Hang Lin

Hang Lin

University of Pittsburgh

H-index: 43

North America-United States

About Hang Lin

Hang Lin, With an exceptional h-index of 43 and a recent h-index of 36 (since 2020), a distinguished researcher at University of Pittsburgh, specializes in the field of Regenerative Medicine/Osteoarthritis/Microphysiological tissue chip.

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

Synovial joint-on-a-chip for modeling arthritis: Progress, pitfalls, and potential

Mechanotransduction pathways in articular chondrocytes and the emerging role of estrogen receptor-α

Using microphysiological system for the development of treatments for joint inflammation and associated cartilage loss—A pilot study

In vitro study to identify ligand‐independent function of estrogen receptor‐α in suppressing DNA damage‐induced chondrocyte senescence

Age-related matrix stiffening epigenetically regulates α-Klotho expression and compromises chondrocyte integrity

Articular tissue-mimicking organoids derived from mesenchymal stem cells and induced pluripotent stem cells

Cartilage material having minimal hypertrophy and robust integration capacity, and uses therefor

Aberrant Expression of COX-2 and FOXG1 in Infrapatellar Fat Pad-Derived ASCs from Pre-Diabetic Donors

Hang Lin Information

University

Position

___

Citations(all)

5948

Citations(since 2020)

3765

Cited By

3489

hIndex(all)

43

hIndex(since 2020)

36

i10Index(all)

74

i10Index(since 2020)

68

Email

University Profile Page

Google Scholar

Hang Lin Skills & Research Interests

Regenerative Medicine/Osteoarthritis/Microphysiological tissue chip

Top articles of Hang Lin

Synovial joint-on-a-chip for modeling arthritis: Progress, pitfalls, and potential

2023/4/1

Hang Lin
Hang Lin

H-Index: 27

Mechanotransduction pathways in articular chondrocytes and the emerging role of estrogen receptor-α

2023/3/3

Using microphysiological system for the development of treatments for joint inflammation and associated cartilage loss—A pilot study

Biomolecules

2023/2/17

Qi Gao
Qi Gao

H-Index: 7

Hang Lin
Hang Lin

H-Index: 27

In vitro study to identify ligand‐independent function of estrogen receptor‐α in suppressing DNA damage‐induced chondrocyte senescence

The FASEB Journal

2023/2

Age-related matrix stiffening epigenetically regulates α-Klotho expression and compromises chondrocyte integrity

Nature communications

2023/1/10

Articular tissue-mimicking organoids derived from mesenchymal stem cells and induced pluripotent stem cells

Organoids

2022/11/14

Hang Lin
Hang Lin

H-Index: 27

Cartilage material having minimal hypertrophy and robust integration capacity, and uses therefor

2022/10/18

Aberrant Expression of COX-2 and FOXG1 in Infrapatellar Fat Pad-Derived ASCs from Pre-Diabetic Donors

Cells

2022/8/1

Zhong Li
Zhong Li

H-Index: 17

Hang Lin
Hang Lin

H-Index: 27

Human Mesenchymal Stem Cell‐Derived Miniature Joint System for Disease Modeling and Drug Testing

Advanced Science

2022/7

Potential methods of targeting cellular aging hallmarks to reverse osteoarthritic phenotype of chondrocytes

2022/6/30

Yuchen He
Yuchen He

H-Index: 3

Hang Lin
Hang Lin

H-Index: 27

Organ chip to model mammalian joint

2022/8/4

Engineering pre-vascularized bone-like tissue from human mesenchymal stem cells through simulating endochondral ossification

Biomaterials

2022/4/1

Engineering osteoarthritic cartilage model through differentiating senescent human mesenchymal stem cells for testing disease-modifying drugs

Science China Life Sciences

2022/2

Current models for development of disease-modifying osteoarthritis drugs

2021/2/1

Modular, microfluidic, mechanically active bioreactor for 3D, multi-tissue, tissue culture

2023/12/19

Dynamic loading enhances chondrogenesis of human chondrocytes within a biodegradable resilient hydrogel

Biomaterials Science

2021

Discovering drugs to treat osteoarthritis with a knee joint-on-a-chip model

2021

Hang Lin
Hang Lin

H-Index: 27

Tissue engineering for musculoskeletal regeneration and disease modeling

Organotypic Models in Drug Development

2021

Zhong Li
Zhong Li

H-Index: 17

Hang Lin
Hang Lin

H-Index: 27

Macrophages modulate the function of MSC-and iPSC-derived fibroblasts in the presence of polyethylene particles

International Journal of Molecular Sciences

2021/11/27

Graphene oxide-functionalized nanocomposites promote osteogenesis of human mesenchymal stem cells via enhancement of BMP-SMAD1/5 signaling pathway

Biomaterials

2021/10/1

See List of Professors in Hang Lin University(University of Pittsburgh)

Co-Authors

academic-engine