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:

Chemically programmed STING-activating nano-liposomal vesicles improve anticancer immunity
Xiaona Chen, Fanchao Meng, Yiting Xu, et al.
Nature Communications (2023) Vol. 14, Iss. 1
Open Access | Times Cited: 75

Showing 1-25 of 75 citing articles:

A Bioactive Injectable Hydrogel Regulates Tumor Metastasis and Wound Healing for Melanoma via NIR‐Light Triggered Hyperthermia
Xueyi Liu, Meifang Shen, Tiejun Bing, et al.
Advanced Science (2024) Vol. 11, Iss. 26
Open Access | Times Cited: 20

Ionizable STING-Activating Nanoadjuvants Enhance Tumor Immunogenicity and Potentiate Immunotherapy Efficacy in Solid Tumors
Shiyun Xian, Xiaona Chen, Sihang Ren, et al.
Cancer Research (2024) Vol. 84, Iss. 18, pp. 3044-3057
Closed Access | Times Cited: 16

Tetrasulfide bond boosts the anti-tumor efficacy of dimeric prodrug nanoassemblies
Shiyi Zuo, Tian Liu, Lingxiao Li, et al.
Cell Reports Medicine (2024) Vol. 5, Iss. 3, pp. 101432-101432
Open Access | Times Cited: 15

Inhalable nanovesicles loaded with a STING agonist enhance CAR-T cell activity against solid tumors in the lung
Tianchuan Zhu, Yuchen Xiao, Zhenxing Chen, et al.
Nature Communications (2025) Vol. 16, Iss. 1
Open Access | Times Cited: 2

Mannosylated STING Agonist Drugamers for Dendritic Cell-Mediated Cancer Immunotherapy
Dinh Chuong Nguyen, Kefan Song, Simbarashe Jokonya, et al.
ACS Central Science (2024) Vol. 10, Iss. 3, pp. 666-675
Open Access | Times Cited: 13

Rational design of a nonclassical liposomal nanoscale drug delivery system for innovative cancer therapy
Chunjie Wang, Xiaoqi Sun, Liangzhu Feng, et al.
BMEMat (2024) Vol. 2, Iss. 3
Open Access | Times Cited: 13

mRNA Vaccines Contribute to Innate and Adaptive Immunity to Enhance Immune Response In Vivo
Qiannan Cao, Huapan Fang, Huayu Tian
Biomaterials (2024) Vol. 310, pp. 122628-122628
Closed Access | Times Cited: 12

Metal-Phenolic Vehicles Potentiate Cycle-Cascade Activation of Pyroptosis and cGAS-STING Pathway for Tumor Immunotherapy
Weikai Sun, Hong Wang, Yafei Qi, et al.
ACS Nano (2024) Vol. 18, Iss. 34, pp. 23727-23740
Closed Access | Times Cited: 12

Nanomaterial-mediated modulation of the cGAS-STING signaling pathway for enhanced cancer immunotherapy
Yaxin Wang, Yunmeng Liu, Jincheng Zhang, et al.
Acta Biomaterialia (2024) Vol. 176, pp. 51-76
Closed Access | Times Cited: 10

Delivery of mRNA Encoding Interleukin-12 and a Stimulator of Interferon Genes Agonist Potentiates Antitumor Efficacy through Reversing T Cell Exhaustion
Bin Wang, Maoping Tang, Qijing Chen, et al.
ACS Nano (2024) Vol. 18, Iss. 24, pp. 15499-15516
Closed Access | Times Cited: 9

Emerging mechanisms and implications of cGAS-STING signaling in cancer immunotherapy strategies
Jiawen Zhang, Sihui Yu, Qiao Peng, et al.
Cancer Biology and Medicine (2024), pp. 1-20
Open Access | Times Cited: 8

A next-generation STING agonist MSA-2: From mechanism to application
Junhan Yang, Zhenyu Luo, Jingyi Ma, et al.
Journal of Controlled Release (2024) Vol. 371, pp. 273-287
Closed Access | Times Cited: 8

Spatiotemporal release of non-nucleotide STING agonist and AKT inhibitor from implantable 3D-printed scaffold for amplified cancer immunotherapy
Haixia Wang, Zheng Liu, Youqiang Fang, et al.
Biomaterials (2024) Vol. 311, pp. 122645-122645
Closed Access | Times Cited: 8

Manganese-coordinated nanoparticle with high drug-loading capacity and synergistic photo-/immuno-therapy for cancer treatments
Han Chen, Haijing Qu, Yuqing Pan, et al.
Biomaterials (2024) Vol. 312, pp. 122745-122745
Closed Access | Times Cited: 8

Enhanced Antitumor Efficacy of STING Agonist MSA-2 by Lipid Nanoparticles Delivering Circular IL-23 mRNA and Platinum-Modified MSA-2 Combination
He Tian, Yating Li, Weiqi Li, et al.
Materials Today Bio (2025) Vol. 30, pp. 101446-101446
Open Access | Times Cited: 1

Advanced Polymeric Nanoparticles for Cancer Immunotherapy: Materials Engineering, Immunotherapeutic Mechanism and Clinical Translation
Wencong Jia, Ye Wu, Yujie Xie, et al.
Advanced Materials (2025)
Closed Access | Times Cited: 1

Pyridinium Rotor Strategy toward a Robust Photothermal Agent for STING Activation and Multimodal Image-Guided Immunotherapy for Triple-Negative Breast Cancer
Shipeng Ning, Ping Shangguan, Xinyan Zhu, et al.
Journal of the American Chemical Society (2025) Vol. 147, Iss. 9, pp. 7433-7444
Open Access | Times Cited: 1

Targeting STING in cancer: Challenges and emerging opportunities
Kexin Zhao, Jiaojiao Huang, Yue Zhao, et al.
Biochimica et Biophysica Acta (BBA) - Reviews on Cancer (2023) Vol. 1878, Iss. 6, pp. 188983-188983
Closed Access | Times Cited: 20

Pharmacological Polarization of Tumor‐Associated Macrophages Toward a CXCL9 Antitumor Phenotype
Noah Enbergs, Elias A. Halabi, Anne‐Gaëlle Goubet, et al.
Advanced Science (2024) Vol. 11, Iss. 15
Open Access | Times Cited: 6

Amino Acid Metabolism-Regulated Nanomedicine for Enhanced Tumor Immunotherapy through Synergistic Regulation of Immune Microenvironment
Xiuying Duan, Yi‐Lei Zhao, Houyang Hu, et al.
Biomaterials Research (2024) Vol. 28
Open Access | Times Cited: 5

Syringeable Near-Infrared Light-Activated In Situ Immunogenic Hydrogel Boosts the Cancer-Immunity Cycle to Enhance Anticancer Immunity
Yang Fu, Xiaoxiao Zhu, Lulu Ren, et al.
ACS Nano (2024) Vol. 18, Iss. 23, pp. 14877-14892
Closed Access | Times Cited: 5

Application of nanoparticles with activating STING pathway function in tumor synergistic therapy
Yi Yang, Yaning Fang, Xin‐Yu Du, et al.
International Immunopharmacology (2025) Vol. 148, pp. 114013-114013
Closed Access

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