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Chang-Ho Son

Korea Advanced Institute of Science and Technology · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor Chang-Ho Son's research lab specializes in developing innovative molecular and imaging technologies to decode biological systems at high spatial and molecular resolution. The lab focuses on advancing spatial transcriptomics, single-molecule detection in thick tissues, and 3D organoid analysis using cutting-edge chemical labeling, dynamic nanotechnology, and computational image analysis. Key research directions include the creation of robust, scalable methods for whole-tissue phenotyping—such as eFLASH for uniform labeling and SCOUT for multiscale organoid analysis—enabling systems-level understanding of development and disease.

spatial transcriptomicssingle-molecule detection3D tissue imagingdynamic labelingorganoid analysis

Research Overview

Papers
40
Total Citations
1,612
Papers (5y)
17
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
17total
2022
2023
2024
2025
2026
Citations per year (5y)
168total
20222023202420252026

Selected Papers

15
1
Article|473 citations·2018
Protection of tissue physicochemical properties using polyfunctional crosslinkers
Young-Gyun Park, Chang Ho Sohn, Ritchie Chen, Margaret McCue, Dae Hee Yun, Gabrielle T Drummond, Taeyun Ku, Nicholas B. Evans, Hayeon Caitlyn Oak, Wendy Trieu, Heejin Choi, Xin Jin
SJR Q1Nature BiotechnologyOA
BiophysicsBiochemistry, Genetics and Molecular Biology
2
Article|227 citations·2016
Single-molecule RNA detection at depth by hybridization chain reaction and tissue hydrogel embedding and clearing
Sheel Shah, Eric Lubeck, Maayan Schwarzkopf, Ting-Fang He, Alon Greenbaum, Chang Ho Sohn, Antti Lignell, Harry M. T. Choi, Viviana Gradinaru, Niles A. Pierce, Long Cai
SJR Q1DevelopmentOA

Accurate and robust detection of mRNA molecules in thick tissue samples can reveal gene expression patterns in single cells within their native environment. Preserving spatial relationships while accessing the transcriptome of selected cells is a crucial feature for advancing many biological areas - from developmental biology to neuroscience. However, because of the high autofluorescence background of many tissue samples, it is difficult to detect single-molecule fluorescence in situ hybridizati

Molecular BiologyBiochemistry, Genetics and Molecular Biology
3
Article|127 citations·2015
Combinatorial gene regulation by modulation of relative pulse timing
Yihan Lin, Chang Ho Sohn, Chiraj K. Dalal, Long Cai, Michael B. Elowitz
SJR Q1NatureOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
Article|94 citations·2020
Elasticizing tissues for reversible shape transformation and accelerated molecular labeling
Taeyun Ku, Webster Guan, Nicholas B. Evans, Chang Ho Sohn, Alexandre Albanese, J. Kim, Matthew P. Frosch, Kwanghun Chung
SJR Q1Nature MethodsOA
Biomedical EngineeringEngineering
5
Review|90 citations·2023
Spatial Transcriptomics: Technical Aspects of Recent Developments and Their Applications in Neuroscience and Cancer Research
Han‐Eol Park, Song Hyun Jo, Rosalind H. Lee, Christian Macks, Taeyun Ku, Jihwan Park, Chung Whan Lee, Junho K. Hur, Chang Ho Sohn
SJR Q1Advanced ScienceOA

Spatial transcriptomics is a newly emerging field that enables high-throughput investigation of the spatial localization of transcripts and related analyses in various applications for biological systems. By transitioning from conventional biological studies to "in situ" biology, spatial transcriptomics can provide transcriptome-scale spatial information. Currently, the ability to simultaneously characterize gene expression profiles of cells and relevant cellular environment is a paradigm shift

Molecular BiologyBiochemistry, Genetics and Molecular Biology
6
Article|87 citations·2020
Multiscale 3D phenotyping of human cerebral organoids
Alexandre Albanese, Justin Swaney, Dae Hee Yun, Nicholas B. Evans, Jenna M. Antonucci, Silvia Velasco, Chang Ho Sohn, Paola Arlotta, Lee Gehrke, Kwanghun Chung
SJR Q1Scientific ReportsOA

