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Role of Zip1 in the regulation of NPY expression by MLT to promote fracture healing in rats

机译:ZIP1在MLT中NPY表达调节中的作用,促进大鼠骨折愈合

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Our previous study documented that melatonin (MLT) induced the osteogenic differentiation of mesenchymal stem cells (MSCs) and promoted the healing of femoral fractures in rats via the neuropeptide Y (NPY)/neuropeptide Y1 receptor (NPY1R) signaling pathway. MLT treatment upregulated the expression of the zinc uptake transporter zinc transporter 1 (Zip1) in nerve cells. Prior research demonstrated that oral zinc upregulated NPY expression. MSCs were isolated from rat bone marrow and identified using flow cytometry in our study. The results showed that MLT treatment upregulated NPY and NPY1R levels in MSCs with osteogenic differentiation, which was accompanied by upregulated Zip1 expression. However, the MLT-induced osteogenic differentiation of MSCs was reversed after interference of Zip1 expression. It was confirmed by the decreased alkaline phosphatase (ALP) level; downregulated activities of type I collagen α1 chain (COL1A1), osteocalcin (OCN), runt-related transcription factor 2 (Runx2) and ALP; and reduced mineralized nodule formation. MLT promoted fracture healing in rats with femoral fracture, which was accompanied by increased expression of NPY and NPY1R and significantly increased expression of Zip1. In contrast, the silencing of Zip1 expression reversed MLT-mediated fracture healing. In summary, Zip1 participated in the regulation of the NPY/NPY1R signaling pathway via MLT to promote the osteogenic differentiation of MSCs and fracture healing.
机译:我们以前的研究记录了褪黑素(MLT)诱导间充质干细胞(MSC)的骨质发生分化,并通过神经肽Y(NPY)/神经肽Y1受体(NPY1R)信号通路促进大鼠股骨骨折的愈合。 MLT治疗上调了锌吸收转运蛋白锌转运蛋白1(ZIP1)在神经细胞中的表达。现有研究证明口腔锌上调了NPE表达。从大鼠骨髓中分离MSC,并在我们的研究中使用流式细胞术进行鉴定。结果表明,MLT治疗在具有骨质发生分化的MSC中上调了NPY和NPY1R水平,其伴随着上调的ZIP1表达。然而,在干扰ZIP1表达后,MSCs的MSC诱导的骨开发分化逆转。通过降低的碱性磷酸酶(ALP)水平证实了它; I型胶原蛋白α1链(COL1A1),骨钙(OCN),runt相关转录因子2(RUNX2)和ALP的下调活动;并减少矿化结节形成。 MLT促进了股骨骨折大鼠骨折愈合,伴随着NPY和NPY1R的表达增加,ZIP1的表达显着增加。相比之下,ZIP1表达的沉默反转MLT介导的骨折愈合。总之,ZIP1通过MLT参与了NPY / NPY1R信号通路的调节,以促进MSCs和骨折愈合的成骨分化。

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