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Kyung-Tae Lim

Korea University · Medicine

About the Lab

Professor Kyung-Tae Lim's research lab specializes in human lung development and disease using cutting-edge single-cell and multi-omics technologies. The lab focuses on deciphering cellular heterogeneity, lineage commitment, and niche interactions in the developing lung, with particular emphasis on epithelial, mesenchymal, and immune cell dynamics. By integrating single-cell RNA sequencing, spatial transcriptomics, and organoid models, the lab uncovers molecular mechanisms underlying alveolar development, viral entry (e.g., SARS-CoV-2), and disease pathogenesis such as small cell lung cancer. Their work also pioneers genetic tools for functional studies in human tissue-derived organoids.

lung developmentsingle-cell genomicsorganoidsSARS-CoV-2 entrymulti-omics

Research Overview

Papers
36
Total Citations
1,345
Papers (5y)
23
Primary Field
Medicine

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
23total
2021
2022
2023
2024
2025
Citations per year (5y)
957total
20212022202320242025

Selected Papers

15
1
Review|373 citations·2021
Single-cell meta-analysis of SARS-CoV-2 entry genes across tissues and demographics
Christoph Muus, Malte D. Luecken, Gökcen Eraslan, Lisa Sikkema, Avinash Waghray, Graham Heimberg, Yoshihiko Kobayashi, Eeshit Dhaval Vaishnav, Ayshwarya Subramanian, Christopher S. Smillie, Karthik A. Jagadeesh, Thu Elizabeth Duong
SJR Q1Nature MedicineOA

-converting enzyme 2 (ACE2) and accessory proteases (TMPRSS2 and CTSL) are needed for severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) cellular entry, and their expression may shed light on viral tropism and impact across the body. We assessed the cell-type-specific expression of ACE2, TMPRSS2 and CTSL across 107 single-cell RNA-sequencing studies from different tissues. ACE2, TMPRSS2 and CTSL are coexpressed in specific subsets of respiratory epithelial cells in the nasal passages,

Infectious DiseasesMedicine
2
Preprint|268 citations·2020
Integrated analyses of single-cell atlases reveal age, gender, and smoking status associations with cell type-specific expression of mediators of SARS-CoV-2 viral entry and highlights inflammatory programs in putative target cells
Christoph Muus, Malte D. Luecken, Gökcen Eraslan, Avinash Waghray, Graham Heimberg, Lisa Sikkema, Yoshihiko Kobayashi, Eeshit Dhaval Vaishnav, Ayshwarya Subramanian, Christopher Smilie, Karthik A. Jagadeesh, Thu Elizabeth Duong
bioRxiv (Cold Spring Harbor Laboratory)OA

ABSTRACT The COVID-19 pandemic, caused by the novel coronavirus SARS-CoV-2, creates an urgent need for identifying molecular mechanisms that mediate viral entry, propagation, and tissue pathology. Cell membrane bound angiotensin-converting enzyme 2 (ACE2) and associated proteases, transmembrane protease serine 2 (TMPRSS2) and Cathepsin L (CTSL), were previously identified as mediators of SARS-CoV2 cellular entry. Here, we assess the cell type-specific RNA expression of ACE2 , TMPRSS2 , and CTSL

Infectious DiseasesMedicine
3
Article|199 citations·2022
A human fetal lung cell atlas uncovers proximal-distal gradients of differentiation and key regulators of epithelial fates
Peng He, Kyungtae Lim, Dawei Sun, J. Patrick Pett, Quitz Jeng, Krzysztof Polański, Ziqi Dong, Liam Bolt, Laura Richardson, Lira Mamanova, Monika Dabrowska, Anna Wilbrey-Clark
SJR Q1CellOA

We present a multiomic cell atlas of human lung development that combines single-cell RNA and ATAC sequencing, high-throughput spatial transcriptomics, and single-cell imaging. Coupling single-cell methods with spatial analysis has allowed a comprehensive cellular survey of the epithelial, mesenchymal, endothelial, and erythrocyte/leukocyte compartments from 5-22 post-conception weeks. We identify previously uncharacterized cell states in all compartments. These include developmental-specific se

Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
Article|91 citations·2023
Early human lung immune cell development and its role in epithelial cell fate
Josephine L. Barnes, Masahiro Yoshida, Peng He, Kaylee B. Worlock, Rik G.H. Lindeboom, Chenqu Suo, J. Patrick Pett, Anna Wilbrey-Clark, Emma Dann, Lira Mamanova, Laura Richardson, Krzysztof Polański
SJR Q1Science ImmunologyOA

Studies of human lung development have focused on epithelial and mesenchymal cell types and function, but much less is known about the developing lung immune cells, even though the airways are a major site of mucosal immunity after birth. An unanswered question is whether tissue-resident immune cells play a role in shaping the tissue as it develops in utero. Here, we profiled human embryonic and fetal lung immune cells using scRNA-seq, smFISH, and immunohistochemistry. At the embryonic stage, we

