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Light-driven liquid metal nanotransformers for biomedical theranostics

机译:用于生物医学治疗的光驱动液态金属纳米变压器

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Room temperature liquid metals (LMs) represent a class of emerging multifunctional materials with attractive novel properties. Here, we show that photopolymerized LMs present a unique nanoscale capsule structure characterized by high water dispersibility and low toxicity. We also demonstrate that the LM nanocapsule generates heat and reactive oxygen species under biologically neutral near-infrared (NIR) laser irradiation. Concomitantly, NIR laser exposure induces a transformation in LM shape, destruction of the nanocapsules, contactless controlled release of the loaded drugs, optical manipulations of a microfluidic blood vessel model and spatiotemporal targeted marking for X-ray-enhanced imaging in biological organs and a living mouse. By exploiting the physicochemical properties of LMs, we achieve effective cancer cell elimination and control of intercellular calcium ion flux. In addition, LMs display a photoacoustic effect in living animals during NIR laser treatment, making this system a powerful tool for bioimaging.
机译:室温液态金属(LM)代表了一类新兴的多功能材料,具有吸引人的新颖特性。在这里,我们表明光聚合的LMs呈现出独特的纳米级胶囊结构,其特征是高水分散性和低毒性。我们还证明,LM纳米胶囊在生物中性近红外(NIR)激光辐射下会产生热量和活性氧。同时,NIR激光照射会引起LM形状的转变,纳米胶囊的破坏,负载药物的非接触控制释放,微流控血管模型的光学操纵以及用于生物器官和生物体X射线增强成像的时空靶向标记老鼠。通过利用LM的理化性质,我们实现了有效的癌细胞消除和细胞间钙离子通量的控制。此外,LM在NIR激光处理过程中在活体动物中显示出光声效果,使该系统成为进行生物成像的强大工具。

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