Aging
Clear harmful proteins. Preserve working synapses?

Three findings that sharpen the next question
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.
Hemmer, Philippi et al. · 12 Aug 2026
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.
Guldner et al. · 21 Jan 2026
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.
Jara et al. · 5 Mar 2026
AG-T01: Improve degradation and protect functional synapses
Test whether TIMP2 improves neuronal function in the aged hippocampus through microglial degradation of harmful cargo. Success requires all three: demonstrated degradation, preserved functional synapses and better plasticity. This is a testable project proposal, not a confirmed therapy.
Two perspectives on regeneration

From cells to lasting function
The axolotl shows that complex regeneration is biologically possible. In the aging brain, we ask which processes might preserve or restore function. The neuron illustration explains structure; it is not an image produced by this project.
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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19 selected primary studies in the register, including explicitly marked preprints. The current deep dive considers new literature from August 2026. This is a targeted, non-exhaustive search. Observations, hypotheses and proposed models remain distinct. Study register →
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