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Byung-Jin Hwang

Yonsei University · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor Byung-Jin Hwang's research lab specializes in developing innovative genomic and genome-editing technologies to advance precision medicine and immunotherapy. The lab focuses on single-cell omics, CRISPR-based genome editing, and functional genomics to decode cellular heterogeneity and regulatory networks in human diseases, particularly in cancer and immune disorders. Key research directions include the development of high-throughput, scalable methods for targeted DNA enrichment (e.g., CRISPR-Cap), lineage tracing using engineered genetic barcodes, and optimizing chimeric antigen receptor (CAR) T cell therapies through multiplexed screening and safety enhancement. The lab integrates molecular biology, bioinformatics, and translational immunology to address critical challenges in clinical genome engineering and cellular therapy.

single-cell genomicsCRISPR genome editingCAR T cell therapytargeted DNA enrichmentgenetic barcoding

Research Overview

Papers
40
Total Citations
3,535
Papers (5y)
16
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
16total
2021
2022
2023
2024
2025
Citations per year (5y)
420total
20212022202320242025

Selected Papers

15
1
Review|1,884 citations·2018
Single-cell RNA sequencing technologies and bioinformatics pipelines
Byungjin Hwang, Ji Hyun Lee, Duhee Bang
SJR Q1Experimental & Molecular MedicineOA

Rapid progress in the development of next-generation sequencing (NGS) technologies in recent years has provided many valuable insights into complex biological systems, ranging from cancer genomics to diverse microbial communities. NGS-based technologies for genomics, transcriptomics, and epigenomics are now increasingly focused on the characterization of individual cells. These single-cell analyses will allow researchers to uncover new and potentially unexpected biological discoveries relative t

Molecular BiologyBiochemistry, Genetics and Molecular Biology
2
Article|944 citations·2018
Single-cell RNA sequencing technologies and bioinformatics pipelines
황병진, 이지현, 방두희

Rapid progress in the development of next-generation sequencing (NGS) technologies in recent years has provided many valuable insights into complex biological systems, ranging from cancer genomics to diverse microbial communities. NGS-based technologies for genomics, transcriptomics, and epigenomics are now increasingly focused on the characterization of individual cells. These single-cell analyses will allow researchers to uncover new and potentially unexpected biological discoveries relative t

3
Article|185 citations·2023
Mitigation of chromosome loss in clinical CRISPR-Cas9-engineered T cells
Connor A. Tsuchida, Nadav Brandes, Raymund Bueno, Marena Trinidad, Thomas Mazumder, Bingfei Yu, Byungjin Hwang, Christopher Chang, Jamin Liu, Yang Sun, Caitlin R. Hopkins, Kevin R. Parker
SJR Q1CellOA

CRISPR-Cas9 genome editing has enabled advanced T cell therapies, but occasional loss of the targeted chromosome remains a safety concern. To investigate whether Cas9-induced chromosome loss is a universal phenomenon and evaluate its clinical significance, we conducted a systematic analysis in primary human T cells. Arrayed and pooled CRISPR screens revealed that chromosome loss was generalizable across the genome and resulted in partial and entire loss of the targeted chromosome, including in p

Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
Article|92 citations·2022
Pooled screening of CAR T cells identifies diverse immune signaling domains for next-generation immunotherapies
Daniel B. Goodman, Camillia S. Azimi, Kendall Kearns, Alexis Talbot, Kiavash Garakani, Julie Garcia, Nisarg Patel, Byungjin Hwang, David Lee, Minhee Park, Vivasvan S. Vykunta, Brian R. Shy
SJR Q1Science Translational MedicineOA

Chimeric antigen receptors (CARs) repurpose natural signaling components to retarget T cells to refractory cancers but have shown limited efficacy in persistent, recurrent malignancies. Here, we introduce "CAR Pooling," a multiplexed approach to rapidly identify CAR designs with clinical potential. Forty CARs with signaling domains derived from a range of immune cell lineages were evaluated in pooled assays for their ability to stimulate critical T cell effector functions during repetitive stimu

