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:

Lithocholic Acid, a Metabolite of the Microbiome, Increases Oxidative Stress in Breast Cancer
Patrik Kovács, Tamás Csonka, Tündé Kovàcs, et al.
Cancers (2019) Vol. 11, Iss. 9, pp. 1255-1255
Open Access | Times Cited: 95

Showing 1-25 of 95 citing articles:

The role of bile acids in carcinogenesis
Tadeja Režen, Damjana Rozman, Tündé Kovàcs, et al.
Cellular and Molecular Life Sciences (2022) Vol. 79, Iss. 5
Open Access | Times Cited: 174

High fat diet, gut microbiome and gastrointestinal cancer
Yao Tong, Huiru Gao, Qiuchen Qi, et al.
Theranostics (2021) Vol. 11, Iss. 12, pp. 5889-5910
Open Access | Times Cited: 127

The role of the microbiome in ovarian cancer: mechanistic insights into oncobiosis and to bacterial metabolite signaling
Adrienn Sipos, Gyula Ujlaki, Edit Mikó, et al.
Molecular Medicine (2021) Vol. 27, Iss. 1
Open Access | Times Cited: 104

The Human Microbiota and Skin Cancer
Yu Ri Woo, Sang Hyun Cho, Jeong Deuk Lee, et al.
International Journal of Molecular Sciences (2022) Vol. 23, Iss. 3, pp. 1813-1813
Open Access | Times Cited: 81

Bile acid metabolism and signaling in health and disease: molecular mechanisms and therapeutic targets
Joshua S. Fleishman, Sunil Kumar
Signal Transduction and Targeted Therapy (2024) Vol. 9, Iss. 1
Open Access | Times Cited: 72

Microbiota-Derived Metabolites in Tumor Progression and Metastasis
Tania Rossi, Daniele Vergara, Francesca Fanini, et al.
International Journal of Molecular Sciences (2020) Vol. 21, Iss. 16, pp. 5786-5786
Open Access | Times Cited: 114

Emerging role of ferroptosis in breast cancer: New dawn for overcoming tumor progression
Shiyao Sui, Shouping Xu, Da Pang
Pharmacology & Therapeutics (2021) Vol. 232, pp. 107992-107992
Closed Access | Times Cited: 83

Nuclear Factor Erythroid 2-Related Factor 2 in Regulating Cancer Metabolism
Katarína Smolková, Edit Mikó, Tündé Kovàcs, et al.
Antioxidants and Redox Signaling (2020) Vol. 33, Iss. 13, pp. 966-997
Open Access | Times Cited: 74

Deoxycholic acid modulates the progression of gallbladder cancer through N6-methyladenosine-dependent microRNA maturation
Ruirong Lin, Ming Zhan, Linhua Yang, et al.
Oncogene (2020) Vol. 39, Iss. 26, pp. 4983-5000
Open Access | Times Cited: 73

Current and Emerging Methods for Ovarian Cancer Screening and Diagnostics: A Comprehensive Review
Juliane Liberto, Sheng-Yin Chen, Ie‐Ming Shih, et al.
Cancers (2022) Vol. 14, Iss. 12, pp. 2885-2885
Open Access | Times Cited: 65

Research Progress of Bile Acids in Cancer
Junhao Fu, Yu Min, Wenxia Xu, et al.
Frontiers in Oncology (2022) Vol. 11
Open Access | Times Cited: 39

Role of Gut Microbiota in Breast Cancer and Drug Resistance
V Sathiyapriya, Sheetal Parida, Bhuvana Teja Lingipilli, et al.
Pathogens (2023) Vol. 12, Iss. 3, pp. 468-468
Open Access | Times Cited: 33

Concomitant analyses of intratumoral microbiota and genomic features reveal distinct racial differences in breast cancer
Sheetal Parida, Sumit Siddharth, Yuqing Xia, et al.
npj Breast Cancer (2023) Vol. 9, Iss. 1
Open Access | Times Cited: 31

The Emerging Role of the Microbiota in Breast Cancer Progression
Giancarla Bernardo, Valentino Le Noci, Martina Di Modica, et al.
Cells (2023) Vol. 12, Iss. 15, pp. 1945-1945
Open Access | Times Cited: 28

Probiotics and Prebiotics: Any Role in Menopause-Related Diseases?
Luigi Barrea, Ludovica Verde, Renata S. Auriemma, et al.
Current Nutrition Reports (2023)
Open Access | Times Cited: 23

The bacterial metabolite, lithocholic acid, has antineoplastic effects in pancreatic adenocarcinoma
Szandra Schwarcz, Patrik Kovács, Petra Nyerges, et al.
Cell Death Discovery (2024) Vol. 10, Iss. 1
Open Access | Times Cited: 10

Microbial Alterations and Risk Factors of Breast Cancer: Connections and Mechanistic Insights
Sheetal Parida, Dipali Sharma
Cells (2020) Vol. 9, Iss. 5, pp. 1091-1091
Open Access | Times Cited: 61

Cholic acid and deoxycholic acid induce skeletal muscle atrophy through a mechanism dependent on TGR5 receptor
Johanna Ábrigo, Francisco González, Francisco Aguirre, et al.
Journal of Cellular Physiology (2020) Vol. 236, Iss. 1, pp. 260-272
Closed Access | Times Cited: 59

Oncobiosis and Microbial Metabolite Signaling in Pancreatic Adenocarcinoma
Borbála Kiss, Edit Mikó, Éva Sebő, et al.
Cancers (2020) Vol. 12, Iss. 5, pp. 1068-1068
Open Access | Times Cited: 51

Bile acid metabolism regulatory network orchestrates bone homeostasis
Tingwen Xiang, Zihan Deng, Chuan Yang, et al.
Pharmacological Research (2023) Vol. 196, pp. 106943-106943
Open Access | Times Cited: 18

The interactions between traditional Chinese medicine and gut microbiota in cancers: Current status and future perspectives
Xuejiao Wei, Fei Wang, Peng Tan, et al.
Pharmacological Research (2024) Vol. 203, pp. 107148-107148
Open Access | Times Cited: 8

Exploring the role of a novel postbiotic bile acid: Interplay with gut microbiota, modulation of the farnesoid X receptor, and prospects for clinical translation
Beibei Wang, Dong Woo Han, Xin‐Yue Hu, et al.
Microbiological Research (2024) Vol. 287, pp. 127865-127865
Closed Access | Times Cited: 7

Microbiomes in pancreatic cancer can be an accomplice or a weapon
Xiaoyu Guo, Pan Wang, Yuan Li, et al.
Critical Reviews in Oncology/Hematology (2024) Vol. 194, pp. 104262-104262
Closed Access | Times Cited: 6

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