School of Health Sciences, Purdue University, West Lafayette, IN, USA; OncoSynergy, Inc., Monroe, CT, USA.
School of Health Sciences, Purdue University, West Lafayette, IN, USA; Department of Radiation Oncology, School of Medicine, Emory University, Atlanta, GA, USA.
Neurotoxicology. 2022 Jan;88:224-230. doi: 10.1016/j.neuro.2021.12.005. Epub 2021 Dec 10.
Manganese (Mn) is an essential element. However, Mn overexposure is associated with motor dysfunction. This cross-sectional study assessed the association between bone Mn (BnMn) and whole blood Mn (BMn) with motor function in 59 Chinese workers. BnMn and BMn were measured using a transportable in vivo neutron activation analysis system and inductively coupled plasma mass spectrometry, respectively. Motor function (manual coordination, postural sway, postural hand tremor, and fine motor function) was assessed using the Coordination Ability Test System (CATSYS) and the Purdue Pegboard. Relationships between Mn biomarkers and motor test scores were analyzed with linear regression models adjusted for age, education, current employment, and current alcohol consumption. BMn was significantly inversely associated with hand tremor intensity (dominant hand (β=-0.04, 95 % confidence interval (CI):-0.07, -0.01; non-dominant hand β=-0.05, 95 % CI:-0.08, -0.01) hand tremor center frequency (non-dominant hand β=-1.61, 95 % CI:-3.03, -0.19) and positively associated with the Purdue Pegboard Assembly Score (β = 4.58, 95 % CI:1.08, 8.07). BnMn was significantly inversely associated with finger-tapping performance (non-dominant hand β=-0.02, 95 % CI:-0.04,-0.004), mean sway (eyes closed and foam β=-0.68, 95 % CI:-1.31,-0.04), and positively associated with hand tremor center frequency (dominant hand, β = 0.40, 95 % CI:0.002, 0.80). These results suggest BMn is related to better postural hand tremor and fine motor control and BnMn is related to worse motor coordination and postural hand tremor but better (i.e., less) postural sway. The unexpected positive results might be explained by choice of biomarker or confounding by work-related motor activities. Larger, longitudinal studies in this area are recommended.
锰 (Mn) 是一种必需元素。然而,锰暴露过量与运动功能障碍有关。本横断面研究评估了 59 名中国工人的骨锰 (BnMn) 和全血锰 (BMn) 与运动功能之间的关系。BnMn 和 BMn 分别采用可移动体内中子活化分析系统和电感耦合等离子体质谱法进行测量。运动功能(手协调、姿势摆动、姿势手震颤和精细运动功能)采用协调能力测试系统(CATSYS)和 Purdue 钉板进行评估。采用线性回归模型分析 Mn 生物标志物与运动测试评分之间的关系,模型调整了年龄、教育程度、当前就业和当前饮酒情况。BMn 与手震颤强度(优势手β=-0.04,95%置信区间(CI):-0.07,-0.01;非优势手β=-0.05,95%CI:-0.08,-0.01)、手震颤中心频率(非优势手β=-1.61,95%CI:-3.03,-0.19)呈显著负相关,与 Purdue 钉板装配得分呈正相关(β=4.58,95%CI:1.08,8.07)。BnMn 与手指敲击表现(非优势手β=-0.02,95%CI:-0.04,-0.004)、平均摆动(闭眼和泡沫β=-0.68,95%CI:-1.31,-0.04)呈显著负相关,与手震颤中心频率(优势手β=0.40,95%CI:0.002,0.80)呈正相关。这些结果表明,BMn 与更好的姿势手震颤和精细运动控制有关,BnMn 与更差的运动协调和姿势手震颤有关,但与更好的(即更少的)姿势摆动有关。意外的阳性结果可能是由于生物标志物的选择或与工作相关的运动活动的混杂造成的。建议在该领域开展更大的、纵向研究。