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Screening in larval zebrafish reveals tissue-specific distributions of fifteen fluorescent compounds
Author(s) -
Yuxiao Yao,
Shaoyang Sun,
Fei Fei,
Jingjing Wang,
Youhua Wang,
Ranran Zhang,
Jing Wu,
Lian Liu,
Xiuyun Liu,
Zhaomeng Cui,
Qiang Li,
Min Yu,
Yongjun Dang,
Xu Wang
Publication year - 2017
Publication title -
disease models and mechanisms
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.327
H-Index - 83
eISSN - 1754-8411
pISSN - 1754-8403
DOI - 10.1242/dmm.028811
Subject(s) - zebrafish , biology , in vivo , fluorescence , tissue distribution , epirubicin , model organism , staining , distribution (mathematics) , microbiology and biotechnology , biochemistry , physiology , genetics , cancer , physics , quantum mechanics , breast cancer , gene , mathematical analysis , mathematics
The zebrafish is a prominent vertebrate model for low-cost in vivo whole organism screening. In our recent screening of the distribution patterns of fluorescent compounds in live zebrafish larvae, fifteen compounds with tissue-specific distributions were identified. Several compounds were observed to accumulate in tissues where they were reported to induce side-effects, and compounds with similar structures tended to be enriched in the same tissues, with minor differences. In particular, we found three novel red fluorescent bone-staining dyes: purpurin, lucidin and 3-hydroxy-morindone; purpurin can effectively label bones in both larval and adult zebrafish, as well as in postnatal mice , without significantly affecting bone mass and density. Moreover, two structurally similar chemotherapeutic compounds, doxorubicin and epirubicin, were observed to have distinct distribution preferences in zebrafish. Epirubicin maintained a relatively higher concentration in the liver, and performed better in inhibiting hepatic hyperplasia caused by the over-expression of kras G12V In total, our study suggests that the transparent zebrafish larvae serve as valuable tools for identifying tissue-specific distributions of fluorescent compounds.

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