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  • Retracted
  • Addendum
  • 10.1038/s41419-024-06648-z
Retraction Note: Long non-coding RNA linc00645 promotes TGF-β-induced epithelial–mesenchymal transition by regulating miR-205-3p-ZEB1 axis in glioma
  • Apr 17, 2024
  • Cell Death and Disease
  • Chenlong Li + 8 more

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  • 10.1038/s41419-024-06608-7
Retraction Note: ERK1/2-Nanog signaling pathway enhances CD44(+) cancer stem-like cell phenotypes and epithelial-to-mesenchymal transition in head and neck squamous cell carcinomas
  • Mar 15, 2024
  • Cell Death and Disease
  • Chuang Huang + 9 more

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  • 10.1038/s41419-024-06529-5
Retraction Note: Caveolin-1 promotes invasion and metastasis by upregulating Pofut1 expression in mouse hepatocellular carcinoma
  • Feb 12, 2024
  • Cell Death and Disease
  • Cheng Zhang + 7 more

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  • 10.1038/s41419-024-06498-9
Retraction Note: Ibrutinib facilitates the sensitivity of colorectal cancer cells to ferroptosis through BTK/NRF2 pathway
  • Feb 7, 2024
  • Cell Death and Disease
  • Jin-Feng Zhu + 8 more

The Editors-in-

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  • 10.1038/s41419-023-06365-z
Retraction Note: Long noncoding RNA HEIH depletion depresses esophageal carcinoma cell progression by upregulating microRNA-185 and downregulating KLK5
  • Dec 18, 2023
  • Cell Death and Disease
  • Bing Wang + 8 more

An internal investigation of the experimental records has found that there were errors in the original data, as the analyses were performed on a single replicate.Additionally, concerns have been raised regarding high similarity of western blot and Transwell assay images between

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  • 10.1038/s41419-023-06254-5
Retraction Note: Exosome-transmitted miR-567 reverses trastuzumab resistance by inhibiting ATG5 in breast cancer
  • Nov 10, 2023
  • Cell Death and Disease
  • Mingli Han + 15 more

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  • 10.1038/s41419-023-06174-4
Retraction Note: Intracellular citrate accumulation by oxidized ATM-mediated metabolism reprogramming via PFKP and CS enhances hypoxic breast cancer cell invasion and metastasis
  • Sep 28, 2023
  • Cell Death and Disease
  • Meixi Peng + 8 more

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  • 10.1038/s41419-023-05943-5
Retraction Note: Long noncoding RNA LINC01234 promotes serine hydroxymethyltransferase 2 expression and proliferation by competitively binding miR-642a-5p in colon cancer
  • Jul 11, 2023
  • Cell Death and Disease
  • Changwei Lin + 3 more

The Editors-in-Chief have retracted this article because of significant concerns regarding a number of Figures presented in this work, which question the integrity of the data.In Figure 2C there was found to be overlap between the HCT116 sh-NC and Serine images.In Figure 6B there was found to be overlap between the HCT116 NC and Serine images and between the Mimics and Mimics+Serine images.In Figure 8A the image for LOVO miR-642a-5p appears to have been previously published in Figure 7A in the following article [1].The Editors-in-Chief have therefore lost confidence in the reliability of the results presented in this article.Changwei Lin,

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  • Cite Count Icon 7
  • 10.1038/s41419-022-04678-z
RETRACTED ARTICLE: Hepatic stellate cell mediates transcription of TNFSF14 in hepatocellular carcinoma cells via H2S/CSE-JNK/JunB signaling pathway
  • Mar 15, 2022
  • Cell Death and Disease
  • Yanan Ma + 7 more

Hepatic stellate cells (HSC) and hydrogen sulfide (H2S) both play important roles in the development of hepatocellar carcinoma (HCC). Whereas, in the microenvironment of HCC, whether HSC participate in regulating the biological process of HCC cells by releasing H2S remains elusive. In vitro, Flow cytometry (FCM), CCK-8, RNA-sequencing, Western blotting, RT-qPCR, immunofluorescence and ChIP assays were carried out in the HCC cells to investigate the effect of H2S on biological functions and JNK/JunB-TNFSF14 signaling pathway. Specimens from HCC patients were analyzed by RT-qPCR and Western blotting assays for evaluating the expression of TNFSF14 and CSE. Statistical analysis was used to analyze the correlation between TNFSF14 expression and clinical data of HCC patients. Based on the FCM and CCK-8 results, we found the LX-2 cells were able to induce HCC cells apoptosis through releasing H2S. RNA-sequencing, RT-qPCR, and Western blotting results showed that TNFSF14 gene was upregulated in both LX-2 and NaHS group. NaHS treated in HCC cells led to JNK/JunB signaling pathway activating and greater binding of p-JunB to its responsive elements on TNFSF14 promoter. Impairment of TNFSF14 induction alleviated LX-2 and NaHS induced apoptosis of HepG2 and PLC/PRF/5 cells. Furthermore, TNFSF14 expression in HCC tissues was lower than the adjacent tissue. HCC patients with low expression of TNFSF14 had higher malignant degree and poor prognosis. In summary, demonstration of the involvement of HSC-derived H2S in JNK/JunB mediated expression of TNFSF14 gene strongly indicates H2S palys an important role in the regulation of HCC apoptosis.

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  • 10.1038/s41419-021-04220-7
The polarity protein Par3 coordinates positively self-renewal and negatively invasiveness in glioblastoma
  • Oct 1, 2021
  • Cell Death and Disease
  • Mahsa Shahidi Dadras + 10 more

Glioblastoma (GBM) is a brain malignancy characterized by invasiveness to the surrounding brain tissue and by stem-like cells, which propagate the tumor and may also regulate invasiveness. During brain development, polarity proteins, such as Par3, regulate asymmetric cell division of neuro-glial progenitors and neurite motility. We, therefore, studied the role of the Par3 protein (encoded by PARD3) in GBM. GBM patient transcriptomic data and patient-derived culture analysis indicated diverse levels of expression of PARD3 across and independent from subtypes. Multiplex immunolocalization in GBM tumors identified Par3 protein enrichment in SOX2-, CD133-, and NESTIN-positive (stem-like) cells. Analysis of GBM cultures of the three subtypes (proneural, classical, mesenchymal), revealed decreased gliomasphere forming capacity and enhanced invasiveness upon silencing Par3. GBM cultures with suppressed Par3 showed low expression of stemness (SOX2 and NESTIN) but higher expression of differentiation (GFAP) genes. Moreover, Par3 silencing reduced the expression of a set of genes encoding mitochondrial enzymes that generate ATP. Accordingly, silencing Par3 reduced ATP production and concomitantly increased reactive oxygen species. The latter was required for the enhanced migration observed upon silencing of Par3 as anti-oxidants blocked the enhanced migration. These findings support the notion that Par3 exerts homeostatic redox control, which could limit the tumor cell-derived pool of oxygen radicals, and thereby the tumorigenicity of GBM.