OpenAlex Citation Counts

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OpenAlex is a bibliographic catalogue of scientific papers, authors and institutions accessible in open access mode, named after the Library of Alexandria. It's citation coverage is excellent and I hope you will find utility in this listing of citing articles!

If you click the article title, you'll navigate to the article, as listed in CrossRef. If you click the Open Access links, you'll navigate to the "best Open Access location". Clicking the citation count will open this listing for that article. Lastly at the bottom of the page, you'll find basic pagination options.

Requested Article:

<p>Melatonin Attenuates Anoxia/Reoxygenation Injury by Inhibiting Excessive Mitophagy Through the MT2/SIRT3/FoxO3a Signaling Pathway in H9c2 Cells</p>
Jinjing Wu, Yanli Yang, Yafen Gao, et al.
Drug Design Development and Therapy (2020) Vol. Volume 14, pp. 2047-2060
Open Access | Times Cited: 62

Showing 1-25 of 62 citing articles:

Regulation of autophagy of the heart in ischemia and reperfusion
С. В. Попов, А. V. Mukhomedzyanov, Nikita S. Voronkov, et al.
APOPTOSIS (2022) Vol. 28, Iss. 1-2, pp. 55-80
Closed Access | Times Cited: 76

Melatonin attenuates sepsis-induced acute kidney injury by promoting mitophagy through SIRT3-mediated TFAM deacetylation
Zhiya Deng, Man He, Hongbin Hu, et al.
Autophagy (2023) Vol. 20, Iss. 1, pp. 151-165
Open Access | Times Cited: 59

Mitochondrial quality control in human health and disease
Bohao Liu, Chen-Zhen Xu, Yi Liu, et al.
Military Medical Research (2024) Vol. 11, Iss. 1
Open Access | Times Cited: 29

Daidzein alleviates doxorubicin-induced heart failure via the SIRT3/FOXO3a signaling pathway
Huaxin Li, Mengxue Zhang, Yuanyu Wang, et al.
Food & Function (2022) Vol. 13, Iss. 18, pp. 9576-9588
Closed Access | Times Cited: 47

Regulation of Mitophagy by Sirtuin Family Proteins: A Vital Role in Aging and Age-Related Diseases
Wei Wan, Fuzhou Hua, Fang Pu, et al.
Frontiers in Aging Neuroscience (2022) Vol. 14
Open Access | Times Cited: 42

Sirtuin 3: Emerging therapeutic target for cardiovascular diseases
Mengfei Cao, Qianru Zhao, Xia Sun, et al.
Free Radical Biology and Medicine (2022) Vol. 180, pp. 63-74
Closed Access | Times Cited: 41

Melatonin: Facts, Extrapolations and Clinical Trials
Jean A. Boutin, David J. Kennaway, Ralf Jockers
Biomolecules (2023) Vol. 13, Iss. 6, pp. 943-943
Open Access | Times Cited: 37

Relationship between ferroptosis and mitophagy in cardiac ischemia reperfusion injury: a mini-review
Cuihua Liu, Zunjiang Li, Botao Li, et al.
PeerJ (2023) Vol. 11, pp. e14952-e14952
Open Access | Times Cited: 26

Activation of Sirtuin3 by honokiol ameliorates alveolar epithelial cell senescence in experimental silicosis via the cGAS-STING pathway
Qiang Zhou, Yi Guan, Meiyu Chang, et al.
Redox Biology (2024) Vol. 74, pp. 103224-103224
Open Access | Times Cited: 11

SIRT1 restores mitochondrial structure and function in rats by activating SIRT3 after cerebral ischemia/reperfusion injury
Manli Chen, Ji Liu, Wenwen Wu, et al.
Cell Biology and Toxicology (2024) Vol. 40, Iss. 1
Open Access | Times Cited: 10

Melatonin regulates mitochondrial dynamics and mitophagy: Cardiovascular protection
Sohrab Rahmani, Ali Roohbakhsh, Vahid Pourbarkhordar, et al.
Journal of Cellular and Molecular Medicine (2024) Vol. 28, Iss. 18
Open Access | Times Cited: 9

Mitophagy Regulation Following Myocardial Infarction
Annie Turkieh, Yara El Masri, F Pinet, et al.
Cells (2022) Vol. 11, Iss. 2, pp. 199-199
Open Access | Times Cited: 37

SIRT3 regulates mitochondrial function: A promising star target for cardiovascular disease therapy
Qin Zhang, Siyuan Zhou, Xing Chang, et al.
Biomedicine & Pharmacotherapy (2023) Vol. 170, pp. 116004-116004
Open Access | Times Cited: 19

The forkhead box O3 (FOXO3): a key player in the regulation of ischemia and reperfusion injury
Moussa Omorou, Yiwei Huang, Meng Gao, et al.
Cellular and Molecular Life Sciences (2023) Vol. 80, Iss. 4
Open Access | Times Cited: 16

Ononin alleviates endoplasmic reticulum stress in doxorubicin-induced cardiotoxicity by activating SIRT3
Hanlin Zhang, Jingfan Weng, Shimin Sun, et al.
Toxicology and Applied Pharmacology (2022) Vol. 452, pp. 116179-116179
Closed Access | Times Cited: 27

Melatonin-based therapeutics for atherosclerotic lesions and beyond: Focusing on macrophage mitophagy
Amir Ajoolabady, Yaguang Bi, David Julian McClements, et al.
Pharmacological Research (2022) Vol. 176, pp. 106072-106072
Open Access | Times Cited: 26

SIRT3 deficiency exacerbates early-stage fibrosis after ischaemia-reperfusion-induced AKI
Lingli Cheng, Xueyan Yang, Yonghong Jian, et al.
Cellular Signalling (2022) Vol. 93, pp. 110284-110284
Closed Access | Times Cited: 25

Chemical mitophagy modulators: Drug development strategies and novel regulatory mechanisms
Dong Yu, Xu‐Xu Zhuang, Yi‐Ting Wang, et al.
Pharmacological Research (2023) Vol. 194, pp. 106835-106835
Open Access | Times Cited: 15

Polydatin inhibits mitochondrial damage and mitochondrial ROS by promoting PINK1‐Parkin‐mediated mitophagy in allergic rhinitis
Siqi Liu, Chongyang Wang, Yulian Zhang, et al.
The FASEB Journal (2023) Vol. 37, Iss. 4
Closed Access | Times Cited: 14

The role and therapeutic potential of SIRTs in sepsis
Jiaqi You, Yilin Li, Chong Wei
Frontiers in Immunology (2024) Vol. 15
Open Access | Times Cited: 5

Research progress on the role and mechanism of Sirtuin family in doxorubicin cardiotoxicity
Xuan Zhang, Chaoming Huang, Yanhong Hou, et al.
Phytomedicine (2024) Vol. 129, pp. 155673-155673
Closed Access | Times Cited: 5

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