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作 者:Changxiaoxi Liu Suo Yang Yimu Qiao Yuqiang Zhao Weisi Wang Mingxuan Jia Yanqi He Ying Zhou Liping Duan
机构地区:[1]College of Chemical Science and Technology,Yunnan University,Kunming 650091,China [2]National Institute of Parasitic Diseases,Chinese Center for Disease Control and Prevention,WHO Collaborating Centre for Malaria.Schistosomiasis,and Filariasis,Key Laboratory of Parasitology and Vector Biology of the Chinese Ministry of Health,Shanghai 200025,China [3]Qinghai Provincial People's Hospital,Xining 810007,China
出 处:《Chinese Chemical Letters》2021年第5期1809-1813,共5页中国化学快报(英文版)
基 金:supported by the National Natural Science Foundation of China (Nos.21672185,22067019,82072309);the support of National Key R&D Program of China (No.2017YFC1200600)
摘 要:We constructed a reaction-based near-infrared fluorescent probe(Niap) to specifically identify alkaline phosphatase(ALP) with fast red fluorescence enhancement.Based on the positive concentrationdependent manner between the fluorescent intensity of the Niap and ALP,probe Niap was used to study the ALP enrichment and variation in golden apple snails(Pomacea canaliculata) exposed to the molluscicide candidate PPU06.After treatment with different concentrations of PPU06 over various times,three organs of the surviving snails,liver,stomach and plantaris,were frozen and sectioned for fluorescent imaging experiments.With increased PPU06 concentration,red fluorescence substantially increased in the liver and reached a maximum within 24 h when the PPU06 co ncentration was 0.75 mg/L.No obvious changes in the stomach or foot plantaris were found.It showed PPU06 caused liver injury and stimulated the increase of ALP in the liver of P.canaliculata.This study demonstrates a rapid ALP fluorescent identification method that can be used to study the effects of PPU06 on P.canaliculata.It also provides optical evidence that may aid in the discovery of new chemistry for snail control.
关 键 词:Fluorescence sensor ALP Golden apple snails(R canaliculata) Molluscicide candidate BIO-IMAGING
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