Retraction

Identification of RPS7 as the Biomarker of Ferroptosis in Acute Kidney Injury

Citations (8)

8
Total Citations
3
Post-Retraction
(37.5%)
3
Pre-Retraction
1
Same Day
Post-Retraction Citation Analysis
0 Within 30 days
3 Within 1 year
0 After 2+ years
343 Days since retraction (latest)
Heavy Metals Removal Using Carbon Based Nanocomposites
Unknown Authors
Unknown Journal
Published: Unknown
Identification of novel ferroptosis-related biomarkers associated with the oxidative stress pathways in ischemic cardiomyopathy
Huilin Liu, Yuan Xu, Yuanmei Liu et al. (8 authors)
IJC Heart & Vasculature Open Access
Published: Dec 2024
1 citation
343 days after retraction
MMP9 Drives Ferroptosis by Regulating GPX4 and Iron Signaling
Flobater I. Gawargi, Paras K. Mishra
iScience Open Access
Published: Jul 2024
3 citations
199 days after retraction
Innovative insights: ITLN1 modulates renal injury in response to radiation
Peng He, Ying Guo, Shize Wang et al. (4 authors)
International Immunopharmacology
Published: Apr 2024
1 citation
101 days after retraction
Retracted: Identification of RPS7 as the Biomarker of Ferroptosis in Acute Kidney Injury
BioMed Research International
BioMed Research International Open Access
Published: Jan 2024
Same day as retraction
Identification and validation of the diagnostic signature associated with immune microenvironment of acute kidney injury based on ferroptosis-related genes through integrated bioinformatics analysis and machine learning
Yalei Chen, Anqi Liu, Hunan Liu et al. (6 authors)
Frontiers in Cell and Developmental Biology Open Access
Published: Jul 2023
1 citation
170 days before retraction
Dissecting order amidst chaos of programmed cell deaths: construction of a diagnostic model for KIRC using transcriptomic information in blood-derived exosomes and single-cell multi-omics data in tumor microenvironment
Chengbang Wang, Yuan He, Jie Zheng et al. (5 authors)
Frontiers in Immunology Open Access
Published: Apr 2023
21 citations
269 days before retraction
Transcription Factor Sox9 Exacerbates Kidney Injury through Inhibition of MicroRNA-96-5p and Activation of the Trib3/IL-6 Axis
Xiao Wang, Guang Chen, Yongqiang Du et al. (5 authors)
Kidney & Blood Pressure Research Open Access
Published: Jan 2023
6 citations
377 days before retraction
Quick Stats
Total Citations: 11
Years Since Retraction: 1.9 year
Open Access: Yes
Last Checked: Jul 24, 2025
Related Papers
Sulforaphane potentially attenuates arsenic-induced nephrot…
Environmental Science and Pollution Research • 65 citations
Atomic Scale Interactions between RNA and DNA Aptamers with…
BioMed Research International • 9 citations
Applicability of High-Frequency Ultrasound to the Early Dia…
BioMed Research International • 6 citations
A Systematic Analysis on COVID-19 Patients in Inner Mongoli…
BioMed Research International • 2 citations
Empirical Method for Thyroid Disease Classification Using a…
BioMed Research International • 67 citations