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Gene-modified leucoconcentrate for personalized ex vivo gene therapy in a mini pig model of moderate spinal cord injury 被引量:1

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摘要 We previously demonstrated that gene-modified umbilical cord blood mononuclear cells overexpressing a combination of recombinant neurotrophic factors are a promising therapeutic approach for cell-mediated gene therapy for neurodegenerative diseases,neurotrauma,and stroke.In this study,using a mini pig model of spinal cord injury,we proposed for the first time the use of gene-modified leucoconcentrate prepared from peripheral blood in the plastic blood bag for personalized ex vivo gene therapy.Leucoconcentrate obtained from mini pig peripheral blood was transduced with a chimeric adenoviral vector(Ad5/35 F)that carried an enhanced green fluorescent protein(EGFP)reporter gene in the plastic blood bag.The day after blood donation,the mini pigs were subjected to moderate SCI and four hours post-surgery they were intravenously autoinfused with gene-modified leucoconcentrate.A week after gene-modified leucoconcentrate therapy,fluorescent microscopy revealed EGFP-expressing leucocytes in spinal cord at the site of contusion injury.In the spleen the groups of EGFP-positive cells located in the lymphoid follicles were observed.In vitro flow cytometry and fluorescent microscopy studies of the gene-modified leucoconcentrate samples also confirmed the production of EGFP by leucocytes.Thus,the efficacy of leucocytes transduction in the plastic blood bag and their migratory potential suggest their use for temporary production of recombinant biologically active molecules to correct certain pathological conditions.This paper presents a proof-of-concept of simple,safe and effective approach for personalized ex vivo gene therapy based on gene-modified leucoconcentrate autoinfusion.The animal protocols were approved by the Kazan State Medical University Animal Care and Use Committee(approval No.5)on May 27,2014.
出处 《Neural Regeneration Research》 SCIE CAS CSCD 2021年第2期357-361,共5页 中国神经再生研究(英文版)
基金 the Russian Science Foundation(No.16-15-00010 to RRI) the Russian Government Program of Competitive Growth of Kazan Federal University。
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  • 1Wyndaele M,Wyndaele JJ. Incidence,prevalence and epidemiology of spinal cord injury:what learns a worldwide literature survey[J].Spinal Cord:The Official Journal of the International Medical Society of Paraplegia,2006,(09):523-529.
  • 2Kwon BK,Stammers AM,Belanger LM. Cerebrospinal fluid inflammatory cytokines and biomarkers of injury severity in acute human spinal cord injury[J].Journal of Neurotrauma,2010,(04):669-682.
  • 3Tator CH,Fehlings MG. Review of the secondary injury theory of acute spinal cord trauma with emphasis on vascular mechanisms[J].Journal of Neurosurgery,1991,(01):15-26.
  • 4Dusart I,Schwab ME. Secondary cell death and the inflammatory reaction after dorsal hemisection of the rat spinal cord[J].European Journal of Neuroscience,1994,(05):712-724.
  • 5Bracken MB,Holford TR. Neurological and functional status 1 year after acute spinal cord injury:estimates of functional recovery in National Acute Spinal Cord Injury Study II from results modeled in National Acute Spinal Cord Injury Study III[J].Journal of Neurosurgery,2002,(3 Suppl):259-266.
  • 6Kobylka P,Ivanyi P,Breur-Vriesendorp BS. Preservation of immunological and colony-forming capacities of long-term (15 years) cryopreserved cordblood cells[J].Transplantation,1998,(09):1275-1278.
  • 7Liu CH,Hwang SM. Cytokine interactions in mesenchymal stem cells from cord blood[J].Cytokine,2005,(06):270-279.doi:10.1016/j.cyto.2005.11.003.
  • 8Newman MB,Willing AE,Manresa JJ. Cytokines produced by cultured human umbilical cord blood (HUCB)cells:implications for brain repair[J].Experimental Neurology,2006,(01):201-208.
  • 9Neuhoff S,Moers J,Rieks M. Proliferation,differentiation,and cytokine secretion of human umbilical cord blood-derived mononuclear cells in vitro[J].Experimental Hematology,2007,(07):1119-1131.
  • 10Chua SJ,Bielecki R,Wong CJ. Neural progenitors,neurons and oligodendrocytes from human umbilical cord blood cells in a serum-free,feeder free cell culture[J].Biochemical and Biophysical Research Communications,2009,(02):217-221.doi:10.1016/j.bbrc.2008.12.045.

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