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Blockade of receptors of advanced glycation end products ameliorates diabetic osteogenesis of adipose‐derived stem cells through DNA DNA methylation and Wnt signalling pathway

机译:通过DNA DNA甲基化和WNT信号通路改善高级糖化末端产品的受体改善糖尿病衍生的干细胞的糖尿病osteocation

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摘要

Abstract Objectives Diabetes mellitus‐related osteoporosis is caused by the imbalance between bone absorption and bone formation. Advanced glycation end products ( AGE s) are considered a cause of diabetic osteoporosis. Although adipose‐derived stem cells ( ASC s) are promising adult stem cells in bone tissue regeneration, the ability of osteogenesis of ASC s in diabetic environment needs to explore. This study aimed to investigate the influence of AGE s on the osteogenic potential of ASC s and to explore the signalling pathways involved in its effect. Materials and methods ASC s were isolated from inguinal fat and cultured in osteogenic media with or without AGE s and FPS ‐ ZM 1, an inhibitor of receptor for AGE s ( RAGE ). Alizarin red‐S, Oil Red‐O and Alcian blue staining were used to confirm osteogenic, adipogenic and chondrogenic potential of ASC s, respectively. Immunofluorescence, western blotting and real‐time PCR were used to measure changes in markers of osteogenic differentiation, DNA methylation and Wnt signalling. Results The multipotentiality of ASC s was confirmed. Treated with AGE s, OPN and RUNX 2 expressions of ASC s were reduced and there was a noticeable loss of mineralization, concomitant with an increase in the expression of RAGE , 5‐ MC , DNMT 1 and DNMT 3a. AGE s treatment also led to a loss of Wnt signalling pathway markers, including β‐Catenin and LEF 1, with an increase in GSK ‐3β. Treatment with the RAGE inhibitor, FPS ‐ ZM 1, rescued AGE s‐induced loss of osteogenic potential, modulated DNA methylation and upregulated Wnt signalling in ASC s. Conclusions Our results demonstrate that AGE s‐ RAGE signalling inhibits the osteogenic potential of ASC s under osteoinductive conditions by modulating DNA methylation and Wnt signalling. FPS ‐ ZM 1 can rescue the negative effects of AGE s and provide a possible treatment for bone tissue regeneration in patients with diabetic osteoporosis.
机译:摘要目的糖尿病相关性骨质疏松症是由骨吸收和骨形成之间的不平衡引起的。晚期糖基化终产物(AGE)被认为是糖尿病骨质疏松症的一个原因。尽管脂肪源性干细胞(ASC-s)是骨组织再生中很有前途的成体干细胞,但ASC-s在糖尿病环境中的成骨能力仍需探索。本研究旨在研究年龄对ASC成骨潜能的影响,并探讨其影响的信号通路。材料和方法从腹股沟脂肪中分离ASC s,并在有或没有AGE s和AGE s受体抑制剂FPS-ZM 1的成骨培养基中培养。茜素红-S、油红-O和阿尔辛蓝染色分别用于确认ASC的成骨、成脂肪和成软骨潜能。免疫荧光、western印迹和实时PCR用于测量成骨分化、DNA甲基化和Wnt信号标记的变化。结果证实了ASC的多潜能。经AGE s处理后,ASC s的OPN和RUNX 2表达降低,矿化度明显降低,同时RAGE、5-MC、DNMT 1和DNMT 3a的表达增加。AGE s治疗还导致Wnt信号通路标记物丢失,包括β-连环蛋白和LEF 1,GSK-3β增加。RAGE抑制剂FPS-ZM 1的治疗挽救了AGE诱导的ASC中成骨潜能的丧失、DNA甲基化的调节和Wnt信号的上调。结论我们的结果表明,AGE-RAGE信号通过调节DNA甲基化和Wnt信号来抑制ASC在成骨条件下的成骨潜能。FPS‐ZM 1可以挽救年龄的负面影响,并为糖尿病骨质疏松症患者的骨组织再生提供可能的治疗方法。

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  • 来源
    《Cell Proliferation》 |2018年第5期|共12页
  • 作者单位

    Department of Oral ImplantologyThe Affiliated Stomatology Hospital of Southwest Medical;

    Department of Oral ImplantologyThe Affiliated Stomatology Hospital of Southwest Medical;

    Orofacial Reconstruction and Regeneration LaboratoryThe Affiliated Stomatology Hospital of;

    Orofacial Reconstruction and Regeneration LaboratoryThe Affiliated Stomatology Hospital of;

    Orofacial Reconstruction and Regeneration LaboratoryThe Affiliated Stomatology Hospital of;

    State Key Laboratory of Oral DiseasesWest China Hospital of StomatologyChengdu China;

    Department of Oral ImplantologyThe Affiliated Stomatology Hospital of Southwest Medical;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
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