Gwang-Bum Im

About Gwang-Bum Im

Gwang-Bum Im, With an exceptional h-index of 9 and a recent h-index of 9 (since 2020), a distinguished researcher at Sungkyunkwan University, specializes in the field of Tissue engineering, Biomedical engineering, Organoid, Stem cell engineering.

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

Mitochondrial transfer mediates endothelial cell engraftment through mitophagy

Fibroblast function recovery through rejuvenation effect of nanovesicles extracted from human adipose-derived stem cells irradiated with red light

Cytotoxic effect and mechanism of nano-sized polystyrene degraded by Rhodococcus ruber C208

Photopolymerizable Hydrogel for Enhanced Intramyocardial Vascular Progenitor Cell Delivery And Post-Myocardial Infarction Healing

Various three-dimensional culture methods and cell types for exosome production

Ceria Nanoparticles as Copper Chaperones that Activate SOD1 for Synergistic Antioxidant Therapy to Treat Ischemic Vascular Diseases (Adv. Mater. 16/2023)

Silica-based advanced nanoparticles for treating ischemic disease

Subaqueous free‐standing 3D cell culture system for ultrafast cell compaction, mechano‐inductive immune control, and improving therapeutic angiogenesis

Gwang-Bum Im Information

University

Position

___

Citations(all)

302

Citations(since 2020)

300

Cited By

31

hIndex(all)

9

hIndex(since 2020)

9

i10Index(all)

9

i10Index(since 2020)

9

Email

University Profile Page

Google Scholar

Gwang-Bum Im Skills & Research Interests

Tissue engineering

Biomedical engineering

Organoid

Stem cell engineering

Top articles of Gwang-Bum Im

Mitochondrial transfer mediates endothelial cell engraftment through mitophagy

Nature

2024/5/1

Fibroblast function recovery through rejuvenation effect of nanovesicles extracted from human adipose-derived stem cells irradiated with red light

Journal of Controlled Release

2024/4/1

Cytotoxic effect and mechanism of nano-sized polystyrene degraded by Rhodococcus ruber C208

Chemical Engineering Journal

2023/10/1

Photopolymerizable Hydrogel for Enhanced Intramyocardial Vascular Progenitor Cell Delivery And Post-Myocardial Infarction Healing

Advanced Healthcare Materials

2023/11

Various three-dimensional culture methods and cell types for exosome production

2023/7

Dong-Hyun Lee
Dong-Hyun Lee

H-Index: 13

Gwang-Bum Im
Gwang-Bum Im

H-Index: 4

Ceria Nanoparticles as Copper Chaperones that Activate SOD1 for Synergistic Antioxidant Therapy to Treat Ischemic Vascular Diseases (Adv. Mater. 16/2023)

Advanced Materials

2023/4

Silica-based advanced nanoparticles for treating ischemic disease

2023/4

Gwang-Bum Im
Gwang-Bum Im

H-Index: 4

Jae-Hyuk Kim
Jae-Hyuk Kim

H-Index: 15

Subaqueous free‐standing 3D cell culture system for ultrafast cell compaction, mechano‐inductive immune control, and improving therapeutic angiogenesis

Bioengineering & Translational Medicine

2023/3

ROS-responsive mechanically and electronically controllable conductive hydrogel sensor with NIR modulated photothermal therapy

Chemical Engineering Journal

2023/1/1

Enhanced intramyocardial vascular cell delivery promotes post-myocardial infarction healing by polarizing pro-regenerative neutrophils

bioRxiv

2022/7/2

Effect of polystyrene nanoplastics and their degraded forms on stem cell fate

Journal of Hazardous Materials

2022/5/15

Development of a stem cell spheroid‐laden patch with high retention at skin wound site

Bioengineering & Translational Medicine

2021/12

Area light source-triggered latent angiogenic molecular mechanisms intensify therapeutic efficacy of adult stem cells

Bioengineering & Translational Medicine

2022/1

Fortifying angiogenic efficacy of conditioned media using phototoxic‐free blue light for wound healing

Bioengineering & Translational Medicine

2022/12

Silica-capped and gold-decorated silica nanoparticles for enhancing effect of gold nanoparticle-based photothermal therapy

Tissue Engineering and Regenerative Medicine

2022/12

Bioengineering for vascularization: trends and directions of photocrosslinkable gelatin methacrylate hydrogels

2022/11/17

Gwang-Bum Im
Gwang-Bum Im

H-Index: 4

Ruei-Zeng Lin
Ruei-Zeng Lin

H-Index: 22

A photopolymerizable hydrogel enhances intramyocardial vascular cell delivery and promotes post-myocardial infarction healing by polarizing pro-regenerative neutrophils

2022/7/2

Lightwave-reinforced stem cells with enhanced wound healing efficacy

Journal of Tissue Engineering

2021/12

Anti-senescence ion-delivering nanocarrier for recovering therapeutic properties of long-term-cultured human adipose-derived stem cells

Journal of Nanobiotechnology

2021/12

Phototoxicity-free blue light for enhancing therapeutic angiogenic efficacy of stem cells

Cell Biology and Toxicology

2021/9/28

See List of Professors in Gwang-Bum Im University(Sungkyunkwan University)

Co-Authors

academic-engine