David E. Cobrinik, MD, PhD

Professor of Research Ophthalmology and Cancer Biology

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Overview

Our research seeks to improve understanding of retinal development and its relationship to retinal diseases. This goal stems from my long interest in a childhood retinal tumor called retinoblastoma, a cancer that develops in response to inactivation of the RB1 tumor suppressor gene and loss of functional pRB protein. One of our goals is to understand why cells of the retina but not other tissues routinely form cancers in response to pRB loss, and to use this knowledge to develop more effective therapies for retinoblastoma and other RB1-mutant cancers. We recently found that retinoblastomas arise from cone photoreceptor precursors, and that cone precursor-specific proliferation-related signaling pathways collaborate with pRB loss to enable tumorigenesis. This finding suggests that cone precursors signaling pathways can be targeted to suppress retinoblastoma development. Current studies aim to 1) define developmental signaling pathways that sensitize retinal cells to Rb loss, 2) define the step-by-step events through which Rb loss converts normal retinal cells to malignant retinoblastomas, and 3) target novel vulnerabilities in the pRB-deficient cone precursor circuitry.

With our colleagues at the CHLA Vision Center we also model retinal development and diseases using human pluripotent stem cells. We can produce normal-appearing developing retinas in vitro, opening the door to previously unimagined vision research opportunities. Current efforts aim to define similarities and differences between human retina produced in vitro and in vivo, and to thereby improve the verisimilitude of the in vitro retinal development model.

Awards

  • International Society for Genetic Eye Diseases and Retinoblastoma: The Ellsworth Lecture, 2023
  • James S. McDonnell Foundation: James S. McDonnell Scholar, 1996
     – 1999
  • Susan G. Komen Breast Cancer Foundation: Susan G. Komen Foundation Postdoctoral Fellow, 1992
     – 1995
  • American Cancer Society: ACS Postdoctoral Fellow, 1989
     – 1992
  • American Cancer Society: Joseph S. Silber Pre-doctoral Fellow, 1983
  • Amherst College: Oscar E. Schotté Award for Biological Research, 1982

Education and Training

  • Amherst College, Amherst, MA — BA — 05/1982 — Biology
  • Case Western Reserve University, Cleveland, OH — MD, PhD — 05/1989 — Biochemistry, Medicine
  • Whitehead Institute, Cambridge, MA — Postdoctoral — 1995 — Cancer Biology

Publications

  • Episodic live imaging of cone photoreceptor maturation in GNAT2-EGFP retinal organoids. bioRxiv. 2023 Mar 01.. View in PubMed
  • Non-synonymous, synonymous, and non-coding nucleotide variants contribute to recurrently altered biological processes during retinoblastoma progression. Genes Chromosomes Cancer. 2023 05; 62(5):275-289.. View in PubMed
  • Benign Lobular Inner Nuclear Layer Proliferations of the Retina Associated with Congenital Hypertrophy of the Retinal Pigment Epithelium. Ophthalmology. 2023 03; 130(3):265-273.. View in PubMed
  • Characterizing DNA methylation signatures of retinoblastoma using aqueous humor liquid biopsy. Nat Commun. 2022 09 21; 13(1):5523.. View in PubMed
  • An immature, dedifferentiated, and lineage-deconstrained cone precursor origin of N-Myc-initiated retinoblastoma. Proc Natl Acad Sci U S A. 2022 07 12; 119(28):e2200721119.. View in PubMed
  • Characterization and staging of outer plexiform layer development in human retina and retinal organoids. Development. 2021 12 01; 148(23).. View in PubMed
  • Comprehensive Somatic Copy Number Analysis Using Aqueous Humor Liquid Biopsy for Retinoblastoma. Cancers (Basel). 2021 Jul 03; 13(13).. View in PubMed
  • Establishing the Clinical Utility of ctDNA Analysis for Diagnosis, Prognosis, and Treatment Monitoring of Retinoblastoma: The Aqueous Humor Liquid Biopsy. Cancers (Basel). 2021 Mar 13; 13(6).. View in PubMed
  • Extracellular vesicle-associated repetitive element DNAs as candidate osteosarcoma biomarkers. Sci Rep. 2021 01 08; 11(1):94.. View in PubMed
  • Reciprocal Induction of MDM2 and MYCN in Neural and Neuroendocrine Cancers. Front Oncol. 2020; 10:563156.. View in PubMed