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短暂性间歇性缺氧暴露会破坏新生儿骨骼强度。

Transient Intermittent Hypoxia Exposure Disrupts Neonatal Bone Strength.

机构信息

Department of Orthodontics and Pediatric Dentistry, School of Dentistry, University of Maryland , Baltimore, MD , USA.

BISCO, Inc. , Schaumburg, IL , USA.

出版信息

Front Pediatr. 2016 Mar 7;4:15. doi: 10.3389/fped.2016.00015. eCollection 2016.

Abstract

A brief intermittent hypoxia (IH, ambient O2 levels alternating between room air and 12% O2) for 1 h immediately after birth resulted in pancreatic islet dysfunction associated with zinc deficiency as previously reported. We hypothesized that IH exposure modulates zinc homeostasis in bone as well, which leads to increased bone fragility. To test this hypothesis, we used neonatal rats and human osteoblasts (HObs). To examine IH influences on osteoblasts devoid of neural influences, we quantified amounts of alkaline phosphatase and mineralization in IH-treated HObs. Bones harvested from IH-treated animals showed significantly reduced hardness and elasticity. The IH group also showed discretely decreased levels of alkaline phosphatase and mineralization amounts. The IH group showed a decreased expression of ZIP8 or Zrt and Irt-like protein 8 (a zinc uptake transporter), Runx2 (or Runt-related transcription factor 2, a master protein in bone formation), Collagen-1 (a major protein comprising the extracellular matrix of the bone), osteocalcin, and zinc content. When zinc was eliminated from the media containing HObs using a zinc chelate and added later with zinc sulfate, Runx2, ZIP8, and osteocalcin expression decreased first, and recovered with zinc supplementation. Adenovirus-mediated ZIP8 over-expression in osteoblasts increased mineralization significantly as well. We conclude that IH impairs zinc homeostasis in bones and osteoblasts, and that such disturbances decrease bone strength, which can be recovered by zinc supplementation.

摘要

出生后立即进行 1 小时短暂间歇性低氧(IH,环境氧水平在室内空气和 12%O2 之间交替),如先前报道的那样,会导致胰岛功能障碍与锌缺乏有关。我们假设 IH 暴露也会调节骨骼中的锌稳态,从而导致骨脆性增加。为了验证这一假设,我们使用了新生大鼠和人成骨细胞(HObs)。为了研究 IH 对没有神经影响的成骨细胞的影响,我们在 IH 处理的 HObs 中定量了碱性磷酸酶和矿化的量。从 IH 处理的动物中采集的骨骼显示出明显降低的硬度和弹性。IH 组的碱性磷酸酶和矿化量也明显降低。IH 组的 ZIP8 或 Zrt 和 Irt 样蛋白 8(一种锌摄取转运体)、Runx2(或 Runt 相关转录因子 2,骨形成的主蛋白)、Collagen-1(构成骨骼细胞外基质的主要蛋白)、骨钙素和锌含量表达降低。当使用锌螯合剂从含有 HObs 的培养基中去除锌,并随后用硫酸锌添加时,Runx2、ZIP8 和骨钙素的表达首先下降,并用锌补充剂恢复。成骨细胞中的腺病毒介导的 ZIP8 过表达也显著增加了矿化。我们得出结论,IH 会破坏骨骼和成骨细胞中的锌稳态,这种干扰会降低骨强度,通过锌补充可以恢复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be84/4779887/4bffa0c89399/fped-04-00015-g001.jpg

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