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Diffusion of small molecules into medaka embryos improved by electroporation

机译:电穿孔可改善小分子向高胚中的扩散

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Background Diffusion of small molecules into fish embryos is essential for many experimental procedures in developmental biology and toxicology. Since we observed a weak uptake of lithium into medaka eggs we started a detailed analysis of its diffusion properties using small fluorescent molecules. Results Contrary to our expectations, not the rigid outer chorion but instead membrane systems surrounding the embryo/yolk turned out to be the limiting factor for diffusion into medaka eggs. The consequence is a bi-phasic uptake of small molecules first reaching the pervitelline space with a diffusion half-time in the range of a few minutes. This is followed by a slow second phase (half-time in the range of several hours) during which accumulation in the embryo/yolk takes place. Treatment with detergents improved the uptake, but strongly affected the internal distribution of the molecules. Testing electroporation we could establish conditions to overcome the diffusion barrier. Applying this method to lithium chloride we observed anterior truncations in medaka embryos in agreement with its proposed activation of Wnt signalling. Conclusions The diffusion of small molecules into medaka embryos is slow, caused by membrane systems underneath the chorion. These results have important implications for pharmacologic/toxicologic techniques like the fish embryo test, which therefore require extended incubation times in order to reach sufficient concentrations in the embryos.
机译:背景技术小分子向鱼胚中的扩散对于发育生物学和毒理学中的许多实验程序至关重要。由于我们观察到了高aka蛋对锂的吸收较弱,因此我们开始使用较小的荧光分子详细分析其扩散特性。结果与我们的预期相反,不是刚性的外部绒毛膜,而是胚胎/蛋黄周围的膜系统被证明是扩散到青aka卵中的限制因素。结果是小分子的双相吸收首先以数分钟的扩散半衰期到达pervitelline空间。随后是缓慢的第二阶段(半小时,在几个小时的范围内),在此期间会在胚胎/卵黄中积累。用去污剂处理改善了吸收,但是强烈影响了分子的内部分布。测试电穿孔,我们可以建立克服扩散障碍的条件。将这种方法应用于氯化锂,我们观察到了高aka胚胎的前截短与其拟议的Wnt信号激活相一致。结论小分子扩散到medaka胚胎中的速度很慢,这是由于绒毛膜下的膜系统引起的。这些结果对诸如鱼胚试验的药理/毒理学技术具有重要意义,因此需要延长孵育时间才能在胚中达到足够的浓度。

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