OncologyMedicine
5
Article|62 citations·2021
SCITO-seq: single-cell combinatorial indexed cytometry sequencing
Byungjin Hwang, David Lee, Whitney Tamaki, Yang Sun, Anton Ogorodnikov, George C. Hartoularos, Aidan Winters, Bertrand Z. Yeung, Kristopher L. Nazor, Yun S. Song, Eric D. Chow, Matthew H. Spitzer
SJR Q1Nature MethodsOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
6
Article|60 citations·2019
Lineage tracing using a Cas9-deaminase barcoding system targeting endogenous L1 elements
Byungjin Hwang, Wookjae Lee, Soo‐Young Yum, Yujin Jeon, Namjin Cho, Goo Jang, Duhee Bang
SJR Q1Nature CommunicationsOA

Determining cell lineage and function is critical to understanding human physiology and pathology. Although advances in lineage tracing methods provide new insight into cell fate, defining cellular diversity at the mammalian level remains a challenge. Here, we develop a genome editing strategy using a cytidine deaminase fused with nickase Cas9 (nCas9) to specifically target endogenous interspersed repeat regions in mammalian cells. The resulting mutation patterns serve as a genetic barcode, whic

Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Article|39 citations·2018
CRISPR-Cap: multiplexed double-stranded DNA enrichment based on the CRISPR system
Jeewon Lee, Jeewon Lee, Hyeonseob Lim, Hoon Jang, Byungjin Hwang, Joon Ho Lee, Joon Ho Lee, Junhyuk Cho, Ji Hyun Lee, Ji Hyun Lee, Duhee Bang
SJR Q1Nucleic Acids ResearchOA

Existing methods to enrich target regions of genomic DNA based on PCR, hybridization capture, or molecular inversion probes have various drawbacks, including long experiment times and low throughput and/or enrichment quality. We developed CRISPR-Cap, a simple and scalable CRISPR-based method to enrich target regions of dsDNA, requiring only two short experimental procedures that can be completed within two hours. We used CRISPR-Cap to enrich 10 target genes 355.7-fold on average from Escherichia

Molecular BiologyBiochemistry, Genetics and Molecular Biology
8
Article|38 citations·2015
Genetic Testing of Korean Familial Hypercholesterolemia Using Whole-Exome Sequencing
Soo Min Han, Byungjin Hwang, Tae-gun Park, Do-Il Kim, Moo‐Yong Rhee, Byoung Kwon Lee, Young Keun Ahn, Byung Ryul Cho, Jeong‐Taek Woo, Seung‐Ho Hur, Jin‐Ok Jeong, Sungha Park
SJR Q1PLoS ONEOA

Familial hypercholesterolemia (FH) is a genetic disorder with an increased risk of early-onset coronary artery disease. Although some clinically diagnosed FH cases are caused by mutations in LDLR, APOB, or PCSK9, mutation detection rates and profiles can vary across ethnic groups. In this study, we aimed to provide insight into the spectrum of FH-causing mutations in Koreans. Among 136 patients referred for FH, 69 who met Simon Broome criteria with definite family history were enrolled. By whole

SurgeryMedicine
9
Article|38 citations·2016
Genomic Profile of Chronic Lymphocytic Leukemia in Korea Identified by Targeted Sequencing
Jung‐Ah Kim, Byungjin Hwang, Si Nae Park, Sunghoon Huh, Kyongok Im, Sungbin Choi, Hye Yoon Chung, Joo-Ryung Huh, Eul‐Ju Seo, Je‐Hwan Lee, Duhee Bang, Dong Soon Lee
SJR Q1PLoS ONEOA

Chronic lymphocytic leukemia (CLL) is extremely rare in Asian countries and there has been one report on genetic changes for 5 genes (TP53, SF3B1, NOTCH1, MYD88, and BIRC3) by Sanger sequencing in Chinese CLL. Yet studies of CLL in Asian countries using Next generation sequencing have not been reported. We aimed to characterize the genomic profiles of Korean CLL and to find out ethnic differences in somatic mutations with prognostic implications. We performed targeted sequencing for 87 gene pane

