Publications
96
Citations
4,448
Est. group size
—
Recurring co-author estimate
Active years
36
Publishing since 1990
Tatiana M. Oberyszyn's research focuses on how ultraviolet (UV) light causes skin cancer, particularly squamous cell carcinoma, and how various biological pathways and dietary or pharmacological compounds might prevent it. Her work examines factors like inflammation, immune suppression (e.g., in transplant patients), dopamine and adrenergic receptor signaling, and natural compounds such as black raspberry extract and tomatoes as potential protective agents. Much of this research uses mouse models exposed to UVB radiation to study premalignant skin lesion development and progression.
Publication output has been irregular over the last decade, with gaps in several years followed by a notable cluster of outputs in 2023, and an average of under 2 publications per year over the last 5 years.
Generated by claude-sonnet-5 from public bibliographic data · Jul 20, 2026
- Linear Support Vector Machine Model of an IR Spectral Library: Application to Skin Cancer
ACS Omega · 2025
- Data from Dopamine Prevents Ultraviolet B–induced Development and Progression of Premalignant Cutaneous Lesions through its D<sub>2</sub> Receptors
2023
- Supplementary Figures from Dopamine Prevents Ultraviolet B–induced Development and Progression of Premalignant Cutaneous Lesions through its D<sub>2</sub> Receptors
2023
- Data from Dopamine Prevents Ultraviolet B–induced Development and Progression of Premalignant Cutaneous Lesions through its D<sub>2</sub> Receptors
2023
- Supplementary Figures from Dopamine Prevents Ultraviolet B–induced Development and Progression of Premalignant Cutaneous Lesions through its D<sub>2</sub> Receptors
2023
- Data from Topical Treatment with Black Raspberry Extract Reduces Cutaneous UVB-Induced Carcinogenesis and Inflammation
2023
- Supplementary Figure 1 from Topical Treatment with Black Raspberry Extract Reduces Cutaneous UVB-Induced Carcinogenesis and Inflammation
2023
- Supplementary Figure 1 from Topical Treatment with Black Raspberry Extract Reduces Cutaneous UVB-Induced Carcinogenesis and Inflammation
2023
- Data from Topical Treatment with Black Raspberry Extract Reduces Cutaneous UVB-Induced Carcinogenesis and Inflammation
2023
- Suppression of beta 2 adrenergic receptor actions prevent UVB mediated cutaneous squamous cell tumorigenesis through inhibition of VEGF‐A induced angiogenesis
Molecular Carcinogenesis · 2021
- Dopamine Prevents Ultraviolet B–induced Development and Progression of Premalignant Cutaneous Lesions through its D2 Receptors
Cancer Prevention Research · 2021
- Cover Image, Volume 60, Issue 3
Molecular Carcinogenesis · 2021
- Tomatoes protect against development of UV-induced keratinocyte carcinoma via metabolomic alterations
Scientific Reports · 2017
- Transcriptional regulation of ataxia–telangiectasia and Rad3-related protein by activated p21-activated kinase-1 protects keratinocytes in UV-B-induced premalignant skin lesions
Oncogene · 2017
- 25‐Hydroxyvitamin D<sub>3</sub> and its C‐3 epimer are elevated in the skin and serum of Skh‐1 mice supplemented with dietary vitamin D<sub>3</sub>
Molecular Nutrition & Food Research · 2017
- Molecular Carcinogenesis×2
- Scientific Reports×1
- JCI Insight×1
- Pigment Cell & Melanoma Research×1
- ACS Omega×1
- Jiali Han
Medicine · Indiana University
- Raymond L. Konger
Medicine · Indiana University
- Hongmei Nan
Medicine · Indiana University
- Serge Koudoro
Biochemistry, Genetics and Molecular Biology · Indiana University
- Jennifer Wong-Roushar
Biochemistry, Genetics and Molecular Biology · Indiana 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