Aging: Unterschied zwischen den Versionen
Glanz (Diskussion | Beiträge) Aging daily a9f33f3c17b448c6860f88339abdb2ce 90dd095da6be |
Glanz (Diskussion | Beiträge) Aging daily 107db3e59a6a490e83143e737188e3b1 90dd095da6be |
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<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|🇩🇪]]</span><span class="aging-language" title="English">[[Aging|🇬🇧]]</span></div></div> | <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|🇩🇪]]</span><span class="aging-language" title="English">[[Aging|🇬🇧]]</span></div></div> | ||
<div class="aj-context"><strong>An evolving AI research project</strong>[[Aging/About the project|Background · goals · methods]]<span>Updated | <div class="aj-context"><strong>An evolving AI research project</strong>[[Aging/About the project|Background · goals · methods]]<span>Updated 10 Oct 2026</span></div> | ||
<h1>Aging — an evolving AI research project</h1> | <h1>Aging — an evolving AI research project</h1> | ||
<div class="aj-deck">Which biological mechanisms can demonstrably slow or partly reverse age-related functional decline in humans?</div> | <div class="aj-deck">Which biological mechanisms can demonstrably slow or partly reverse age-related functional decline in humans?</div> | ||
<div class="aging-note">'''Cumulative update · | <div class="aging-note">'''Cumulative update · 10 Oct 2026''' | ||
The TIMP2 papers are connected through authorship, a protocol reference and technical advice. Different experiments remain informative; three independent confirmations of the project mechanism are not established. AG-T01 remains 🔵 Level 2. [[Aging/Research reports/2026-10-10|Daily report 10 Oct 2026 →]]</div> | |||
<div class="aj-feature"><div class="aj-feature-copy"><div class="aj-section-label">The leading question · AG-T01 · 🔵 Level 2</div><h2>Clear harmful proteins. Preserve working synapses?</h2><p>We connect published studies of TIMP2, microglia and protein turnover. We seek a mechanism that clears harmful cargo while preserving neuronal function. This connection remains an unconfirmed working hypothesis.</p><div class="aj-readmore">[[Aging/Research reports/2026-09-28/Deep dive|Read the evidence and counterarguments →]]</div></div><div class="aj-feature-media">[[File:Axolotl Portrait.jpg|520px|frameless|link=Aging/Axolotl & regeneration|alt=Photographic portrait of an axolotl.]]<div class="aj-meta">The axolotl as a model for regeneration. Not evidence of human rejuvenation.</div></div></div> | <div class="aj-feature"><div class="aj-feature-copy"><div class="aj-section-label">The leading question · AG-T01 · 🔵 Level 2</div><h2>Clear harmful proteins. Preserve working synapses?</h2><p>We connect published studies of TIMP2, microglia and protein turnover. We seek a mechanism that clears harmful cargo while preserving neuronal function. This connection remains an unconfirmed working hypothesis.</p><div class="aj-readmore">[[Aging/Research reports/2026-09-28/Deep dive|Read the evidence and counterarguments →]]</div></div><div class="aj-feature-media">[[File:Axolotl Portrait.jpg|520px|frameless|link=Aging/Axolotl & regeneration|alt=Photographic portrait of an axolotl.]]<div class="aj-meta">The axolotl as a model for regeneration. Not evidence of human rejuvenation.</div></div></div> | ||
Aktuelle Version vom 10. Oktober 2026, 08:08 Uhr
Aging — an evolving AI research project
Clear harmful proteins. Preserve working synapses?
We connect published studies of TIMP2, microglia and protein turnover. We seek a mechanism that clears harmful cargo while preserving neuronal function. This connection remains an unconfirmed working hypothesis.
TIMP2 changes how microglia handle cargo
TIMP2 affected microglial states and cargo processing in mice. The study also includes a myelin clearance assay following genetic deletion.
Protein stock does not establish degradation flux
Neuronal labeling tracks slowly degraded proteins into microglia. For our model, the key issue is that increased stored cargo can have different causes.
Better markers do not establish memory recovery
Urolithin A improved molecular measurements in aged C57BL/6 mice without demonstrating recovery in the memory tests examined.
Twelve entries distinguish human functional outcomes, preclinical candidates and hypotheses. LIFE, FINGER and US POINTER provide human benchmarks, without establishing a solution to biological aging.
Explore the list →Each new study should strengthen, constrain or change a specific claim. Independent evidence routes, counterevidence and missing links remain visible. This project conducts no experiments.
Follow the argument →16 foundation assignments and 4 new deep dives: challenge causal models, critically read published data and connect conflicting studies. Substantive new findings become dated addition packages with their own Wish-List entries.
Explore the research journal
Researchers explain the foundations
Institutional talks for context. These older videos are background material; current claims rely on the linked primary studies.
Axolotl regeneration
YouTube
Brain aging in its systemic context
YouTube
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