Progress in 3D bioprinting technology for tissue/organ regenerative engineering

I Matai, G Kaur, A Seyedsalehi, A McClinton… - Biomaterials, 2020 - Elsevier
Escalating cases of organ shortage and donor scarcity worldwide are alarming reminders of
the need for alternatives to allograft tissues. Within the last three decades, research efforts in …

Additive manufacturing of ceramics for dental applications: A review

R Galante, CG Figueiredo-Pina, AP Serro - Dental materials, 2019 - Elsevier
Objective The main goal of this review is to provide a detailed and comprehensive
description of the published work from the past decade regarding AM of ceramic materials …

Additive manufacturing of biomaterials

S Bose, D Ke, H Sahasrabudhe… - Progress in materials …, 2018 - Elsevier
Biomaterials are used to engineer functional restoration of different tissues to improve
human health and the quality of life. Biomaterials can be natural or synthetic. Additive …

3D printing of scaffolds for tissue regeneration applications

AV Do, B Khorsand, SM Geary… - Advanced healthcare …, 2015 - Wiley Online Library
The current need for organ and tissue replacement, repair, and regeneration for patients is
continually growing such that supply is not meeting demand primarily due to a paucity of …

Biodegradable materials for bone repair and tissue engineering applications

Z Sheikh, S Najeeb, Z Khurshid, V Verma, H Rashid… - Materials, 2015 - mdpi.com
This review discusses and summarizes the recent developments and advances in the use of
biodegradable materials for bone repair purposes. The choice between using degradable …

Recent advances in 3D printing of porous ceramics: A review

LC Hwa, S Rajoo, AM Noor, N Ahmad… - Current Opinion in Solid …, 2017 - Elsevier
Abstract 3D printing, alongside the rapidly advancing field of porous ceramics, is quickly
expanding the horizon of what is going to be possible in the future. In this paper, 3D printing …

3D printing of calcium phosphate ceramics for bone tissue engineering and drug delivery

R Trombetta, JA Inzana, EM Schwarz, SL Kates… - Annals of biomedical …, 2017 - Springer
Additive manufacturing, also known as 3D printing, has emerged over the past 3 decades as
a disruptive technology for rapid prototyping and manufacturing. Vat polymerization, powder …

Powder-based 3D printing for bone tissue engineering

G Brunello, S Sivolella, R Meneghello, L Ferroni… - Biotechnology …, 2016 - Elsevier
Bone tissue engineered 3-D constructs customized to patient-specific needs are emerging
as attractive biomimetic scaffolds to enhance bone cell and tissue growth and differentiation …

Analysis of factors influencing bone ingrowth into three-dimensional printed porous metal scaffolds: a review

Z Wang, C Wang, C Li, Y Qin, L Zhong, B Chen… - Journal of Alloys and …, 2017 - Elsevier
With the development of three-dimensional (3D) printing technology, porous metal scaffolds
can be well fabricated. In contrast to conventional methods, 3D printing of porous scaffolds is …

Porous metal implants: processing, properties, and challenges

A Bandyopadhyay, I Mitra, JD Avila… - … Journal of Extreme …, 2023 - iopscience.iop.org
Porous and functionally graded materials have seen extensive applications in modern
biomedical devices—allowing for improved site-specific performance; their appreciable …