Michele R. Wing
Biochemistry, Genetics and Molecular Biology · The Ohio State University
Publications
101
Citations
3,552
Est. group size
~13
Recurring co-author estimate
Active years
26
Publishing since 2001
Michele R. Wing's work centers on cancer genomics, including the molecular characterization of gene mutations and structural variations (such as fibroblast growth factor receptor alterations and PD-L1/PD-L2 changes) that drive tumor development in cancers like cholangiocarcinoma and rhabdomyosarcoma. This research often involves developing tools to analyze complex gene expression signatures and mutation patterns for potential use in cancer diagnosis and treatment monitoring. Earlier work also explored basic cell signaling mechanisms involving proteins that regulate cell communication (G proteins and phospholipase C).
Publication output has been variable over the past decade, with a notable spike in 2023 followed by a return to more moderate annual output in recent years.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Real-world utilization of tissue-free ctDNA monitoring in patients with cholangiocarcinoma.
Journal of Clinical Oncology · 2026
- 439 Extracellular-in-frame deletions and kinase domain duplications are novel, gain-of-function mutations in fibroblast growth factor receptor genes in cancer
Journal of Clinical and Translational Science · 2024
- Data from A Novel Algorithm for Simplification of Complex Gene Classifiers in Cancer
2023
- Supplementary Figures 1 - 5, Tables 1 - 9 from A Novel Algorithm for Simplification of Complex Gene Classifiers in Cancer
2023
- Supplementary Figures 1 - 5, Tables 1 - 9 from A Novel Algorithm for Simplification of Complex Gene Classifiers in Cancer
2023
- Data from A Novel Algorithm for Simplification of Complex Gene Classifiers in Cancer
2023
- Suplpementary Figure 1 from Clinical Application of Prognostic Gene Expression Signature in Fusion Gene–Negative Rhabdomyosarcoma: A Report from the Children's Oncology Group
2023
- Supplementary Figure 2 from Clinical Application of Prognostic Gene Expression Signature in Fusion Gene–Negative Rhabdomyosarcoma: A Report from the Children's Oncology Group
2023
- Supplementary Figure 3 from Clinical Application of Prognostic Gene Expression Signature in Fusion Gene–Negative Rhabdomyosarcoma: A Report from the Children's Oncology Group
2023
- Supplemental Table and Figure Legends from Clinical Application of Prognostic Gene Expression Signature in Fusion Gene–Negative Rhabdomyosarcoma: A Report from the Children's Oncology Group
2023
- Supplementary Figure 2 from Clinical Application of Prognostic Gene Expression Signature in Fusion Gene–Negative Rhabdomyosarcoma: A Report from the Children's Oncology Group
2023
- Supplementary Figure 3 from Clinical Application of Prognostic Gene Expression Signature in Fusion Gene–Negative Rhabdomyosarcoma: A Report from the Children's Oncology Group
2023
- Supplemental Table and Figure Legends from Clinical Application of Prognostic Gene Expression Signature in Fusion Gene–Negative Rhabdomyosarcoma: A Report from the Children's Oncology Group
2023
- Suplpementary Figure 1 from Clinical Application of Prognostic Gene Expression Signature in Fusion Gene–Negative Rhabdomyosarcoma: A Report from the Children's Oncology Group
2023
- Data from Clinical Application of Prognostic Gene Expression Signature in Fusion Gene–Negative Rhabdomyosarcoma: A Report from the Children's Oncology Group
2023
- Cancer Research×6
- Journal of Clinical Oncology×5
- UNC Libraries×4
- JCO Precision Oncology×3
- Molecular Cancer Therapeutics×2
- Sameek Roychowdhury
Biochemistry, Genetics and Molecular Biology · The Ohio State University
- Julie W. Reeser
Biochemistry, Genetics and Molecular Biology · The Ohio State University
- Eric Samorodnitsky
Biochemistry, Genetics and Molecular Biology · The Ohio State University
- Amy Smith
Biochemistry, Genetics and Molecular Biology · The Ohio State University
- Thuy Dao
Biochemistry, Genetics and Molecular Biology · The Ohio State University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 19, 2026.
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