HomeRare Disease & Gene TherapyAAV Empty/Full Capsid Density-Gradient Separation

AAV Empty/Full Capsid Density-Gradient Separation

Interactive isopycnic ultracentrifugation simulator: watch empty and genome-full AAV capsids separate into density bands inside a CsCl/iodixanol gradient, tune rotor speed and gradient steepness, and read live band resolution and yield.

Rare Disease & Gene Therapy3DAdvanced60 FPS
biotech-topic-26 ↗ Open standalone

Adeno-associated virus (AAV) gene-therapy lots always contain a mixture of "empty" capsids that failed to package the therapeutic genome and "full" capsids that succeeded — and since only full particles deliver a dose, separating and quantifying the two is a critical manufacturing and quality-control step. This simulator renders a spinning ultracentrifuge tube in 3D: thousands of empty and full capsid particles start mixed together, then drift under a modeled centrifugal force toward the point in a CsCl/iodixanol density gradient that matches their own buoyant density, exactly as isopycnic banding works in a real AAV purification suite. Tune rotor speed, gradient steepness, run speed and the starting empty:full ratio, and watch live readouts track band resolution, full-capsid purity and recovery as the two populations separate into distinct bands.

⚙ Under the hood

Spin a mixed batch of empty and genome-full AAV capsids through a CsCl/iodixanol density gradient and watch isopycnic banding separate the two populations, with live band resolution, purity and recovery readouts.

gene-therapyAAVultracentrifugationdensity-gradientbioprocessingcapsid

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

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