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Screening in larval zebrafish reveals tissue-specific distribution of fifteen fluorescent compounds

机译:幼虫斑马鱼的筛选显示了15种荧光化合物的组织特异性分布

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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 krasG12V . In total, our study suggests that the transparent zebrafish larvae serve as valuable tools for identifying tissue-specific distributions of fluorescent compounds.
机译:斑马鱼是用于低成本体内全生物筛选的著名脊椎动物模型。在我们最近对活斑马鱼幼虫中荧光化合物分布模式的筛选中,鉴定了15种具有组织特异性分布的化合物。观察到几种化合物在组织中积累,据报道它们会引起副作用,并且具有相似结构的化合物倾向于在相同组织中富集,差异很小。特别是,我们发现了三种新型的红色荧光骨染色染料:紫嘌呤,Lucidin和3-hydroxy-morindone。紫癜可以有效标记幼虫和成年斑马鱼以及产后小鼠的骨骼,而不会显着影响骨骼质量和密度。此外,观察到两种结构相似的化学治疗化合物阿霉素和表柔比星在斑马鱼中具有不同的分布偏好。表柔比星在肝脏中保持相对较高的浓度,在抑制因kras G12V 的过表达引起的肝增生方面表现更好。总的来说,我们的研究表明,透明的斑马鱼幼虫可以作为鉴定荧光化合物的组织特异性分布的有价值的工具。

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