Mehdi Nikkhah

Mehdi Nikkhah

School of Biological and Health Systems Engineering, Arizona State University

Affiliated withArizona State University

Research Area

Biography

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JoVE Journal Publications

ArticleTotal : 1
Year
Developing 3D Organized Human Cardiac Tissue within a Microfluidic Platform
Publication title

Cited by 4

2021

Other Publications

Article
Year
Biomaterial Approaches for Stem Cell-Based Myocardial Tissue Engineering.

Biomarker insights| PubMed ID: 26052226

2015
2015
Stem Cell Biology.

Biomarker insights| PubMed ID: 26339185

2015
Microfabrication of Cell-Laden Hydrogels for Engineering Mineralized and Load Bearing Tissues.

Advances in experimental medicine and biology| PubMed ID: 26545742

2015
2016
2016
Nano-Enabled Approaches for Stem Cell-Based Cardiac Tissue Engineering.

Advanced healthcare materials| PubMed ID: 27199266

2016
2016
Reduced Graphene Oxide-GelMA Hybrid Hydrogels as Scaffolds for Cardiac Tissue Engineering.

Small (Weinheim an der Bergstrasse, Germany)| PubMed ID: 27254107

2016
2016
2017
Emerging Biofabrication Strategies for Engineering Complex Tissue Constructs.

Advanced materials (Deerfield Beach, Fla.)| PubMed ID: 28370405

2017
2017
Bioprinting technologies for disease modeling.

Biotechnology letters| PubMed ID: 28550360

2017
2017
2017
Effect of suberoylanilide hydroxamic acid (SAHA) on breast cancer cells within a tumor-stroma microfluidic model.

Integrative biology : quantitative biosciences from nano to macro| PubMed ID: 29188843

2017
2018
2018
2019
2018
2019
2019
Three-dimensional microengineered models of human cardiac diseases.

Journal of biological engineering| PubMed ID: 30988697

2019
2019
Self-Healing Hydrogels: The Next Paradigm Shift in Tissue Engineering?

Advanced science (Weinheim, Baden-Wurttemberg, Germany)| PubMed ID: 31453048

2019
2018
2020
2020
2020
2020
Three-dimensional scaffold-free microtissues engineered for cardiac repair.

Journal of materials chemistry. B| PubMed ID: 32724973

2020
2021
2021
Reversible Control of Gelatin Hydrogel Stiffness by Using DNA Crosslinkers*.

Chembiochem : a European journal of chemical biology| PubMed ID: 33484601

2021