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◆ ACS nano2026-09-01

Transgene-Free Photothermal Enhancement of Glucose-Adaptive Insulin Secretion by Amplifying Ca2+ Oscillations.

Feifei Wu, Xinwei Wei, Wei Zhao, Liqing He, Bulong Gao, Yujie Luo, Wen Zhou, Yixuan Chai, Yanfang Wang, Baiheng Wu, Jinqiang Wang, Junqiu Liu, Dingcheng Zhu

原始摘要(英文原文)· Original abstract
Precise and on-demand regulation of cellular secretion is essential for effective and safe therapeutic intervention; however, most open-loop secretion strategies have limited integration of physiological feedback and require the introduction of synthetic genetic circuits, thereby constraining adaptive secretion control and increasing system complexity. Here, we present a transgene-free photothermal strategy for enhancing insulin secretion that integrates externally programmable open-loop control with physiology-coupled feedback regulation by directly leveraging endogenous voltage-gated Ca2+ channels (VGCCs), Ca2+-dependent exocytotic machinery, and the glucose-stimulated insulin secretion (GSIS) feedback loop. Mesoporous polydopamine nanoparticles functionalized with a near-infrared absorber (mPDA-IR) are coupled with MIN6 pancreatic β cells, which are subcutaneously implanted into type 1 diabetic mice. Under hyperglycemic conditions, mild photothermal activation (<42 °C) enhances membrane depolarization and VGCC activation, thereby amplifying Ca2+ oscillations and driving Ca2+-dependent insulin secretion. In vitro, photothermal modulation reproducibly evokes Ca2+ responses and propagates intercellular Ca2+ waves in both two-dimensional cultures and three-dimensional pseudoislets. Notably, insulin secretion is minimal under glucose-free conditions but robust under hyperglycemia. In vivo, a single photothermal stimulation adaptively enhances insulin secretion and efficiently restores blood glucose levels from severe hyperglycemia (≈550 mg/dL) to normoglycemia in type 1 diabetic mice. Collectively, this work establishes a transgene-free, externally actuated yet physiologically self-regulated strategy for precise regulation of cellular secretion.
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Transgene-Free Photothermal Enhancement of Glucose-Adaptive Insulin Secretion by Amplifying Ca2+ Oscillations. — 科研速览 Science Skim