HomeMolecular BiologyMicroglial Clearance of Amyloid-β Plaques

Microglial Clearance of Amyloid-β Plaques

Interactive 3D simulation of amyloid-β plaque formation as a balance between continuous deposition and microglial phagocytic clearance, with a TREM2-style efficiency control.

Molecular Biology3DModerate60 FPS📱 Mobile-adapted
amyloid-beta-plaque-formation-alzheimers ↗ Open standalone

Amyloid-β plaque burden in Alzheimer's disease is not a one-way accumulation — it is the visible result of a constant tug-of-war between Aβ deposition and active removal by microglia, the brain's resident phagocytes. This simulator renders that balance in 3D: a growing plaque of Aβ deposit units at the centre of a tissue volume, patrolled by microglia that chemotax toward the plaque, attach to its surface, and phagocytose material for as long as they stay engaged. A deposition-rate slider controls how fast new Aβ arrives, a TREM2-style efficiency slider controls how effectively each engaged microglion clears it (modelling the real effect of TREM2 loss-of-function variants on phagocytic capacity), and microglia count and sensing-range sliders control how much immune surveillance is available to respond. Live readouts track plaque size, how many microglia are currently engaged, the net growth rate dP/dt, and simulated elapsed time — so you can find the tipping point between a stalled and a runaway plaque.

⚙ Under the hood

Watch amyloid-β plaque size emerge from a real balance of continuous deposition and active phagocytic clearance by microglia, with a TREM2-style efficiency control.

alzheimersamyloid-betamicroglianeuroimmunologyphagocytosismolecular-biology

3D · Three.js / WebGL renderer · 60 FPS target · runs fully client-side, no install

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