Glycan clock of ageing-analytical precision and time-dependent inter- and i-individual variability.

IF 5.3 2区 医学 Q1 GERIATRICS & GERONTOLOGY GeroScience Pub Date : 2024-12-01 Epub Date: 2024-06-14 DOI:10.1007/s11357-024-01239-4
Borna Rapčan, Manshu Song, Azra Frkatović-Hodžić, Tea Pribić, Jakov Vuk, Anđelo Beletić, Maja Hanić, Julija Jurić, Petra Tominac, Josip Milas, Vedrana Ivić, Sven Viland, Sara Bonet, Branko Šego, Marija Heffer, Wei Wang, Michael P Snyder, Gordan Lauc
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Abstract

Ageing is a complex biological process with variations among individuals, leading to the development of ageing clocks to estimate biological age. Glycans, particularly in immunoglobulin G (IgG), have emerged as potential biomarkers of ageing, with changes in glycosylation patterns correlating with chronological age.For precision analysis, three different plasma pools were analysed over 26 days in tetraplicates, 312 samples in total. In short-term variability analysis, two cohorts were analysed: AstraZeneca MFO cohort of 26 healthy individuals (median age 20) and a cohort of 70 premenopausal Chinese women (median age 22.5) cohort monitored over 3 months. Long-term variability analysis involved two adult men aged 47 and 57, monitored for 5 and 10 years, respectively. Samples were collected every 3 months and 3 weeks, respectively. IgG N-glycan analysis followed a standardized approach by isolating IgG, its subsequent denaturation and deglycosylation followed by glycan cleanup and labelling. Capillary gel electrophoresis with laser-induced fluorescence (CGE-LIF) and ultra-performance liquid chromatography analyses were employed for glycan profiling. Statistical analysis involved normalization, batch correction, and linear mixed models to assess time effects on derived glycan traits.The intermediate precision results consistently exhibited very low coefficient of variation values across all three test samples. This consistent pattern underscores the high level of precision inherent in the CGE method for analysing the glycan clock of ageing. The AstraZeneca MFO cohort did not show any statistically significant trends, whereas the menstrual cycle cohort exhibited statistically significant trends in digalactosylated (G2), agalactosylated (G0) and fucosylation (F). These trends were attributed to the effects of the menstrual cycle. Long-term stability analysis identified enduring age-related trends in both subjects, showing a positive time effect in G0 and bisected N-acetylglucosamine, as well as a negative time effect in G2 and sialylation, aligning with earlier findings. Time effects measured for monogalactosylation, and F remained substantially lower than ones observed for other traits.The study found that IgG N-glycome analysis using CGE-LIF exhibited remarkably high intermediate precision. Moreover, the study highlights the short- and long-term stability of IgG glycome composition, coupled with a notable capacity to adapt and respond to physiological changes and environmental influences such as hormonal changes, disease, and interventions. The discoveries from this study propel personalized medicine forward by deepening our understanding of how IgG glycome relates to age-related health concerns. This study underscores the reliability of glycans as a biomarker for tracking age-related changes and individual health paths.

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老年糖钟--分析精度和随时间变化的个体间和个体间变异性。
衰老是一个复杂的生物过程,个体之间存在差异,因此人们开发了衰老时钟来估算生物年龄。糖类,尤其是免疫球蛋白 G (IgG) 中的糖类,已成为老化的潜在生物标记物,糖基化模式的变化与实际年龄相关。在短期变异性分析中,分析了两个队列:阿斯利康 MFO 队列中的 26 名健康人(中位数年龄为 20 岁)和一个队列中的 70 名绝经前中国妇女(中位数年龄为 22.5 岁),队列监测时间为 3 个月。长期变异性分析涉及年龄分别为 47 岁和 57 岁的两名成年男性,监测时间分别为 5 年和 10 年。样本分别每 3 个月和 3 周采集一次。IgG N-糖分析采用标准化方法,即分离 IgG,随后对其进行变性和脱糖基化,然后进行糖基清理和标记。糖谱分析采用毛细管凝胶电泳与激光诱导荧光(CGE-LIF)和超高效液相色谱分析。统计分析包括归一化、批次校正和线性混合模型,以评估时间对衍生聚糖性状的影响。这种一致的模式凸显了 CGE 方法在分析糖类老化时钟时所固有的高精确度。阿斯利康 MFO 队列未显示任何具有统计学意义的趋势,而月经周期队列在二半乳糖基化(G2)、半乳糖基化(G0)和岩藻糖基化(F)方面显示出具有统计学意义的趋势。这些趋势归因于月经周期的影响。长期稳定性分析在两个受试者中都发现了与年龄相关的持久趋势,G0和双截面N-乙酰葡糖胺的时间效应为正,G2和硅烷基化的时间效应为负,这与之前的研究结果一致。研究发现,利用 CGE-LIF 进行的 IgG N-糖蛋白分析具有极高的中间精度。此外,该研究还强调了 IgG 糖粒组成的短期和长期稳定性,以及对生理变化和环境影响(如激素变化、疾病和干预)的显著适应能力和反应能力。这项研究的发现加深了我们对IgG糖蛋白与年龄相关健康问题的关系的理解,从而推动了个性化医疗的发展。这项研究强调了聚糖作为生物标志物的可靠性,可用于跟踪与年龄有关的变化和个人健康状况。
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来源期刊
GeroScience
GeroScience Medicine-Complementary and Alternative Medicine
CiteScore
10.50
自引率
5.40%
发文量
182
期刊介绍: GeroScience is a bi-monthly, international, peer-reviewed journal that publishes articles related to research in the biology of aging and research on biomedical applications that impact aging. The scope of articles to be considered include evolutionary biology, biophysics, genetics, genomics, proteomics, molecular biology, cell biology, biochemistry, endocrinology, immunology, physiology, pharmacology, neuroscience, and psychology.
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