首页> 外文期刊>American Journal of Pathology: Official Publication of the American Association of Pathologists >Age-related changes in bone morphology are accelerated in group VIA phospholipase A2 (iPLA2beta)-null mice.
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Age-related changes in bone morphology are accelerated in group VIA phospholipase A2 (iPLA2beta)-null mice.

机译:在VIA磷脂酶A2(iPLA2β)组无效小鼠中,与年龄相关的骨形态变化加速。

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摘要

Phospholipases A(2) (PLA(2)) hydrolyze the sn-2 fatty acid substituent, such as arachidonic acid, from phospholipids, and arachidonate metabolites are recognized mediators of bone modeling. We have previously generated knockout (KO) mice lacking the group VIA PLA(2) (iPLA(2)beta), which participates in a variety of signaling events; iPLA(2)beta mRNA is expressed in bones of wild-type (WT) but not KO mice. Cortical bone size, trabecular bone volume, bone mineralizing surfaces, and bone strength are similar in WT and KO mice at 3 months and decline with age in both groups, but the decreases are more pronounced in KO mice. The lower bone mass phenotype observed in KO mice is not associated with an increase in osteoclast abundance/activity or a decrease in osteoblast density, but is accompanied by an increase in bone marrow fat. Relative to WT mice, undifferentiated bone marrow stromal cells (BMSCs) from KO mice express higher levels of PPAR-gamma and lower levels of Runx2 mRNA, and this correlates with increased adipogenesis and decreased osteogenesis in BMSCs from these mice. In summary, our studies indicate that age-related losses in bone mass and strength are accelerated in iPLA(2)beta-null mice. Because adipocytes and osteoblasts share a common mesenchymal stem cell origin, our findings suggest that absence of iPLA(2)beta causes abnormalities in osteoblast function and BMSC differentiation and identify a previously unrecognized role of iPLA(2)beta in bone formation.
机译:磷脂酶 A(2) (PLA(2)) 水解磷脂中的 sn-2 脂肪酸取代基,例如花生四烯酸,而花生四烯酸代谢物是公认的骨建模介质。我们之前已经生成了缺乏VIA PLA(2)(iPLA(2)beta)组的敲除(KO)小鼠,该组参与各种信号转导事件;iPLA(2)β mRNA在野生型(WT)的骨骼中表达,但在KO小鼠中不表达。WT和KO小鼠在3个月时的皮质骨大小、小梁骨体积、骨矿化表面和骨强度相似,并且两组均随着年龄的增长而下降,但KO小鼠的下降更为明显。在KO小鼠中观察到的较低骨量表型与破骨细胞丰度/活性的增加或成骨细胞密度的降低无关,但伴随着骨髓脂肪的增加。相对于 WT 小鼠,来自 KO 小鼠的未分化骨髓基质细胞 (BMSC) 表达更高水平的 PPAR-γ 和较低水平的 Runx2 mRNA,这与这些小鼠的 BMSC 中的脂肪生成增加和成骨减少相关。总之,我们的研究表明,在iPLA(2)β-null小鼠中,与年龄相关的骨量和力量损失加速。由于脂肪细胞和成骨细胞具有共同的间充质干细胞起源,我们的研究结果表明,iPLA(2)β的缺失会导致成骨细胞功能和BMSC分化异常,并确定了以前未被认识到的iPLA(2)β在骨形成中的作用。

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