Advancing 3D bioprinting through machine learning and artificial intelligence

S Ramesh, A Deep, A Tamayol, A Kamaraj, C Mahajan… - Bioprinting, 2024 - Elsevier
Abstract 3D bioprinting, a vital tool in tissue engineering, drug testing, and disease
modeling, is increasingly integrated with machine learning (ML) and artificial intelligence …

3D bioprinting for lung and tracheal tissue engineering: Criteria, advances, challenges, and future directions

SH Mahfouzi, SHS Tali, G Amoabediny - Bioprinting, 2021 - Elsevier
Transplantation is the only long-term treatment option for patients with end-stage lung and
tracheal diseases. However, transplantation is limited by shortage of donor organs and post …

Injectable PNIPAM/Hyaluronic acid hydrogels containing multipurpose modified particles for cartilage tissue engineering: Synthesis, characterization, drug release …

Z Atoufi, SK Kamrava, SM Davachi… - International journal of …, 2019 - Elsevier
Novel injectable thermosensitive PNIPAM/hyaluronic acid hydrogels containing various
amounts of chitosan-g-acrylic acid coated PLGA (ACH-PLGA) micro/nanoparticles were …

Biomimetic in vitro lung models: current challenges and future perspective

A Doryab, J Groll - Advanced Materials, 2023 - Wiley Online Library
As post‐COVID complications, chronic respiratory diseases are one of the foremost causes
of mortality. The quest for a cure for this recent global challenge underlines that the lack of …

Living sample viability measurement methods from traditional assays to nanomotion

H Al-Madani, H Du, J Yao, H Peng, C Yao, B Jiang… - Biosensors, 2022 - mdpi.com
Living sample viability measurement is an extremely common process in medical,
pharmaceutical, and biological fields, especially drug pharmacology and toxicology …

[HTML][HTML] Design considerations of benchtop fluid flow bioreactors for bio-engineered tissue equivalents in vitro

HW Hoyle, CML Stenger, SA Przyborski - Biomaterials and Biosystems, 2022 - Elsevier
One of the major aims of bio-engineering tissue equivalents in vitro is to create
physiologically relevant culture conditions to accurately recreate the cellular …

Advances in bioreactors for lung bioengineering: From scalable cell culture to tissue growth monitoring

SH Mahfouzi, G Amoabediny… - Biotechnology and …, 2021 - Wiley Online Library
Lung bioengineering has emerged to resolve the current lung transplantation limitations and
risks, including the shortage of donor organs and the high rejection rate of transplanted …

Enhanced articular cartilage decellularization using a novel perfusion-based bioreactor method

MS Mousavi, G Amoabediny, SH Mahfouzi… - Journal of the Mechanical …, 2021 - Elsevier
Current decellularization methods for articular cartilages require many steps, various and
high amounts of detergents, and a relatively long time to produce decellularized scaffolds. In …

Methods for Analyzing the Biological and Biomedical Properties of Biomaterials

J Rožanc, U Maver - Functional Biomaterials: Design and …, 2023 - Wiley Online Library
A biomaterial is a biological or synthetic substance that is designed to interact with biological
systems, and it is often used in medical applications to augment or replace a natural …

Teburu—Open source 3D printable bioreactor for tissue slices as dynamic three‐dimensional cell culture models

A Daneshgar, P Tang, C Remde, M Lommel… - Artificial …, 2019 - Wiley Online Library
Three‐dimensional tissue cultures are important models for the study of cell‐cell and cell‐
matrix interactions, as well as, to investigate tissue repair and reconstruction pathways …