Steven Brody, MD

Medical School Department Internal Medicine
Research Program Mechanisms of Cancer Biology Program
Steven Brody

Researcher Background

Primary Academic Title

Professor of Medicine, Division of Pulmonary and Critical Care Medicine, WashU Medicine

Training

  • 1980 - 1983: Resident, Internal Medicine, University of Cincinnati, Cincinnati, OH
  • 1989 - 1993: Fellow, Pulmonary Medicine, Pulmonary Branch, National Heart, Lung and Blood Institute, Bethesda, MD
  • 1994 - 1995: Postdoctoral Fellow, Developmental Biology, WashU Medicine, St. Louis, MO

Education

  • 1980: MD, University of Michigan, Ann Arbor, MI

Research & Selected Publications

Research Interest

Airway epithelial cell differentiation in development and alterations that may occur during inflammatory diseases and carcinogenesis. We have used mouse and primary epithelial cell models to determine molecular steps required for normal differentiation and particulary investigated proteins required for ciliogenesis. Key words: epithelial, lung, airway, polarity, cilia, differentiation, mucus, mouse, cytoskeleton. From ICTS Profile: Our research focus is abnormalities of the airway epithelial cell differentiation that characterize lung diseases such as bronchitis, bronchiectasis, respiratory virus and bacterial infection. We are particularly interested in mechanisms of ciliated cell differentiation and cilia biogenesis. These studies are linked to investigation of the genetic basis of lung disease in patient populations with known or suspected defects in cilia, co-called ciliopathies.

Research Publications

Lymphatic disruption drives lung transplant fibrosis through interleukin-1-mediated hyaluronan accumulation.
Authors:

Shepherd HM, Li W, Kopecky BJ, one or more additional authors omitted Brody SL, one or more additional authors omitted Kreisel D

Journal & Year:

Sci Transl Med • 2026

AggreBots: Configuring CiliaBots through guided, modular tissue aggregation.
Authors:

Bhattaram D, Golestan K, Zhang X, one or more additional authors omitted Brody SL, one or more additional authors omitted Ren X

Journal & Year:

Sci Adv • 2025

Loss of an extensive ciliary connectome induces proteostasis and cell fate switching in a severe motile ciliopathy.
Authors:

Brody SL, Pan J, Huang T, one or more additional authors omitted Dutcher SK

Journal & Year:

bioRxiv • 2024