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Yongsung Ko

Pohang University of Science and Technology

About the Lab

Professor Yongsung Ko's research lab focuses on host-pathogen interactions, particularly in infectious diseases and asthma immunopathology. The lab investigates the role of extracellular vesicles (EVs) derived from Gram-negative bacteria, such as *Klebsiella pneumoniae*, as potential vaccine candidates to induce innate immunity and protect against lethal infections. Additionally, the lab explores the immunological mechanisms underlying severe asthma phenotypes, especially non-eosinophilic and virus-associated asthma, with a focus on cytokines (e.g., IFN-γ, IL-4, IL-13), growth factors (e.g., FGF2), and nitric oxide synthases. The lab also develops novel peptide-based therapeutics targeting angiogenesis in cancer, particularly VEGF inhibitors with enhanced stability and efficacy.

extracellular vesiclesasthma immunopathologybacterial vaccinesangiogenesis inhibitorscytokine signaling

Research Overview

Papers
8
Total Citations
211
Papers (5y)
8
Primary Field

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
8total
2010
2011
2013
2014
2015
Citations per year (5y)
211total
20102011201320142015

Selected Papers

8
1
Article|73 citations·2015
Vaccination with Klebsiella pneumoniae-derived extracellular vesicles protects against bacteria-induced lethality via both humoral and cellular immunity
이원희, 조현일, 홍성욱, 김광선, 고용송, 전성규

The emergence of multidrug-resistant Klebsiella pneumoniae highlights the need to develop preventive measures to ameliorate Klebsiella infections. Bacteria-derived extracellular vesicles (EVs) are spherical nanometer-sized proteolipids enriched with outer membrane proteins. Gram-negative bacteria-derived EVs have gained interest for use as nonliving complex vaccines. In the present study, we evaluated whether K. pneumoniae-derived EVs confer protection against bacteria-induced lethality. K. pneu

2
Article|56 citations·2014
Extracellular vesicles as emerging intercellular communicasomes
윤예진, 김오연, 고용송

All living cells release extracellular vesicles having pleiotropicfunctions in intercellular communication. Mammalian extracellularvesicles, also known as exosomes and microvesicles,are spherical bilayered proteolipids composed of variousbioactive molecules, including RNAs, DNAs, proteins, andlipids. Extracellular vesicles directly and indirectly control adiverse range of biological processes by transferring membraneproteins, signaling molecules, mRNAs, and miRNAs, andactivating receptors of rec

3
Article|20 citations·2011
Protective effects of basic fibroblast growth factor in the development of emphysema induced by interferon-γ
이병재, 김윤근, Hyung-Geun Moon, Tae-Seop Shin, 전성규, Eun-Young Lee, 고용송, 이춘근, Zhou Zhu, Jack A. Elias
http://kmbase.medric.or.kr/Main.aspx?d=KMBASE&m=VIEW&i=0620920110430040169

Recent clinical evidence indicates that the non-eosinophilic subtype of severe asthma is characterized by fixed airway obstruction, which may be related to emphysema. Transgenic studies have demonstrated that high levels of IFN-γ in the airways induce emphysema. Fibroblast growth factor 2 (FGF2), which is the downstream mediator of TGF-β, is important in wound healing. We investigated the role of FGF2 in IFN-γ-induced emphysema and the therapeutic effects of recombinant FGF2 in the prevention of

4
Article|19 citations·2010
IL-12-STAT4-IFN-γ axis is a key downstream pathway in the development of IL-13-mediated asthma phenotypes in a Th2 type asthma model
You-Sun Kim, Seng-Jin Choi, Jun-Pyo Choi, 전성규, 이병재, 고용송, 이춘근, Jack A. Elias, Yoon-Keun Kim, Sun-Young Oh, Zhou Zhu
http://kmbase.medric.or.kr/Main.aspx?d=KMBASE&m=VIEW&i=0620920100420080533

IL-4 and IL-13 are closely related cytokines that are produced by Th2 cells. However, IL-4 and IL-13 have different effects on the development of asthma phenotypes. Here, we evaluated downstream molecular mechanisms involved in the development of Th2 type asthma phenotypes. A murine model of Th2 asthma was used that involved intraperitoneal sensitization with an allergen (ovalbumin) plus alum and then challenge with ovalbumin alone. Asthma phenotypes, including airway-hyperresponsiveness (AHR),

5
Article|13 citations·2010
A serum-stable branched dimeric anti-VEGF peptide blocks tumor growth via anti-angiogenic activity
Jung-Wook Kim, 김태동, 홍복실, 김오연, Wan-Hee Yoon, Chi-Bom Chae, 고용송
http://kmbase.medric.or.kr/Main.aspx?d=KMBASE&m=VIEW&i=0620920100420070514

Angiogenesis is critical and indispensable for tumor progression. Since VEGF is known to play a central role in angiogenesis, the disruption of VEGF-VEGF receptor system is a promising target for anti-cancer therapy. Previously, we reported that a hexapeptide (RRKRRR, RK6) blocked the growth and metastasis of tumor by inhibiting VEGF binding to its receptors. In addition, dRK6, the D-form derivative of RK6, retained its biological activity with improved serum stability. In the present study, we

6
Article|12 citations·2010
Role of inducible nitric oxide synthase on the development of virus-associated asthma exacerbation which is dependent on Th1 and Th17 cell responses
Tae-Seop Shin, 이병재, You-Me Tae, 김유선, 전성규, 고용송, Dong-Chull Choi, 김윤근
http://kmbase.medric.or.kr/Main.aspx?d=KMBASE&m=VIEW&i=0620920100420100721

Asthma is characterized by airway inflammation induced by immune dysfunction to inhaled antigens. Although respiratory viral infections are the most common cause of asthma exacerbation, immunologic mechanisms underlying virus-associated asthma exacerbation are controversial. Clinical evidence indicates that nitric oxide (NO) levels in exhaled air are increased in exacerbated asthma patients compared to stable patients. Here, we evaluated the immunologic mechanisms and the role of NO synthases (N

7
Article|9 citations·2010
Aspirin attenuates the anti-inflammatory effects of theophylline via inhibition of cAMP production in mice with non-eosinophilic asthma
Hyung-Geun Moon, 김유선, 최준표, 최동식, 윤창민, 전성규, 고용송, 김윤근
http://kmbase.medric.or.kr/Main.aspx?d=KMBASE&m=VIEW&i=0620920100420010047

Theophylline is commonly used to treat severe asthma and chronic obstructive pulmonary disease (COPD)characterized by non-eosinophilic inflammation. Acetyl salicylic acid (ASA) is one of the most widely used medications worldwide, but up to 20% of patients with asthma experience aggravated respiratory symptoms after taking ASA. Here we evaluated the adverse effect of ASA on the therapeutic effect of theophylline in mice with non-eosinophilic asthma. A non-eosinophilic asthma mouse model was indu

8
Article|9 citations·2013
Acetyl salicylic acid inhibits Th17 airway inflammation via blockade of IL-6 and IL-17 positive feedback
문형근, Chil Sung Kang, 최준표, 최동식, Hyun Il Choi, 최용욱, 전성규, 유주연, Myoung Ho Jang, 고용송, 김윤근

T-helper (Th)17 cell responses are important for the development of neutrophilic inflammatory disease. Recently, we found that acetyl salicylic acid (ASA) inhibited Th17 airway inflammation in an asthma mouse model induced by sensitization with lipopolysaccharide (LPS)-containing allergens. To investigate the mechanism(s) of the inhibitory effect of ASA on the development of Th17 airway inflammation, a neutrophilic asthma mouse model was generated by intranasal sensitization with LPS plus ovalbu

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