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首页> 外文期刊>The Journal of Experimental Biology >SURVIVAL OF INTRACELLULAR FREEZING BY THE ANTARCTIC NEMATODE PANAGROLAIMUS DAVIDI
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SURVIVAL OF INTRACELLULAR FREEZING BY THE ANTARCTIC NEMATODE PANAGROLAIMUS DAVIDI

机译:南极线虫PANAGROLAIMUS DAVIDI进行细胞内冷冻的生存

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Animals are usually thought to survive ice formation in their bodies only if the ice is confined to the body cavity and to extracellular spaces. Intracellular ice formation is believed to be fatal. This conclusion is based on studies of the cryopreservation of mammalian cells. Intracellular freezing has been observed in some living insect cells but has not been observed in intact animals. Nematodes are transparent and so the location of ice in their bodies can be observed directly using a cryomicroscope stage. We have observed freezing and melting in all body compartments, including intracellular compartments, of the Antarctic nematode Paraagrolaimus davidi. Inoculative freezing from the surrounding water occurs via the body openings, rather than across the cuticle; most frequently it occurs via the excretory pore. Individual nematodes that have frozen intracellularly will subsequently grow and reproduce in culture. Determining the mechanisms by which this nematode survives intracellular freezing could have important applications in the cryopreservation of a variety of biological materials. [References: 30]
机译:通常认为,只有将冰限制在体腔和细胞外空间中,动物才能在体内形成冰。认为细胞内冰的形成是致命的。该结论基于对哺乳动物细胞冷冻保存的研究。在某些活的昆虫细胞中已观察到细胞内冻结,但在完整动物中未观察到。线虫是透明的,因此可以使用冷冻显微镜台直接观察其体内冰的位置。我们已经观察到南极线虫Paraagrolaimus davidi的所有体室,包括细胞内室的冻结和融化。周围水体的接种性冻结是通过身体的开口而不是穿过角质层进行的;最常见的是通过排泄孔发生。细胞内冻结的单个线虫将随后生长并在培养物中繁殖。确定这种线虫在细胞内冻结中存活的机制可能在多种生物材料的冷冻保存中具有重要的应用。 [参考:30]

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