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Two-Photon Fluorescence Imaging and Bimodal Phototherapy of Epidermal Cancer Cells with Biocompatible Self-Assembled Polymer Nanoparticles

机译:具有生物相容性自组装聚合物纳米粒子的表皮癌细胞的双光子荧光成像和双峰光疗。

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We have developed herein an engineered polymer-based nanoplatform showing the convergence of two-photon fluorescence imaging and bimodal photofherapeutic activity in a single nanostructure. It was achieved through the appropriate choice of three different components: a β-cyclodextrin-based polymer acting as a suitable carrier, a zinc phthalocyanine emitting red fluorescence simultaneously as being a singlet oxygen (~1O2) photosensitizer, and a tailored nitroaniline derivative, functioning as a nitric oxide (NO) photodonor. The self-assembly of these components results in photoactivable nanoparticles, approximately 35 nm in diameter, coencapsulating a multifunctional cargo, which can be delivered to carcinoma cells. The combination of steady-state and time-resolved spectroscopic and photochemical techniques shows that the two photoresponsive guests do not interfere with each other while being enclosed in their supramolecular container and can thus be operated in parallel under control of light stimuli. Specifically, two-photon fluorescence microscopy allows mapping of the nanoassembly, here applied to epidermal cancer cells. By detecting the red emission from the phthalocyanine fluorophore it was also possible to investigate the tissue distribution after topical delivery onto human skin ex vivo. Irradiation of the nanoassembly with visible light triggers the simultaneous delivery of cytotoxic ~1O2 and NO, resulting in an amplified cell photomortality due to a combinatory effect of the two cytotoxic agents. The potential of dual therapeutic photodynamic action and two-photon fluorescence imaging capability in a single nanostructure make this system an appealing candidate for further studies in biomedical research.
机译:我们在本文中开发了一种基于工程聚合物的纳米平台,该平台显示了单个纳米结构中的双光子荧光成像和双峰光疗活性的融合。它是通过适当选择三种不同的组分来实现的:用作合适载体的基于β-环糊精的聚合物,同时作为单线态氧(〜1O2)光敏剂发出红色荧光的酞菁锌和功能良好的量身定制的硝基苯胺衍生物作为一氧化氮(NO)光供体。这些组分的自组装产生直径约35 nm的可光活化纳米颗粒,将可装载到癌细胞中的多功能货物共囊化。稳态和时间分辨光谱技术与光化学技术的结合表明,两个光响应客人在被封入其超分子容器中时不会互相干扰,因此可以在光刺激的控制下并行运行。具体而言,双光子荧光显微镜可以绘制纳米组件的图谱,此处将其应用于表皮癌细胞。通过检测酞菁荧光团的红色发射,还可以研究局部离体递送到人体皮肤后的组织分布。用可见光辐照纳米组件触发了细胞毒性〜1O2和NO的同时传递,由于两种细胞毒性剂的组合作用,导致细胞光致死率增加。在单个纳米结构中具有双重治疗光动力作用和双光子荧光成像功能的潜力使该系统成为生物医学研究中进一步研究的有吸引力的候选者。

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