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成体基质干细胞来源的成骨细胞中骨矿物质转运和骨基质蛋白的年龄相关性下降。

Age-related decline in bone mineral transport and bone matrix proteins in osteoblasts from stromal stem cells.

机构信息

Research Service, VA Medical Center, Pittsburgh, Pennsylvania, United States.

Department of Pathology, University of Pittsburgh, Pittsburgh, Pennsylvania, United States.

出版信息

Am J Physiol Cell Physiol. 2023 Sep 1;325(3):C613-C622. doi: 10.1152/ajpcell.00227.2023. Epub 2023 Jul 31.

Abstract

We studied osteoblast bone mineral transport and matrix proteins as a function of age. In isolated bone marrow cells from long bones of young (3 or 4 mo) and old (18 or 19 mo) mice, age correlated with reduced mRNA of mineral transport proteins: alkaline phosphatase (ALP), ankylosis (ANK), the Cl/H exchanger ClC3, and matrix proteins collagen 1 (Col1) and osteocalcin (BGLAP). Some proteins, including the neutral phosphate transporter2 (NPT2), were not reduced. These are predominately osteoblast proteins, but in mixed cell populations. Remarkably, in osteoblasts differentiated from preparations of stromal stem cells (SSCs) made from bone marrow cells in young and old mice, differentiated in vitro on perforated polyethylene terephthalate membranes, mRNA confirmed decreased expression with age for most transport-related and bone matrix proteins. Additional mRNAs in osteoblasts in vitro included ecto-nucleotide pyrophosphatase/phosphodiesterase 1 (ENPP1), unchanged, and ENPP2, reduced with age. Decrease with age in ALP activity and protein by Western blot was also significant. Transport protein findings correlated with micro-computed tomography of lumbar vertebra, showing that trabecular bone of old mice is osteopenic relative to young mice, consistent with other studies. Pathway analysis of osteoblasts differentiated in vitro showed that cells from old animals had reduced Erk1/2 phosphorylation and decreased suppressor of mothers against decapentaplegic 2 (Smad2) mRNA, consistent with TGFβ pathway, and reduced β-catenin mRNA, consistent with WNT pathway regulation. Our results show that decline in bone density with age reflects selective changes, resulting effectively in a phenotype modification. Reduction of matrix and mineral transport protein expression with age is regulated by multiple signaling pathways. This work for the first time showed that specific enzymes in bone mineral transport, and matrix synthesis proteins, in the epithelial-like bone-forming cell layer are downregulated with aging. Results were compared using cells extracted from long bones of young and old mice, or in essentially uniform osteoblasts differentiated from stromal stem cells in vitro. The age effect showed memory in the stromal stem cells, a remarkable finding.

摘要

我们研究了成骨细胞的骨矿物质转运和基质蛋白随年龄的变化。从小鼠(3 或 4 月龄)和老年(18 或 19 月龄)长骨的分离骨髓细胞中,年龄与矿物质转运蛋白的 mRNA 减少相关:碱性磷酸酶(ALP)、骨粘连蛋白(ANK)、Cl/H 交换器 ClC3 以及基质蛋白胶原蛋白 1(Col1)和骨钙素(BGLAP)。一些蛋白,包括中性磷酸盐转运体 2(NPT2),并未减少。这些蛋白主要是成骨细胞蛋白,但存在于混合细胞群中。值得注意的是,从小鼠骨髓细胞制备的基质干细胞(SSC)的分离物中分化的成骨细胞,在体外分化于多孔聚对苯二甲酸乙二醇酯膜上,年龄相关的大多数转运相关和骨基质蛋白的 mRNA 表达均确认减少。体外成骨细胞中的其他 mRNAs 包括外核苷酸焦磷酸酶/磷酸二酯酶 1(ENPP1)不变,而 ENPP2 则随年龄减少。Western blot 显示 ALP 活性和蛋白随年龄的减少也具有统计学意义。腰椎的 micro-CT 分析与转运蛋白的发现相关,表明老年小鼠的小梁骨相对于年轻小鼠呈骨质疏松,这与其他研究一致。体外分化的成骨细胞的途径分析表明,来自老年动物的细胞中 Erk1/2 磷酸化减少,抑制母源性抗 decapentaplegic 2(Smad2)mRNA 减少,这与 TGFβ 途径一致,β-连环蛋白 mRNA 减少,这与 WNT 途径调节一致。我们的结果表明,随着年龄的增长,骨密度的下降反映了选择性变化,有效地导致了表型改变。基质和矿物质转运蛋白随年龄的表达减少受多种信号通路的调节。这项工作首次表明,在具有上皮样成骨细胞层的骨矿物质转运和基质合成蛋白中,特定的酶随年龄而下调。使用从小鼠长骨中提取的细胞或体外从基质干细胞中基本均匀分化的成骨细胞比较了结果。在基质干细胞中,年龄效应表现出记忆,这是一个显著的发现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6161/10635645/49f338881118/c-00227-2023r01.jpg

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