Young Charles Jang

Young Charles Jang

Georgia Institute of Technology

H-index: 35

North America-United States

About Young Charles Jang

Young Charles Jang, With an exceptional h-index of 35 and a recent h-index of 31 (since 2020), a distinguished researcher at Georgia Institute of Technology, specializes in the field of Aging, Mitochondria, Muscle, Stem cell, Neuromuscular Junction.

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

Large-scale smart bioreactor with fully integrated wireless multivariate sensors and electronics for long-term in situ monitoring of stem cell culture

Soft implantable printed bioelectronic system for wireless continuous monitoring of restenosis

Stimuli-responsive pressure–strain sensor-based conductive hydrogel for alleviated non-alcoholic fatty liver disease by scavenging reactive oxygen species in adipose tissue

In vivo shear wave elasticity imaging for assessment of diaphragm function in muscular dystrophy

Designing biofunctional hydrogels for stem cell biology and regenerative medicine applications

Identifying dysregulated immune cell subsets following volumetric muscle loss with pseudo-time trajectories

Mild Peripheral Nerve Injury Primes Muscle Stem Cells for Myogenesis by Enhancing Protein Synthesis and Mitochondrial Bioenergetics

The Muscle Stem Cell Mediates Remodeling of Skeletal Muscle Mitochondrial Networks

Young Charles Jang Information

University

Position

___

Citations(all)

8659

Citations(since 2020)

3982

Cited By

6208

hIndex(all)

35

hIndex(since 2020)

31

i10Index(all)

49

i10Index(since 2020)

48

Email

University Profile Page

Google Scholar

Young Charles Jang Skills & Research Interests

Aging

Mitochondria

Muscle

Stem cell

Neuromuscular Junction

Top articles of Young Charles Jang

Large-scale smart bioreactor with fully integrated wireless multivariate sensors and electronics for long-term in situ monitoring of stem cell culture

Science Advances

2024/2/14

Soft implantable printed bioelectronic system for wireless continuous monitoring of restenosis

Biosensors and Bioelectronics

2023/12/1

Stimuli-responsive pressure–strain sensor-based conductive hydrogel for alleviated non-alcoholic fatty liver disease by scavenging reactive oxygen species in adipose tissue

Acta Biomaterialia

2023/11/1

In vivo shear wave elasticity imaging for assessment of diaphragm function in muscular dystrophy

Acta Biomaterialia

2023/9/15

Designing biofunctional hydrogels for stem cell biology and regenerative medicine applications

2023/9/1

Identifying dysregulated immune cell subsets following volumetric muscle loss with pseudo-time trajectories

Communications Biology

2023/7/19

Mild Peripheral Nerve Injury Primes Muscle Stem Cells for Myogenesis by Enhancing Protein Synthesis and Mitochondrial Bioenergetics

2023/5/23

The Muscle Stem Cell Mediates Remodeling of Skeletal Muscle Mitochondrial Networks

The FASEB Journal

2020/4

Touchable Electrochemical Hydrogel Sensor for Detection of Reactive Oxygen Species‐induced Cellular Senescence in Articular Chondrocytes

Advanced Functional Materials

2023/4

Exercise-Induced Antisenescence and Autophagy Restoration Mitigate Metabolic Disorder–Induced Cardiac Disruption in Mice

Medicine and science in sports and exercise

2023/3/1

Engineered heterochronic parabiosis in 3D microphysiological system

Advanced functional materials

2020/11

Neuromuscular Synapse Dynamics in Aged and Injured Skeletal Muscle

The FASEB Journal

2022/5

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

Bioengineering & Translational Medicine

2021/12

Young Charles Jang
Young Charles Jang

H-Index: 26

Neutrophil and natural killer cell imbalances prevent muscle stem cell–mediated regeneration following murine volumetric muscle loss

Proceedings of the National Academy of Sciences

2022/4/12

Nanomaterial for skeletal muscle regeneration

2022/3/25

Effect of Rapamycin on Contractility of Lymphatic Vessel and Energy Metabolism of Lymphatic Muscle Cells

The FASEB Journal

2021/5

Modulating local S1P receptor signaling as a regenerative immunotherapy after volumetric muscle loss injury

Journal of Biomedical Materials Research Part A

2021/5

2D and 3D co-spatial compartmentalized patch to enhance the therapeutic efficacy of keratinocytes for wound closure

Chemical Engineering Journal

2021/4/1

Nanofiber-based delivery of bioactive lipids promotes pro-regenerative inflammation and enhances muscle fiber growth after volumetric muscle loss

Frontiers in Bioengineering and Biotechnology

2021/3/19

Moderate aerobic exercise training ameliorates impairment of mitochondrial function and dynamics in skeletal muscle of high‐fat diet‐induced obese mice

The FASEB Journal

2021/2

See List of Professors in Young Charles Jang University(Georgia Institute of Technology)