Hydrogen sulfide fluorescent probe targeting Golgi apparatus, and preparation method and application thereof
A fluorescent probe and hydrogen sulfide technology, applied in the field of fluorescent probes, can solve the problems of complex synthesis, insufficient response speed, and insufficient selectivity, and achieve the effects of simple synthesis, sensitive response, and strong anti-interference ability
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Embodiment 1
[0047] Embodiment 1: the synthesis of formula (II) compound
[0048] The synthetic design route is as follows:
[0049]
Embodiment approach 1
[0050] Embodiment 1: Dissolve 288mg (1mmol) of 4-phenyl-2trifluoromethyl-7aminoquinoline and 69mg (1mmol) of sodium nitrite in hydrochloric acid and stir at low temperature (0°C) for 1h, then add sodium azide 130mg (2mmol), stirred at low temperature (0°C) for 1h and then stirred at room temperature for 1h; then, the reaction solution was suction filtered to obtain the crude product; finally, a mixed system of dichloromethane and petroleum ether (v / v, 1:1) The chromatographic column separation was carried out as an eluent to obtain 195 mg of a dark red pure product with a yield of 62%.
Embodiment approach 2
[0051] Embodiment 2: Dissolve 288mg (1mmol) of 4-phenyl-2trifluoromethyl-7aminoquinoline and 138mg (2mmol) of sodium nitrite in hydrochloric acid and stir at low temperature (0°C) for 1h, then add sodium azide 260mg (4mmol), stirred at low temperature (0°C) for 1.2h and then at room temperature for 1h; then, the reaction solution was suction filtered to obtain the crude product; finally, a mixed system of dichloromethane and petroleum ether (v / v, 1:1 ) is carried out chromatographic column separation as eluent, obtains dark red pure product 204mg, productive rate is 65%.
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