Pulmonary and Respiratory MedicineMedicine
5
Article|90 citations·2022
Organoid modeling of human fetal lung alveolar development reveals mechanisms of cell fate patterning and neonatal respiratory disease
Kyungtae Lim, Alex P. A. Donovan, Walfred W. C. Tang, Dawei Sun, Peng He, J. Patrick Pett, Sarah A. Teichmann, John C. Marioni, Kerstin B. Meyer, Andrea H. Brand, Emma L. Rawlins
SJR Q1Cell stem cellOA

Variation in lung alveolar development is strongly linked to disease susceptibility. However, underlying cellular and molecular mechanisms are difficult to study in humans. We have identified an alveolar-fated epithelial progenitor in human fetal lungs, which we grow as self-organizing organoids that model key aspects of cell lineage commitment. Using this system, we have functionally validated cell-cell interactions in the developing human alveolar niche, showing that Wnt signaling from differe

Pulmonary and Respiratory MedicineMedicine
6
Article|67 citations·2021
A functional genetic toolbox for human tissue-derived organoids
Dawei Sun, Lewis Evans, Francesca Perrone, Vanesa Sokleva, Kyungtae Lim, Saba Rezakhani, Matthias P. Lütolf, Matthias Zilbauer, Emma L. Rawlins
SJR Q1eLifeOA

Human organoid systems recapitulate key features of organs offering platforms for modelling developmental biology and disease. Tissue-derived organoids have been widely used to study the impact of extrinsic niche factors on stem cells. However, they are rarely used to study endogenous gene function due to the lack of efficient gene manipulation tools. Previously, we established a human foetal lung organoid system (Nikolić et al., 2017). Here, using this organoid system as an example, we have sys

Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Article|39 citations·2022
SOX9 maintains human foetal lung tip progenitor state by enhancing WNT and RTK signalling
Dawei Sun, Oriol Llorà-Batlle, Jelle van den Ameele, John C. Thomas, Peng He, Kyungtae Lim, Walfred W. C. Tang, Chu‐Fan Xu, Kerstin B. Meyer, Sarah A. Teichmann, John C. Marioni, Stephen P. Jackson
SJR Q1The EMBO JournalOA

The balance between self-renewal and differentiation in human foetal lung epithelial progenitors controls the size and function of the adult organ. Moreover, progenitor cell gene regulation networks are employed by both regenerating and malignant lung cells, where modulators of their effects could potentially be of therapeutic value. Details of the molecular networks controlling human lung progenitor self-renewal remain unknown. We performed the first CRISPRi screen in primary human lung organoi

Pulmonary and Respiratory MedicineMedicine
8
Article|37 citations·2012
Possible involvement of Wnt/β-catenin signaling pathway in hatching and trophectoderm differentiation of pig blastocysts
Kyungtae Lim, Mukesh Kumar Gupta, Sung Ho Lee, Yoon Hee Jung, Dong‐Wook Han, Hoon Taek Lee
SJR Q1Theriogenology
Public Health, Environmental and Occupational HealthMedicine
9
Article|35 citations·2015
Generation of integration-free induced hepatocyte-like cells from mouse fibroblasts
Jonghun Kim, Kee-Pyo Kim, Kyungtae Lim, Seung Chan Lee, Juyong Yoon, Guangqi Song, Seon In Hwang, Hans R. Schöler, Tobias Cantz, Dong‐Wook Han
SJR Q1Scientific ReportsOA

The ability to generate integration-free induced hepatocyte-like cells (iHeps) from somatic fibroblasts has the potential to advance their clinical application. Here, we have generated integration-free, functional, and expandable iHeps from mouse somatic fibroblasts. To elicit this direct conversion, we took advantage of an oriP/EBNA1-based episomal system to deliver a set of transcription factors, Gata4, Hnf1a, and Foxa3, to the fibroblasts. The established iHeps exhibit similar morphology, mar

Molecular BiologyBiochemistry, Genetics and Molecular Biology
10
Preprint|33 citations·2022
A human fetal lung cell atlas uncovers proximal-distal gradients of differentiation and key regulators of epithelial fates
Peng He, Kyungtae Lim, Dawei Sun, J. Patrick Pett, Quitz Jeng, Krzysztof Polański, Ziqi Dong, Liam Bolt, Laura Richardson, Lira Mamanova, Monika Dabrowska, Anna Wilbrey-Clark
bioRxiv (Cold Spring Harbor Laboratory)OA

Abstract We present a multiomic cell atlas of human lung development that combines single cell RNA and ATAC sequencing, high throughput spatial transcriptomics and single cell imaging. Coupling single cell methods with spatial analysis has allowed a comprehensive cellular survey of the epithelial, mesenchymal, endothelial and erythrocyte/leukocyte compartments from 5-22 post conception weeks. We identify new cell states in all compartments. These include developmental-specific secretory progenit

