Lu-Hai Wang - Profile and Journalist Details

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Lu-Hai Wang

Lu-Hai Wang

Verified

Associate Editor, Journal of Biomedical Science

Final Covers

Food & Drink,Health Lifestyle, Travel Arts & Entertainment, Parenting

Doesn’t Cover

Cannabis and infant and baby products.

Journalist Type

-

Seniority Positions

Medium Formats

-

Content

Total articles 7

  • Hydrogen sulfide coordinates glucose metabolism switch through destabilizing tetrameric pyruvate kinase M2 - Nature Communications

    By Zhong-Liang Wang, Lily Wang, Shu-Yi Lin, Lu-Hai Wang, Hui-Chun Cheng| Nature Verified AbstractMost cancer cells reprogram their glucose metabolic pathway from oxidative phosphorylation to aerobic glycolysis for energy production. By reducing enzyme activity of pyruvate kinase M2 (PKM2), cancer cells attain a greater fraction of glycolytic metabolites for macromolecule synthesis needed for rapid proliferation.

    By Zhong-Liang Wang, Lily Wang, Shu-Yi Lin, Lu-Hai Wang, Hui-Chun Cheng · Nature

    Aug. 28, 2024

  • CD24a knockout transforms the tumor microenvironment from cold to hot by promoting tumor-killing immune cell infiltration in a murine triple-negative breast cancer model

    By Shih-Hsuan Chan, Lu-Hai Wang, Hsuan-Jung Tseng| bioRxiv@ AbstractBackground: CD24 plays a crucial role not only in promoting tumor progression and metastasis but also in modulating macrophage-mediated anti-tumor immunity. However, the impact of tumor CD24 on the immune landscape of the tumor microenvironment (TME) remains poorly explored. Here, we investigated the role of CD24a, murine CD24 gene, in the progression and immune dynamics of the tumor microenvironment (TME) in the 4T1 murine model of triple-negative breast cancer (TNBC).

    By Shih-Hsuan Chan, Lu-Hai Wang, Hsuan-Jung Tseng · bioRxiv

    Jul. 17, 2024

  • Hydrogen sulfide coordinates glucose metabolism switch through destabilizing tetrameric pyruvate kinase M2 - Nature Communications

    By Zhong-Liang Wang, Lily Wang, Shu-Yi Lin, Lu-Hai Wang, Hui-Chun Cheng| Nature Verified AbstractMost cancer cells reprogram their glucose metabolic pathway from oxidative phosphorylation to aerobic glycolysis for energy production. By reducing enzyme activity of pyruvate kinase M2 (PKM2), cancer cells attain a greater fraction of glycolytic metabolites for macromolecule synthesis needed for rapid proliferation.

    By Zhong-Liang Wang, Lily Wang, Shu-Yi Lin, Lu-Hai Wang, Hui-Chun Cheng · Nature

    Aug. 28, 2024

As seen in

Company Info

Journal of Biomedical Science

Pittsburgh, Pennsylvania, United States

+1 412-268-2000