Biography
Trinh's research has explored the role of DNA methylation (a specific change to DNA that affects gene expression) in cancer, early cancer detection, and prognosis for lung and esophageal cancers.
Trinh earned dual degrees from a combined medical and doctoral program at the Keck School of Medicine of the University of Southern California (USC). He went on to complete his general surgery residency at USC, followed by a fellowship in cardiothoracic surgery at UCSF. He joined the staff at UCSF in 2016.
Trinh is an active member of the American College of Surgeons, Society of Thoracic Surgeons and American Medical Association.
Education
Institution | Degree | Dept or School | End Date |
---|---|---|---|
UCSF Medical Center | Fellowship | Cardiothoracic Surgery | 2015 |
Los Angeles County/USC Medical Center | Residency | General Surgery | 2012 |
Keck School of Medicine of USC | 2005 |
Board Certifications
American Board of Surgery, General Surgery
American Board of Thoracic Surgery, Thoracic and Cardiac Surgery
Clinical Expertise
Program Affiliations
Thoracic Oncology Program, UCSF Helen Diller Family Comprehensive Cancer Center
Lung Transplantation, UCSF Heart and Lung Transplantation Program
San Francisco Veterans Administration Hospital
Research Interests
Research Pathways
Publications
- Reversal of TGFβ1-Driven Profibrotic State in Patients with Pulmonary Fibrosis.| | PubMed
- MethyLight and Digital MethyLight.| | PubMed
- Alterations in deoxyribonucleic acid (DNA) methylation patterns of Calca, Timp3, Mmp2, and Igf2r are associated with chronic cystitis in a cyclophosphamide-induced mouse model.| | PubMed
- MethyLight.| | PubMed
- DNA methylation analysis by digital bisulfite genomic sequencing and digital MethyLight.| | PubMed
- 2'-Deoxy-N4-[2-(4-nitrophenyl)ethoxycarbonyl]-5-azacytidine: a novel inhibitor of DNA methyltransferase that requires activation by human carboxylesterase 1.| | PubMed
- Dnmt1 deficiency leads to enhanced microsatellite instability in mouse embryonic stem cells.| | PubMed
- Thymidylate synthase: a novel genetic determinant of plasma homocysteine and folate levels.| | PubMed
- DNA methyltransferase deficiency modifies cancer susceptibility in mice lacking DNA mismatch repair.| | PubMed