Literature DB >> 30206314

Western-type diet differentially modulates osteoblast, osteoclast, and lipoblast differentiation and activation in a background of APOE deficiency.

Nicholaos I Papachristou1, Harry C Blair2,3, Eleni S Kalyvioti1, Spyros A Syggelos1, Eleni A Karavia4, Vassilios Kontogeorgakos5, Dragana Nikitovic6, George N Tzanakakis6, Kyriakos E Kypreos4, Dionysios J Papachristou7,8.   

Abstract

During the past few years, considerable evidence has uncovered a strong relationship between fat and bone metabolism. Consequently, alterations in plasma lipid metabolic pathways strongly affect bone mass and quality. We recently showed that the deficiency of apolipoprotein A-1 (APOA1), a central regulator of high-density lipoprotein cholesterol (HDL-C) metabolism, results in reduced bone mass in C57BL/6 mice. It is documented that apolipoprotein E (APOE), a lipoprotein know for its atheroprotective functions and de novo biogenesis of HDL-C, is associated with the accumulation of fat in the liver and other organs and regulates bone mass in mice. We further studied the mechanism of APOE in bone metabolism using well-characterized APOE knockout mice. We found that bone mass was remarkably reduced in APOE deficient mice fed Western-type diet (WTD) compared to wild type counterparts. Static (microCT-based) and dynamic histomorphometry showed that the reduced bone mass in APOΕ-/- mice is attributed to both decreased osteoblastic bone synthesis and elevated osteoclastic bone resorption. Interestingly, histologic analysis of femoral sections revealed a significant reduction in the number of bone marrow lipoblasts in APOΕ-/- compared to wild type mice under WTD. Analyses of whole bone marrow cells obtained from femora of both animal groups showed that APOE null mice had significantly reduced levels of the osteoblastic (RUNX2 and Osterix) and lipoblastic (PPARγ and CEBPα) cardinal regulators. Additionally, the modulators of bone remodeling RANK, RANKL, and cathepsin K were greatly increased, while OPG and the OPG/RANKL ratio were remarkably decreased in APOΕ-/- mice fed WTD, compared to their wild-type counterparts. These findings suggest that APOE deficiency challenged with WTD reduces osteoblastic and lipoblastic differentiation and activity, whereas it enhances osteoclastic function, ultimately resulting in reduced bone mass, in mice.

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Year:  2018        PMID: 30206314     DOI: 10.1038/s41374-018-0107-7

Source DB:  PubMed          Journal:  Lab Invest        ISSN: 0023-6837            Impact factor:   5.662


  4 in total

1.  ApoA1 Deficiency Reshapes the Phenotypic and Molecular Characteristics of Bone Marrow Adipocytes in Mice.

Authors:  Afroditi Kastrenopoulou; Kyriakos E Kypreos; Nicholaos I Papachristou; Stavros Georgopoulos; Ioulia Mastora; Ioanna Papadimitriou-Olivgeri; Argyro Spentzopoulou; Dragana Nikitovic; Vassilios Kontogeorgakos; Harry C Blair; Dionysios J Papachristou
Journal:  Int J Mol Sci       Date:  2022-04-27       Impact factor: 6.208

2.  Comparative proteomics analysis for identifying the lipid metabolism related pathways in patients with Klippel-Feil syndrome.

Authors:  Ziquan Li; Cong Zhang; Bintao Qiu; Yuchen Niu; Ling Leng; Siyi Cai; Ye Tian; Terry Jianguo Zhang; Guixing Qiu; Nan Wu; Zhihong Wu; Yipeng Wang
Journal:  Ann Transl Med       Date:  2021-02

Review 3.  Lipid metabolism within the bone micro-environment is closely associated with bone metabolism in physiological and pathophysiological stages.

Authors:  Bo Wang; Heng Wang; Yuancheng Li; Lei Song
Journal:  Lipids Health Dis       Date:  2022-01-07       Impact factor: 3.876

4.  High-density Lipoprotein Cholesterol Is Negatively Correlated with Bone Mineral Density and Has Potential Predictive Value for Bone Loss.

Authors:  Yuchen Tang; Shenghong Wang; Qiong Yi; Yayi Xia; Bin Geng
Journal:  Lipids Health Dis       Date:  2021-07-25       Impact factor: 3.876

  4 in total

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