首页> 外文期刊>Toxicology: An International Journal Concerned with the Effects of Chemicals on Living Systems >Developmental lead exposure disturbs expression of synaptic neural cell adhesion molecules in herring gull brains.
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Developmental lead exposure disturbs expression of synaptic neural cell adhesion molecules in herring gull brains.

机译:发育性铅暴露干扰鲱鱼鸥脑中突触神经细胞粘附分子的表达。

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Neurobehavioral testing of herring gull chicks (Larus argentatus) in both laboratory and field studies indicates that lead exposure during critical periods of development causes neurological deficits that may compromise survival in the wild. Accumulating evidence suggests that lead impairs neurodevelopment, in part, by altering the expression of cell adhesion molecules (CAMs) responsible for the proper formation and maintenance of neural structure and synaptic function. We examined the adhesion molecules NCAM, L1, and N-cadherin in gull brains to determine whether these CAMs are altered by lead exposure and might serve as markers of developmental neurotoxicity. One-day-old chicks were collected from nesting colonies and were laboratory housed. On post-hatching day (PHD) 2, chicks were given 100 mg/kg lead acetate or saline (intraperitoneally). Birds were killed on PHD 34, 44, or 55 (blood-lead levels averaged 27.4, 20.8, and 19.5 microg/dl, respectively). Brains were removed and stored at -70 degrees C until analysis. Expression of CAMs was determined in synaptosomal preparations by Western blotting and the activity of NCAM-associated sialyltransferase (ST) was determined in purified whole brain golgi apparatus. Elevation in synaptosomal polysialylated NCAM expression and a significant increase in golgi ST activity was observed in lead-treated animals at PHD 34. Reductions in synaptosomal N-cadherin were observed at PHD 34 and 44, while L1 expression appeared unaffected by lead at any time-point. By 55 days post-hatching, no differences in N-cadherin expression, polysialylated NCAM expression or NCAM-associated ST activity were seen in lead-treated animals as compared with age-matched control animals. Lead-induced disruption of CAM expression during early neurodevelopment may contribute to behavioral deficits observed in herring gulls in both the laboratory and the field, and may serve as a marker for heavy metal exposure during postnatal development.
机译:在实验室和田野研究中对鲱鸥雏鸡(Larus argentatus)进行神经行为学测试表明,在发育的关键时期暴露于铅会导致神经系统缺陷,可能会损害野外生存。越来越多的证据表明,铅会通过改变负责正确形成和维持神经结构和突触功能的细胞粘附分子(CAM)的表达而部分损害神经发育。我们检查了鸥脑中的粘附分子NCAM,L1和N-钙粘蛋白,以确定这些CAM是否因铅暴露而改变,并且可能充当发育性神经毒性的标志物。从嵌套菌落中收集1天大的小鸡并进行实验室饲养。在孵化后第2天(PHD),给雏鸡注射100 mg / kg乙酸铅或盐水(腹膜内)。以PHD 34、44或55杀死禽鸟(血铅水平分别平均为27.4、20.8和19.5 microg / dl)。取出脑并在-70℃下保存直至分析。通过蛋白质印迹法测定突触体制剂中CAMs的表达,并在纯化的全脑高尔基体中测定NCAM相关的唾液酸转移酶(ST)的活性。在PHD 34处,用铅处理的动物中突触体多唾液酸化NCAM表达升高,并且高尔基体ST活性显着增加。在PHD 34和44处,突触体N-钙黏着蛋白减少,而L1表达在任何时候都不受铅的影响-点。在孵化后55天,与年龄匹配的对照动物相比,在铅处理的动物中未观察到N-钙黏着蛋白表达,多唾液酸化的NCAM表达或与NCAM相关的ST活性的差异。铅诱导的早期神经发育过程中CAM表达的破坏可能会导致在实验室和野外在鲱鸥中观察到的行为缺陷,并且可能是产后发育期间重金属暴露的标志。

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