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Sung Kyun Lee

Sungkyunkwan University · Medicine

About the Lab

Professor Sung Kyun Lee's research lab focuses on molecular parasitology and infectious disease epidemiology, with a primary emphasis on malaria, particularly *Plasmodium vivax* and drug-resistant *Plasmodium falciparum*. The lab investigates molecular mechanisms of parasite transmission, including reticulocyte-binding proteins and tryptophan-rich antigens, to identify vaccine candidates and understand immune responses. It also conducts field-based surveillance to detect asymptomatic and drug-resistant malaria infections in endemic regions, especially in Myanmar, supporting elimination strategies through advanced molecular diagnostics and longitudinal studies.

malariaPlasmodium vivaxdrug resistanceasymptomatic infectionvaccine antigens

Research Overview

Papers
57
Total Citations
632
Papers (5y)
12
Primary Field
Medicine

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
12total
2021
2022
2023
2024
2025
Citations per year (5y)
65total
20212022202320242025

Selected Papers

15
1
Article|92 citations·2014
Comparison of Microscopy, Nested-PCR, and Real-Time-PCR Assays Using High-Throughput Screening of Pooled Samples for Diagnosis of Malaria in Asymptomatic Carriers from Areas of Endemicity in Myanmar
Bo Wang, Soe-Soe Han, Cho Cho, Jin‐Hee Han, Yang Cheng, Seong‐Kyun Lee, Gawrie NL Galappaththy, Krongthong Thimasarn, Myat Thu Soe, Htet Wai Oo, Myat Phone Kyaw, Eun‐Taek Han
SJR Q1Journal of Clinical MicrobiologyOA

Asymptomatic infection is an important obstacle for controlling disease in countries where malaria is endemic. Because asymptomatic carriers do not seek treatment for their infections, they can have high levels of gametocytes and constitute a reservoir available for new infection. We employed a sample pooling/PCR-based molecular detection strategy for screening malaria infection in residents from areas of Myanmar where malaria is endemic. Blood samples (n = 1,552) were collected from residents i

Public Health, Environmental and Occupational HealthMedicine
2
Article|69 citations·2017
Clinical and molecular surveillance of drug resistant vivax malaria in Myanmar (2009–2016)
Myat Htut Nyunt, Jin‐Hee Han, Bo Wang, Khin Myo Aye, Kyin Hla Aye, Seong‐Kyun Lee, Ye Htut, Myat Phone Kyaw, Kay Thwe Han, Eun‐Taek Han
SJR Q1Malaria JournalOA

BACKGROUND: One of the major challenges for control and elimination of malaria is ongoing spread and emergence of drug resistance. While epidemiology and surveillance of the drug resistance in falciparum malaria is being explored globally, there are few studies on drug resistance vivax malaria. METHODS: To assess the spread of drug-resistant vivax malaria in Myanmar, a multisite, prospective, longitudinal study with retrospective analysis of previous therapeutic efficacy studies, was conducted.

Public Health, Environmental and Occupational HealthMedicine
3
Article|52 citations·2016
Identification of a reticulocyte-specific binding domain of Plasmodium vivax reticulocyte-binding protein 1 that is homologous to the PfRh4 erythrocyte-binding domain
Jin‐Hee Han, Seong‐Kyun Lee, Bo Wang, Fauzi Muh, Myat Htut Nyunt, Sunghun Na, Kwon‐Soo Ha, Seok‐Ho Hong, Won Sun Park, Jetsumon Sattabongkot, Takafumi Tsuboi, Eun‐Taek Han
SJR Q1Scientific ReportsOA

The Plasmodium vivax reticulocyte-binding protein (RBP) family was identified based on the annotation of adhesive ligands in the P. vivax genome. Reticulocyte-specific interactions with the PvRBPs (PvRBP1 and PvRBP2) were previously reported. Plasmodium falciparum reticulocyte-binding protein homologue 4 (PfRh4, a homologue of PvRBP1) was observed to possess erythrocyte-binding activity via complement receptor 1 on the erythrocyte surface. However, the reticulocyte-binding mechanisms of P. vivax

