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Phosphonated Near-Infrared Fluorophores for Biomedical Imaging oi Bone

机译:磷化近红外荧光团用于骨生物医学成像

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The conventional method for creating targeted contrast agents is to conjugate separate targeting and fluoro-phore domains. A new strategy is based on the incorporation of targeting moieties into the non-delocalized structure of pen-tamethine and heptamethine indocyanines. Using the known affinity of phosphonates for bone minerals in a model system, two families of bifunctional molecules that target bone without requiring a traditional bisphosphonate are synthesized. With peak fluorescence emissions at approximately 700 or 800 nm, these molecules can be used for fluorescence-assisted resection and exploration (FLARE) dual-channel imaging. Longitudinal FLARE studies in mice demonstrate that phosphonated near-infrared fluorophores remain stable in bone for over five weeks, and histological analysis confirms their incorporation into the bone matrix. Taken together, a new strategy for creating ultra-compact, targeted near-infrared fluorophores for various bioimaging applications is described.
机译:用于产生靶向造影剂的常规方法是缀合分离的靶向和荧光团结构域。一种新的策略是基于将靶向部分掺入戊次甲基和庚次甲基吲哚菁的非离域结构中。在模型系统中,使用已知的膦酸酯对骨骼矿物质的亲和力,可以合成两个不需要传统双膦酸酯的靶向骨骼的双功能分子家族。这些分子的峰值荧光发射波长约为700或800 nm,可用于荧光辅助切除和探查(FLARE)双通道成像。在小鼠中进行的纵向FLARE研究表明,磷酸化的近红外荧光团在骨骼中可保持稳定超过五周,并且组织学分析证实它们已掺入骨基质中。综上所述,描述了一种为各种生物成像应用创建超紧凑的,有针对性的近红外荧光团的新策略。

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