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:

Regulation and inhibition of the DNA sensor cGAS
Jonny Hertzog, Jan Rehwinkel
EMBO Reports (2020) Vol. 21, Iss. 12
Open Access | Times Cited: 49

Showing 1-25 of 49 citing articles:

STING-Mediated Lung Inflammation and Beyond
Marie‐Louise Frémond, Yanick J. Crow
Journal of Clinical Immunology (2021) Vol. 41, Iss. 3, pp. 501-514
Open Access | Times Cited: 67

Emerging role of the cGAS-STING signaling pathway in autoimmune diseases: Biologic function, mechanisms and clinical prospection
Ying Hu, Bangjie Chen, Fan Yang, et al.
Autoimmunity Reviews (2022) Vol. 21, Iss. 9, pp. 103155-103155
Closed Access | Times Cited: 48

cGAMP-activated cGAS–STING signaling: its bacterial origins and evolutionary adaptation by metazoans
Dinshaw J. Patel, You Yu, Wei Xie
Nature Structural & Molecular Biology (2023) Vol. 30, Iss. 3, pp. 245-260
Open Access | Times Cited: 33

Polyamine metabolism controls B-to-Z DNA transition to orchestrate DNA sensor cGAS activity
Chunyuan Zhao, Yunjin Ma, Minghui Zhang, et al.
Immunity (2023) Vol. 56, Iss. 11, pp. 2508-2522.e6
Closed Access | Times Cited: 30

Understanding nucleic acid sensing and its therapeutic applications
Ling-Zu Kong, Seok‐min Kim, Chunli Wang, et al.
Experimental & Molecular Medicine (2023) Vol. 55, Iss. 11, pp. 2320-2331
Open Access | Times Cited: 28

The antiviral response triggered by the cGAS/STING pathway is subverted by the foot-and-mouth disease virus proteases
Miguel Ángel Sanz, Miryam Polo, Miguel Rodríguez‐Pulido, et al.
Cellular and Molecular Life Sciences (2024) Vol. 81, Iss. 1
Open Access | Times Cited: 7

Early signaling pathways in virus-infected cells
Delphine Bonhomme, Enzo Z. Poirier
Current Opinion in Virology (2024) Vol. 66, pp. 101411-101411
Open Access | Times Cited: 5

A central role of stimulator of interferon genes’ adaptor protein in defensive immune response
Anju Kaushal
Immunologic Research (2025) Vol. 73, Iss. 1
Closed Access

Synthesis and Pharmacological Evaluation of Tetrahydro-γ-carboline Derivatives as Potent Anti-inflammatory Agents Targeting Cyclic GMP–AMP Synthase
Jing Tan, Bing Wu, Tingting Chen, et al.
Journal of Medicinal Chemistry (2021) Vol. 64, Iss. 11, pp. 7667-7690
Closed Access | Times Cited: 38

New Insights in the Interplay Between African Swine Fever Virus and Innate Immunity and Its Impact on Viral Pathogenicity
Abraham Ayanwale, Sascha Trapp, Rodrigo Guabiraba, et al.
Frontiers in Microbiology (2022) Vol. 13
Open Access | Times Cited: 25

The interferon-inducible GTPase MxB promotes capsid disassembly and genome release of herpesviruses
Manutea Serrero, Virginie Girault, Sebastian Weigang, et al.
eLife (2022) Vol. 11
Open Access | Times Cited: 23

RNF144A promotes antiviral responses by modulating STING ubiquitination
Bo Yang, Jinyong Pei, Lu Chen, et al.
EMBO Reports (2023) Vol. 24, Iss. 12
Open Access | Times Cited: 14

Design, Synthesis, and Pharmacological Evaluation of Spiro[carbazole-3,3′-pyrrolidine] Derivatives as cGAS Inhibitors for Treatment of Acute Lung Injury
Mingjie Chen, Shuyue Lei, Zihua Zhou, et al.
Journal of Medicinal Chemistry (2024) Vol. 67, Iss. 8, pp. 6268-6291
Closed Access | Times Cited: 4

Targeting activation of cGAS-STING signaling pathway by engineered biomaterials for enhancing cancer immunotherapy
Jun‐Long Liang, Xiao‐Kang Jin, Xin‐Chen Deng, et al.
Materials Today (2024) Vol. 78, pp. 251-296
Closed Access | Times Cited: 4

Intervention of cGAS‒STING signaling in sterile inflammatory diseases
Ze Hong, Jiahao Mei, Hanli Guo, et al.
Journal of Molecular Cell Biology (2022) Vol. 14, Iss. 2
Open Access | Times Cited: 19

Intracellular mono-ADP-ribosyltransferases at the host–virus interphase
Bernhard Lüscher, Maud Verheirstraeten, Sarah Krieg, et al.
Cellular and Molecular Life Sciences (2022) Vol. 79, Iss. 6
Open Access | Times Cited: 16

Understanding the role of cGAS-STING signaling in ischemic stroke: a new avenue for drug discovery
Chandan Chauhan, Ravinder K. Kaundal
Expert Opinion on Drug Discovery (2023) Vol. 18, Iss. 10, pp. 1133-1149
Closed Access | Times Cited: 9

Therapeutic landscape in systemic lupus erythematosus: mtDNA activation of the cGAS-STING pathway
X Gu, Yong Chen, Kunyu Cao, et al.
International Immunopharmacology (2024) Vol. 133, pp. 112114-112114
Closed Access | Times Cited: 2

The role of cGAS in epithelial dysregulation in inflammatory bowel disease and gastrointestinal malignancies
A. Ramos, Nazih Bizri, Elizabeth Novak, et al.
Frontiers in Pharmacology (2024) Vol. 15
Open Access | Times Cited: 2

African swine fever viral proteins inhibiting cGAS-STING pathway and type-I interferon production
Jayeshbhai Chaudhari, Danh Cong Lai, Hiep L. X. Vu
Virology (2024) Vol. 602, pp. 110317-110317
Open Access | Times Cited: 2

Poxvirus cGAMP nucleases: Clues and mysteries from a stolen gene
Carlos Maluquer de Motes
PLoS Pathogens (2021) Vol. 17, Iss. 3, pp. e1009372-e1009372
Open Access | Times Cited: 19

The Many Ways to Deal with STING
Claire Coderch, Javier Arranz-Herrero, Estanislao Nistal‐Villán, et al.
International Journal of Molecular Sciences (2023) Vol. 24, Iss. 10, pp. 9032-9032
Open Access | Times Cited: 6

Activatable Mn2+-Armed nanoagonist augments antitumor immunity in colorectal cancer: A NIR-II Photonic neoadjuvant paradigm
Qing Liang, Jiayuan Chen, Shuai Hou, et al.
Biomaterials (2023) Vol. 300, pp. 122206-122206
Closed Access | Times Cited: 6

The UAF1–USP1 Deubiquitinase Complex Stabilizes cGAS and Facilitates Antiviral Responses
Zhongxia Yu, Tong Li, Chenkai Ma, et al.
The Journal of Immunology (2023) Vol. 212, Iss. 2, pp. 295-301
Closed Access | Times Cited: 5

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