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Biocompatible near-infrared fluorescent nanoparticles for macro and microscopic in vivo functional bioimaging

机译:用于宏观和微观体内功能性生物成像的生物相容性近红外荧光纳米颗粒

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摘要

Near-infrared (NIR) imaging technology has been widely used for biomedical research and applications, since it can achieve deep penetration in biological tissues due to less absorption and scattering of NIR light. In our research, polymer nanoparticles with NIR fluorophores doped were synthesized. The morphology, absorption/emission features and chemical stability of the fluorescent nanoparticles were characterized, separately. NIR fluorescent nanoparticles were then utilized as bright optical probes for macro in vivo imaging of mice, including sentinel lymph node (SLN) mapping, as well as distribution and excretion monitoring of nanoparticles in animal body. Furthermore, we applied the NIR fluorescent nanoparticles in in vivo microscopic bioimaging via a confocal microscope. Under the 635 nm-CW excitation, the blood vessel architecture in the ear and the brain of mice, which were administered with nanoparticles, was visualized very clearly. The imaging depth of our one-photon microscopy, which was assisted with NIR fluorescent nanoprobes, can reach as deep as 500 μm. Our experiments show that NIR fluorescent nanoparticles have great potentials in various deep-tissue imaging applications.
机译:近红外(NIR)成像技术已被广泛用于生物医学研究和应用,因为由于近红外(NIR)光的吸收和散射较少,它可以实现对生物组织的深层穿透。在我们的研究中,合成了掺有NIR荧光团的聚合物纳米粒子。分别表征了荧光纳米颗粒的形态,吸收/发射特征和化学稳定性。然后将NIR荧光纳米颗粒用作明亮的光学探针,用于小鼠体内宏观成像,包括前哨淋巴结(SLN)定位以及动物体内纳米颗粒的分布和排泄监测。此外,我们通过共聚焦显微镜在体内显微生物成像中应用了NIR荧光纳米粒子。在635 nm-CW激发下,非常清晰地观察了纳米颗粒给药的小鼠耳朵和大脑的血管结构。在NIR荧光纳米探针的帮助下,我们的单光子显微镜的成像深度可以达到500μm。我们的实验表明,NIR荧光纳米颗粒在各种深层组织成像应用中具有巨大的潜力。

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