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成年期甲状腺功能减退症小鼠小脑生理学的性别比较研究:气相色谱 - 质谱代谢组学数据标准化在荟萃分析中的意义。

Sex-comparative study of mouse cerebellum physiology under adult-onset hypothyroidism: The significance of GC-MS metabolomic data normalization in meta-analysis.

作者信息

Maga-Nteve Christoniki, Vasilopoulou Catherine G, Constantinou Caterina, Margarity Marigoula, Klapa Maria I

机构信息

Metabolic Engineering and Systems Biology Laboratory, Institute of Chemical Engineering Sciences, Foundation for Research and Technology-Hellas (FORTH/ICE-HT), Patras, Greece; School of Medicine, University of Patras, Greece.

Metabolic Engineering and Systems Biology Laboratory, Institute of Chemical Engineering Sciences, Foundation for Research and Technology-Hellas (FORTH/ICE-HT), Patras, Greece; Human & Animal Physiology Laboratory, Department of Biology, University of Patras, Greece.

出版信息

J Chromatogr B Analyt Technol Biomed Life Sci. 2017 Jan 15;1041-1042:158-166. doi: 10.1016/j.jchromb.2016.12.016. Epub 2016 Dec 12.

Abstract

A systematic data quality validation and normalization strategy is an important component of the omic profile meta-analysis, ensuring comparability of the profiles and exclusion of experimental biases from the derived biological conclusions. In this study, we present the normalization methodology applied on the sets of cerebellum gas chromatography-mass spectrometry metabolic profiles of 124days old male and female animals in an adult-onset-hypothyroidism (AOH) mouse model before combining them into a sex-comparative analysis. The employed AOH model concerns the monitoring of the brain physiology of Balb/cJ mice after eight-week administration of 1%w/v KClO in the drinking water, initiated on the 60th day of their life. While originating from the same animal study, the tissues of the two sexes were processed and their profiles acquired and analyzed at different time periods. Hence, the previously published profile set of male mice was first re-annotated based on the presently available resources. Then, after being validated as acquired under the same analytical conditions, both profiles sets were corrected for derivatization biases and filtered for low-confidence measurements based on the same criteria. The final normalized 73-metabolite profiles contribute to the currently few available omic datasets of the AOH effect on brain molecular physiology, especially with respect to sex differentiation. Multivariate statistical analysis indicated one (unknown) and three (succinate, benzoate, myristate) metabolites with significantly higher and lower, respectively, cerebellum concentration in the hypothyroid compared to the euthyroid female mice. The respective numbers for the males were two and 24. Comparison of the euthyroid cerebellum metabolic profiles between the two sexes indicated 36 metabolites, including glucose, myo- and scyllo-inositol, with significantly lower concentration in the females versus the males. This implies that the female mouse cerebellum has been conditioned to smaller changes in its metabolic activity with respect to the pathways involving these metabolites compared to the male animals. In conclusion, our study indicated a much subtler AOH effect on the cerebellum metabolic activity of the female compared to the male mice. The leaner metabolic profile of the female mouse cerebellum was suggested as a potential factor contributing to this phenomenon.

摘要

系统的数据质量验证和标准化策略是组学图谱荟萃分析的重要组成部分,可确保图谱的可比性,并从得出的生物学结论中排除实验偏差。在本研究中,我们展示了在将成年期甲状腺功能减退(AOH)小鼠模型中124日龄雄性和雌性动物的小脑气相色谱 - 质谱代谢图谱集进行性别比较分析之前所应用的标准化方法。所采用的AOH模型涉及在Balb/cJ小鼠生命的第60天开始,在饮用水中给予1%w/v KClO八周后对其脑生理学进行监测。虽然来自同一动物研究,但两性的组织在不同时间段进行处理,获取并分析其图谱。因此,先前发表的雄性小鼠图谱集首先根据当前可用资源重新注释。然后,在验证为在相同分析条件下获取后,两个图谱集都针对衍生化偏差进行校正,并基于相同标准对低置信度测量值进行过滤。最终标准化的73种代谢物图谱为目前为数不多的关于AOH对脑分子生理学影响的组学数据集做出了贡献,特别是在性别分化方面。多变量统计分析表明,与甲状腺功能正常的雌性小鼠相比,甲状腺功能减退的雌性小鼠小脑中一种(未知)代谢物浓度显著更高,三种(琥珀酸、苯甲酸、肉豆蔻酸)代谢物浓度显著更低。雄性小鼠的相应数量分别为两种和24种。两性甲状腺功能正常的小脑代谢图谱比较表明,包括葡萄糖、肌醇和 scyllo - 肌醇在内的36种代谢物在雌性中的浓度显著低于雄性。这意味着与雄性动物相比,雌性小鼠小脑在涉及这些代谢物的代谢活动途径方面的变化较小。总之,我们的研究表明,与雄性小鼠相比,AOH对雌性小鼠小脑代谢活动的影响要微妙得多。雌性小鼠小脑更精简的代谢图谱被认为是导致这一现象的潜在因素。

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