Chen Luo

622 total citations
33 papers, 466 citations indexed

About

Chen Luo is a scholar working on Molecular Biology, Oncology and Surgery. According to data from OpenAlex, Chen Luo has authored 33 papers receiving a total of 466 indexed citations (citations by other indexed papers that have themselves been cited), including 19 papers in Molecular Biology, 10 papers in Oncology and 8 papers in Surgery. Recurrent topics in Chen Luo's work include Pancreatic function and diabetes (8 papers), Glycosylation and Glycoproteins Research (5 papers) and Monoclonal and Polyclonal Antibodies Research (5 papers). Chen Luo is often cited by papers focused on Pancreatic function and diabetes (8 papers), Glycosylation and Glycoproteins Research (5 papers) and Monoclonal and Polyclonal Antibodies Research (5 papers). Chen Luo collaborates with scholars based in China, Canada and United States. Chen Luo's co-authors include Jun‐Li Liu, Luting Yu, Zhuobin Xu, Xuri Wu, Tao Duan, Fumou Sun, Min Wang, Juan Zhang, Yang Wang and Yijun Chen and has published in prestigious journals such as Journal of Biological Chemistry, Oncogene and Journal of Agricultural and Food Chemistry.

In The Last Decade

Chen Luo

32 papers receiving 461 citations

Peers — A (Enhanced Table)

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

Name h Career Trend Papers Cites
Chen Luo China 14 217 103 76 60 51 33 466
Simon Lord‐Dufour Canada 13 277 1.3× 134 1.3× 95 1.3× 40 0.7× 22 0.4× 24 723
Qamar Javed Pakistan 18 322 1.5× 56 0.5× 108 1.4× 99 1.6× 50 1.0× 53 780
Dina Johar Egypt 14 224 1.0× 105 1.0× 41 0.5× 69 1.1× 28 0.5× 28 557
Xiaona Li China 17 450 2.1× 56 0.5× 40 0.5× 57 0.9× 39 0.8× 61 717
Sik‐Won Choi South Korea 16 527 2.4× 222 2.2× 48 0.6× 65 1.1× 51 1.0× 46 788
Xiangyang Leng China 14 309 1.4× 60 0.6× 115 1.5× 65 1.1× 23 0.5× 62 622
Yunzhi Pan China 13 320 1.5× 117 1.1× 24 0.3× 52 0.9× 34 0.7× 30 543

Countries citing papers authored by Chen Luo

Since Specialization
Citations

This map shows the geographic impact of Chen Luo'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 Chen Luo with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Chen Luo more than expected).

Fields of papers citing papers by Chen Luo

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Chen Luo. 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 Chen Luo. The network helps show where Chen Luo may publish in the future.