Public Health, Environmental and Occupational HealthMedicine
4
Article|39 citations·2020
Cross-species reactivity of antibodies against Plasmodium vivax blood-stage antigens to Plasmodium knowlesi
Fauzi Muh, Namhyeok Kim, Myat Htut Nyunt, Moh Egy Rahman Firdaus, Jin‐Hee Han, Mohammad Rafiul Hoque, Seong‐Kyun Lee, Jihoon Park, Robert W. Moon, Yee Ling Lau, Osamu Kaneko, Eun‐Taek Han
SJR Q1PLoS neglected tropical diseasesOA

Malaria is caused by multiple different species of protozoan parasites, and interventions in the pre-elimination phase can lead to drastic changes in the proportion of each species causing malaria. In endemic areas, cross-reactivity may play an important role in the protection and blocking transmission. Thus, successful control of one species could lead to an increase in other parasite species. A few studies have reported cross-reactivity producing cross-immunity, but the extent of cross-reactiv

Public Health, Environmental and Occupational HealthMedicine
5
Article|37 citations·2015
Immunoprofiling of the Tryptophan-Rich Antigen Family in Plasmodium vivax
Bo Wang, Feng Lu, Yang Cheng, Jun‐Hu Chen, Hye‐Yoon Jeon, Kwon‐Soo Ha, Jun Cao, Myat Htut Nyunt, Jin‐Hee Han, Seong‐Kyun Lee, Myat Phone Kyaw, Jetsumon Sattabongkot
SJR Q1Infection and ImmunityOA

Tryptophan-rich antigens (TRAgs) are an antigen family that has been identified in human and rodent malaria parasites. TRAgs have been proposed as candidate antigens for potential vaccines. The Plasmodium vivax TRAg (PvTRAg) family includes 36 members. Each PvTRAg contains a tryptophan-rich (TR) domain in the C-terminal region. In this study, we recombinantly expressed all 36 PvTRAgs using a cell-free expression system, and, for the first time, profiled the IgG antibody responses against all PvT

Public Health, Environmental and Occupational HealthMedicine
6
Article|31 citations·2017
Molecular Evidence of Drug Resistance in Asymptomatic Malaria Infections, Myanmar, 2015
Myat Htut Nyunt, Thinzar Shein, Ni Ni Zaw, Soe Soe Han, Fauzi Muh, Seong‐Kyun Lee, Jin‐Hee Han, Kyaw Zin Thant, Eun‐Taek Han, Myat Phone Kyaw
SJR Q1Emerging infectious diseasesOA

Artemisinin resistance containment in Myanmar was initiated in 2011 after artemisinin-resistant Plasmodium falciparum malaria was reported. Molecular evidence suggests that asymptomatic malaria infections harboring drug resistance genes are present among residents of the Myanmar artemisinin resistance containment zone. This evidence supports efforts to eliminate these hidden infections.

Public Health, Environmental and Occupational HealthMedicine
7
Article|30 citations·2018
Cross-species analysis of apical asparagine-rich protein of Plasmodium vivax and Plasmodium knowlesi
Fauzi Muh, Md Atique Ahmed, Jin‐Hee Han, Myat Htut Nyunt, Seong‐Kyun Lee, Yee Ling Lau, Osamu Kaneko, Eun‐Taek Han
SJR Q1Scientific ReportsOA

The Plasmodium falciparum apical asparagine (Asn)-rich protein (AARP) is one of malarial proteins, and it has been studied as a candidate of malaria subunit vaccine. Basic characterization of PvAARP has been performed with a focus on its immunogenicity and localization. In this study, we further analyzed the immunogenicity of PvAARP, focusing on the longevity of the antibody response, cross-species immunity and invasion inhibitory activity by using the primate malaria parasite Plasmodium knowles

