Design, printing, and engineering of regenerative biomaterials for personalized bone healthcare

Z Jia, X Xu, D Zhu, Y Zheng - Progress in Materials Science, 2023 - Elsevier
Trauma-and disease-related skeletal defects and illnesses are plaguing millions of people
especially in an ageing globe. Recently, the convergence of additive manufacturing (AM) …

Advances in engineering human tissue models

CM Moysidou, C Barberio, RM Owens - Frontiers in bioengineering …, 2021 - frontiersin.org
Research in cell biology greatly relies on cell-based in vitro assays and models that facilitate
the investigation and understanding of specific biological events and processes under …

[HTML][HTML] Charge-reversible and biodegradable chitosan-based microgels for lysozyme-triggered release of vancomycin

X Li, L Hetjens, N Wolter, H Li, X Shi, A Pich - Journal of advanced research, 2023 - Elsevier
Introduction High-dose drug administration for the conventional treatment of inflammatory
bowel disease induces cumulative toxicity and serious side effects. Currently, few reports …

3D printing of tissue engineering scaffolds: a focus on vascular regeneration

P Wang, Y Sun, X Shi, H Shen, H Ning… - Bio-design and …, 2021 - Springer
Tissue engineering is an emerging means for resolving the problems of tissue repair and
organ replacement in regenerative medicine. Insufficient supply of nutrients and oxygen to …

Anisotropic rod‐shaped particles influence injectable granular hydrogel properties and cell invasion

TH Qazi, J Wu, VG Muir, S Weintraub… - Advanced …, 2022 - Wiley Online Library
Granular hydrogels have emerged as a new class of injectable and porous biomaterials that
improve integration with host tissue when compared to solid hydrogels. Granular hydrogels …

[HTML][HTML] Large-sized bone defect repair by combining a decalcified bone matrix framework and bone regeneration units based on photo-crosslinkable osteogenic …

J Hao, B Bai, Z Ci, J Tang, G Hu, C Dai, M Yu, M Li… - Bioactive Materials, 2022 - Elsevier
Physiological repair of large-sized bone defects is great challenging in clinic due to a lack of
ideal grafts suitable for bone regeneration. Decalcified bone matrix (DBM) is considered as …

3D tissue and organ printing—hope and reality

A Shapira, T Dvir - Advanced Science, 2021 - Wiley Online Library
Abstract Three‐dimensional (3D) bioprinting is an emerging, groundbreaking strategy in
tissue engineering, allowing the fabrication of living constructs with an unprecedented …

A 3D‐Printed Assemblable Bespoke Scaffold as a Versatile Microcryogel Carrier for Site‐Specific Regenerative Medicine

SS Lee, N Kleger, GA Kuhn, H Greutert, X Du… - Advanced …, 2023 - Wiley Online Library
Advances in additive manufacturing have led to diverse patient‐specific implant designs
utilizing computed tomography, but this requires intensive work and financial implications …

Bioprinting of complex multicellular organs with advanced functionality—recent progress and challenges ahead

LE Bertassoni - Advanced Materials, 2022 - Wiley Online Library
Bioprinting has emerged as one of the most promising strategies for fabrication of functional
organs in the lab as an alternative to transplant organs. While progress in the field has …

Solvent Mediating the in Situ Self-Assembly of Polysaccharides for 3D Printing Biomimetic Tissue Scaffolds

R Zhang, L Deng, J Guo, H Yang, L Zhang, X Cao… - ACS …, 2021 - ACS Publications
Intensively studied 3D printing technology is frequently hindered by the effective printable
ink preparation method. Herein, we propose an elegant and gentle solvent consumption …