GeneticsMedicine
10
Article|31 citations·2021
Author Correction: Single-cell RNA sequencing technologies and bioinformatics pipelines
Byungjin Hwang, Ji Hyun Lee, Duhee Bang
SJR Q1Experimental & Molecular MedicineOA
Cancer ResearchBiochemistry, Genetics and Molecular Biology
11
Preprint|18 citations·2023
Mitigation of Chromosome Loss in Clinical CRISPR-Cas9-Engineered T Cells
Connor A. Tsuchida, Nadav Brandes, Raymund Bueno, Marena Trinidad, Thomas Mazumder, Bingfei Yu, Byungjin Hwang, Christopher Chang, Jamin Liu, Yang Sun, Caitlin Hopkins, Kevin R. Parker
SSRN Electronic JournalOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
12
Article|17 citations·2017
Somatotroph-Specific Aip-Deficient Mice Display Pretumorigenic Alterations in Cell-Cycle Signaling
Mary P. Gillam, Cheol Ryong Ku, Yang Jong Lee, Jean Kim, Se Hoon Kim, Sue Ji Lee, Byungjin Hwang, JaeHyung Koo, Rhonda D. Kineman, Hiroaki Kiyokawa, Eun Jig Lee
SJR Q2Journal of the Endocrine SocietyOA

Patients with familial isolated pituitary adenoma are predisposed to pituitary adenomas, which in a subset of cases is due to germline inactivating mutations of the aryl hydrocarbon receptor-interacting protein (<i>AIP</i>) gene. Using Cre/lox and Flp/Frt technology, a conditional mouse model was generated to examine the loss of the mouse homolog, <i>Aip</i>, in pituitary somatotrophs. By 40 weeks of age, >80% of somatotroph specific Aip knockout mice develop growth hormone (GH) secreting adenom

Cancer ResearchBiochemistry, Genetics and Molecular Biology
13
Preprint|12 citations·2018
Lineage tracing using a Cas9-deaminase barcoding system targeting endogenous L1 elements
Byungjin Hwang, Wookjae Lee, Soo‐Young Yum, Yujin Jeon, Namjin Cho, Goo Jang, Duhee Bang
bioRxiv (Cold Spring Harbor Laboratory)OA

ABSTRACT Determining cell lineage and function is critical to understanding human physiology and pathology. Although advances in lineage tracing methods have provided new insight into cell fate, defining cellular diversity at the mammalian level remains a challenge. Here, we developed a genome editing strategy using a cytidine deaminase fused with inactive Cas9 (dCas9) to specifically target endogenous interspersed repeat regions in mammalian cells. The resulting mutation patterns served as a ge

Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Article|11 citations·2019
Facilitated Large-Scale Sequence Validation Platform Using Tn5-Tagmented Cell Lysates
Byungjin Hwang, Sunghoon Heo, Namjin Cho, Han-Na Seo, Duhee Bang
SJR Q1ACS Synthetic Biology

A typical molecular cloning procedure requires Sanger sequencing for sequence validation, which is cost-prohibitive and labor-intensive for large-scale clone analysis in genotype-phenotype studies. Here we present the cost-effective clone analysis platform TnClone, which uses next-generation sequencing based on Tn5 tagmentation to rapidly analyze a large number of clones from cell lysates. This method bypasses the extensive plasmid purification step. We also developed a user-friendly graphical u

Molecular BiologyBiochemistry, Genetics and Molecular Biology
15
Preprint|8 citations·2020
SCITO-seq: single-cell combinatorial indexed cytometry sequencing
Byungjin Hwang, David Lee, Whitney Tamaki, Yang Sun, Anton Ogorodnikov, George C. Hartoularos, Aidan Winters, Yun S. Song, Eric D. Chow, Matthew H. Spitzer, Chun Ye
bioRxiv (Cold Spring Harbor Laboratory)OA

Abstract The development of DNA-barcoded antibodies to tag cell-surface molecules has enabled the use of droplet-based single cell sequencing (dsc-seq) to profile the surface proteomes of cells. Compared to flow and mass cytometry, the major limitation of current dsc-seq-based workflows is the high cost associated with profiling each cell, thus precluding its use in applications where millions of cells are required. Here, we introduce SCITO-seq, a new workflow that combines combinatorial indexin

Molecular BiologyBiochemistry, Genetics and Molecular Biology

Research Areas

Molecular BiologyGeneticsCancer ResearchOncologySurgeryPulmonary and Respiratory Medicine

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