Molecular BiologyBiochemistry, Genetics and Molecular Biology
11
Article|19 citations·2025
A novel human fetal lung-derived alveolar organoid model reveals mechanisms of surfactant protein C maturation relevant to interstitial lung disease
Kyungtae Lim, Eimear N. Rutherford, Livia Delpiano, Peng He, Weimin Lin, Dawei Sun, Dick J. H. van den Boomen, James R. Edgar, Jae Hak Bang, Alexander V. Predeus, Sarah A. Teichmann, John C. Marioni
SJR Q1The EMBO JournalOA

Alveolar type 2 (AT2) cells maintain lung health by acting as stem cells and producing pulmonary surfactant. AT2 dysfunction underlies many lung diseases, including interstitial lung disease (ILD), in which some inherited forms result from the mislocalization of surfactant protein C (SFTPC) variants. Lung disease modeling and dissection of the underlying mechanisms remain challenging due to complexities in deriving and maintaining human AT2 cells ex vivo. Here, we describe the development of mat

Pulmonary and Respiratory MedicineMedicine
12
Article|13 citations·2018
Direct Conversion of Mouse Fibroblasts into Cholangiocyte Progenitor Cells
Kyungtae Lim, Jonghun Kim, Seon In Hwang, Ludi Zhang, Heonjong Han, Dasom Bae, Kee-Pyo Kim, Yi-Ping Hu, Hans R. Schöler, Insuk Lee, Lijian Hui, Dong‐Wook Han
SJR Q1Stem Cell ReportsOA

Disorders of the biliary epithelium, known as cholangiopathies, cause severe and irreversible liver diseases. The limited accessibility of bile duct precludes modeling of several cholangiocyte-mediated diseases. Therefore, novel approaches for obtaining functional cholangiocytes with high purity are needed. Previous work has shown that the combination of Hnf1β and Foxa3 could directly convert mouse fibroblasts into bipotential hepatic stem cell-like cells, termed iHepSCs. However, the efficiency

HepatologyMedicine
13
Article|10 citations·2010
Effect of 3-hydroxyflavone on pig embryos produced by parthenogenesis or somatic cell nuclear transfer
Sang Jun Uhm, Mukesh Kumar Gupta, Ziban Chandra Das, Kyungtae Lim, Ji Hoon Yang, Hoon Taek Lee
SJR Q2Reproductive Toxicology
Public Health, Environmental and Occupational HealthMedicine
14
Article|10 citations·2016
Induced neural stem cells from distinct genetic backgrounds exhibit different reprogramming status
Sung Min Kim, Kyungtae Lim, Tae Hwan Kwak, Seung Chan Lee, Jung Hyun Im, Sai Hali, Seon In Hwang, Dajeong Kim, Jeongho Hwang, Kee-Pyo Kim, Hak‐Jae Chung, Jeong Beom Kim
SJR Q3Stem Cell ResearchOA

Somatic cells could be directly converted into induced neural stem cells (iNSCs) by ectopic expression of defined transcription factors. However, the underlying mechanism of direct lineage transition into iNSCs is largely unknown. In this study, we examined the effect of genetic background on the direct conversion process into an iNSC state. The iNSCs from two different mouse strains exhibited the distinct efficiency of lineage conversion as well as clonal expansion. Furthermore, the expression

Molecular BiologyBiochemistry, Genetics and Molecular Biology
15
Preprint|9 citations·2023
A novel human fetal lung-derived alveolar organoid model reveals mechanisms of surfactant protein C maturation relevant to interstitial lung disease
Kyungtae Lim, Eimear N. Rutherford, Dawei Sun, Dick J. H. van den Boomen, James R. Edgar, Jae Hak Bang, Lydia E. Matesic, Joo‐Hyeon Lee, Paul J. Lehner, Stefan J. Marciniak, Emma L. Rawlins, Jennifer A. Dickens
bioRxiv (Cold Spring Harbor Laboratory)OA

Abstract Alveolar type 2 (AT2) cells maintain lung health by acting as stem cells and producing pulmonary surfactant 1–3 . AT2 dysfunction underlies many lung diseases including interstitial lung disease (ILD), in which some inherited forms result from mislocalisation of surfactant protein C (SFTPC) variants 4,5 . Disease modelling and dissection of mechanisms remains challenging due to complexities in deriving and maintaining AT2 cells ex vivo. Here, we describe the development of expandable ad

Pulmonary and Respiratory MedicineMedicine

Research Areas

Pulmonary and Respiratory MedicineMolecular BiologyPhysiologyInfectious DiseasesPublic Health, Environmental and Occupational HealthHepatology

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