Public Health, Environmental and Occupational HealthMedicine
8
Article|22 citations·2017
Immunogenicity of the Plasmodium vivax merozoite surface protein 1 paralog in the induction of naturally acquired antibody and memory B cell responses
Hay Man Kyaw Min, Siriruk Changrob, Phyu Thwe Soe, Jin Han, Fauzi Muh, Seong‐Kyun Lee, Patchanee Chootong, Eun‐Taek Han
SJR Q1Malaria JournalOA

BACKGROUND: The Plasmodium vivax merozoite surface protein 1 paralog (PvMSP1P-19) is a glycosylphosphatidylinositol (GPI)-anchored blood-stage protein that is expressed on the merozoite surface. It is proposed as a blood-stage vaccine candidate against P. vivax because of its ability to induce immune responses upon natural P. vivax exposure and in immunized animals. This study aimed to demonstrate the presence of inhibitory antibodies and memory B cell responses to the PvMSP1P-19 antigen during

Public Health, Environmental and Occupational HealthMedicine
9
Article|21 citations·2018
Diversity pattern of Duffy binding protein sequence among Duffy-negatives and Duffy-positives in Sudan
Mohammad Rafiul Hoque, Mohammed Elfaki, Md Atique Ahmed, Seong‐Kyun Lee, Fauzi Muh, Musab M. Ali Albsheer, Muzamil Mahdi Abdel Hamid, Eun‐Taek Han
SJR Q1Malaria JournalOA

BACKGROUND: Vivax malaria is a leading public health concern worldwide. Due to the high prevalence of Duffy-negative blood group population, Plasmodium vivax in Africa historically is less attributable and remains a neglected disease. The interaction between Duffy binding protein and its cognate receptor, Duffy antigen receptor for chemokine plays a key role in the invasion of red blood cells and serves as a novel vaccine candidate against P. vivax. However, the polymorphic nature of P. vivax Du

Public Health, Environmental and Occupational HealthMedicine
10
Article|18 citations·2024
Complement receptor 1 is the human erythrocyte receptor for Plasmodium vivax erythrocyte binding protein
Seong‐Kyun Lee, Cécile Crosnier, Paola Carolina Valenzuela Leon, Brian Dizon, John P. Atkinson, Jianbing Mu, Gavin J. Wright, Eric Calvo, Karthigayan Gunalan, Louis H. Miller
SJR Q1Proceedings of the National Academy of SciencesOA

The discovery that Africans were resistant to infection by Plasmodium vivax ( P. vivax ) led to the conclusion that P. vivax invasion relied on the P. vivax Duffy Binding Protein (PvDBP) interacting with the Duffy Antigen Receptor for Chemokines (DARC) expressed on erythrocytes. However, the recent reporting of P. vivax infections in DARC-negative Africans suggests that the parasite might use an alternate invasion pathway to infect DARC-negative reticulocytes. To identify the parasite ligands an

ImmunologyImmunology and Microbiology
11
Article|15 citations·2015
Characterization of Plasmodium vivax Early Transcribed Membrane Protein 11.2 and Exported Protein 1
Yang Cheng, Feng Lu, Seong‐Kyun Lee, Deok-Hoon Kong, Kwon‐Soo Ha, Bo Wang, Jetsumon Sattabongkot, Takafumi Tsuboi, Eun-Taek Han
SJR Q1PLoS ONEOA

In Plasmodium, the membrane of intracellular parasites is initially formed during invasion as an invagination of the red blood cell surface, which forms a barrier between the parasite and infected red blood cells in asexual blood stage parasites. The membrane proteins of intracellular parasites of Plasmodium species have been identified such as early-transcribed membrane proteins (ETRAMPs) and exported proteins (EXPs). However, there is little or no information regarding the intracellular parasi

