Jae-Won Shin

Jae-Won Shin

University of Illinois at Chicago

H-index: 26

North America-United States

About Jae-Won Shin

Jae-Won Shin, With an exceptional h-index of 26 and a recent h-index of 23 (since 2020), a distinguished researcher at University of Illinois at Chicago, specializes in the field of Mechanobiology, Biomaterials, Stem Cells, Extracellular Vesicles, Regenerative Medicine.

His recent articles reflect a diverse array of research interests and contributions to the field:

Matrimeres are systemic nanoscale mediators of tissue integrity and function

Towards single cell encapsulation for precision biology and medicine

Programming of Multicellular Patterning with Mechano‐Chemically Microstructured Cell Niches

Extracellular vesicle–matrix interactions

Manipulation of the nucleoscaffold potentiates cellular reprogramming kinetics

Development of a programmable magnetic agitation device to maintain colloidal suspension of cells during microfluidic syringe pump perfusion

Deterministic single cell encapsulation in asymmetric microenvironments to direct cell polarity

Tension sensing by FAK governs nuclear mechanotransduction, endothelial transcriptome and fate

Jae-Won Shin Information

University

Position

Assistant Professor College of Medicine

Citations(all)

6466

Citations(since 2020)

3984

Cited By

4153

hIndex(all)

26

hIndex(since 2020)

23

i10Index(all)

38

i10Index(since 2020)

32

Email

University Profile Page

Google Scholar

Jae-Won Shin Skills & Research Interests

Mechanobiology

Biomaterials

Stem Cells

Extracellular Vesicles

Regenerative Medicine

Top articles of Jae-Won Shin

Matrimeres are systemic nanoscale mediators of tissue integrity and function

bioRxiv

2024

Towards single cell encapsulation for precision biology and medicine

2023/7/16

Prerak Gupta
Prerak Gupta

H-Index: 10

Jae-Won Shin
Jae-Won Shin

H-Index: 20

Programming of Multicellular Patterning with Mechano‐Chemically Microstructured Cell Niches

Advanced Science

2023/5

Extracellular vesicle–matrix interactions

2023/3/17

Stephen Lenzini
Stephen Lenzini

H-Index: 5

Jae-Won Shin
Jae-Won Shin

H-Index: 20

Manipulation of the nucleoscaffold potentiates cellular reprogramming kinetics

bioRxiv

2023/3/13

Development of a programmable magnetic agitation device to maintain colloidal suspension of cells during microfluidic syringe pump perfusion

Plos one

2023/3/8

Miiri Kotche
Miiri Kotche

H-Index: 2

Jae-Won Shin
Jae-Won Shin

H-Index: 20

Deterministic single cell encapsulation in asymmetric microenvironments to direct cell polarity

Advanced Science

2023/1

Tension sensing by FAK governs nuclear mechanotransduction, endothelial transcriptome and fate

bioRxiv

2023

Modelling acute myeloid leukemia (AML): What’s new? A transition from the classical to the modern

2022/8/5

Jae-Won Shin
Jae-Won Shin

H-Index: 20

Katie B Ryan
Katie B Ryan

H-Index: 9

Nanoparticle targeting of de novo profibrotic macrophages mitigates lung fibrosis

Proceedings of the National Academy of Sciences

2022/4/12

Inhibition of aberrant tissue remodelling by mesenchymal stromal cells singly coated with soft gels presenting defined chemomechanical cues

Nature biomedical engineering

2022/1

Physical and Soluble Cues Enhance Tendon Progenitor Cell Invasion into Injectable Synthetic Hydrogels

Advanced Functional Materials

2022/11

Cell–Matrix Interactions Regulate Functional Extracellular Vesicle Secretion from Mesenchymal Stromal Cells

ACS nano

2021/10/22

Direct comparison of angiogenesis in natural and synthetic biomaterials reveals that matrix porosity regulates endothelial cell invasion speed and sprout diameter

Acta Biomaterialia

2021/8/29

Matrix biophysical cues direct mesenchymal stromal cell functions in immunity

2021/8/5

Hydrogel Micropost Arrays with Single Post Tunability to Study Cell Volume and Mechanotransduction

Advanced Biosystems

2020/11

Controlled Deposition of 3D Matrices to Direct Single Cell Functions

Advanced Science

2020/10

Soft extracellular matrix enhances inflammatory activation of mesenchymal stromal cells to induce monocyte production and trafficking

Science Advances

2020/4/1

Stephen Lenzini
Stephen Lenzini

H-Index: 5

Jae-Won Shin
Jae-Won Shin

H-Index: 20

Macrophages show higher levels of engulfment after disruption of cis interactions between CD47 and the checkpoint receptor SIRPα

Journal of Cell Science

2020/3/1

Brandon H Hayes
Brandon H Hayes

H-Index: 2

Jae-Won Shin
Jae-Won Shin

H-Index: 20

Matrix mechanics and water permeation regulate extracellular vesicle transport

Nature Nanotechnology

2020/2/17

Stephen Lenzini
Stephen Lenzini

H-Index: 5

Jae-Won Shin
Jae-Won Shin

H-Index: 20

See List of Professors in Jae-Won Shin University(University of Illinois at Chicago)

Co-Authors

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