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Lactational exposure to dioxin-like polychlorinated biphenyl 169 and nondioxin-like polychlorinated biphenyl 155: Effects on rat femur growth, biomechanics and mineral composition

机译:乳酸暴露于二恶英样多氯联苯169和非二恶英样多氯联苯155:对大鼠股骨生长,生物力学和矿物质组成的影响

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摘要

Exposure to polychlorinated biphenyls (PCBs), which are persistent lipophilic environmental pollutants, has a variety of adverse effects on wildlife and human health, including bone mineralization, growth and mechanical strength. The present study evaluated the effects of lactational exposure to nondioxin-like PCB-155 and dioxin like PCB-169, individually and in combination, on pubertal rat femur development and its biomechanics. After offspring delivery, Wistar rat mothers were divided into four groups, i.e., PCB-169, PCB-155, PCB-155 + 169 and control, and were administered PCBs intraperitoneally. Data on bone geometry, biomechanics and mineral composition were obtained by analysis of femurs from 42-day-old offspring by microCT scanning, three-point bending test and inductively coupled plasma mass spectrometry. Decreased somatic mass and femur size, i.e., mass, periosteal circumference and cross sectional area, were observed in the PCB-169 and PCB-155 groups. Additionally, lactational exposure to planar PC B-169 resulted in harder and more brittle bones containing higher amounts of minerals. Combined exposure to structurally and functionally different PCBs demonstrated only mild alterations in bone width and mineralization. To conclude, our results demonstrated that alterations, observed on postnatal day 42, were primarily induced by PCB-169, while toxicity from both of the individual congeners may have been reduced in the combined group.
机译:暴露于持久性亲脂性环境污染物多氯联苯(PCB)中,会对野生生物和人类健康产生各种不利影响,包括骨骼矿化,生长和机械强度。本研究评估了泌乳暴露于单独或联合使用的非二恶英样PCB-155和二恶英样PCB-169对青春期大鼠股骨发育及其生物力学的影响。在分娩后,将Wistar大鼠妈妈分为四组,即PCB-169,PCB-155,PCB-155 + 169和对照组,并腹膜内给予PCB。通过microCT扫描,三点弯曲试验和电感耦合等离子体质谱法对42日龄后代的股骨进行分析,获得了骨几何学,生物力学和矿物质组成的数据。在PCB-169和PCB-155组中观察到躯体质量和股骨大小减小,即质量,骨膜周长和横截面积减小。此外,哺乳期暴露于平面PC B-169会导致含有更多矿物质的骨头更硬,更脆。组合暴露于结构和功能不同的PCB上,仅显示出骨骼宽度和矿化的轻微变化。总而言之,我们的结果表明,在出生后第42天观察到的变化主要是由PCB-169引起的,而在合并的组中,来自两种同源物的毒性可能已经降低。

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