Riccardo Gottardi

Riccardo Gottardi

University of Pennsylvania

H-index: 25

North America-United States

About Riccardo Gottardi

Riccardo Gottardi, With an exceptional h-index of 25 and a recent h-index of 23 (since 2020), a distinguished researcher at University of Pennsylvania, specializes in the field of tissue engineering, bioreactors, nanotechnology, controlled release, cartilage.

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

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

YAP and TAZ couple osteoblast precursor mobilization to angiogenesis and mechanoregulation in murine bone development

Cyr61 delivery promotes angiogenesis during bone fracture repair

Modulated Fibrosis and Mechanosensing of Fibroblasts by SB525334 in Pediatric Subglottic Stenosis

Three-dimensional and four-dimensional printing in otolaryngology

Decellularized meniscal cartilage and uses therof

A high-throughput mechanical activator for cartilage engineering enables rapid screening of in vitro response of tissue models to physiological and supra-physiological loads

4D bioprinted self-folding scaffolds enhance cartilage formation in the engineering of trachea

Riccardo Gottardi Information

University

Position

___

Citations(all)

2384

Citations(since 2020)

1543

Cited By

1399

hIndex(all)

25

hIndex(since 2020)

23

i10Index(all)

39

i10Index(since 2020)

35

Email

University Profile Page

Google Scholar

Riccardo Gottardi Skills & Research Interests

tissue engineering

bioreactors

nanotechnology

controlled release

cartilage

Top articles of Riccardo Gottardi

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

2023/12/19

YAP and TAZ couple osteoblast precursor mobilization to angiogenesis and mechanoregulation in murine bone development

Developmental Cell

2024/1/22

Cyr61 delivery promotes angiogenesis during bone fracture repair

bioRxiv

2024

Modulated Fibrosis and Mechanosensing of Fibroblasts by SB525334 in Pediatric Subglottic Stenosis

The Laryngoscope

2023/7

Three-dimensional and four-dimensional printing in otolaryngology

2023/6

Riccardo Gottardi
Riccardo Gottardi

H-Index: 17

Decellularized meniscal cartilage and uses therof

2023/5/25

A high-throughput mechanical activator for cartilage engineering enables rapid screening of in vitro response of tissue models to physiological and supra-physiological loads

Cells Tissues Organs

2023/3/22

4D bioprinted self-folding scaffolds enhance cartilage formation in the engineering of trachea

bioRxiv

2023

Riccardo Gottardi
Riccardo Gottardi

H-Index: 17

Breathing room: Toward next-generation tracheal engineering

Cell Stem Cell

2023/12/7

Riccardo Gottardi
Riccardo Gottardi

H-Index: 17

Amelioration of subglottic stenosis by antimicrobial peptide eluting endotracheal tubes

Cellular and Molecular Bioengineering

2023/8

Riccardo Gottardi
Riccardo Gottardi

H-Index: 17

A Translational Tissue Engineering Approach to Airway Reconstruction Leveraging Decellularized Meniscus and Cartilage Progenitor Cells

bioRxiv

2022/12/15

Riccardo Gottardi
Riccardo Gottardi

H-Index: 17

In Vivo Validation Of A Continuous Gradient Porous Scaffold For Osteochondral Defect Repair In A Rabbit Model

2022/8/1

A Decellularized Cartilage Biomaterials Approach to Pediatric Laryngotracheal Reconstruction

2022/8/1

Soheila Ali Akbari Ghavimi
Soheila Ali Akbari Ghavimi

H-Index: 7

Riccardo Gottardi
Riccardo Gottardi

H-Index: 17

Human cartilage progenitor cells from ear, nose, rib, and joint have a robust, stable phenotype for cartilage repair

bioRxiv

2022/7/2

Soheila Ali Akbari Ghavimi
Soheila Ali Akbari Ghavimi

H-Index: 7

Riccardo Gottardi
Riccardo Gottardi

H-Index: 17

Drug‐Eluting Endotracheal Tubes for Preventing Bacterial Inflammation in Subglottic Stenosis

The Laryngoscope

2022/7

Soheila Ali Akbari Ghavimi
Soheila Ali Akbari Ghavimi

H-Index: 7

Riccardo Gottardi
Riccardo Gottardi

H-Index: 17

Organ chip to model mammalian joint

2022/8/4

Treating soft tissue via controlled drug release

2022/5/3

A mesoscale 3D culture system for native and engineered biphasic tissues: application to the osteochondral unit

Organ-on-a-Chip: Methods and Protocols

2022

Riccardo Gottardi
Riccardo Gottardi

H-Index: 17

Osteoarthritis Treatment With Chemokine-Loaded Alginate Microparticles

2021/12/16

Microfluidic tissue development systems

2021/10/26

See List of Professors in Riccardo Gottardi University(University of Pennsylvania)

Co-Authors

academic-engine