Min-Jong Kang, MD, PhD, MPH
Associate Professor of Medicine (Pulmonary, Critical Care and Sleep Medicine)Cards
About
Titles
Associate Professor of Medicine (Pulmonary, Critical Care and Sleep Medicine)
Biography
My prior studies focused on the pathogenesis of cigarette-smoke (CS) -induced lung diseases such as chronic obstructive pulmonary disease (COPD), wherein we demonstrated that the IL-18 system plays an important role in the pathogenesis of CS-induced emphysematous lung destruction. These studies led me to question the effect of CS on innate immunity on the interaction between the host and microorganisms and, for this purpose, I had established a murine cigarette smoke and virus co-exposure model. These studies revealed important insight into the interaction between CS and the innate immunity resulting in a publication in the Journal of Clinical Investigation. In that study, we identified that CS smoke selectively augments respiratory antiviral innate immune responses via a MAVS-RLHs antiviral signaling pathway. To gain better understanding of the mechanisms, my laboratory is focusing on the role(s) of mitochondrial dysfunction and immune dysregulation in the setting of smoking exposure. By applying recent state-of-art knowledge of mitochondrial biology, our research goal is to establish mitochondrial dysfunction and mitochondrial injury/damage responses as a key event in the pathogenesis of COPD and CS-and virus-associated disorders and as such, to provide a new perspective of our understanding of COPD and CS-and virus-associated disorders.
Appointments
Pulmonary, Critical Care & Sleep Medicine
Associate Professor on TermPrimary
Other Departments & Organizations
- CPIRT - Center for Pulmonary Injury, Repair, and Therapeutics
- Internal Medicine
- Kang Laboratory
- Pulmonary, Critical Care & Sleep Medicine
- Yale Ventures
Education & Training
- PhD
- Seoul National University (2002)
- MPH
- Seoul National University (1999)
- MD
- Seoul National University (1991)
- BS
- Seoul National University (1987)
Research
Publications
2026
Epidermal growth factor receptor regulates Beclin-1 in hyperoxic acute lung injury
Harris Z, Korde A, Khoury J, Manning E, Stanley G, Shin Y, Mitchell K, von der Schulenburg A, Sun Y, Hu B, Shin H, Joerns J, Clark B, Placek L, Unutmaz D, Moldobaeva A, Sharma L, Sauler M, Rajagopalan G, Zhang X, Wang H, Ghaedi M, Kang M, Koff J. Epidermal growth factor receptor regulates Beclin-1 in hyperoxic acute lung injury. BMJ Open Respiratory Research 2026, 13: e003323. PMID: 41592865, PMCID: PMC12853440, DOI: 10.1136/bmjresp-2025-003323.Peer-Reviewed Original ResearchProximal Pulmonary Artery Stiffening as a Biomarker of Cardiopulmonary Aging
De Man R, Cai Z, Doddaballapur P, Guerrera N, Regan A, Lin L, Schwarz E, Justet A, Abu Hussein N, Di Palo J, Cavinato C, Raredon M, Heerdt P, Singh I, Yan X, Kang M, Bruns D, Lee P, Tellides G, Humphrey J, Kaminski N, Ramachandra A, Manning E. Proximal Pulmonary Artery Stiffening as a Biomarker of Cardiopulmonary Aging. Aging Cell 2026, 25: e70383. PMID: 41589414, PMCID: PMC12836046, DOI: 10.1111/acel.70383.Peer-Reviewed Original Research
2025
Dysregulated alveolar type 2 epithelial cell proteostasis promotes fibrogenic macrophage migration inhibitory factor–CD74 signaling
Kim S, Nouws J, Ruwisch J, Woodard G, Cooley J, Khoury J, Sun H, Doherty E, Piecychna M, Manning E, Kang M, Bruscia E, Wei H, Zhang Y, Yarovinsky T, Hwa J, Zacharias W, Ingram J, Lee C, Elias J, Kaminski N, Redente E, Herzog E, Prasse A, Bucala R, Sauler M. Dysregulated alveolar type 2 epithelial cell proteostasis promotes fibrogenic macrophage migration inhibitory factor–CD74 signaling. Science Translational Medicine 2025, 17: eadr2277. PMID: 41337540, DOI: 10.1126/scitranslmed.adr2277.Peer-Reviewed Original ResearchAlveolar Epithelial CellsAnimalsAntigens, Differentiation, B-LymphocyteBleomycinDisease Models, AnimalHistocompatibility Antigens Class IIHumansIdiopathic Pulmonary FibrosisIntramolecular OxidoreductasesLungMacrophage Migration-Inhibitory FactorsMacrophagesMaleMiceMice, Inbred C57BLMice, TransgenicProteasome Endopeptidase ComplexProteostasisSignal TransductionUbiquitin
