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通过稳定离子电流控制发育。

Control of development by steady ionic currents.

作者信息

Jaffe L F

出版信息

Fed Proc. 1981 Feb;40(2):125-7.

PMID:7193143
Abstract

A wide variety of developing systems drive substantial steady ionic currents through themselves. These currents are driven by a certain separation of ion leaks from ion pumps along the membranes of developing cells. Moreover, they seem to be more than epiphenomena. In part they may act back, via self-electrophoresis and/or specific ion gradients, to further segregate the membrane components that drive them; in part they may act to segregate and locally modify other components and thus act as prime agents of differentiation. Among the systems in which evidence for such action has been reported are: 1)Fucoid eggs. There is evidence that early calcium ion currents through these eggs are self-amplifying and induce local growth at the locus of calcium ion entry. 2)Cecropia (insect) follicles. There is evidence that large transfollicular currents maintain enough of a voltage drop between nurse and oocyte cells to help drive macromolecules into the oocytes. 3)Amputated amphibian limbs. There is evidence that large natural stump currents somehow initiate regeneration. 4)Frog embryos. The growth of isolated, embryonic Xenopus neuroblasts and myoblasts can be directed by voltage gradients so small (down to 10 to 30 mV/mm) that they may well exist within the embryo. 5)Wounded mammalian skin. Natural currents through incisions in guinea pig skin establish voltage gradients within the adjoining epidermis that are so large (100 to 200 mV/mm) they may direct wound closure.

摘要

各种各样的发育系统自身驱动着大量稳定的离子电流。这些电流是由发育中细胞沿细胞膜的离子泄漏与离子泵之间的特定分离所驱动的。此外,它们似乎不仅仅是附带现象。它们部分可能通过自电泳和/或特定离子梯度产生反向作用,进一步分离驱动它们的膜成分;部分可能起到分离和局部修饰其他成分的作用,从而充当分化的主要因素。已报道有此类作用证据的系统包括:1)墨角藻卵。有证据表明,通过这些卵的早期钙离子电流是自我放大的,并在钙离子进入的部位诱导局部生长。2)天蚕(昆虫)卵泡。有证据表明,大的跨卵泡电流在滋养细胞和卵母细胞之间维持足够的电压降,以帮助将大分子驱动到卵母细胞中。3)截肢的两栖动物肢体。有证据表明,大的天然残端电流以某种方式启动再生。4)青蛙胚胎。分离的非洲爪蟾胚胎神经母细胞和成肌细胞的生长可以由非常小(低至10至30 mV/mm)的电压梯度引导,而这样的电压梯度很可能存在于胚胎内部。5)受伤的哺乳动物皮肤。通过豚鼠皮肤切口的天然电流在相邻表皮内建立的电压梯度非常大(100至200 mV/mm),它们可能引导伤口愈合。

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