Quantum-Informed Holistic Hormonal Therapy (QHHT): A Unified Multidisciplinary Framework for Treating Female-Specific Cancers through Non-Equilibrium Hormonal and Cellular Reprogramming
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Quantum-Informed Holistic Hormonal Therapy (QHHT) revolutionizes treatment of female-specific cancers (breast, ovarian, endometrial, cervical) by targeting the Dynamic Hormonal Field (DHF). QHHT integrates TD-DFT, QM/MM, and molecular docking; non-equilibrium thermodynamics with fluctuation theorems and Bayesian inference; and multiscale modeling using PINNs, GNNs, and RL. Cancer is modeled as a deviation from minimum entropy production, quantified via Onsager relations, Fokker-Planck dynamics, and Jarzynski equality. Entropy components ($\sigma_{\text{chemical}}$, $\sigma_{\text{transport}}$) are measured using NEMD, micro-calorimetry, and FRET, validated by MCMC and MLE. RL optimizes therapies, minimizing off-target entropy. SHAP-based XAI ensures interpretability. QHHT achieves precision oncology through entropy minimization, pathway suppression, immune activation, and equitable solutions.



