Department of Laboratory Medicine, Division of Occupational and Environmental Medicine, Lund University, 22185 Lund, Sweden; Unit of Occupational and Environmental Medicine, Institute of Medicine, Sahlgrenska Academy at the University of Gothenburg, Gothenburg, Sweden.
Department of Laboratory Medicine, Division of Occupational and Environmental Medicine, Lund University, 22185 Lund, Sweden.
Environ Int. 2019 Mar;124:278-283. doi: 10.1016/j.envint.2019.01.019. Epub 2019 Jan 17.
Fish contains methylmercury (MeHg) which can cause oxidative stress and neurodevelopmental toxicity at sufficiently high doses. Fish also contains polyunsaturated fatty acids (PUFA) which have both antioxidant (n-3) and oxidant (n-6) properties. Mitochondrial DNA (mtDNA) is sensitive to oxidative stress but has not been previously studied in relation to MeHg exposure or PUFA status.
To investigate the associations between MeHg exposure and PUFA status during pregnancy with relative mitochondrial DNA copy number (RmtDNAcn) in mothers and their newborns.
In total, 1488 mother-child pairs from the Seychelles Child Development Study Nutrition Cohort 2 were included in this study. Total Hg was measured in maternal blood collected at 28 weeks' gestation, maternal hair at delivery, and in fetal cord blood. PUFA (n-3 and n-6) were measured only in maternal blood. RmtDNAcn was measured by qPCR in both maternal and cord blood.
Increasing maternal blood Hg (β = 0.001, 95%CI: 0.000, 0.002) and n-3 PUFA concentrations (β = 0.183, 95%CI: 0.048, 0.317) were associated with higher maternal RmtDNAcn. Increasing maternal n-6 PUFA (β = -0.103, 95%CI: -0.145, -0.062) and n-6/n-3 ratio (β = -0.011, 95%CI: -0.017, -0.004) were associated with lower maternal RmtDNAcn. Increasing fetal cord blood Hg was associated with lower fetal RmtDNAcn (β = -0.002, 95%CI: -0.004, -0.000). Neither maternal blood Hg nor PUFA status was associated with fetal RmtDNAcn.
Our findings suggest that MeHg and PUFA may influence mitochondrial homeostasis although the magnitude of these associations are small. Future studies should confirm the findings and explore the underlying mechanisms.
鱼类含有甲基汞(MeHg),在足够高的剂量下会导致氧化应激和神经发育毒性。鱼类还含有多不饱和脂肪酸(PUFA),具有抗氧化(n-3)和氧化(n-6)特性。线粒体 DNA(mtDNA)对氧化应激敏感,但以前没有研究过其与 MeHg 暴露或 PUFA 状况的关系。
研究孕妇体内 MeHg 暴露和 PUFA 状况与母亲及其新生儿相对线粒体 DNA 拷贝数(RmtDNAcn)之间的关系。
本研究共纳入 1488 对塞舌尔儿童发展研究营养队列 2 的母婴对子。在妊娠 28 周时采集母亲血液、分娩时采集母亲头发和胎儿脐带血测量总汞,仅在母亲血液中测量 PUFA(n-3 和 n-6)。通过 qPCR 测量母血和脐血中的 RmtDNAcn。
母亲血液中 Hg(β=0.001,95%CI:0.000,0.002)和 n-3 PUFA 浓度(β=0.183,95%CI:0.048,0.317)增加与母亲 RmtDNAcn 升高有关。母亲 n-6 PUFA(β=-0.103,95%CI:-0.145,-0.062)和 n-6/n-3 比值(β=-0.011,95%CI:-0.017,-0.004)增加与母亲 RmtDNAcn 降低有关。胎儿脐带血中 Hg 增加与胎儿 RmtDNAcn 降低有关(β=-0.002,95%CI:-0.004,-0.000)。母亲血液中的 Hg 或 PUFA 状况均与胎儿 RmtDNAcn 无关。
我们的研究结果表明,MeHg 和 PUFA 可能影响线粒体的动态平衡,尽管这些关联的幅度很小。未来的研究应该证实这些发现并探索潜在的机制。