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Genomic analysis, cytokine expression, and microRNA profiling reveal biomarkers of human dietary zinc depletion and homeostasis

机译:基因组分析,细胞因子表达和microRNA分析揭示了人类饮食锌消耗和体内平衡的生物标记

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摘要

Implementation of zinc interventions for subjects suspected of being zinc-deficient is a global need, but is limited due to the absence of reliable biomarkers. To discover molecular signatures of human zinc deficiency, a combination of transcriptome, cytokine, and microRNA analyses was applied to a dietary zinc depletion/repletion protocol with young male human subjects. Concomitant with a decrease in serum zinc concentration, changes in buccal and blood gene transcripts related to zinc homeostasis occurred with zinc depletion. Microarray analyses of whole blood RNA revealed zinc-responsive genes, particularly, those associated with cell cycle regulation and immunity. Responses of potential signature genes of dietary zinc depletion were further assessed by quantitative real-time PCR. The diagnostic properties of specific serum microRNAs for dietary zinc deficiency were identified by acute responses to zinc depletion, which were reversible by subsequent zinc repletion. Depression of immune-stimulated TNFα secretion by blood cells was observed after low zinc consumption and may serve as a functional biomarker. Our findings introduce numerous novel candidate biomarkers for dietary zinc status assessment using a variety of contemporary technologies and which identify changes that occur prior to or with greater sensitivity than the serum zinc concentration which represents the current zinc status assessment marker. In addition, the results of gene network analysis reveal potential clinical outcomes attributable to suboptimal zinc intake including immune function defects and predisposition to cancer. These demonstrate through a controlled depletion/repletion dietary protocol that the illusive zinc biomarker(s) can be identified and applied to assessment and intervention strategies.
机译:对全球怀疑有锌缺乏症的受试者实施锌干预是一项全球需求,但由于缺乏可靠的生物标记物而受到限制。为了发现人类锌缺乏的分子特征,将转录组,细胞因子和microRNA分析相结合,应用于年轻男性受试者的饮食锌消耗/补充方案。伴随着血清锌浓度的降低,与锌稳态相关的颊和血液基因转录物的变化与锌耗竭有关。全血RNA的微阵列分析揭示了锌反应性基因,特别是那些与细胞周期调节和免疫相关的基因。通过定量实时PCR进一步评估饮食中锌耗竭的潜在特征基因的反应。通过对锌耗竭的急性反应确定了特定血清微RNA对饮食锌缺乏的诊断特性,随后的锌补给可逆。低锌消耗后,血细胞抑制了免疫刺激的TNFα分泌,这可能是一种功能性生物标志物。我们的发现为使用多种现代技术的饮食锌状态评估引入了许多新颖的候选生物标志物,这些标志物可识别出比代表当前锌状态评估标志物的血清锌浓度高的敏感性或比其高的敏感性。此外,基因网络分析的结果显示出潜在的临床结果可归因于锌摄入量不足,包括免疫功能缺陷和易患癌症。这些通过受控的消耗/补充饮食方案证明,可以识别出虚幻的锌生物标记并将其应用于评估和干预策略。

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