Retraction

miR-451 on Myocardial Ischemia-Reperfusion in Rats by Regulating AMPK Signaling Pathway

Paper Information

Record ID:
57621
Publication Date:
July 07, 2021
Retraction Date:
January 09, 2024 (1.9 year years ago)
Subjects:
Article Type:
Publisher:
Hindawi
Open Access:
Yes
PubMed ID:
Retraction PubMed ID:

Citations (8)

8
Total Citations
2
Post-Retraction
(25.0%)
4
Pre-Retraction
1
Same Day
Post-Retraction Citation Analysis
1 Within 30 days
2 Within 1 year
0 After 2+ years
87 Days since retraction (latest)
Heavy Metals Removal Using Carbon Based Nanocomposites
Unknown Authors
Unknown Journal
Published: Unknown
Inhibition of circ_0073932 attenuates myocardial ischemia‒reperfusion injury via miR-493-3p/FAF1/JNK
Yang Su, Lili Zhao, Dongli Lei et al. (4 authors)
In Vitro Cellular & Developmental Biology - Animal
Published: Apr 2024
3 citations
87 days after retraction
AMPK, a key molecule regulating aging-related myocardial ischemia-reperfusion injury
Xiaorui Yin, Ziyuan Guo, Chunli Song
Molecular Biology Reports
Published: Feb 2024
7 citations
23 days after retraction
Retracted: miR-451 on Myocardial Ischemia-Reperfusion in Rats by Regulating AMPK Signaling Pathway
BioMed Research International
BioMed Research International Open Access
Published: Jan 2024
Same day as retraction
Influences of microRNA-451 on the expression of HMGB1 in myocardial cells and its mechanism in ischemia-reperfusion injury
Ruiye Qiu, Yajuan Zhang, Jun Li et al. (5 authors)
Cellular and Molecular Biology Open Access
Published: Dec 2023
3 citations
9 days before retraction
OL-FS13 Alleviates Cerebral Ischemia-reperfusion Injury by Inhibiting miR-21-3p Expression
Naixin Liu, Yan Fan, Yilin Li et al. (16 authors)
Current Neuropharmacology Open Access
Published: May 2023
2 citations
251 days before retraction
Apoptosis And Myocardial Infarction: Role Of Ncrnas And Exosomal Ncrnas
Alireza Farokhian, Ali Rajabi, Amirhossein Sheida et al. (11 authors)
Epigenomics
Published: Mar 2023
7 citations
314 days before retraction
Evaluation of genes and molecular pathways involved in the development of cardiovascular disease in preeclampsia patients: biological system and bioinformatics analysis approach
Shahrzad Amirlatifi, Mahboubeh Pazoki, Mehran Amrovani et al. (5 authors)
Research Square (Research Square) Open Access
Published: Mar 2022
673 days before retraction
Quick Stats
Total Citations: 13
Years Since Retraction: 1.9 year
Open Access: Yes
Last Checked: Jul 24, 2025
Related Papers