Co-authorship network of co-authors of Chen Luo

This figure shows the co-authorship network connecting the top 25 collaborators of Chen Luo. A scholar is included among the top collaborators of Chen Luo 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 Chen Luo. Chen Luo 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.
Wu, Qingyun, Shibo Jiang, Jia Liu, et al.. (2025). Regenerating Family Protein 3α‐Loaded Responsive Hydrogel Accelerates Infected Diabetic Wound Healing. Advanced Healthcare Materials. 14(13). e2500403–e2500403. 3 indexed citations
2.
Yu, Jie, et al.. (2025). Mast cells: key players in digestive system tumors and their interactions with immune cells. Cell Death Discovery. 11(1). 8–8. 4 indexed citations
3.
Yu, Luting, Xiaonan Wang, Youjie Li, et al.. (2024). Reg2 treatment is protective but the induced Reg2 autoantibody is destructive to the islets in NOD mice. Biochemical Pharmacology. 227. 116444–116444. 1 indexed citations
4.
Mao, Li, et al.. (2024). Reg3A Overexpression Facilitates Hepatic Metastasis by Altering Cell Adhesion in LoVo Colon Cancer Cells. DNA and Cell Biology. 43(6). 298–310. 2 indexed citations
5.
Luo, Chen, Qi Liu, Zhuo Li, et al.. (2023). Ion channels and transporters regulate nutrient absorption in health and disease. Journal of Cellular and Molecular Medicine. 27(18). 2631–2642. 9 indexed citations
6.
Li, Zhenlin, et al.. (2023). Efficient snailase-based production of mogrol from Luo Han Guo extract in an aqueous-organic system. Enzyme and Microbial Technology. 165. 110212–110212. 2 indexed citations
7.
Li, Zhuo, Chen Luo, Ting Zhang, et al.. (2023). Function of TRP channels in monocytes/macrophages. Frontiers in Immunology. 14. 1187890–1187890. 10 indexed citations
8.
Yu, Luting, Jun‐Li Liu, Hao Sun, et al.. (2022). Recombinant Reg3α Prevents Islet β-Cell Apoptosis and Promotes β-Cell Regeneration. International Journal of Molecular Sciences. 23(18). 10584–10584. 11 indexed citations
9.
Xu, Yuncong, Shiqiang Liu, Zhenlin Li, et al.. (2022). Engineering of a UDP-Glycosyltransferase for the Efficient Whole-Cell Biosynthesis of Siamenoside I in Escherichia coli. Journal of Agricultural and Food Chemistry. 70(5). 1601–1609. 28 indexed citations
10.
Xu, Yuncong, Ling Zhao, Ling Chen, et al.. (2021). Selective enzymatic α-1,6- monoglucosylation of mogroside IIIE for the bio-creation of α-siamenoside I, a potential high-intensity sweetener. Food Chemistry. 359. 129938–129938. 15 indexed citations
11.
Du, Pei, Xiaonan Wang, Xueqing Zhang, et al.. (2020). Anti-tumor effect of single-chain antibody to Reg3a in colorectal cancer. Experimental Cell Research. 396(1). 112278–112278. 12 indexed citations
12.
Duan, Tao, Zhuobin Xu, Fumou Sun, et al.. (2019). HPA aptamer functionalized paclitaxel-loaded PLGA nanoparticles for enhanced anticancer therapy through targeted effects and microenvironment modulation. Biomedicine & Pharmacotherapy. 117. 109121–109121. 53 indexed citations
13.
Luo, Chen, Luting Yu, Mengqi Yang, et al.. (2016). Recombinant Reg3β protein protects against streptozotocin-induced β-cell damage and diabetes. Scientific Reports. 6(1). 35640–35640. 13 indexed citations
14.
Yu, Luting, Mengqi Yang, Jun‐Li Liu, et al.. (2015). Recombinant Reg3α protein protects against experimental acute pancreatitis in mice. Molecular and Cellular Endocrinology. 422. 150–159. 16 indexed citations
15.
Yang, Ye, Chunyan Gu, Chen Luo, Fei Li, & Min Wang. (2015). BUB1B promotes multiple myeloma cell proliferation through CDC20/CCNB axis. Medical Oncology. 32(3). 81–81. 18 indexed citations
16.
Wang, Ying, Dan Liu, Huan Zhao, et al.. (2013). Cordyceps sinensis polysaccharide CPS-2 protects human mesangial cells from PDGF-BB-induced proliferation through the PDGF/ERK and TGF-β1/Smad pathways. Molecular and Cellular Endocrinology. 382(2). 979–988. 26 indexed citations
18.
Luo, Chen, Bing Li, Lu Liu, et al.. (2012). Transcriptional activation of Reg2 and Reg3β genes by glucocorticoids and interleukin-6 in pancreatic acinar and islet cells. Molecular and Cellular Endocrinology. 365(2). 187–196. 13 indexed citations
19.
Wang, Juan, Hao Feng, Hua Xiang, et al.. (2005). Human Telomerase Reverse Transcriptase Immortalizes Bovine Lens Epithelial Cells and Suppresses Differentiation through Regulation of the ERK Signaling Pathway. Journal of Biological Chemistry. 280(24). 22776–22787. 28 indexed citations
20.
Feng, Hao, Hua Xiang, Yingwei Mao, et al.. (2004). Human Bcl-2 activates ERK signaling pathway to regulate activating protein-1, lens epithelium-derived growth factor and downstream genes. Oncogene. 23(44). 7310–7321. 36 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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