[HTML][HTML] AI-driven 3D bioprinting for regenerative medicine: from bench to bedside

Z Zhang, X Zhou, Y Fang, Z Xiong, T Zhang - Bioactive Materials, 2025 - Elsevier
In recent decades, 3D bioprinting has garnered significant research attention due to its
ability to manipulate biomaterials and cells to create complex structures precisely. However …

4D printing in dynamic and adaptive bone implants: Progress in bone tissue engineering

A Prakash, R Malviya, SB Sridhar, J Shareef - Bioprinting, 2024 - Elsevier
The emergence of 4D printing has revolutionised tissue engineering technology by
integrating dynamic and adaptive properties to previously static 3D-printed structures. This …

Advanced strategies in 3D bioprinting for vascular tissue engineering and disease modelling using smart bioinks

JJ Kim, DW Cho - Virtual and Physical Prototyping, 2024 - Taylor & Francis
ABSTRACT Advanced three-dimensional (3D) bioprinting technology enables the precise
production of complex vascular structures and biomimetic models, driving advancements in …

Innovative technologies on the fabrication of 3D/4D smart hydrogels and its biomedical applications-A compendious review

U Shashikumar, A Sarawat, K Deshmukh… - Advances in Colloid and …, 2024 - Elsevier
Repairing and regenerating damaged tissues or organs and restoring their functioning has
been the ultimate aim of medical innovations. Reviving healthcare blends tissue …

A critical review on advances and challenges of bioprinted cardiac patches

X Zhang, G Zhao, T Ma, CA Simmons, P Santerre - Acta Biomaterialia, 2024 - Elsevier
Myocardial infarction (MI), which causes irreversible myocardium necrosis, affects 0.25
billion people globally and has become one of the most significant epidemics of our time …

A review of advances in 3D and 4D bioprinting: toward mass individualization paradigm

TS Tamir, FB Teferi, X Hua, J Leng, G Xiong… - Journal of Intelligent …, 2024 - Springer
Human tissues and organs are not permanent and may deteriorate or malfunction over time.
Thus, the production of artificial tissues and organs is required. It can be achieved through …

3D Bioprinting of Natural Materials and Their AI-Enhanced Printability: A Review

S Grira, MS Mozumder, AHI Mourad, M Ramadan… - Bioprinting, 2025 - Elsevier
A wide array of biomaterials including proteins, polysaccharides, and other polymers are
used to fabricate green 3D printing inks suitable for use in the fields of biotechnology, water …

[HTML][HTML] Pioneering the future of dentistry: AI-Driven 3D bioprinting for next-generation clinical applications

Z Liang, X Liao, H Zong, X Zeng, H Liu, C Wu… - Translational Dental …, 2024 - Elsevier
Artificial intelligence (AI) is revolutionizing dentistry by enhancing the analysis of complex
medical imaging data, automating the identification of anatomical landmarks, and improving …

[HTML][HTML] Commercially available bioinks and state-of-the-art lab-made formulations for bone tissue engineering: a comprehensive review

EA Chiticaru, M Ioniță - Materials Today Bio, 2024 - Elsevier
Bioprinting and bioinks are two of the game changers in bone tissue engineering. This
review presents different bioprinting technologies including extrusion-based, inkjet-based …

[HTML][HTML] Characterization and Machine Learning-Driven Property Prediction of a Novel Hybrid Hydrogel Bioink Considering Extrusion-Based 3D Bioprinting

R Sarah, K Schimmelpfennig, R Rohauer, CL Lewis… - Gels, 2025 - mdpi.com
The field of tissue engineering has made significant advancements with extrusion-based
bioprinting, which uses shear forces to create intricate tissue structures. However, the …