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发育过程中接触砷、镉和铅混合物会通过雌性大鼠成骨细胞和软骨细胞功能障碍导致骨量减少和成熟时骨质疏松。

Developmental exposure to As, Cd, and Pb mixture diminishes skeletal growth and causes osteopenia at maturity via osteoblast and chondrocyte malfunctioning in female rats.

机构信息

Developmental Toxicology Division, CSIR-Indian Institute of Toxicology Research, Lucknow, India.

出版信息

Toxicol Sci. 2013 Jul;134(1):207-20. doi: 10.1093/toxsci/kft093. Epub 2013 Apr 19.

Abstract

We studied the effect of metal mixture (MM), comprising As, Cd, and Pb, in developing female rat skeleton from gestation day 5 until postnatal day 60 (P-60). MM resulted in synergistic inhibition in viability and differentiation of osteoblasts in vitro, likely induced by reactive oxygen species. MM, administered at their most frequently occurring concentrations present in the groundwater of India, i.e., As: 0.38 ppm, Pb: 0.22 ppm, and Cd: 0.098 ppm or 10× of the ratio to developing rats, exhibited a synergistic decrease in ex vivo mineralization of bone marrow stromal (osteoprogenitor) cells. MM group showed a dose-dependent attenuation in weight and axial lengths and shortening of tibias at P-60. Furthermore, the growth plate was shortened, which was associated with shorter proliferative and hypertrophic zones, decreased parathyroid hormone-related protein and Indian hedgehog expression in the chondrocytes, reduced primary and secondary spongiosa, and hypomineralized osteoids-a major characteristic of osteomalacia. In addition, compared with the control, MM-treated rats were clearly osteopenic based on bone mineral density, microarchitecture, biomechanical strength, and particularly the biochemical profile, that suggested high turnover bone loss. Finally, in comparison to the control, the fracture-healing ability of MM group was delayed and accompanied by inferior quality of the healed bone. Together, these data demonstrated that the mixture of As, Cd, and Pb induced synergistic toxicity to developing skeleton, thereby diminishing modeling-directed bone accrual, inducing osteopenia and dampening fracture healing.

摘要

我们研究了金属混合物(MM)对妊娠第 5 天至出生后第 60 天(P-60)雌性大鼠骨骼发育的影响。MM 在体外对成骨细胞的活力和分化表现出协同抑制作用,这可能是由活性氧引起的。MM 以印度地下水中最常出现的浓度存在,即 As:0.38ppm、Pb:0.22ppm 和 Cd:0.098ppm 或比发育中的大鼠高 10 倍,协同抑制骨髓基质(成骨祖细胞)细胞的体外矿化。MM 组在 P-60 时表现出体重和轴向长度的剂量依赖性降低,以及胫骨缩短。此外,生长板缩短,这与增殖和肥大区缩短、甲状旁腺激素相关蛋白和软骨细胞中印度刺猬表达减少、初级和次级松质骨减少以及矿化不足的类骨质减少有关,这是骨软化症的主要特征。此外,与对照组相比,MM 处理组的大鼠根据骨密度、微结构、生物力学强度,特别是生化特征,表现出明显的骨质疏松症,这表明存在高转换性骨丢失。最后,与对照组相比,MM 组的骨折愈合能力延迟,同时伴有愈合骨质量较差。综上所述,这些数据表明,As、Cd 和 Pb 的混合物对发育中的骨骼具有协同毒性作用,从而减少了模型定向的骨积累,导致骨质疏松症,并抑制了骨折愈合。

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