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Interleukin-1(beta) as a potential biomarker of methylmercury exposure in developing neural circuits of the frog, Xenopus laevis.

机译:白细胞介素-1β作为甲基汞暴露在青蛙非洲爪蟾神经回路发育中的潜在生物标志物。

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The primary goal of this thesis was to identify new biomarkers of exposure for developing neural tissues in aquatic species. It was found that the cytokine, interleukin-1{dollar}beta{dollar} (IL-1{dollar}beta{dollar}) and its type 1 receptor are expressed in the very earliest functional neural circuits that regulate early locomotor behavior in the frog embryo. Even though IL-1{dollar}beta{dollar} is cleaved by ICE (interleukin-I{dollar}beta{dollar} converting enzyme), an enzyme that initiates apoptosis, IL-1{dollar}beta{dollar} expression is not associated with the expression of poly (ADP-ribose) polymerase (parp), a marker of apoptosis, indicating that IL-1{dollar}beta{dollar} expression is not a marker of programmed cell death in the developing frog embryo. Thus, IL-1{dollar}beta{dollar}, like other neurotrophins, may play a role in regulating cell growth or survival, or in regulating synapse formation and/or validation. Exposure of developing tadpoles to methylmercury chloride, a potent aquatic environmental contaminant, dramatically reduced IL-1{dollar}beta{dollar} levels within specific neural cell types. Thus, IL-1{dollar}beta{dollar} serves as a potential molecular biomarker of methylmercury exposure in the developing nervous system.
机译:本论文的主要目的是确定暴露的新生物标志物,以发展水生物种的神经组织。发现细胞因子白细胞介素-1 {dollar} beta {dollar}(IL-1 {dollar} beta {dollar})及其1型受体在最早调控神经元早期运动行为的功能性神经回路中表达。青蛙胚胎。即使IL-1 {dollar} beta {dollar}被ICE(白介素I {dollar} beta {dollar}转换酶)切割,ICE是一种引发细胞凋亡的酶,但IL-1 {dollar} beta {dollar}的表达却没有与凋亡标记聚(ADP-核糖)聚合酶(parp)的表达相关,表明IL-1 {dollar}β{dollar}的表达不是发育中的青蛙胚胎中程序性细胞死亡的标志。因此,IL-1 {dollar}β{dollar}像其他神经营养蛋白一样,可能在调节细胞生长或存活,或调节突触形成和/或验证中起作用。发育中的to暴露于甲基汞氯化物(一种有效的水生环境污染物),可显着降低特定神经细胞类型中的IL-1 {dollar} beta {dollar}水平。因此,IL-1 {dollar}β{dollar}可以作为正在发育的神经系统中甲基汞暴露的潜在分子生物标记。

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