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◆ Biomedical physics & engineering express2026-09-09

Optical activation of surface-functionalized BNNTs for dual-mode photothermal and photodynamic effects under low-intensity irradiation.

Sagar Kandel, Malsha Nanayakkara, David R Diercks, Santaneel Ghosh, Somesree Mitra

原始摘要(英文原文)· Original abstract
Boron nitride nanotubes (BNNTs) offer a unique combination of wide bandgap, high thermal conductivity, and chemical stability that positions them as promising candidates for emerging photothermal and photodynamic cancer therapies; however, their biomedical use has been limited by poor aqueous dispersibility and weak optical response under physiologically compatible excitation. In this work, highly water-dispersible BNNTs were synthesized through sodium dodecyl sulfate (SDS) surface functionalization, enabling, for the first time, a dual-mode optical response under low-intensity visible and ultraviolet irradiation. Comprehensive structural and compositional analyses confirmed uniform surfactant adsorption and the emergence of defect-mediated surface states that broaden optical absorption into the visible range. These modified BNNTs exhibited measurable photothermal heating under mild 520 nm excitation and, uniquely, generated potent reactive oxygen species under ultraviolet exposure, leading to strong cytotoxicity even without direct nanotube-cell contact. Biocompatibility assays with PC12 neural cells demonstrated low intrinsic toxicity up to 25 µg/mL, while ultraviolet-irradiated BNNT supernatants induced marked reductions in viability and pronounced nuclear abnormalities, consistent with apoptosis driven by photochemically generated oxidative species. The discovery that SDS-functionalized BNNTs can be activated through two orthogonal optical pathways at low energy thresholds establishes a novel multifunctional nanoplatform that circumvents limitations of traditional carbon-based nanostructures and high-power actuation methods. These findings highlight the potential of BNNT systems for minimally invasive, synergistic photothermal-photodynamic therapy and underscore the need for future in vivo studies to evaluate therapeutic efficacy, biodistribution, and long-term biocompatibility.
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Optical activation of surface-functionalized BNNTs for dual-mode photothermal and photodynamic effects under low-intensity irradiation. — 科研速览 Science Skim