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Gels (Basel, Switzerland)|May 24, 2024
Sequential Fabrication of a Three-Layer Retina-like StructureYahel Shechter, Roni Cohen, Michael Namestnikov, et al.Small (Weinheim an Der Bergstrasse, Germany)|March 7, 2019
A Stretchable and Flexible Cardiac Tissue-Electronics Hybrid Enabling Multiple Drug Release, Sensing, and StimulationRon Feiner, Lior Wertheim, Danielle Gazit, et al.Tissue Engineering|May 24, 2007
Autospecies and post-myocardial infarction sera enhance the viability, proliferation, and maturation of 3D cardiac cell cultureRan Schwarzkopf, Michal Shachar, Tal Dvir, et al.Biofabrication|April 24, 2026
Extruded droplet-on-demand (X-DoD) bioprinting for controlled iPSC-based functional cortical network formationElisabeth Riska, Roni Cohen, Lior Perry-Tomer, et al.Advanced Materials (Deerfield Beach, Fla.)|August 21, 2025
One-Step Coordinated Multi-Kinetic 4D Printing of Human Vascularized Cardiac Tissues with Selective Fast-Shrinking CapillariesEster Sapir Baruch, Roni Cohen, Eric Silberman, et al.Small (Weinheim an Der Bergstrasse, Germany)|February 1, 2020
Injectable Cardiac Cell Microdroplets for Tissue RegenerationIdan Gal, Reuven Edri, Nadav Noor, et al.ACS Nano|December 28, 2018
A Self-Healing, All-Organic, Conducting, Composite Peptide Hydrogel as Pressure Sensor and Electrogenic Cell Soft SubstratePriyadarshi Chakraborty, Tom Guterman, Nofar Adadi, et al.Advanced Healthcare Materials|February 11, 2026
Dynamic Modulation of the Microenvironment Promotes Functional Maturation of Engineered TissuesEric Silberman, Hadas Oved, Itay Gil, et al.Nano Letters|September 9, 2011
Nanoparticles targeting the infarcted heartTal Dvir, Michael Bauer, Avi Schroeder, et al.Advanced Materials (Deerfield Beach, Fla.)|May 25, 2021
Nanoengineered Peptide-Based Antimicrobial Conductive Supramolecular Biomaterial for Cardiac Tissue EngineeringPriyadarshi Chakraborty, Hadas Oved, Darya Bychenko, et al.Pageof 9