Zishu Wang

2.0k total citations
80 papers, 911 citations indexed

About

Zishu Wang is a scholar working on Molecular Biology, Oncology and Cancer Research. According to data from OpenAlex, Zishu Wang has authored 80 papers receiving a total of 911 indexed citations (citations by other indexed papers that have themselves been cited), including 33 papers in Molecular Biology, 25 papers in Oncology and 17 papers in Cancer Research. Recurrent topics in Zishu Wang's work include Cancer Immunotherapy and Biomarkers (7 papers), RNA modifications and cancer (7 papers) and MicroRNA in disease regulation (7 papers). Zishu Wang is often cited by papers focused on Cancer Immunotherapy and Biomarkers (7 papers), RNA modifications and cancer (7 papers) and MicroRNA in disease regulation (7 papers). Zishu Wang collaborates with scholars based in China, Australia and Germany. Zishu Wang's co-authors include Qiong Wu, Yan Yang, Fang Su, Rui Wang, Yumei Li, Shukui Qin, Hao Bo, Feng Qian, Rongsheng Zheng and Yudong Hu and has published in prestigious journals such as Journal of the American Chemical Society, Nature Communications and Journal of Clinical Oncology.

In The Last Decade

Zishu Wang

74 papers receiving 902 citations

Peers — A (Enhanced Table)

Peers by citation overlap · career bar shows stage (early→late) cites · hero ref

Name h Career Trend Papers Cites
Zishu Wang China 17 484 300 222 89 83 80 911
Wenhao Guo China 20 500 1.0× 246 0.8× 237 1.1× 166 1.9× 88 1.1× 30 1.0k
Haohai Zhang China 17 372 0.8× 291 1.0× 201 0.9× 130 1.5× 87 1.0× 27 784
Jhin Jieh Lim Singapore 11 500 1.0× 187 0.6× 198 0.9× 65 0.7× 62 0.7× 15 769
Yulin Sun China 20 649 1.3× 375 1.3× 231 1.0× 163 1.8× 84 1.0× 56 1.0k
Praveen Radhakrishnan Germany 17 377 0.8× 325 1.1× 265 1.2× 84 0.9× 130 1.6× 39 924
Yanyan Shen China 21 824 1.7× 293 1.0× 219 1.0× 138 1.6× 120 1.4× 63 1.2k
Ke He China 18 403 0.8× 203 0.7× 134 0.6× 87 1.0× 90 1.1× 64 903
Peishan Hu China 16 564 1.2× 310 1.0× 172 0.8× 133 1.5× 98 1.2× 30 832
Guang Wu China 20 540 1.1× 273 0.9× 239 1.1× 90 1.0× 192 2.3× 48 927
Ronghua Wang China 16 519 1.1× 279 0.9× 382 1.7× 83 0.9× 106 1.3× 43 950

Countries citing papers authored by Zishu Wang

Since Specialization
Citations

This map shows the geographic impact of Zishu Wang's research. It shows the number of citations coming from papers published by authors working in each country. You can also color the map by specialization and compare the number of citations received by Zishu Wang with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Zishu Wang more than expected).

Fields of papers citing papers by Zishu Wang

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Zishu Wang. Nodes represent research fields, and links connect fields that are likely to share authors. Colored nodes show fields that tend to cite the papers produced by Zishu Wang. The network helps show where Zishu Wang may publish in the future.

Co-authorship network of co-authors of Zishu Wang

This figure shows the co-authorship network connecting the top 25 collaborators of Zishu Wang. A scholar is included among the top collaborators of Zishu Wang based on the total number of citations received by their joint publications. Widths of edges represent the number of papers authors have co-authored together. Node borders signify the number of papers an author published with Zishu Wang. Zishu Wang is excluded from the visualization to improve readability, since they are connected to all nodes in the network.