Brain organoids grown from human pluripotent stem cells self-organize into cytoarchitectures resembling the developing human brain. These three-dimensional models offer an unprecedented opportunity to study human brain development and dysfunction. Characterization currently sacrifices spatial information for single-cell or histological analysis leaving whole-tissue analysis mostly unexplored. Here, we present the SCOUT pipeline for automated multiscale comparative analysis of intact cerebral org

Biomedical EngineeringEngineering
7
Preprint|82 citations·2019
Ultrafast immunostaining of organ-scale tissues for scalable proteomic phenotyping
Dae Hee Yun, Young-Gyun Park, Jaehun Cho, Lee Kamentsky, Nicholas B. Evans, Alex Albanese, Katherine Xie, Justin Swaney, Chang Ho Sohn, Yuxuan Tian, Qiangge Zhang, Gabi Drummond
bioRxiv (Cold Spring Harbor Laboratory)OA

ABSTRACT Studying the function and dysfunction of complex biological systems necessitates comprehensive understanding of individual cells. Advancements in three-dimensional (3D) tissue processing and imaging modalities have enabled rapid visualization and phenotyping of cells in their spatial context. However, system-wide interrogation of individual cells within large intact tissue remains challenging, low throughput, and error-prone owing to the lack of robust labeling technologies. Here we int

Molecular BiologyBiochemistry, Genetics and Molecular Biology
8
Article|77 citations·2009
Probing the Mechanism of Electron Capture and Electron Transfer Dissociation Using Tags with Variable Electron Affinity
Chang Ho Sohn, Cheol K. Chung, Sheng Yin, Prasanna Ramachandran, Joseph A. Loo, J. L. Beauchamp
SJR Q1Journal of the American Chemical SocietyOA

Electron capture dissociation (ECD) and electron transfer dissociation (ETD) of doubly protonated electron affinity (EA)-tuned peptides were studied to further illuminate the mechanism of these processes. The model peptide FQpSEEQQQTEDELQDK, containing a phosphoserine residue, was converted to EA-tuned peptides via beta-elimination and Michael addition of various thiol compounds. These include propanyl, benzyl, 4-cyanobenzyl, perfluorobenzyl, 3,5-dicyanobenzyl, 3-nitrobenzyl, and 3,5-dinitrobenz

SpectroscopyChemistry
9
Article|64 citations·2013
Biomimetic Reagents for the Selective Free Radical and Acid–Base Chemistry of Glycans: Application to Glycan Structure Determination by Mass Spectrometry
Jinshan Gao, Daniel A. Thomas, Chang Ho Sohn, J. L. Beauchamp
SJR Q1Journal of the American Chemical Society

Nature excels at breaking down glycans into their components, typically via enzymatic acid-base catalysis to achieve selective cleavage of the glycosidic bond. Noting the importance of proton transfer in the active site of many of these enzymes, we describe a sequestered proton reagent for acid-catalyzed glycan sequencing (PRAGS) that derivatizes the reducing terminus of glycans with a pyridine moiety possessing moderate proton affinity. Gas-phase collisional activation of PRAGS-derivatized glyc

Organic ChemistryChemistry
10
Article|42 citations·2012
Designer Reagents for Mass Spectrometry-Based Proteomics: Clickable Cross-Linkers for Elucidation of Protein Structures and Interactions
Chang Ho Sohn, Heather D. Agnew, J. Eugene Lee, Michael J. Sweredoski, R. L. Graham, Geoffrey T. Smith, Sonja Hess, Gregg Czerwieniec, Joseph A. Loo, James R. Heath, Raymond J. Deshaies, J. L. Beauchamp
SJR Q1Analytical ChemistryOA

We present novel homobifunctional amine-reactive clickable cross-linkers (CXLs) for investigation of three-dimensional protein structures and protein-protein interactions (PPIs). CXLs afford consolidated advantages not previously available in a simple cross-linker, including (1) their small size and cationic nature at physiological pH, resulting in good water solubility and cell-permeability, (2) an alkyne group for bio-orthogonal conjugation to affinity tags via the click reaction for enrichmen

Organic ChemistryChemistry
11
Article|38 citations·2015
Mechanisms and energetics of free radical initiated disulfide bond cleavage in model peptides and insulin by mass spectrometry
Chang Ho Sohn, Jinshan Gao, Daniel A. Thomas, Tae‐Young Kim, William A. Goddard, J. L. Beauchamp
SJR Q1Chemical ScienceOA

than those of peptide backbone cleavage processes determined by density functional quantum chemical calculations. Minor reaction pathways are initiated by hydrogen abstraction from the α-carbon or the β-carbon of a disulfide, followed by β-cleavages yielding C-S or S-S bond scissions. The current mechanistic findings should be generally applicable to other radical-driven disulfide bond cleavages with different radical species such as the benzyl and methyl pyridyl radicals.

