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    • 3. 发明公开
    • METHOD TO INCREASE THE NUMBER OF DETECTABLE PHOTONS DURING THE IMAGING OF A BIOLOGICAL MARKER
    • 法提高检测的光子的数量的生物标记物的过程中PICTURE
    • EP2553431A1
    • 2013-02-06
    • EP11722878.3
    • 2011-03-25
    • Institut Pasteur
    • ROGERS, KellySHORTE, Spencer L.DRAGAVON, JosephBLAZQUEZ, Samantha
    • G01N21/64B82Y15/00
    • G01N21/6486B82Y15/00G01N21/6428G01N2201/06193
    • The present invention relates a method to determine the presence of a photon producing biological marker in a cell, tissue or organism of interest. The method is based on Fluorescence by Unbound Excitation from Luminescence (FUEL) and comprises the steps of a) providing conditions suitable for the biological marker to produce at least one first photon by luminescence; b) providing a FUEL probe pair-upper (FPP-U) disposed in proximity to the cell, tissue or organism, wherein the at least one first photon of step a) excites the FPP-U, which emits at least one second photon. The FPP-U may be selected from the group of quantum dots, carbon nanotubes, fluorescent proteins, diamond nanocrystals and metalloporphyrins. This method is charcterized in that said biological marker and said FPP-U are not bound and in that each of the at least one second photon (s) are of a longer wavelength than each of the at least one first photon (s).
    • 本发明涉及到确定性挖掘的光子在细胞,组织或感兴趣的生物体生产生物标志物的存在的方法。 该方法是基于从发光(燃料)由未结合的激发荧光和包括以下步骤:a)提供的条件适合于生物标志物,以产生由发光b。至少一个第一光子)提供燃料探针对的高位(FPP-U ),其设置在接近所述细胞,组织或生物体,worin步骤的至少一个第一光子一)激发FPP-U,其发射至少一个第二光子。 在FPP-U可以从组量子点,碳纳米管,荧光蛋白,金刚石纳米晶体,和金属卟啉中选择。 该方法在这所述生物标志物为特征的和Said FPP-U不结合和中那样每个所述至少一个第二个光子(S)的比所述至少一个第一光子(S)的较长波长的。