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Published Erratum
. 2021 Dec 28;18(1):308.
doi: 10.1186/s12974-021-02345-2.

Correction to: Elevated microRNA-129-5p level ameliorates neuroinflammation and blood-spinal cord barrier damage after ischemia-reperfusion by inhibiting HMGB1 and the TLR3-cytokine pathway

Affiliations
Published Erratum

Correction to: Elevated microRNA-129-5p level ameliorates neuroinflammation and blood-spinal cord barrier damage after ischemia-reperfusion by inhibiting HMGB1 and the TLR3-cytokine pathway

Xiao-Qian Li et al. J Neuroinflammation. .
No abstract available

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Figures

Fig. 6
Fig. 6
Effects of the miR-129-5p mimic and mimic control on HMGB1 expression in specific cell types of the spinal cord after IR. a Representative photomicrographs showing the localization of the fluorescence signals for HMGB1 in neurons and microglia at 48 h after IR. Arrows indicate co-localization. Scale bars = 50 μm. b Quantification of HMGB1 signals was performed based on the average of three independent images. c Quantification of HMGB1-positive neurons and microglia in the spinal cords at 48 h after IR. Data are expressed as the mean ± SD. *P < 0.05 versus the Sham group. #P < 0.05 versus the IR group

Erratum for

References

    1. Li X-Q, Chen F-S, Tan W-F, Fang Bo, Zhang Z-L, Ma H. Elevated microRNA-129-5p level ameliorates neuroinflammation and blood-spinal cord barrier damage after ischemia-reperfusion by inhibiting HMGB1 and the TLR3-cytokine pathway. J Neuroinflamm. 2017;14:205. doi: 10.1186/s12974-017-0977-4. - DOI - PMC - PubMed

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