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Amphiphilic perfluoroalkyl carbohydrates as new tools for liver imaging.

机译:两亲全氟烷基碳水化合物作为肝脏成像的新工具。

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The synthesis of three molecules containing a fluorocarbon chain (either C(6)F(13), C(8)F(17) or C(10)F(21)), a sugar moiety (derived from lactobionic acid) and a chelate (derived from DTPA) is reported. These molecules (C(6)F(13)-Gal-DTPA, C(8)F(17)-Gal-DTPA or C(10)F(21)-Gal-DTPA) have been dispersed in water and their critical micellar concentration (CMC) as well as their size were determined. Their interaction with serum was weak as evaluated by time resolved fluorimetry of europium complexes. The presence of sugar on the surface of the nanoparticles was confirmed by the agglutination test using ricin. Conditions of pH and concentrations were optimised for in vivo studies. Finally, the nanoparticles formed with C(10)F(21)-Gal-DTPA have been complexed with (99m)Tc and injected to rats in order to follow their biodistribution by scintigraphy while following their stability by transmission electronic microscopy. A majority of the compound was found in the liver post-bolus injection.
机译:包含碳氟链的三个分子(C(6)F(13),C(8)F(17)或C(10)F(21)),糖部分(源自乳糖酸)和据报道有螯合物(来自DTPA)。这些分子(C(6)F(13)-Gal-DTPA,C(8)F(17)-Gal-DTPA或C(10)F(21)-Gal-DTPA)已分散在水中,并且它们的临界值确定胶束浓度(CMC)及其大小。通过时间分辨荧光法测定euro配合物,它们与血清的相互作用较弱。通过使用蓖麻毒蛋白的凝集试验确认了纳米颗粒表面上糖的存在。为体内研究优化了pH和浓度条件。最后,由C(10)F(21)-Gal-DTPA形成的纳米颗粒已与(99m)Tc络合并注射到大鼠中,以通过闪烁显像法追踪其生物分布,同时通过透射电子显微镜观察其稳定性。推注后的肝脏中发现了大多数化合物。

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