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首页> 外文期刊>ACS applied materials & interfaces >Remote Control of Neural Stem Cell Fate Using NIR-Responsive Photoswitching Upconversion Nanoparticle Constructs
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Remote Control of Neural Stem Cell Fate Using NIR-Responsive Photoswitching Upconversion Nanoparticle Constructs

机译:利用NIR响应光学性能上转化纳米颗粒构建体远程控制神经干细胞命运

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摘要

Light-mediated remote control of stem cell fate, such as proliferation, differentiation, and migration, can bring a significant impact on stem cell biology and regenerative medicine. Current UV/vis-mediated control approaches are limited in terms of nonspecific absorption, poor tissue penetration, and phototoxicity. Upconversion nanoparticle (UCNP)-based near-infrared (NIR)-mediated control systems have gained increasing attention for vast applications with minimal nonspecific absorption, good penetration depth, and minimal phototoxicity from NIR excitations. Specifically, 808 nm NIR-responsive upconversion nanomaterials have shown clear advantages for biomedical applications owing to diminished heating effects and better tissue penetration. Herein, a novel 808 nm NIR-mediated control method for stem cell differentiation has been developed using multishell UCNPs, which are optimized for upconverting 808 nm NIR light to UV emission. The locally generated UV emissions further toggle photoswitching polymer capping ligands to achieve spatiotemporally controlled small-molecule release. More specifically, with 808 nm NIR excitation, stem cell differentiation factors can be released to guide neural stem cell (NSC) differentiation in a highly controlled manner. Given the challenges in stem cell behavior control, the developed 808 nm NIR-responsive UCNP-based approach to control stem cell differentiation can represent a new tool for studying single-molecule roles in stem cell and developmental biology.
机译:光介导的干细胞命运的远程控制,例如增殖,分化和迁移,可以对干细胞生物学和再生医学产生重大影响。目前的UV / Vis介导的对照方法在非特异性吸收,差的组织渗透和光毒性方面受到限制。基于近红外线(NIR)介导的控制系统的上转换纳米颗粒(UCNP)对具有最小非特异性吸收,良好的渗透深度和来自NIR激励的最小光毒性的广泛应用增加了升高。具体地,808nm Nir响应性上变化纳米材料显示出在生物医学应用中,由于加热效应和更好的组织渗透而显而易见的是生物医学应用的优点。这里,使用MultiShell UCNPS开发了一种用于干细胞分化的新型808nm NiR介导的控制方法,其被优化用于将808nm nir光的升高到UV发射。局部产生的紫外线排放进一步切换光学开关聚合物覆盖配体,以实现时尚受控的小分子释放。更具体地,具有808nm的NIR激发,可以以高度控制的方式释放干细胞分化因子以引导神经干细胞(NSC)分化。鉴于干细胞行为控制中的挑战,基于808nm的NIR响应性UCNP的控制干细胞分化的方法可以代表一种研究干细胞和发育生物学中单分子作用的新工具。

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