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:

Inflammation and intracellular metabolism: new targets in OA
Ru Liu‐Bryan
Osteoarthritis and Cartilage (2015) Vol. 23, Iss. 11, pp. 1835-1842
Open Access | Times Cited: 92

Showing 1-25 of 92 citing articles:

Aging and aging-related diseases: from molecular mechanisms to interventions and treatments
Jun Guo, Xiuqing Huang, Lin Dou, et al.
Signal Transduction and Targeted Therapy (2022) Vol. 7, Iss. 1
Open Access | Times Cited: 700

Pathogenesis of Osteoarthritis: Risk Factors, Regulatory Pathways in Chondrocytes, and Experimental Models
Yuchen He, Zhong Li, Peter G. Alexander, et al.
Biology (2020) Vol. 9, Iss. 8, pp. 194-194
Open Access | Times Cited: 235

Review: Metabolic Regulation of Inflammation in Osteoarthritis
Françis Berenbaum, Timothy M. Griffin, Ru Liu‐Bryan
Arthritis & Rheumatology (2016) Vol. 69, Iss. 1, pp. 9-21
Open Access | Times Cited: 205

Inflammation and epigenetic regulation in osteoarthritis
Jie Shen, Yousef Abu‐Amer, Regis J. O’Keefe, et al.
Connective Tissue Research (2016) Vol. 58, Iss. 1, pp. 49-63
Open Access | Times Cited: 204

Exosomes and Stem Cells in Degenerative Disease Diagnosis and Therapy
Yu-Hsun Chang, Kung-Chi Wu, Horng‐Jyh Harn, et al.
Cell Transplantation (2018) Vol. 27, Iss. 3, pp. 349-363
Open Access | Times Cited: 138

Is osteoarthritis one disease or a collection of many?
Leticia A. Deveza, Richard F. Loeser
Lara D. Veeken (2017) Vol. 57, Iss. suppl_4, pp. iv34-iv42
Open Access | Times Cited: 121

Activating Nrf2 signalling alleviates osteoarthritis development by inhibiting inflammasome activation
Zijian Yan, Weihui Qi, Jingdi Zhan, et al.
Journal of Cellular and Molecular Medicine (2020) Vol. 24, Iss. 22, pp. 13046-13057
Open Access | Times Cited: 111

Activation of AMPK-SIRT3 signaling is chondroprotective by preserving mitochondrial DNA integrity and function
L.-Y. Chen, Yun Wang, Robert Terkeltaub, et al.
Osteoarthritis and Cartilage (2018) Vol. 26, Iss. 11, pp. 1539-1550
Open Access | Times Cited: 95

Recent Insights into the Contribution of the Changing Hypertrophic Chondrocyte Phenotype in the Development and Progression of Osteoarthritis
E.G. Ripmeester, Ufuk Tan Timur, M.M. Caron, et al.
Frontiers in Bioengineering and Biotechnology (2018) Vol. 6
Open Access | Times Cited: 91

Excavating bioactivities of nanozyme to remodel microenvironment for protecting chondrocytes and delaying osteoarthritis
Weiduo Hou, Chenyi Ye, Mo Chen, et al.
Bioactive Materials (2021) Vol. 6, Iss. 8, pp. 2439-2451
Open Access | Times Cited: 86

Itaconate attenuates osteoarthritis by inhibiting STING/NF-κB axis in chondrocytes and promoting M2 polarization in macrophages
Libin Ni, Zhen Lin, Sunli Hu, et al.
Biochemical Pharmacology (2022) Vol. 198, pp. 114935-114935
Closed Access | Times Cited: 64

Post-traumatic osteoarthritis: A review of pathogenic mechanisms and novel targets for mitigation
Julian E. Dilley, Margaret Bello, Roman M. Natoli, et al.
Bone Reports (2023) Vol. 18, pp. 101658-101658
Open Access | Times Cited: 35

Aging and the emerging role of cellular senescence in osteoarthritis
Brian O. Diekman, Richard F. Loeser
Osteoarthritis and Cartilage (2023) Vol. 32, Iss. 4, pp. 365-371
Closed Access | Times Cited: 24

Zn2+-Driven Metformin conjugated with siRNA attenuates osteoarthritis progression by inhibiting NF-κB signaling and activating autophagy
Haoqiang He, Chuanshu Huang, Hongjun Huang, et al.
Biomaterials (2025) Vol. 319, pp. 123210-123210
Closed Access | Times Cited: 1

NEAT1/miR‐181c Regulates Osteopontin (OPN)‐Mediated Synoviocyte Proliferation in Osteoarthritis
Qiyuan Wang, Wanchun Wang, Fan Zhang, et al.
Journal of Cellular Biochemistry (2017) Vol. 118, Iss. 11, pp. 3775-3784
Closed Access | Times Cited: 73

Osteoarthritis-associated basic calcium phosphate crystals alter immune cell metabolism and promote M1 macrophage polarization
Olwyn R. Mahon, Daniel J. Kelly, Géraldine McCarthy, et al.
Osteoarthritis and Cartilage (2019) Vol. 28, Iss. 5, pp. 603-612
Open Access | Times Cited: 71

Mitochondrial DNA haplogroups influence the risk of incident knee osteoarthritis in OAI and CHECK cohorts. A meta-analysis and functional study
M. Fernández-Moreno, Angel Soto‐Hermida, M.E. Vázquez-Mosquera, et al.
Annals of the Rheumatic Diseases (2016) Vol. 76, Iss. 6, pp. 1114-1122
Open Access | Times Cited: 66

Exploration of metformin as novel therapy for osteoarthritis: preventing cartilage degeneration and reducing pain behavior
Hui Li, Xiang Ding, Robert Terkeltaub, et al.
Arthritis Research & Therapy (2020) Vol. 22, Iss. 1
Open Access | Times Cited: 59

AMPK Signaling in Energy Control, Cartilage Biology, and Osteoarthritis
Dan Yi, Huan Yu, Ke Lu, et al.
Frontiers in Cell and Developmental Biology (2021) Vol. 9
Open Access | Times Cited: 44

Therapeutic potential of senolytic agent quercetin in osteoarthritis: A systematic review and meta-analysis of preclinical studies
Kohei Yamaura, Anna Laura Nelson, Haruki Nishimura, et al.
Ageing Research Reviews (2023) Vol. 90, pp. 101989-101989
Closed Access | Times Cited: 20

The Role of Sirtuins in Cartilage Homeostasis and Osteoarthritis
Mona Dvir‐Ginzberg, Ali Mobasheri, Ashok Kumar
Current Rheumatology Reports (2016) Vol. 18, Iss. 7
Closed Access | Times Cited: 48

Can Metabolic Pathways Be Therapeutic Targets in Rheumatoid Arthritis?
Elsa Sánchez‐López, Anyan Cheng, Mónica Gumá
Journal of Clinical Medicine (2019) Vol. 8, Iss. 5, pp. 753-753
Open Access | Times Cited: 46

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