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Correction to: Molecular mechanism study of HGF/c-MET pathway activation and immune regulation for a tumor diagnosis model

The Original Article was published on 14 July 2021

Correction to: Cancer Cell Int (2021) 21:374 https://doi.org/10.1186/s12935-021-02051-2

In this article [1] the wrong figure appeared as Fig. 10c; the correct Fig. 10 should have appeared as shown in this erratum.

Fig. 10
figure 10

The expression of HGF and c-MET can affect the proliferation and invasion of lung cancer and esophageal cancer. A qRT-PCR analysis of HGF and c-MET expression after silencing the gene. B 500 cells were seeded in 6-well plates, and after 2 weeks of culture, representative images of foci formation in monolayer culture between NC, HGF-SI and c-MET-SI cells, and the number of colonies detected. C The cell proliferation rate between NC, HGFSI and c-MET-SI cells were measured by CCK8 assay. D Scratch test detects cell invasion ability between NC, HGF-SI and c-MET-SI cells. * Represents p < 0.05, ** represents p < 0.01

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  1. Shen Z, Xue W, Zheng Y, Geng Q, Wang L, Fan Z, Wang W, Yue Y, Zhai Y, Li L, Zhao J. Molecular mechanism study of HGF/c-MET pathway activation and immune regulation for a tumor diagnosis model. Cancer Cell Int. 2021;21:374. https://doi.org/10.1186/s12935-021-02051-2.

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Correspondence to Lifeng Li or Jie Zhao.

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Shen, Z., Xue, W., Zheng, Y. et al. Correction to: Molecular mechanism study of HGF/c-MET pathway activation and immune regulation for a tumor diagnosis model. Cancer Cell Int 21, 672 (2021). https://doi.org/10.1186/s12935-021-02359-z

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  • DOI: https://doi.org/10.1186/s12935-021-02359-z