Public Health, Environmental and Occupational HealthMedicine
12
Article|15 citations·2015
Identification of Immunodominant B-cell Epitope Regions of Reticulocyte Binding Proteins in <i>Plasmodium vivax</i> by Protein Microarray Based Immunoscreening
Jin‐Hee Han, Jian Li, Bo Wang, Seong‐Kyun Lee, Myat Htut Nyunt, Sunghun Na, Jeong-Hyun Park, Eun‐Taek Han
Korean Journal of ParasitologyOA

Plasmodium falciparum can invade all stages of red blood cells, while Plasmodium vivax can invade only reticulocytes. Although many P. vivax proteins have been discovered, their functions are largely unknown. Among them, P. vivax reticulocyte binding proteins (PvRBP1 and PvRBP2) recognize and bind to reticulocytes. Both proteins possess a C-terminal hydrophobic transmembrane domain, which drives adhesion to reticulocytes. PvRBP1 and PvRBP2 are large (> 326 kDa), which hinders identification of t

Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Article|13 citations·2019
Evaluation of antibody responses to the early transcribed membrane protein family in Plasmodium vivax
Seong‐Kyun Lee, Jin‐Hee Han, Jihoon Park, Kwon‐Soo Ha, Won Sun Park, Seok‐Ho Hong, Sunghun Na, Yang Cheng, Eun‐Taek Han
SJR Q1Parasites & VectorsOA

BACKGROUND: Malaria parasites form intracellular membranes that separate the parasite from the internal space of erythrocytes, and membrane proteins from the parasites are exported to the host via the membrane. In our previous study, Plasmodium vivax early transcribed membrane protein (PvETRAMP) 11.2, an intracellular membrane protein that is highly expressed in blood-stage parasites, was characterized as a highly immunogenic protein in P. vivax malaria patients. However, the other PvETRAMP fami

Public Health, Environmental and Occupational HealthMedicine
14
Article|8 citations·2022
The direct binding of Plasmodium vivax AMA1 to erythrocytes defines a RON2-independent invasion pathway
Seong‐Kyun Lee, Leanne M. Low, John F. Andersen, Lee M. Yeoh, Paola Carolina Valenzuela Leon, Damien R. Drew, Johannes S. P. Doehl, Eric Calvo, Louis H. Miller, James G. Beeson, Karthigayan Gunalan
SJR Q1Proceedings of the National Academy of SciencesOA

We used a transgenic parasite in which Plasmodium falciparum parasites were genetically modified to express Plasmodium vivax apical membrane antigen 1 (PvAMA1) protein in place of PfAMA1 to study PvAMA1-mediated invasion. In P. falciparum , AMA1 interaction with rhoptry neck protein 2 (RON2) is known to be crucial for invasion, and PfRON2 peptides (PfRON2p) blocked the invasion of PfAMA1 wild-type parasites. However, PfRON2p has no effect on the invasion of transgenic parasites expressing PvAMA1

Public Health, Environmental and Occupational HealthMedicine
15
Article|8 citations·2020
Occurrence Status of Five Apple Virus and Viroid in Korea
Seong‐Kyun Lee, Jae‐Soon Cha, Yeuseok Kwon, Yun Sang Lee, Se Eun Yoo, Ju Hyung Kim, Daeil Kim
SJR Q3Research in Plant DiseaseOA

The investigation of the infection rate of domestic apple orchards by four types of apple viruses (Apple chlorotic leaf spot virus [ACLSV], Apple stem pitting virus [ASPV], Apple stem grooving virus [ASGV], Apple mosaic virus [ApMV]) and one type of viroid (Apple scar skin viroid, ASSVd) found that most apple trees were infected with viruses and viroid at the rate of 97.3%. By region, the infection rate in Jeongseon stood at 98.8%, Danyang at 100%, Yesan at 100%, Jangsu at 89.1%, and Muju at 98.

Plant ScienceAgricultural and Biological Sciences

Research Areas

Public Health, Environmental and Occupational HealthPlant SciencePharmacologyMolecular BiologyGeneticsEcology, Evolution, Behavior and Systematics

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