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Fluorescence-based histamine sensing with inorganic-organic hybrid nanoparticles

机译:无机 - 有机杂交纳米粒子基于荧光组胺感测

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Four novel inorganic-organic hybrid nanoparticles (IOH-NPs) are presented that allow a fluorescence detection of biogenic amines such as histamine. Namely, the IOH-NPs are Cu2+[Calc](2-), Ag-2(+)[Calc](2-) (Calc: calcein, C30H24N2O13), Cu-2(2+)[PTC](4-) and Ag-4(+)[PTC](4-) (PTC: perylenetetracarboxylate, C24H8O8) that contain extremely high dye loads of calcein (90 wt% in Cu2+[Calc](2-), 70 wt% in Ag-2(+)[Calc](2-)) and of the perylene derivative (77 wt% in Cu-2(2+)[PTC](4-), 50 wt% in Ag-4(+)[PTC](4-)). The saline compounds are prepared by water-based synthesis, which instantaneously results in highly stable nanoparticle suspensions. Whereas the calcein- and perylenetetracarboxylate-related fluorescence is essentially quenched in the solid nanoparticles, the respective dye is released into solution in the presence of histamine and, thereafter, shows bright emission with an intensity depending on the concentration of histamine. Specifically, Ag-4(+)[PTC](4-) shows promising performance with high colloidal and chemical stability as well as a remarkable concentration-depending fluorescence increase upon addition of histamine (e.g. 180-times higher emission upon addition of 100 M of histamine). In fact, only Ag-4(+)[PTC](4-) IOH-NPs show off/on-like emission in the absence/presence of histamine, which is preferable for reliable fluorescence detection.
机译:提出了四种新型无机 - 有机杂化纳米颗粒(IOH-NPS),其允许荧光检测生物胺,例如组胺。即,IOH-NPS是Cu2 + [钙](2-),Ag-2(+)[Cap](2-)(Calc:Calcein,C30H24N2O13),Cu-2(2 +)[PTC](4- )和Ag-4(+)[PTC](4-)(PTC:PTC:PTC:PTC:PTCETETRARBOTEL,C24H8O8),其含有极高的CALCEIN(CU2 + [CAP](2-)中的90wt%,70wt%,在Ag- 2(+)[钙](2-))和Perylene衍生物(Cu-2(2 +)[PTC] [PTC](4-),50wt%,Ag-4(+)[PTC] (4-))。盐化合物通过水基合成制备,其瞬间导致高度稳定的纳米颗粒悬浮液。虽然Calcein-和Per enetetrocarboxylate相关的荧光基本上在固体纳米颗粒中淬灭,但在组胺存在下,将相应的染料释放到溶液中,并且此后,表现出根据组胺的浓度的强度发光。具体地,Ag-4(+)[PTC](4-)显示了具有高胶体和化学稳定性的有希望的性能,以及在加入组胺时增加荧光增加(加入100米时的180倍的发射180倍组胺)。事实上,只有Ag-4(+)[PTC](4-)IOH-NPS在没有/存在组胺的情况下露出/接通相同,这对于可靠的荧光检测是优选的。

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