About
I am a genomically literate biologist with expertise in functional genomics and molecular biology and a solid blend of scientific knowledge in interdisciplinary studies, for example, host-virus interactions and cancer biology. Throughout my undergraduate, graduate, and post-doctoral training I have displayed a sustained focus on genomic-centered research. I have the skills to plan, conduct, analyze and interpret high throughput sequencing experiments. In my first Post Doc at The Ohio State University, I have undertaken high-throughput experimental methods in genomics to investigate the epigenomic drivers of hormone-dependent cancers. Currently, I am a computational genomics Post Doc Fellow at the University of Cincinnati, primarily involved in high-throughput next-generation sequencing data analysis. My long-term goal is to become a thought leader in the field of genomics who leads innovative interdisciplinary high-impact research and translate these discoveries into impactful and novel therapeutics.
Employment
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University of Cincinnati Post Doc Fellow2022 - Present
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The Ohio State University Post Doc Researcher2018 - 2022
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (93)
- FIGURE 2 from African American Prostate Cancer Displays Quantitatively Distinct Vitamin D Receptor Cistrome-transcriptome Relationships Regulated by BAZ1A Save
- FIGURE 3 from African American Prostate Cancer Displays Quantitatively Distinct Vitamin D Receptor Cistrome-transcriptome Relationships Regulated by BAZ1A Save
- FIGURE 4 from African American Prostate Cancer Displays Quantitatively Distinct Vitamin D Receptor Cistrome-transcriptome Relationships Regulated by BAZ1A Save
- FIGURE 5 from African American Prostate Cancer Displays Quantitatively Distinct Vitamin D Receptor Cistrome-transcriptome Relationships Regulated by BAZ1A Save
- FIGURE 6 from African American Prostate Cancer Displays Quantitatively Distinct Vitamin D Receptor Cistrome-transcriptome Relationships Regulated by BAZ1A Save
- TABLE 1 from African American Prostate Cancer Displays Quantitatively Distinct Vitamin D Receptor Cistrome-transcriptome Relationships Regulated by BAZ1A Save
- TABLE 2 from African American Prostate Cancer Displays Quantitatively Distinct Vitamin D Receptor Cistrome-transcriptome Relationships Regulated by BAZ1A Save
- FIGURE 1 from African American Prostate Cancer Displays Quantitatively Distinct Vitamin D Receptor Cistrome-transcriptome Relationships Regulated by BAZ1A Save
- Supplementary Table 2 from African American Prostate Cancer Displays Quantitatively Distinct Vitamin D Receptor Cistrome-transcriptome Relationships Regulated by BAZ1A Save
- Supplementary Table 10 from African American Prostate Cancer Displays Quantitatively Distinct Vitamin D Receptor Cistrome-transcriptome Relationships Regulated by BAZ1A Save