behavioural readouts.

Evidence: moderate, preclinical intervention. Peer reviewed: yes.

Independent replication: not assessed. Access: Publisher full text.

Original source

AG-S10

Ageing promotes microglial accumulation of slow-degrading synaptic proteins

Guldner IH et al. · Nature · 2026-01-21 · DOI 10.1038/s41586-025-09987-9

Model / design: Mouse neuronal proteome; complementary human material; Cell-specific pulse-chase proteomics and microglial analysis.

Evidence: moderate, descriptive/longitudinal protein-tracing animal evidence. Peer reviewed: yes.

Independent replication: not assessed. Access: Publisher full text.

Original source

AG-S11

Single-cell transcriptomic and genomic changes in the ageing human brain

Jeffries AM et al. · Nature · 2025-09-03 · DOI 10.1038/s41586-025-09435-8

Model / design: Human post-mortem prefrontal cortex; snRNA-seq, single-cell genome sequencing, spatial validation.

Evidence: moderate, cross-sectional human observation. Peer reviewed: yes.

Independent replication: Within-paper orthogonal validation; external replication not assessed. Access: Publisher full text.

Original source

AG-S12

Organ-specific proteomic aging clocks predict disease and longevity across diverse populations

Wang Y et al. · Nature Aging · 2025-11-26 · DOI 10.1038/s43587-025-01016-8

Model / design: UK, Chinese and US human cohorts; Observational plasma proteomics with external cohort validation.

Evidence: moderate-to-strong for prediction; not causal or interventional. Peer reviewed: yes.

Independent replication: External cohorts within one publication; distinct external team not established. Access: Publisher full text.

Original source

AG-S13

Shifts in protein aggregate stability define proteostasis decline in the aging human brain

Anderton E et al. · bioRxiv · 2026-04-18 · DOI 10.64898/2026.03.27.714902

Model / design: Human post-mortem hippocampus; Detergent-fractionation proteomics.

Evidence: low, unreviewed human observation. Peer reviewed: NO – preprint.

Independent replication: not established. Access: Version-2 indexed abstract; version-1 primary full text; version-2 metadata.

Original source

AG-S14

Temperature-Dependent Modulation of Cardiac Metabolism, Post-Injury Survival and Regenerative Rate in Axolotls

Dittrich A et al. · Metabolites · 2026-06-13 · DOI 10.3390/metabo16060414

Model / design: Adult axolotl cardiac cryoinjury; Temperature intervention; imaging, physiology and histology.

Evidence: limited-to-moderate, small preclinical groups. Peer reviewed: yes.

Independent replication: Not assessed; author overlap with AG-S06. Access: PMC primary full text and PubMed publication metadata.

Original source


Current report with sources and evidence · Status rules

New human benchmarks

Full evidence assessment and sources AG-J01 to AG-J03

  • AG-J01 · Effect of Structured Physical Activity on Prevention of Major Mobility Disability in Older Adults: The LIFE Study Randomized Clinical Trial · 2014-05-27 · Original study
  • AG-J02 · A 2 year multidomain intervention of diet, exercise, cognitive training, and vascular risk monitoring versus control to prevent cognitive decline in at-risk elderly people (FINGER): a randomised controlled trial · 2015-03-12 · Original study
  • AG-J03 · Structured vs Self-Guided Multidomain Lifestyle Interventions for Global Cognitive Function: The US POINTER Randomized Clinical Trial · 2025-07-28 · Original study

22 DOI-unique studies have 25 source IDs. Alias pairs: AG-R02 = AG-S10; AG-R06 = AG-S08; AG-R07 = AG-S09. These duplicate references do not count as additional studies or replications.

Continue exploring

Fluorescence micrograph of bovine endothelial cells with labeled nuclei, actin and mitochondria.
Evidence and functional outcomes
How studies generate new questions
Schematic illustration of a DNA double helix.
16 foundation assignments + 4 new deep dives