Printability and shape fidelity of bioinks in 3D bioprinting

A Schwab, R Levato, M D'Este, S Piluso, D Eglin… - Chemical …, 2020 - ACS Publications
Three-dimensional bioprinting uses additive manufacturing techniques for the automated
fabrication of hierarchically organized living constructs. The building blocks are often …

Biofabrication of living actuators

R Raman - Annual Review of Biomedical Engineering, 2024 - annualreviews.org
The impact of tissue engineering has extended beyond a traditional focus in medicine to the
rapidly growing realm of biohybrid robotics. Leveraging living actuators as functional …

Fabrication of drug-loaded hydrogels with stereolithographic 3D printing

PR Martinez, A Goyanes, AW Basit… - International journal of …, 2017 - Elsevier
Abstract 3D printing (3DP) technologies have been attracting much recent interest as new
methods of fabricating medicines and medical devices. Of the many types of 3DP available …

Blends of gelatin and hyaluronic acid stratified by stereolithographic bioprinting approximate cartilaginous matrix gradients

LK Shopperly, J Spinnen, JP Krüger… - … Research Part B …, 2022 - Wiley Online Library
Stereolithographic bioprinting holds great promise in the quest for creating artificial,
biomimetic cartilage‐like tissue. To introduce a more biomimetic approach, we examined …

A modular approach to the design, fabrication, and characterization of muscle-powered biological machines

R Raman, C Cvetkovic, R Bashir - Nature protocols, 2017 - nature.com
Biological machines consisting of cells and biomaterials have the potential to dynamically
sense, process, respond, and adapt to environmental signals in real time. As a first step …

Light-degradable hydrogels as dynamic triggers for gastrointestinal applications

R Raman, T Hua, D Gwynne, J Collins, S Tamang… - Science …, 2020 - science.org
Triggerable materials capable of being degraded by selective stimuli stand to transform our
capacity to precisely control biomedical device activity and performance while reducing the …

Multilayered “SMART” hydrogel systems for on-site drug delivery applications

N Kumar, B Ghosh, A Kumar, R Koley, S Dhara… - Journal of Drug Delivery …, 2023 - Elsevier
In recent practices, multi-stimuli responsive polymers that respond to diverse physiological
or externally applied stimuli are proven to have great utility as regenerative biomaterials …

Role of polymers in 3D printing technology for drug delivery-an overview

A Jain, KK Bansal, A Tiwari, A Rosling… - Current …, 2018 - ingentaconnect.com
Background: 3D printing (3DP) is an emerging technique for fabrication of a variety of
structures and complex geometries using 3D model data. In 1986, Charles Hull introduced …

Biofabrication in tissue engineering

T Woodfield, K Lim, P Morouço… - Reference Module …, 2017 - researchportal.hw.ac.uk
Organ biofabrication techniques offer the potential to produce living 3D tissue constructs to
repair or replace damaged or diseased human tissues and organs. Using these advanced …

Advances in bioinks and in vivo imaging of biomaterials for CNS applications

EP Oliveira, I Malysz-Cymborska, D Golubczyk… - Acta biomaterialia, 2019 - Elsevier
Due to increasing life expectancy incidence of neurological disorders is rapidly rising, thus
adding urgency to develop effective strategies for treatment. Stem cell-based therapies were …