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2
Glycogen metabolism in humans.人类的糖原代谢
BBA Clin. 2016 Feb 27;5:85-100. doi: 10.1016/j.bbacli.2016.02.001. eCollection 2016 Jun.
3
Identification of a mammalian glycerol-3-phosphate phosphatase: Role in metabolism and signaling in pancreatic β-cells and hepatocytes.一种哺乳动物甘油-3-磷酸磷酸酶的鉴定:在胰腺β细胞和肝细胞代谢及信号传导中的作用
Proc Natl Acad Sci U S A. 2016 Jan 26;113(4):E430-9. doi: 10.1073/pnas.1514375113. Epub 2016 Jan 11.
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Biology of Bone Tissue: Structure, Function, and Factors That Influence Bone Cells.骨组织生物学:结构、功能及影响骨细胞的因素
Biomed Res Int. 2015;2015:421746. doi: 10.1155/2015/421746. Epub 2015 Jul 13.
5
Hypoxia-induced MTA1 promotes MC3T3 osteoblast growth but suppresses MC3T3 osteoblast differentiation.缺氧诱导的MTA1促进MC3T3成骨细胞生长,但抑制MC3T3成骨细胞分化。
Eur J Med Res. 2015 Feb 3;20(1):10. doi: 10.1186/s40001-015-0084-x.
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Aerobic glycolysis in osteoblasts.成骨细胞中的有氧糖酵解
Curr Osteoporos Rep. 2014 Dec;12(4):433-8. doi: 10.1007/s11914-014-0235-y.
7
The function and the role of the mitochondrial glycerol-3-phosphate dehydrogenase in mammalian tissues.线粒体甘油-3-磷酸脱氢酶在哺乳动物组织中的功能与作用。
Biochim Biophys Acta. 2013 Mar;1827(3):401-10. doi: 10.1016/j.bbabio.2012.11.014. Epub 2012 Dec 7.
8
Hypoxia promotes osteogenesis but suppresses adipogenesis of human mesenchymal stromal cells in a hypoxia-inducible factor-1 dependent manner.低氧以依赖缺氧诱导因子-1 的方式促进人间质基质细胞成骨但抑制其成脂分化。
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9
Hypoxia promotes proliferation and osteogenic differentiation potentials of human mesenchymal stem cells.缺氧促进人骨髓间充质干细胞的增殖和成骨分化潜能。
J Orthop Res. 2012 Feb;30(2):260-6. doi: 10.1002/jor.21517. Epub 2011 Aug 1.
10
Assay of the multiple energy-producing pathways of mammalian cells.哺乳动物细胞多种能量产生途径的测定。
PLoS One. 2011 Mar 24;6(3):e18147. doi: 10.1371/journal.pone.0018147.

常氧和低氧条件下人成骨细胞系 hFOB 1.19 的代谢利用:表型微阵列分析。

Metabolic utilization of human osteoblast cell line hFOB 1.19 under normoxic and hypoxic conditions: A phenotypic microarray analysis.

机构信息

Department of Rehabilitation Medicine, The First Affiliated Hospital of Xi'an JiaoTong University, Xi'An 710061, China.

Department of Orthopedic, The First Affiliated Hospital of Xi'an JiaoTong University, Xi'An 710061, China.

出版信息

Exp Biol Med (Maywood). 2021 May;246(10):1177-1183. doi: 10.1177/1535370220985468. Epub 2021 Feb 3.

DOI:10.1177/1535370220985468
PMID:33535809
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8142111/
Abstract

Osteoblasts play an important role in bone regeneration and repair. The hypoxia condition in bone occurs when bone undergoes fracture, and this will trigger a series of biochemical and mechanical changes to enable bone repair. Hence, it is interesting to observe the metabolites and metabolism changes when osteoblasts are exposed to hypoxic condition. This study has looked into the response of human osteoblast hFOB 1.19 under normoxic and hypoxic conditions by observing the cell growth and utilization of metabolites via Phenotype MicroArrays™ under these two different oxygen concentrations. The cell growth of hFOB 1.19 under hypoxic condition showed better growth compared to hFOB 1.19 under normal condition. In this study, osteoblast used glycolysis as the main pathway to produce energy as hFOB 1.19 in both hypoxic and normoxic conditions showed cell growth in well containing dextrin, glycogen, maltotriose, D-maltose, D-glucose-6-phospate, D-glucose, D-mannose, D-Turanose, D-fructose-6-phosphate, D-galactose, uridine, adenosine, inosine and α-keto-glutaric acid. In hypoxia, the cells have utilized additional metabolites such as α-D-glucose-1-phosphate and D-fructose, indicating possible activation of glycogen synthesis and glycogenolysis to metabolize α-D-glucose-1-phosphate. Meanwhile, during normoxia, D-L-α-glycerol phosphate was used, and this implies that the osteoblast may use glycerol-3-phosphate shuttle and oxidative phosphorylation to metabolize glycerol-3-phosphate.

摘要

成骨细胞在骨再生和修复中起着重要作用。当骨骼发生骨折时,骨骼会处于缺氧状态,这将引发一系列生化和力学变化,从而促进骨骼修复。因此,观察成骨细胞在缺氧条件下的代谢物和代谢变化是很有趣的。本研究通过观察两种不同氧浓度下 Phenotype MicroArrays™ 中细胞生长和代谢物的利用情况,研究了人成骨细胞 hFOB 1.19 在常氧和缺氧条件下的反应。与正常条件下的 hFOB 1.19 相比,缺氧条件下 hFOB 1.19 的细胞生长更好。在本研究中,成骨细胞使用糖酵解作为主要途径来产生能量,因为在缺氧和常氧条件下,hFOB 1.19 在含有糊精、糖原、麦芽三糖、D-麦芽糖、D-葡萄糖-6-磷酸、D-葡萄糖、D-甘露糖、D-松三糖、D-果糖-6-磷酸、D-半乳糖、尿苷、腺苷、肌苷和α-酮戊二酸的孔中均显示出细胞生长。在缺氧条件下,细胞利用了额外的代谢物,如α-D-葡萄糖-1-磷酸和 D-果糖,这表明可能激活了糖原合成和糖原分解来代谢α-D-葡萄糖-1-磷酸。同时,在常氧条件下,使用了 D-L-α-甘油磷酸,这意味着成骨细胞可能使用甘油-3-磷酸穿梭和氧化磷酸化来代谢甘油-3-磷酸。