Naftali Kaminski, MD

Boehringer Ingelheim Pharmaceuticals, Inc. Professor of Medicine (Pulmonary); Section Chief (7/1/13 - present)

Departments & Organizations

Internal Medicine: Pulmonary, Critical Care & Sleep Medicine: Interstitial Lung Disease Program; Kaminski Lab

Pharmacology: Secondary Faculty

Center for RNA Science and Medicine, Yale

Office of Student Research

Stem Cell Center, Yale


Dr. Naftali Kaminski is, as of July1st, 2013, the Boehringer-Ingelheim Professor of Internal Medicine and Chief of Pulmonary, Critical Care and Sleep Medicine, at Yale School of Medicine. Before that he was a tenured professor of Medicine, Pathology, Computational Biology and Human Genetics, and the Dorothy P. and Richard P. Simmons Endowed Chair for Pulmonary Research at the University of Pittsburgh. Dr. Kaminski was the director of the Dorothy P. and Richard P. Simmons Center for Interstitial Lung Disease and the Lung, Blood and Vascular Center for Genomic Medicine at the division of Pulmonary, Allergy and Critical Care Medicine in University of Pittsburgh. Dr Kaminski received his medical degree from the Hebrew University - Hadassah Medical School in Jerusalem, Israel, and completed a residency in Internal Medicine at Hadassah Mount-Scopus University Hospital in Jerusalem, and a fellowship in pulmonary medicine at Sheba Medical Center in Tel-Hashomer, Israel. Dr Kaminski received his basic science training in Dean Sheppard's laboratory at the Lung Biology Center at UCSF and in functional genomics and microarray technology at the Functional Genomics laboratory at Roche Bioscience, Palo-Alto. After his fellowship in 2000, Dr. Kaminski was appointed head of Functional Genomics at Sheba Medical Center in Israel, before being recruited to head the Simmons Center at the University of Pittsburgh in 2002.

Dr. Kaminski's main research interests involve applying genomic approaches to elucidate basic mechanisms and improve diagnosis and treatment of Idiopathic Pulmonary Fibrosis (IPF), a chronic mostly lethal and currently untreatable scarring lung disease and other chronic lung diseases such Chronic Obstructive Pulmonary Disease (COPD), severe asthma and sarcoidosis. His group pioneered the application of high throughput genome scale transcript profiling in advanced lung disease. Among his key discoveries are: The discovery that matrix metalloproteases such as MMP7 and MMP19 have significant active roles in determining the lung phenotype in patients with IPF, demonstrating that microRNAs, a family of small non-coding RNAs, are differentially expressed in IPF, and that some of them such as microRNA Let-7 and mir-154 are mechanistically involved in lung fibrosis, and the discovery that the outcome of patients with IPF can be predicted based on the expression of peripheral blood proteins and genes, a finding with practical implication because of the need for risk stratification and transplant prioritization. Dr. Kaminski has a strong interest in integrating high throughput ‘omics’ data, such as genome scale DNA variants, coding and non-coding RNAs, microbiome and metabolome information with clinical information to generate tools for personalized medicine of lung diseases that are significantly more precise, predictive and patient centered than anything that is currently available.

Since completing his clinical training, Dr. Kaminski authored more than 150 research papers, review articles and book chapters and has given numerous invited talks at national and International conferences. Since he finished his fellowship in 2000, Dr. Kaminski has been consistently funded by NIH and is the PI of multiple NIH grants. Dr. Kaminski was a recipient of the Marvin I. Schwarz Award for contributions to patient care and research in pulmonary fibrosis from the Coalition for Pulmonary Fibrosis in 2010 and the University of Pittsburgh Innovator Award in 2012. In 2013, Dr. Kaminski is a recipient of the American Thoracic Society Recognition of Scientific Achievements award, as well the Helmholtz Institute International Fellow Award. Dr. Kaminski is active on the ATS and was the editor of “Gene Express”, a column on genomics in the initial days of the ATS Website, a member and chair of the Program Committee of the Assembly on Respiratory Cell and Molecular Biology of the ATS, and member of the ATS Research Advocacy Committee. He is currently an associate editor of the American Journal of Respiratory and Critical care Medicine, a member of multiple editorial boards and the chair-elect of the Assembly on Respiratory, Cell, and Molecular Biology at the American Thoracic Society.

Dr. Kaminski is passionate about training physician scientists for the challenges of 21st century medicine, and especially in the vocabulary, skills and technology of the new fields of genomics, bioinformatics, computational and system biology and their application to understanding the basic mechanisms that govern lung health and disease as well as to designed personalized medicine approaches and has mentored multiple MD and PhD scientists, of them many have productive and well funded independent career. .

Education & Training

MD Hebrew University (1989)
BM Hebrew University (1985)
Board Certification Israel Boards of Internal Medicine, Internal Medicine
Board Certification Israel Boards of Pulmonary Medicine, Pulmonary Disease

Honors & Recognition

  • Member of the Association of American Physicians (2015)

  • Helmholtz International Fellow Award Helmholtz Intstitute (2013)

  • Recognition for Scientific AchievementAmerican Thoracic Society (2013)

  • Innovator AwardUniversity Of Pittsburgh (2012)

  • Marvin I. Schwarz Research Award Coalition for Pulmonary Fibrosis (2010)

Professional Service

  • Deputy Editor Thorax - BMJ (2015)

  • Chair of Respiratory Cell and Molecular Biology Assembly American Throacic Society (2014)

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Contact Info

Naftali Kaminski, MD
Office Location
The Anlyan Center
300 Cedar Street, Ste S441D

New Haven, CT 06519
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Mailing Address
Pulmonary, Critical Care and Sleep Medicine300 Cedar Street, TAC-441 South
PO Box 208057

New Haven, CT 06520-8057

The Kaminski Lab