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Sympathetic Denervation-Induced MSC Mobilization in Distraction Osteogenesis Associates with Inhibition of MSC Migration and Osteogenesis by Norepinephrine/adrb3

机译:牵张性成骨中交感神经诱导的MSC动员与去甲肾上腺素/ adrb3抑制MSC迁移和成骨相关。

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摘要

The sympathetic nervous system regulates bone formation and resorption under physiological conditions. However, it is still unclear how the sympathetic nerves affect stem cell migration and differentiation in bone regeneration. Distraction osteogenesis is an ideal model of bone regeneration due to its special nature as a self-engineering tissue. In this study, a rat model of mandibular distraction osteogenesis with transection of cervical sympathetic trunk was used to demonstrate that sympathetic denervation can deplete norepinephrine (NE) in distraction-induced bone callus, down-regulate β3-adrenergic receptor (adrb3) in bone marrow mesenchymal stem cells (MSCs), and promote MSC migration from perivascular regions to bone-forming units. An in vitro Transwell assay was here used to demonstrate that NE can inhibit stroma-derived factor-1 (SDF-1)-induced MSC migration and expression of the migration-related gene matrix metalloproteinase-2 (MMP-2) and downregulate that of the anti-migration gene tissue inhibitor of metalloproteinase-3 (TIMP-3). Knockdown of adrb3 using siRNA abolishes inhibition of MSC migration. An in vitro osteogenic assay was used to show that NE can inhibit the formation of MSC bone nodules and expression of the osteogenic marker genes alkaline phosphatase (ALP), osteocalcin (OCN), and runt-related transcription factor-2 (RUNX2), but knockdown of adrb3 by siRNA can abolish such inhibition of the osteogenic differentiation of MSCs. It is here concluded that sympathetic denervation-induced MSC mobilization in rat mandibular distraction osteogenesis is associated with inhibition of MSC migration and osteogenic differentiation by NE/adrb3 in vitro. These findings may facilitate understanding of the relationship of MSC mobilization and sympathetic nervous system across a wide spectrum of tissue regeneration processes.
机译:交感神经系统在生理条件下调节骨骼的形成和吸收。但是,尚不清楚交感神经如何影响干细胞的迁移和骨再生中的分化。由于其作为自工程组织的特殊性质,分散成骨术是理想的骨再生模型。在这项研究中,使用颈交感神经横切的下颌骨牵张成骨的大鼠模型证明交感神经可以耗尽牵张引起的骨call中的去甲肾上腺素(NE),下调骨髓中的β3-肾上腺素能受体(adrb3)间充质干细胞(MSCs),并促进MSC从血管周围区域迁移到骨形成单位。这里使用体外Transwell分析法来证明NE可以抑制基质衍生因子1(SDF-1)诱导的MSC迁移以及迁移相关基因基质金属蛋白酶2(MMP-2)的表达,并下调该基因的表达。金属蛋白酶3(TIMP-3)的抗迁移基因组织抑制剂。使用siRNA抑制adrb3消除了对MSC迁移的抑制。体外成骨试验显示NE可抑制MSC骨结节的形成和成骨标记基因碱性磷酸酶(ALP),骨钙素(OCN)和矮子相关转录因子2(RUNX2)的表达,但siRNA抑制adrb3可以消除这种对MSCs成骨分化的抑制作用。在此得出结论,在大鼠下颌骨成骨过程中,由交感神经引起的MSC动员与NE / adrb3体外抑制MSC迁移和成骨分化有关。这些发现可能有助于了解广泛范围的组织再生过程中MSC动员与交感神经系统之间的关系。

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