2024
Eosinophilia is a favorable marker for pneumonia in chronic obstructive pulmonary disease
Gu K, Jung J, Kang M, Kim D, Choi H, Cho Y, Jang S, Lee C, Oh Y, Park J, Kim J. Eosinophilia is a favorable marker for pneumonia in chronic obstructive pulmonary disease. Tuberculosis And Respiratory Diseases 2024, 87: 465-472. PMID: 38710525, PMCID: PMC11468446, DOI: 10.4046/trd.2023.0174.Peer-Reviewed Original Research
2023
The serotype-specific prevalence of pneumococci in hospitalized pneumonia patients with COPD: a prospective, multi-center, cohort study
Kim J, Jung J, Kang M, Kim D, Choi H, Cho Y, Jang S, Lee C, Oh Y, Park J. The serotype-specific prevalence of pneumococci in hospitalized pneumonia patients with COPD: a prospective, multi-center, cohort study. The Korean Journal Of Internal Medicine 2023, 38: 714-724. PMID: 37586811, PMCID: PMC10493435, DOI: 10.3904/kjim.2023.152.Peer-Reviewed Original ResearchVISTA (PD-1H) Is a Crucial Immune Regulator to Limit Pulmonary Fibrosis.
Kim S, Adams T, Hu Q, Shin H, Chae G, Lee S, Sharma L, Kwon H, Lee F, Park H, Huh W, Manning E, Kaminski N, Sauler M, Chen L, Song J, Kim T, Kang M. VISTA (PD-1H) Is a Crucial Immune Regulator to Limit Pulmonary Fibrosis. American Journal Of Respiratory Cell And Molecular Biology 2023, 69: 22-33. PMID: 36450109, PMCID: PMC10324045, DOI: 10.1165/rcmb.2022-0219oc.Peer-Reviewed Original ResearchNLRX1 knockdown attenuates pro-apoptotic signaling and cell death in pulmonary hyperoxic acute injury
Kim H, Kim M, Kim E, Leem J, Baek S, Lee Y, Kim K, Kang M, Song T, Sohn M. NLRX1 knockdown attenuates pro-apoptotic signaling and cell death in pulmonary hyperoxic acute injury. Scientific Reports 2023, 13: 3441. PMID: 36859435, PMCID: PMC9975446, DOI: 10.1038/s41598-023-28206-x.Peer-Reviewed Original Research
2021
Nucleotide‐binding domain and leucine‐rich‐repeat‐containing protein X1 deficiency induces nicotinamide adenine dinucleotide decline, mechanistic target of rapamycin activation, and cellular senescence and accelerates aging lung‐like changes
Shin HJ, Kim S, Park H, Shin M, Kang I, Kang M. Nucleotide‐binding domain and leucine‐rich‐repeat‐containing protein X1 deficiency induces nicotinamide adenine dinucleotide decline, mechanistic target of rapamycin activation, and cellular senescence and accelerates aging lung‐like changes. Aging Cell 2021, 20: e13410. PMID: 34087956, PMCID: PMC8282248, DOI: 10.1111/acel.13410.Peer-Reviewed Original ResearchInterleukin-13으로 유도된 폐 병태생리에 대한 atorvastatin의 치료 효과
Mo Y, Bae B, Kim J, Kim R, Son K, Kang M, Lee C, Cho S, Kang H. Interleukin-13으로 유도된 폐 병태생리에 대한 atorvastatin의 치료 효과. Allergy Asthma & Respiratory Disease 2021, 9: 76-83. DOI: 10.4168/aard.2021.9.2.76.Peer-Reviewed Original Research
2020
Retrograde signaling by a mtDNA-encoded non-coding RNA preserves mitochondrial bioenergetics
Blumental-Perry A, Jobava R, Bederman I, Degar A, Kenche H, Guan B, Pandit K, Perry N, Molyneaux N, Wu J, Prendergas E, Ye Z, Zhang J, Nelson C, Ahangari F, Krokowski D, Guttentag S, Linden P, Townsend D, Miron A, Kang M, Kaminski N, Perry Y, Hatzoglou M. Retrograde signaling by a mtDNA-encoded non-coding RNA preserves mitochondrial bioenergetics. Communications Biology 2020, 3: 626. PMID: 33127975, PMCID: PMC7603330, DOI: 10.1038/s42003-020-01322-4.Peer-Reviewed Original Research
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Pulmonary, Critical Care & Sleep Medicine
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New Haven, CT 06520-8056
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