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      Sonic hedgehog promotes endothelial differentiation of bone marrow mesenchymal stem cells via VEGF-D

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          Abstract

          Background

          Bone marrow-derived mesenchymal stem cells (BMSCs) have been proved to be capable of differentiating into endothelial cells (ECs), however, the differentiation efficiency is rather low. Sonic hedgehog (Shh), an important factor in vascular development and postnatal angiogenesis, exerted promotional effect on new vessel formation in the ischemic animal models. Therefore, the current study aims to investigate whether Shh could induce the endothelial differentiation of BMSCs both in vitro and in vivo, as well as the mechanism of differentiation induction.

          Methods

          The current study over-expressed Shh in BMSCs by lentivirus transduction. Reverse-transcription quantitative polymerase chain reaction (RT-qPCR) analysis was performed to determine the angiogenic factors in both control BMSCs and Shh over-expressed BMSCs. Immunocytochemistry was also conducted to examine the EC markers. Angiogenesis was determined by in vitro tube-forming assay on Matrigel and in vivo Matrigel plug in severe combined immunodeficient (SCID) mice. Last, mRNA sequencing analysis was used to elaborate the underlying mechanisms. Loss of function study was performed by vascular endothelial growth factor D (VEGF-D) siRNA.

          Results

          Shh expression was increased by about 3,000-fold and 5,000-fold at 3 days-transfection and 7 days-transfection, respectively. Patched 1 (Ptch1), the receptor for Shh, had a two-fold increase after transduction. The angiogenic factors such as hepatocyte growth factor (HGF), angiopoietin-1 (Ang-1), insulin-like growth factor 1 (IGF1) and vascular endothelial growth factor A (VEGF-A) had at least a 1.5-fold increase after transduction. Expression of EC-lineage markers, CD31 and VE-cadherin, on Shh-overexpressed BMSCs were increasingly detected by immunocytostaining. Angiogenesis of BMSCs could be efficiently induced by Shh overexpression in the in vitro tube-formation assay and in vivo Matrigel plug. Additionally, mRNA sequencing analysis revealed that Shh activation upregulated the expression of several pro-angiogenic factors, like Angptl4, Egfl6, VEGF-D. Loss of function study by VEGF-D siRNA confirmed that Shh enhanced the angiogenic ability of BMSCs via VEGF-D.

          Conclusions

          This study demonstrated that Shh could promote endothelial differentiation of BMSCs via VEGF-D.

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          Author and article information

          Journal
          J Thorac Dis
          J Thorac Dis
          JTD
          Journal of Thoracic Disease
          AME Publishing Company
          2072-1439
          2077-6624
          September 2018
          September 2018
          : 10
          : 9
          : 5476-5488
          Affiliations
          [1 ]Department of Cardiovascular Surgery of the First Affiliated Hospital & Institute for Cardiovascular Science, Soochow University , Suzhou 215006, China;
          [2 ]Department of Cardiovascular Surgery, Shanghai General Hospital, Shanghai Jiao Tong University School of Medicine , Shanghai 201620, China
          Author notes

          Contributions: (I) Conception and design: J Yang, Z Shen; (II) Administrative support: J Yang, Z Shen; (III) Provision of study materials or patients: S Shi, J Sun, Q Meng, Y Yu, H Huang, Z Yang; (IV) Collection and assembly of data: S Shi, J Sun, Q Meng, Y Yu, H Huang, Z Yang; (V) Data analysis and interpretation: S Shi, J Sun, Q Meng, Y Yu, H Huang, Z Yang; (VI) Manuscript writing: All authors; (VII) Final approval of manuscript: All authors.

          [#]

          These authors contributed equally to this work.

          Correspondence to: Zhenya Shen, PhD. Department of Cardiovascular Surgery, The First Affiliated Hospital of Soochow University, No. 899, Pinghai Road, Suzhou 215006, China. Email: uuzyshen@ 123456aliyun.com ; Junjie Yang, PhD. Institute for Cardiovascular Science, Soochow University, 708, Renmin Road, Suzhou 215006, China. Email: junjieyang2009@ 123456gmail.com .
          Article
          PMC6196177 PMC6196177 6196177 jtd-10-09-5476
          10.21037/jtd.2018.09.50
          6196177
          30416797
          8a3ab90c-7bf8-4ba7-9315-3f8afe6fc06f
          2018 Journal of Thoracic Disease. All rights reserved.
          History
          : 12 June 2018
          : 13 September 2018
          Categories
          Original Article

          vascular endothelial growth factor D (VEGF-D),Sonic hedgehog (Shh),bone marrow-derived mesenchymal stem cells (BMSCs),endothelial differentiation,angiogenesis

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