Andrea Barbero

Andrea Barbero

Universität Basel

H-index: 44

Europe-Switzerland

About Andrea Barbero

Andrea Barbero, With an exceptional h-index of 44 and a recent h-index of 32 (since 2020), a distinguished researcher at Universität Basel, specializes in the field of Cartilage Engineering, Stem Cells.

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

A NASAL CHONDROCYTE-BASED INFLAMMATION RESISTANT THERAPY APPROACH FOR OSTEOARTHRITIS

Covalent Conjugation of Small Molecule Inhibitors and Growth Factors to a Silk Fibroin-Derived Bioink to Develop Phenotypically Stable 3D Bioprinted Cartilage

Engineered human osteoarthritic cartilage organoids

Design and development of an Organ-on-Chip model to study the role of mechanical stimuli on cartilage development and pathological onset

Evaluation of expanded peripheral blood derived CD34+ cells for the treatment of moderate knee osteoarthritis

Good Manufacturing Practice–compliant change of raw material in the manufacturing process of a clinically used advanced therapy medicinal product–a comparability study

Toward 3D Bioprinting of Osseous Tissue of Predefined Shape Using Single‐Matrix Cell‐Bioink Constructs

A Developmental Biology Inspired Osteoarthritis 3din Vitromicro-Cartilage Model To Study Effects Of Pro-Anabolic And Anti-Inflammatory Factors On Tissue Homeostasis

Andrea Barbero Information

University

Position

___

Citations(all)

8122

Citations(since 2020)

3250

Cited By

6215

hIndex(all)

44

hIndex(since 2020)

32

i10Index(all)

88

i10Index(since 2020)

68

Email

University Profile Page

Google Scholar

Andrea Barbero Skills & Research Interests

Cartilage Engineering

Stem Cells

Top articles of Andrea Barbero

A NASAL CHONDROCYTE-BASED INFLAMMATION RESISTANT THERAPY APPROACH FOR OSTEOARTHRITIS

Osteoarthritis and Cartilage

2024/4/1

Ivan Martin
Ivan Martin

H-Index: 55

Andrea Barbero
Andrea Barbero

H-Index: 30

Covalent Conjugation of Small Molecule Inhibitors and Growth Factors to a Silk Fibroin-Derived Bioink to Develop Phenotypically Stable 3D Bioprinted Cartilage

ACS Applied Materials & Interfaces

2024/2/16

Engineered human osteoarthritic cartilage organoids

Biomaterials

2024/7/1

Design and development of an Organ-on-Chip model to study the role of mechanical stimuli on cartilage development and pathological onset

Osteoarthritis and Cartilage

2024/4/1

Evaluation of expanded peripheral blood derived CD34+ cells for the treatment of moderate knee osteoarthritis

Frontiers in Bioengineering and Biotechnology

2023/5/23

Christian Jorgensen
Christian Jorgensen

H-Index: 8

Andrea Barbero
Andrea Barbero

H-Index: 30

Good Manufacturing Practice–compliant change of raw material in the manufacturing process of a clinically used advanced therapy medicinal product–a comparability study

Cytotherapy

2023/5/1

Ivan Martin
Ivan Martin

H-Index: 55

Andrea Barbero
Andrea Barbero

H-Index: 30

Toward 3D Bioprinting of Osseous Tissue of Predefined Shape Using Single‐Matrix Cell‐Bioink Constructs

Advanced Healthcare Materials

2023/4

Andrea Barbero
Andrea Barbero

H-Index: 30

Ivan Martin
Ivan Martin

H-Index: 55

A Developmental Biology Inspired Osteoarthritis 3din Vitromicro-Cartilage Model To Study Effects Of Pro-Anabolic And Anti-Inflammatory Factors On Tissue Homeostasis

Osteoarthritis and Cartilage

2023/3/1

Towards Modelling The Joint On A Chip: A Mechanically Active Microfluidic System Designed For Engineered 3d Multi-Layer Osteochondral Tissues

Osteoarthritis and Cartilage

2023/3/1

Human 3D nucleus pulposus microtissue model to evaluate the potential of pre-conditioned nasal chondrocytes for the repair of degenerated intervertebral disc

Frontiers in Bioengineering and Biotechnology

2023/2/14

Methodologies to improve the performance of chondrocytes for cartilage repair and regeneration

Frontiers in Bioengineering and Biotechnology

2023

Giovanna Nalesso
Giovanna Nalesso

H-Index: 11

Andrea Barbero
Andrea Barbero

H-Index: 30

Modelling Osteoarthritis pathogenesis through Mechanical Loading in an Osteochondral Unit-on-Chip

bioRxiv

2023

Chondrocyte hypertrophy in osteoarthritis: mechanistic studies and models for the identification of new therapeutic strategies

2022/12/13

Three-dimensional imaging of porcine joints down to the subcellular level

2022/11/16

ShcA promotes chondrocyte hypertrophic commitment and osteoarthritis in mice through RunX2 nuclear translocation and YAP1 inactivation

Osteoarthritis and cartilage

2022/10/1

P10. Spheroids derived from human nasal chondrocytes as promising cell source for nucleus pulposus repair

The Spine Journal

2022/9/1

In Vitro and Ectopic In Vivo Studies toward the Utilization of Rapidly Isolated Human Nasal Chondrocytes for Single-Stage Arthroscopic Cartilage Regeneration …

International Journal of Molecular Sciences

2022/6/21

Zelluläre Seneszenz bei chronischer Schulter-Tendinopathie und ihre Reduktion durch Inhibition von Enhancer of Zeste 2

Sports Orthopaedics and Traumatology

2022/6/1

AGE-INDEPENDENT INCREASE OF CELLULAR SENESCENCE IN CHRONIC HUMAN SHOULDER TENDINOPATHIES AND ITS ATTENUATION BY ENHANCER OF ZESTE 2 INHIBITION

Osteoarthritis and Cartilage

2022/4/1

The influence of subchondral bone on cartilage in osteoarthritis

2022/4/1

See List of Professors in Andrea Barbero University(Universität Basel)