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Updated: Jan 13, 2026

Magnetic-, Acoustic-, and Optical-Triple-Responsive Microbubbles for Magnetic Hyperthermia and Pothotothermal Combination Cancer Therapy
Published on: May 22, 2020
Enhanced magnetic hyperthermia in graphene-magnetite nanohybrids for cancer therapy: Artificial intelligence-driven
M S Dar1, K B Akram2, Liping Zhu1
1State Key Laboratory of Advanced Fiber Materials, College of Materials Science and Engineering, Donghua University, Shanghai, 201620, China.
Abstract:
Magnetic hyperthermia offers targeted cancer therapy using alternating magnetic fields (AMFs) to heat nanoparticles. This study evaluates graphene-magnetite nanohybrids (GMNHs) across compositions (Fe3O4:graphene ratios 0-100 %) and AMFs (163-982 kHz, 12.7-23.9 mT) to optimize heating efficiency. A hybrid deep learning model Nonlinear Autoregressive with Exogenous Inputs-Long Short-Term Memory (NARX-LSTM) predicted temperature evolution using experimental data. Results identified F75G25 (75 wt% Fe3O4/25 wt% graphene) and F65G35 (65 wt% Fe3O4/35 wt% graphene) nanohybrids achieved therapeutic temperatures (40-45 °C) under 163 kHz/16.4 mT and 518 kHz/23.9 mT respectively, while F65G35 achieved higher SAR (1.39 W/g) under 518 kHz/23.9 mT. High frequencies (982 kHz) reduced efficacy due to mismatched nanoparticle relaxation dynamics. The NARX-LSTM model achieved high accuracy (R2 ≥ 0.997), enabling precise thermal forecasting. This work highlights AI-nanotechnology synergy for optimized, personalized cancer therapy with minimal toxicity.
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