HomeMedicine & BiophysicsAndrogen Deprivation Therapy & Castration Resistance (2D)

Androgen Deprivation Therapy & Castration Resistance (2D)

Interactive 2D simulation of prostate-cancer hormone therapy: a GnRH agonist or antagonist suppresses testosterone, androgen-dependent tumor cells regress in a live cross-section view while a rare androgen-independent clone keeps growing, driving PSA relapse into castration-resistant disease on a real-time chart.

Medicine & Biophysics2DAdvanced60 FPS📱 Mobile-adapted⇄ 3D version
2d-oncology-pharmacology ↗ Open standalone

Prostate-cancer cells depend on androgen-receptor signalling driven by circulating testosterone, so androgen deprivation therapy (ADT) — a GnRH agonist or antagonist — starves the tumor of its growth signal. This simulator models a packed 2D cross-section of androgen-dependent tumor cells that regress once testosterone is suppressed, alongside a rare androgen-independent subclone that keeps dividing regardless of hormone level, plus a live strip chart of testosterone, PSA proxy and resistant fraction over time. Choose an agonist (with its characteristic testosterone flare) or an antagonist, dial in suppression strength and regimen (continuous vs. intermittent), seed the starting resistant-clone fraction, and watch PSA fall — then, as the resistant population is selected for and takes over the tumor, climb again into castration-resistant prostate cancer (CRPC).

⚙ Under the hood

Interactive 2D simulation of prostate-cancer hormone therapy: a GnRH agonist or antagonist suppresses testosterone, androgen-dependent tumor cells regress in a live cross-section view while a rare androgen-independent clone keeps growing, driving PSA relapse into castration-resistant disease on a real-time chart.

oncologypharmacologyprostate-cancerhormone-therapydrug-resistanceendocrinology

2D · HTML5 Canvas 2D · 60 FPS target · runs fully client-side, no install

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