SpectroscopyChemistry
12
Article|38 citations·2012
Click Chemistry Facilitates Formation of Reporter Ions and Simplified Synthesis of Amine-Reactive Multiplexed Isobaric Tags for Protein Quantification
Chang Ho Sohn, J. Eugene Lee, Michael J. Sweredoski, R. L. Graham, Geoffrey T. Smith, Sonja Hess, Gregg Czerwieniec, Joseph A. Loo, Raymond J. Deshaies, J. L. Beauchamp
SJR Q1Journal of the American Chemical SocietyOA

We report the development of novel reagents for cell-level protein quantification, referred to as Caltech isobaric tags (CITs), which offer several advantages in comparison with other isobaric tags (e.g., iTRAQ and TMT). Click chemistry, copper(I)-catalyzed azide-alkyne cycloaddition (CuAAC), is applied to generate a gas-phase cleavable linker suitable for the formation of reporter ions. Upon collisional activation, the 1,2,3-triazole ring constructed by CuAAC participates in a nucleophilic disp

Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Article|35 citations·2014
Hydrogen Bonding Constrains Free Radical Reaction Dynamics at Serine and Threonine Residues in Peptides
Daniel A. Thomas, Chang Ho Sohn, Jinshan Gao, J. L. Beauchamp
SJR Q2The Journal of Physical Chemistry A

Free radical-initiated peptide sequencing (FRIPS) mass spectrometry derives advantage from the introduction of highly selective low-energy dissociation pathways in target peptides. An acetyl radical, formed at the peptide N-terminus via collisional activation and subsequent dissociation of a covalently attached radical precursor, abstracts a hydrogen atom from diverse sites on the peptide, yielding sequence information through backbone cleavage as well as side-chain loss. Unique free-radical-ini

SpectroscopyChemistry
14
Article|24 citations·2023
Decoding the Roles of Amyloid-β (1–42)’s Key Oligomerization Domains toward Designing Epitope-Specific Aggregation Inhibitors
Dongjoon Im, Soohyeong Kim, Gyusub Yoon, Da Gyeong Hyun, Yu‐Gon Eom, Ye Eun Lee, Chang Ho Sohn, Jeong‐Mo Choi, Hugh I. Kim
SJR Q1JACS AuOA

High Resolution Image Download MS PowerPoint Slide Fibrillar amyloid aggregates are the pathological hallmarks of multiple neurodegenerative diseases. The amyloid-β (1–42) protein, in particular, is a major component of senile plaques in the brains of patients with Alzheimer’s disease and a primary target for disease treatment. Determining the essential domains of amyloid-β (1–42) that facilitate its oligomerization is critical for the development of aggregation inhibitors as potential therapeut

PhysiologyMedicine
15
Article|17 citations·2013
FGF signaling regulates Wnt ligand expression to control vulval cell lineage polarity in C. elegans
Paul J Minor, Ting-Fang He, Chang Ho Sohn, Anand R. Asthagiri, Paul W. Sternberg
SJR Q1DevelopmentOA

The interpretation of extracellular cues leading to the polarization of intracellular components and asymmetric cell divisions is a fundamental part of metazoan organogenesis. The Caenorhabditis elegans vulva, with its invariant cell lineage and interaction of multiple cell signaling pathways, provides an excellent model for the study of cell polarity within an organized epithelial tissue. Here, we show that the fibroblast growth factor (FGF) pathway acts in concert with the Frizzled homolog LIN

AgingBiochemistry, Genetics and Molecular Biology

Research Areas

Molecular BiologySpectroscopyBiomedical EngineeringImmunologyOrganic ChemistryBiophysics

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