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Inhibition of LncRNA Vof-16 expression promotes nerve regeneration and functional recovery after spinal cord injury
文献摘要:
Our previous RNA sequencing study showed that the long non-coding RNA ischemia-related factor Vof-16 (lncRNA Vof-16) was upregulated after spinal cord injury, but its precise role in spinal cord injury remains unclear. Bioinformatics predictions have indicated that lncRNA Vof-16 may participate in the pathophysiological processes of inflammation and apoptosis. PC12 cells were transfected with a pHBLV-U6-MCS-CMV-ZsGreen-PGK-PURO vector to express an lncRNA Vof-16 knockdown lentivirus and a pHLV-CMVIE-ZsGree-Puro vector to express an lncRNA Vof-16 overexpression lentivirus. The overexpression of lncRNA Vof-16 inhibited PC12 cell survival, proliferation, migration, and neurite extension, whereas lncRNA Vof-16 knockdown lentiviral vector resulted in the opposite effects in PC12 cells. Western blot assay results showed that the overexpression of lncRNA Vof-16 increased the protein expression levels of interleukin 6, tumor necrosis factor-α, and Caspase-3 and decreased Bcl-2 expression levels in PC12 cells. Furthermore, we established rat models of spinal cord injury using the complete transection at T10. Spinal cord injury model rats were injected with the lncRNA Vof-16 knockdown or overexpression lentiviral vectors immediately after injury. At 7 days after spinal cord injury, rats treated with lncRNA Vof-16 knockdown displayed increased neuronal survival and enhanced axonal extension. At 8 weeks after spinal cord injury, rats treated with the lncRNA Vof-16 knockdown lentiviral vector displayed improved neurological function in the hind limb. Notably, lncRNA Vof-16 knockdown injection increased Bcl-2 expression and decreased tumor necrosis factor-α and Caspase-3 expression in treated animals. Rats treated with the lncRNA Vof-16 overexpression lentiviral vector displayed opposite trends. These findings suggested that lncRNA Vof-16 is associated with the regulation of inflammation and apoptosis. The inhibition of lncRNA Vof-16 may be useful for promoting nerve regeneration and functional recovery after spinal cord injury. The experiments were approved by the Institutional Animal Care and Use Committee of Guangdong Medical University, China.
文献关键词:
作者姓名:
Xiao-Min Zhang
作者机构:
Key Laboratory of Stem Cell and Regenerative Tissue Engineering,Guangdong Medical University,Dongguan,Guangdong Province,China;Biology Research Group,Guangzheng Experimental School,Huizhou,Guangdong Province,China;Geriatric Medicine Center,Dongguan Waterfront Zone Central Hospital,Dongguan,Guangdong Province,China;Scientific Research Center,the Seventh Affiliated Hospital,Sun Yat-sen University,Shenzhen,Guangdong Province,China;Clinical Laboratory,Affiliated Houjie Hospital,Guangdong Medical University,Dongguan,Guangdong Province,China;Department of Intensive Care Unit,Affiliated Houjie Hospital,Guangdong Medical University,Dongguan,Guangdong Province,China
引用格式:
[1]Xiao-Min Zhang-.Inhibition of LncRNA Vof-16 expression promotes nerve regeneration and functional recovery after spinal cord injury)[J].中国神经再生研究(英文版),2022(01):217-227
A类:
Vof,pHLV,CMVIE,ZsGree
B类:
Inhibition,LncRNA,promotes,nerve,regeneration,functional,recovery,after,spinal,cord,injury,Our,previous,sequencing,study,showed,that,long,coding,ischemia,related,lncRNA,was,upregulated,but,its,precise,role,remains,unclear,Bioinformatics,predictions,have,indicated,may,participate,pathophysiological,processes,inflammation,apoptosis,PC12,cells,were,transfected,pHBLV,U6,MCS,ZsGreen,PGK,PURO,knockdown,lentivirus,Puro,overexpression,inhibited,survival,proliferation,migration,neurite,extension,whereas,lentiviral,resulted,opposite,effects,blot,assay,results,increased,protein,levels,interleukin,tumor,necrosis,Caspase,decreased,Bcl,Furthermore,established,models,using,complete,transection,T10,Spinal,rats,injected,vectors,immediately,At,days,treated,displayed,neuronal,enhanced,axonal,weeks,improved,neurological,hind,limb,Notably,injection,animals,Rats,trends,These,findings,suggested,associated,regulation,inhibition,be,useful,promoting,experiments,approved,by,Institutional,Animal,Care,Use,Committee,Guangdong,Medical,University,China
AB值:
0.434421
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