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3D-printed microwell arrays for Ciona microinjection and timelapse imaging

机译:用于Ciona显微注射和延时摄影的3D打印微孔阵列

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摘要

Ascidians such as Ciona are close chordate relatives of the vertebrates with small, simple embryonic body plans and small, simple genomes. The tractable size of the embryo offers considerable advantages for in toto imaging and quantitative analysis of morphogenesis. For functional studies, Ciona eggs are considerably more challenging to microinject than the much larger eggs of other model organisms such as zebrafish and Xenopus. One of the key difficulties is in restraining the eggs so that the microinjection needle can be easily introduced and withdrawn. Here we develop and test a device to cast wells in agarose that are each sized to hold a single egg. This injection mold is fabricated by micro-resolution stereolithography with a grid of egg-sized posts that cast corresponding wells in agarose. This 3D printing technology allows the rapid and inexpensive testing of iteratively refined prototypes. In addition to their utility in microinjection, these grids of embryo-sized wells are also valuable for timelapse imaging of multiple embryos.
机译:像Ciona这样的海鞘是脊椎动物的近等胸类近亲,具有小的,简单的胚胎身体计划和小的,简单的基因组。胚胎的易处理大小为形态发生的成像和定量分析提供了相当大的优势。对于功能研究,与其他模型生物(例如斑马鱼和非洲爪蟾)的更大卵子相比,显微注射Ciona卵的挑战性更大。关键困难之一是限制卵子,以便可以轻松地插入和拔出显微注射针。在这里,我们开发并测试了一种装置,用于在琼脂糖中浇铸孔,每个孔的大小可容纳一个鸡蛋。该注塑模具是通过微分辨率立体光刻技术制造的,其网格大小为鸡蛋大小的柱子,可在琼脂糖中浇铸相应的孔。这种3D打印技术可以对迭代精炼的原型进行快速且廉价的测试。除了它们在显微注射中的用途外,这些胚胎大小孔的网格对于多个胚胎的延时成像也很有价值。

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