Chitosan hydrogels in 3D printing for biomedical applications

M Rajabi, M McConnell, J Cabral, MA Ali - Carbohydrate Polymers, 2021 - Elsevier
Tissue engineering and regenerative medicine have entered a new stage of development
by the recent progress in biology, material sciences, and particularly an emerging additive …

Chitosan-based inks for 3D printing and bioprinting

M Taghizadeh, A Taghizadeh, MK Yazdi, P Zarrintaj… - Green …, 2022 - pubs.rsc.org
The advent of 3D-printing/additive manufacturing in biomedical engineering field has
introduced great potential for the preparation of 3D structures that can mimic native tissues …

ZnL2-BPs Integrated Bone Scaffold under Sequential Photothermal Mediation: A Win–Win Strategy Delivering Antibacterial Therapy and Fostering Osteogenesis …

Y Wu, Q Liao, L Wu, Y Luo, W Zhang, M Guan, H Pan… - ACS …, 2021 - ACS Publications
Implant-related infections are serious complications after bone surgery and can compromise
the intended functions of artificial implants, leading to surgical failure and even amputation …

Biofabrication of bone tissue: approaches, challenges and translation for bone regeneration

D Tang, RS Tare, LY Yang, DF Williams, KL Ou… - Biomaterials, 2016 - Elsevier
The rising incidence of bone disorders has resulted in the need for more effective therapies
to meet this demand, exacerbated by an increasing ageing population. Bone tissue …

[HTML][HTML] Bone tissue engineering using 3D printing

S Bose, S Vahabzadeh, A Bandyopadhyay - Materials today, 2013 - Elsevier
With the advent of additive manufacturing technologies in the mid 1980s, many applications
benefited from the faster processing of products without the need for specific tooling or dies …

[HTML][HTML] Applications and multidisciplinary perspective on 3D printing techniques: Recent developments and future trends

AA Elhadad, A Rosa-Sainz, R Canete, E Peralta… - Materials Science and …, 2023 - Elsevier
In industries as diverse as automotive, aerospace, medical, energy, construction,
electronics, and food, the engineering technology known as 3D printing or additive …

3D printing of composite calcium phosphate and collagen scaffolds for bone regeneration

JA Inzana, D Olvera, SM Fuller, JP Kelly, OA Graeve… - Biomaterials, 2014 - Elsevier
Low temperature 3D printing of calcium phosphate scaffolds holds great promise for
fabricating synthetic bone graft substitutes with enhanced performance over traditional …

Hyperelastic “bone”: A highly versatile, growth factor–free, osteoregenerative, scalable, and surgically friendly biomaterial

AE Jakus, AL Rutz, SW Jordan, A Kannan… - Science translational …, 2016 - science.org
Despite substantial attention given to the development of osteoregenerative biomaterials,
severe deficiencies remain in current products. These limitations include an inability to …

3D printed drug delivery and testing systems—a passing fad or the future?

SH Lim, H Kathuria, JJY Tan, L Kang - Advanced drug delivery reviews, 2018 - Elsevier
Abstract The US Food and Drug Administration approval of the first 3D printed tablet in 2015
has ignited growing interest in 3D printing, or additive manufacturing (AM), for drug delivery …

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 …