Roman A. Zingarelli
Biochemistry, Genetics and Molecular Biology · The Ohio State University
Publications
22
Citations
486
Est. group size
~1
Recurring co-author estimate
Active years
9
Publishing since 2016
This researcher studies how obesity and cancer-related signaling contribute to gynecologic cancers, particularly ovarian and endometrial cancer. A major focus is on extracellular vesicles (exosomes) — tiny particles released by cells that can carry proteins and other molecules — and how they help tumors grow, resist treatment, and spread. The work combines lab techniques like microfluidic chips (small devices used to isolate and analyze cell-derived particles) with studies of drug treatments such as metformin and HO-3867.
Publication output was low and intermittent for several years (including gaps in 2021-2022), then rose sharply in 2023 before declining again in 2024.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Obesity-induced extracellular vesicles proteins drive the endometrial cancer pathogenesis: therapeutic potential of HO-3867 and Metformin
Oncogene · 2024
- Exploring the role of obesity-induced extracellular vesicles secretion and associated oncogenic proteins in endometrial cancer pathogenesis.
Research Square · 2024
- Abstract 3377: Exploring the role of obesity-induced exosome secretion and associated proteins in endometrial cancer pathogenesis: A roadmap for prevention through exosome inhibition
Cancer Research · 2024
- Abstract 4236: Obesity-associated endometrial cancer: Identifying the contributions of TMEM205 expression to the pathogenesis of disease
Cancer Research · 2023
- Data from A Microfluidic Chip Enables Isolation of Exosomes and Establishment of Their Protein Profiles and Associated Signaling Pathways in Ovarian Cancer
2023
- Microfluidics chip based exosome proteomic profiling from A Microfluidic Chip Enables Isolation of Exosomes and Establishment of Their Protein Profiles and Associated Signaling Pathways in Ovarian Cancer
2023
- Data from A Microfluidic Chip Enables Isolation of Exosomes and Establishment of Their Protein Profiles and Associated Signaling Pathways in Ovarian Cancer
2023
- Microfluidics chip based exosome proteomic profiling from A Microfluidic Chip Enables Isolation of Exosomes and Establishment of Their Protein Profiles and Associated Signaling Pathways in Ovarian Cancer
2023
- Microfluidics chip based exosome proteomic profiling from A Microfluidic Chip Enables Isolation of Exosomes and Establishment of Their Protein Profiles and Associated Signaling Pathways in Ovarian Cancer
2023
- Microfluidics chip based exosome proteomic profiling from A Microfluidic Chip Enables Isolation of Exosomes and Establishment of Their Protein Profiles and Associated Signaling Pathways in Ovarian Cancer
2023
- Microfluidics chip based exosome proteomic profiling from A Microfluidic Chip Enables Isolation of Exosomes and Establishment of Their Protein Profiles and Associated Signaling Pathways in Ovarian Cancer
2023
- Microfluidics chip based exosome proteomic profiling from A Microfluidic Chip Enables Isolation of Exosomes and Establishment of Their Protein Profiles and Associated Signaling Pathways in Ovarian Cancer
2023
- Prospective investigation of immunotherapy-induced fatigue by rest and stress echocardiography.
Journal of Clinical Oncology · 2020
- A Microfluidic Chip Enables Isolation of Exosomes and Establishment of Their Protein Profiles and Associated Signaling Pathways in Ovarian Cancer
Cancer Research · 2019
- Hypoxia-induced exosomes contribute to a more aggressive and chemoresistant ovarian cancer phenotype: a novel mechanism linking STAT3/Rab proteins
Oncogene · 2018
- Cancer Research×5
- Gynecologic Oncology×3
- Oncogene×2
- PLoS ONE×1
- JNCI Journal of the National Cancer Institute×1
- Kalpana Deepa Priya Dorayappan
Biochemistry, Genetics and Molecular Biology · The Ohio State University
- Federica Calore
Biochemistry, Genetics and Molecular Biology · The Ohio State University
- Colin L. Hisey
Biochemistry, Genetics and Molecular Biology · The Ohio State University
- Eduardo Reátegui
Biochemistry, Genetics and Molecular Biology · The Ohio State University
- Xinyu Wang
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.
Claim or correct this profile