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 …

[HTML][HTML] An overview on materials and techniques in 3D bioprinting toward biomedical application

S Vanaei, MS Parizi, F Salemizadehparizi… - Engineered …, 2021 - Elsevier
Abstract Three-dimensional (3D) bioprinting, an additive manufacturing based technique of
biomaterials fabrication, is an innovative and auspicious strategy in medical and …

[HTML][HTML] Recent advances in hyaluronic acid-based hydrogels for 3D bioprinting in tissue engineering applications

YW Ding, XW Zhang, CH Mi, XY Qi, J Zhou… - Smart Materials in …, 2023 - Elsevier
Abstract 3D bioprinting technology can rapidly process cell-loaded biomaterials to prepare
personalized scaffolds for repairing defective tissues, tissue regeneration, and even printing …

Recent progress in extrusion 3D bioprinting of hydrogel biomaterials for tissue regeneration: a comprehensive review with focus on advanced fabrication techniques

M Askari, MA Naniz, M Kouhi, A Saberi… - Biomaterials …, 2021 - pubs.rsc.org
Over the last decade, 3D bioprinting has received immense attention from research
communities for developing functional tissues. Thanks to the complexity of tissues, various …

3D bioprinting for skin tissue engineering: Current status and perspectives

T Weng, W Zhang, Y Xia, P Wu… - Journal of tissue …, 2021 - journals.sagepub.com
Skin and skin appendages are vulnerable to injury, requiring rapidly reliable regeneration
methods. In recent years, 3D bioprinting has shown potential for wound repair and …

Engineering and functionalization of gelatin biomaterials: From cell culture to medical applications

AB Bello, D Kim, D Kim, H Park… - Tissue Engineering Part B …, 2020 - liebertpub.com
Health care and medicine were revolutionized in recent years by the development of
biomaterials, such as stents, implants, personalized drug delivery systems, engineered …

[HTML][HTML] Electron and laser-based additive manufacturing of Ni-based superalloys: a review of heterogeneities in microstructure and mechanical properties

NK Adomako, N Haghdadi, S Primig - Materials & Design, 2022 - Elsevier
The adaptation of additive manufacturing (AM) for Ni-based superalloys has gained
significance in aerospace and power-generation industries due to the ability to fabricate …

3D bioprinted scaffolds for bone tissue engineering: State-of-the-art and emerging technologies

Z Yazdanpanah, JD Johnston, DML Cooper… - … in bioengineering and …, 2022 - frontiersin.org
Treating large bone defects, known as critical-sized defects (CSDs), is challenging because
they are not spontaneously healed by the patient's body. Due to the limitations associated …

[HTML][HTML] Bio-inspired hydrogel composed of hyaluronic acid and alginate as a potential bioink for 3D bioprinting of articular cartilage engineering constructs

C Antich, J de Vicente, G Jiménez, C Chocarro… - Acta biomaterialia, 2020 - Elsevier
Bioprinting is a promising tool to fabricate well-organized cell-laden constructs for repair and
regeneration of articular cartilage. The selection of a suitable bioink, in terms of composition …

Current advances and future perspectives of 3D printing natural-derived biopolymers

J Liu, L Sun, W Xu, Q Wang, S Yu, J Sun - Carbohydrate polymers, 2019 - Elsevier
Abstract 3D printing enables the complex or customized structures production in high speed
and resolution. However, the lack of bio-based materials with user-defined biochemical and …