Alexis Danekas
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Research Areas
Biomedical Subjects
Biography and Research Information
OverviewAI-generated summary
Alexis Danekas investigates the intersection of sulfur redox chemistry, cellular signal transduction, and proteostasis, seeking to understand and treat neurodegenerative diseases. Their research explores how oxidative stress impacts cellular processes and contributes to disease mechanisms. Danekas has also examined the effects of retinoids on gene expression in cutaneous T-cell lymphoma and the potential of phytochemicals, such as hypoxoside derived from H. rooperii, to inhibit inflammatory responses in macrophages. This work contributes to the broader understanding of disease mechanisms and potential therapeutic targets at the molecular level.
Metrics
- h-index: 1
- Publications: 4
- Citations: 16
Selected Publications
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77283 All-Trans Retinoic Acid Downregulates FOXP3 Expression in Cutaneous T-Cell Lymphoma (2026)
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Potent inhibition of LPS-induced nitric oxide production by the H. rooperii-derived phytochemical hypoxoside in murine macrophages (2022)
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At the intersection of sulfur redox chemistry, cellular signal transduction and proteostasis: A useful perspective from which to understand and treat neurodegeneration (2021)
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Retinoid Exposure Decreases Foxp3 Expression in Cutaneous T‐cell Lymphoma (2020)
Collaboration Network
Top Collaborators
- Retinoid Exposure Decreases Foxp3 Expression in Cutaneous T‐cell Lymphoma
- 77283 All-Trans Retinoic Acid Downregulates FOXP3 Expression in Cutaneous T-Cell Lymphoma
- Retinoid Exposure Decreases Foxp3 Expression in Cutaneous T‐cell Lymphoma
- 77283 All-Trans Retinoic Acid Downregulates FOXP3 Expression in Cutaneous T-Cell Lymphoma
- Retinoid Exposure Decreases Foxp3 Expression in Cutaneous T‐cell Lymphoma
- 77283 All-Trans Retinoic Acid Downregulates FOXP3 Expression in Cutaneous T-Cell Lymphoma
- At the intersection of sulfur redox chemistry, cellular signal transduction and proteostasis: A useful perspective from which to understand and treat neurodegeneration
- Potent inhibition of LPS-induced nitric oxide production by the H. rooperii-derived phytochemical hypoxoside in murine macrophages
- Retinoid Exposure Decreases Foxp3 Expression in Cutaneous T‐cell Lymphoma
- Retinoid Exposure Decreases Foxp3 Expression in Cutaneous T‐cell Lymphoma
- Retinoid Exposure Decreases Foxp3 Expression in Cutaneous T‐cell Lymphoma
- Retinoid Exposure Decreases Foxp3 Expression in Cutaneous T‐cell Lymphoma
- Retinoid Exposure Decreases Foxp3 Expression in Cutaneous T‐cell Lymphoma
- Retinoid Exposure Decreases Foxp3 Expression in Cutaneous T‐cell Lymphoma
- Retinoid Exposure Decreases Foxp3 Expression in Cutaneous T‐cell Lymphoma
- At the intersection of sulfur redox chemistry, cellular signal transduction and proteostasis: A useful perspective from which to understand and treat neurodegeneration
- At the intersection of sulfur redox chemistry, cellular signal transduction and proteostasis: A useful perspective from which to understand and treat neurodegeneration
- At the intersection of sulfur redox chemistry, cellular signal transduction and proteostasis: A useful perspective from which to understand and treat neurodegeneration
- At the intersection of sulfur redox chemistry, cellular signal transduction and proteostasis: A useful perspective from which to understand and treat neurodegeneration
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