All Works

20 of 20 papers shown
1.
Zhang, Yuying, Cunpeng Nie, Zishu Wang, et al.. (2025). A spatial confinement biological heterogeneous cascade nanozyme composite hydrogel combined with nitric oxide gas therapy for enhanced treatment of psoriasis and diabetic wound. Chemical Engineering Journal. 507. 160629–160629. 17 indexed citations
2.
Liu, Yijun, Xuan Zhang, Qiuyan Guo, et al.. (2024). Targeting starvation therapy for diabetic bacterial infections with endogenous enzyme-triggered hyaluronan-modified nanozymes in the infection microenvironment. International Journal of Biological Macromolecules. 270(Pt 1). 132277–132277. 7 indexed citations
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Zhang, Xiaoxi, Yunbin Hu, Juan Li, et al.. (2023). Photoresponse of Solution-Synthesized Graphene Nanoribbon Heterojunctions on Diamond Indicating Phototunable Photodiode Polarity. Journal of the American Chemical Society. 145(16). 8757–8763. 10 indexed citations
6.
Wang, Yan, Zishu Wang, Zijie Qiu, et al.. (2023). Hydrogenation of Hexa-peri-hexabenzocoronene: An Entry to Nanographanes and Nanodiamonds. ACS Nano. 17(19). 18832–18842. 3 indexed citations
7.
Xiang, Zheng, et al.. (2023). Exploring the Correlation Between GPR176, a Potential Target Gene of Gastric Cancer, and Immune Cell Infiltration. Pharmacogenomics and Personalized Medicine. Volume 16. 519–535. 2 indexed citations
8.
Zhang, Yue, et al.. (2023). Prognostic Model and Tumor Immune Microenvironment Analysis of Complement-Related Genes in Gastric Cancer. Journal of Inflammation Research. Volume 16. 4697–4711. 1 indexed citations
9.
Guo, Ye, Zishu Wang, Huan Zhou, et al.. (2023). GFH018, a small molecular inhibitor targeting TGF-βRI kinase, in patients with advanced solid tumors: Final results of the phase I study.. Journal of Clinical Oncology. 41(16_suppl). e15117–e15117. 2 indexed citations
10.
Xiang, Zheng, Rong Zhang, Fan Shi, et al.. (2022). C5aR1 shapes a non-inflammatory tumor microenvironment and mediates immune evasion in gastric cancer. SHILAP Revista de lepidopterología. 23(3). 392–404. 5 indexed citations
11.
Zhu, Yue, Weiwei Liu, Zishu Wang, et al.. (2022). ARHGEF2/EDN1 pathway participates in ER stress-related drug resistance of hepatocellular carcinoma by promoting angiogenesis and malignant proliferation. Cell Death and Disease. 13(7). 652–652. 17 indexed citations
12.
Zhang, Xiaoxi, Zongping Chen, Yunbin Hu, et al.. (2022). Self-assembly and photoinduced fabrication of conductive nanographene wires on boron nitride. Nature Communications. 13(1). 442–442. 11 indexed citations
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Li, Huiyuan, et al.. (2022). PLXDC1 Can Be a Biomarker for Poor Prognosis and Immune Evasion in Gastric Cancer. Journal of Inflammation Research. Volume 15. 5439–5455. 2 indexed citations
15.
Chen, Tingting, Yong Wang, Yang Yang, et al.. (2019). Gramicidin inhibits human gastric cancer cell proliferation, cell cycle and induced apoptosis. Biological Research. 52(1). 57–57. 24 indexed citations
16.
Wang, Zishu, Kaikai Yu, Yudong Hu, et al.. (2019). Schisantherin A induces cell apoptosis through ROS/JNK signaling pathway in human gastric cancer cells. Biochemical Pharmacology. 173. 113673–113673. 46 indexed citations
17.
Wang, Rui, Long Cheng, Jun Xia, et al.. (2014). Gemcitabine Resistance is Associated with Epithelial-Mesenchymal Transition and Induction of HIF-1α in Pancreatic Cancer Cells. Current Cancer Drug Targets. 14(4). 407–417. 47 indexed citations
18.
Wu, Qiong, Lu Gan, Guanzhen Yu, et al.. (2013). Reduced group IVA phospholipase A2 expression is associated with unfavorable outcome for patients with gastric cancer. Medical Oncology. 30(1). 454–454. 10 indexed citations
19.
Wang, Rui, Shukui Qin, Yuqing Chen, et al.. (2012). Enhanced anti-tumor and anti-angiogenic effects of metronomic cyclophosphamide combined with Endostar in a xenograft model of human lung cancer. Oncology Reports. 28(2). 439–445. 13 indexed citations
20.
Wang, Baoyi, et al.. (1996). Specific effect of transient electromagnetic pulses on cell. Journal of Biomedical Engineering. 13(3). 133–135. 1 indexed citations

Rankless uses publication and citation data sourced from OpenAlex, an open and comprehensive bibliographic database. While OpenAlex provides broad and valuable coverage of the global research landscape, it—like all bibliographic datasets—has inherent limitations. These include incomplete records, variations in author disambiguation, differences in journal indexing, and delays in data updates. As a result, some metrics and network relationships displayed in Rankless may not fully capture the entirety of a scholar's output or impact.

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