| Literature DB >> 33063741 |
Tao Zhang1, Kang Li2, Zi-Lu Zhang3, Kai Gao2, Chao-Liang Lv2.
Abstract
Spinal cord injury (SCI) is a serious traumatic event to the central nervous system. Studies show that long non-coding RNAs (lncRNAs) play an important role in regulating the inflammatory response in the acute stage of SCI. Here, we investigated a new lncRNA related to spinal cord injury and acute inflammation. We analyzed the expression profile of lncRNAs after SCI, and explored the role of lncRNA Airsci (acute inflammatory response in SCI) on recovery following acute SCI. The rats were divided into the control group, SCI group, and SCI + lncRNA Airsci-siRNA group. The expression of inflammatory factors, including nuclear factor kappa B [NF-κB (p65)], NF-κB inhibitor IκBα and phosphorylated IκBα (p-IκBα), and the p-IκBα/IκBα ratio were examined 1-28 days after SCI in rats by western blot assay. The differential lncRNA expression profile after SCI was assessed by RNA sequencing. The differentially expressed lncRNAs were analyzed by bioinformatics technology. The differentially expressed lncRNA Airsci, which is involved in NF-κB signaling and associated with the acute inflammatory response, was verified by quantitative real-time PCR. Interleukin (IL-1β), IL-6 and tumor necrosis factor (TNF-α) at 3 days after SCI were measured by western blot assay and quantitative real-time PCR. The histopathology of the spinal cord was evaluated by hematoxylin-eosin and Nissl staining. Motor function was assessed with the Basso, Beattie and Bresnahan Locomotor Rating Scale. Numerous differentially expressed lncRNAs were detected after SCI, including 151 that were upregulated and 186 that were downregulated in the SCI 3 d group compared with the control group. LncRNA Airsci was the most significantly expressed among the five lncRNAs involved in the NF-κB signaling pathway. LncRNA Airsci-siRNA reduced the inflammatory response by inhibiting the NF-κB signaling pathway, alleviated spinal cord tissue injury, and promoted the recovery of motor function in SCI rats. These findings show that numerous lncRNAs are differentially expressed following SCI, and that inhibiting lncRNA Airsci reduces the inflammatory response through the NF-κB signaling pathway, thereby promoting functional recovery. All experimental procedures and protocols were approved by the approved by the Animal Ethics Committee of Jining Medical University (approval No. JNMC-2020-DW-RM-003) on January 18, 2020.Entities:
Keywords: NF-κB signaling pathway; RNA sequencing; apoptosis; functional recovery; inflammatory response; long non-coding RNA; neuroprotection; spinal cord injury
Year: 2021 PMID: 33063741 PMCID: PMC8067928 DOI: 10.4103/1673-5374.295335
Source DB: PubMed Journal: Neural Regen Res ISSN: 1673-5374 Impact factor: 5.135
Quantitative real-time PCR primers
| Primers | Primer sequence (5′–3′) | Product size (bp) |
|---|---|---|
| LOC685699-OT1 | F: TCG GAC TGT GGG AGG CTT ATT ACC | 24 |
| R: GGT GAA ATG GTC CAG GTC GAG TTG | 24 | |
| AABR07015057.1-OT11 | F: GCC GCC ACA AGC CAG TTA TCC | 21 |
| R: TAT CCG CAG CAG GTC TCC AAG G | 22 | |
| LINC5298 | F: ACT TCT CTA AGG CCC TCA CCA G | 22 |
| R: AAG TCC ACC CAC AGG CAG AA | 20 | |
| AABR07000398.1-OT18 | F: CTT GGC TGC TCG TCG GTG TTG | 21 |
| R: GCG TGA TCC CTC CTC GTA CTC G | 22 | |
| AABR07055878.1-OT1 | F: TCA GAA ACC AGG TGC CCA CTT AAC | 24 |
| R: TCG ACC TCT CTG GCT GGA TGA AG | 23 | |
| IL-1β | F: CCT TGT GCA AGT GTC TGA AGC | 21 |
| R: CCC AAG TCA AGG GCT TGG AA | 20 | |
| IL-6 | F: GGC CCT TGC TTT CTC TTC G | 19 |
| R: ATA ATA AAG TTT TGA TTA TGT | 21 | |
| TNF-α | F: CTC CAG CTG GAA GAC TCC TCC CAG | 24 |
| R: CCC GAC TAC GTG CTC CTC ACC | 21 | |
| GADPH | F: AGG TCG GTG TGA ACG GAT TTG | 21 |
| R: TGT AGA CCA TGT AGT TGA GGT CA | 23 |
F: Forward; GAPDH: Glyceraldehyde-3-phosphate dehydrogenase; IL: Interleukin; R: reverse; TNF-α: tumor necrosis factor α.