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胚胎发育过程中有机磷化合物不可逆抑制后乙酰胆碱酯酶活性的恢复

Recovery of acetylcholinesterase activity after irreversible inhibition by organophosphorous compounds in embryonic development.

作者信息

Turpaev T M, Semenova M N

机构信息

N. K. Koltzov Institute of Developmental Biology, USSR Academy of Sciences, Moscow.

出版信息

Comp Biochem Physiol C Comp Pharmacol Toxicol. 1988;89(2):185-9. doi: 10.1016/0742-8413(88)90207-1.

Abstract
  1. Recovery of acetylcholinesterase (AChE) activity was studied using the embryos of sea urchins Strongylocentrotus intermedius and S. nudus, embryos of axolotl Ambystoma mexicanum and in the chick embryo muscle culture treated by "irreversible" organophosphorous inhibitors (OPI). 2. AChE activity was assayed by a modified Ellman's procedure. 3. It follows from the data obtained that, unlike the plutei of sea urchins and the monolayer culture of chick embryo muscle cells, the embryos of axolotl show a compensatory increase in AChE biosynthesis after inhibition by OPI. 4. This mechanism is assumed to be related to the presence of a well developed neuromuscular system in the A. mexicanum embryos. 5. It is possible that acetylcholine accumulated as a result of partial AChE inhibition is responsible for the compensatory increase in AChE biosynthesis.
摘要
  1. 使用中间球海胆和光棘球海胆的胚胎、墨西哥钝口螈的胚胎以及经“不可逆”有机磷抑制剂(OPI)处理的鸡胚肌肉培养物,研究了乙酰胆碱酯酶(AChE)活性的恢复情况。2. AChE活性通过改良的埃尔曼方法进行测定。3. 从获得的数据可以看出,与海胆的长腕幼虫和鸡胚肌肉细胞的单层培养物不同,墨西哥钝口螈的胚胎在被OPI抑制后,AChE生物合成出现代偿性增加。4. 推测这种机制与墨西哥钝口螈胚胎中发育良好的神经肌肉系统的存在有关。5. 部分AChE抑制导致积累的乙酰胆碱可能是AChE生物合成代偿性增加的原因。

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