User profiles for N. Li Jeon

Noo Li Jeon

Seoul National University
Verified email at snu.ac.kr
Cited by 26732

Neutrophil chemotaxis in linear and complex gradients of interleukin-8 formed in a microfabricated device

N Li Jeon, H Baskaran, SKW Dertinger… - Nature …, 2002 - nature.com
… Analysis of migratory speed data of individual cell tracks in hill experiments yielded an initial
average speed of 7.9 ± 1.8 μm/min (n = 7), which corresponds to a chemotaxis … Noo Li Jeon

UPF2 leads to degradation of dendritically targeted mRNAs to regulate synaptic plasticity and cognitive function

…, M Allen, F Longo, N Volk, M Toth, N Li Jeon… - Molecular …, 2020 - nature.com
… Tripartite microfluidic device was designed and manufactured by the Jeon Lab. Microfluidic
chambers were prepared in-house as previously described [11]. To isolate synaptic regions …

Frequency modulation of ERK activation dynamics rewires cell fate

…, M Peter, BN Kholodenko, N Li Jeon… - Molecular systems …, 2016 - embopress.org
Cover: This month s cover highlights the Research Article Pooled-matrix protein interaction
screens using Barcode Fusion Genetics by Nozomu Yachie, Evangelia Petsalaki, …

3D brain angiogenesis model to reconstitute maturation of functional human blood-brain barrier in vitro

S Lee, M Chung, N Li Jeon - BioRxiv, 2018 - biorxiv.org
0. Abstract Human central nervous system (CNS) vasculature in brain expresses a distinctive
barrier phenotype, the blood–brain barrier (BBB), which protects the brain against harmful …

Open‐pore two‐dimensional MFI zeolite nanosheets for the fabrication of hydrocarbon‐isomer‐selective membranes on porous polymer supports

…, N Li, P Kumar, N Rangnekar, MY Jeon… - Angewandte Chemie …, 2016 - Wiley Online Library
… Deposits made on porous polybenzimidazole (PBI) supports by simple filtration of these
suspensions exhibit an n‐butane/isobutane selectivity of 5.4, with an n‐butane permeance of 3.5…

Remote Control of Time‐Regulated Stretching of Ligand‐Presenting Nanocoils In Situ Regulates the Cyclic Adhesion and Differentiation of Stem Cells

…, R Thangam, H Choi, N Li, JE Shin, YS Jeon… - Advanced …, 2021 - Wiley Online Library
Native extracellular matrix (ECM) can exhibit cyclic nanoscale stretching and shrinking of
ligands to regulate complex cell–material interactions. Designing materials that allow cyclic …

Independent Tuning of Nano‐Ligand Frequency and Sequences Regulates the Adhesion and Differentiation of Stem Cells

S Min, YS Jeon, HJ Jung, C Khatua, N Li… - Advanced …, 2020 - Wiley Online Library
The native extracellular matrix (ECM) can exhibit heterogeneous nano‐sequences periodically
displaying ligands to regulate complex cell–material interactions in vivo. Herein, an ECM‐…

Magnetic Control and Real‐Time Monitoring of Stem Cell Differentiation by the Ligand Nanoassembly

…, Y Kim, SB Han, N Kang, M Kim, N Li, HE Fu, YS Jeon… - Small, 2021 - Wiley Online Library
Native extracellular matrix (ECM) exhibits dynamic change in the ligand position. Herein,
the ECM‐emulating control and real‐time monitoring of stem cell differentiation are …

In Situ Magnetic Control of Macroscale Nanoligand Density Regulates the Adhesion and Differentiation of Stem Cells

…, N Li, I Jun, HW Liu, G Bae, H Choi, MJ Ko, YS Jeon… - Nano …, 2020 - ACS Publications
Developing materials with remote controllability of macroscale ligand presentation can mimic
extracellular matrix (ECM) remodeling to regulate cellular adhesion in vivo. Herein, we …

Immunoregulation of macrophages by controlling winding and unwinding of nanohelical ligands

G Bae, YS Jeon, MJ Ko, Y Kim, SB Han… - Advanced Functional …, 2021 - Wiley Online Library
Developing materials with the capability of changing their innate features can help to unravel
direct interactions between cells and ligand‐displaying features. This study demonstrates …