Oju Jeon

Oju Jeon

University of Illinois at Chicago

H-index: 47

North America-United States

About Oju Jeon

Oju Jeon, With an exceptional h-index of 47 and a recent h-index of 36 (since 2020), a distinguished researcher at University of Illinois at Chicago, specializes in the field of Biomaterials, Biomedical Engineering, Tissue Engineering, Regenerative Medicine.

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

Bioactive agent spatial patterned biodegradable hydrogels

In situ cell condensation-based cartilage tissue engineering via immediately implantable high-density stem cell core and rapidly degradable shell microgels

Hydrogels with dynamically adjustable mechanical properties

Self-oxygenation of engineered living tissues orchestrates osteogenic commitment of mesenchymal stem cells

Optimizing bioink composition for human chondrocyte expression of lubricin

Intradiscal treatment of the cartilage endplate for improving solute transport and disc nutrition

Micromechanical property mismatch between pericellular and extracellular matrices regulates stem cell articular and hypertrophic chondrogenesis

Long-term functional regeneration of radiation-damaged salivary glands through delivery of a neurogenic hydrogel

Oju Jeon Information

University

Position

___

Citations(all)

8445

Citations(since 2020)

3387

Cited By

7346

hIndex(all)

47

hIndex(since 2020)

36

i10Index(all)

68

i10Index(since 2020)

57

Email

University Profile Page

Google Scholar

Oju Jeon Skills & Research Interests

Biomaterials

Biomedical Engineering

Tissue Engineering

Regenerative Medicine

Top articles of Oju Jeon

Bioactive agent spatial patterned biodegradable hydrogels

2023/9/12

In situ cell condensation-based cartilage tissue engineering via immediately implantable high-density stem cell core and rapidly degradable shell microgels

bioRxiv

2024

Hydrogels with dynamically adjustable mechanical properties

2024/4/2

Self-oxygenation of engineered living tissues orchestrates osteogenic commitment of mesenchymal stem cells

Biomaterials

2023/9/1

Optimizing bioink composition for human chondrocyte expression of lubricin

Bioengineering

2023/8/23

Intradiscal treatment of the cartilage endplate for improving solute transport and disc nutrition

Frontiers in Bioengineering and Biotechnology

2023/2/27

Micromechanical property mismatch between pericellular and extracellular matrices regulates stem cell articular and hypertrophic chondrogenesis

Matter

2023

Long-term functional regeneration of radiation-damaged salivary glands through delivery of a neurogenic hydrogel

Science Advances

2022/12/21

Method and device for forming a gel particle slurry

2022/9/22

Stem cell-laden hydrogel bioink for generation of high resolution and fidelity engineered tissues with complex geometries

Bioactive Materials

2022

Compositions and methods of modulating endochondral ossification and bone formation

2022/7/14

Jammed Micro‐Flake Hydrogel for Four‐Dimensional Living Cell Bioprinting (Adv. Mater. 15/2022)

Advanced Materials

2022/4

Bioadhesive hydrogels

2022/3/24

Salivary gland regeneration

2022/2/24

Reversible dynamic mechanics of hydrogels for regulation of cellular behavior

Acta biomaterialia

2021/12/1

Four‐Dimensional Materials: Induction of Four‐Dimensional Spatiotemporal Geometric Transformations in High Cell Density Tissues via Shape‐Changing Hydrogels (Adv. Funct. Mater …

Advanced Functional Materials

2021/6

Induction of four‐dimensional spatiotemporal geometric transformations in high cell density tissues via shape‐changing hydrogels

Advanced functional materials

2021/6

Bioink and crosslinkable support medium for printing

2021/5/27

Cell‐laden multiple‐step and reversible 4D hydrogel actuators to mimic dynamic tissue morphogenesis

Advanced Science

2021/5

Hydrogel for tissue engineering and bioprinting

2021/2/18

See List of Professors in Oju Jeon University(University of Illinois at Chicago)

Co-Authors

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