Designing biomimetic scaffolds for skin tissue engineering

J Chen, Y Fan, G Dong, H Zhou, R Du, X Tang… - Biomaterials …, 2023 - pubs.rsc.org
There is a general increase in the number of patients with non-healing skin wounds,
imposing a huge social and economic burden on patients and healthcare systems. Severe …

Three‐dimensional multicellular biomaterial platforms for biomedical application

J Hao, C Qin, C Wu - Interdisciplinary Materials, 2023 - Wiley Online Library
Abstract The three‐dimensional (3D) multicellular platforms prepared by cells or
biomaterials have been widely applied in biomedical fields for the regeneration of complex …

Extracellular Matrix‐Bioinspired Anisotropic Topographical Cues of Electrospun Nanofibers: A Strategy of Wound Healing through Macrophage Polarization

H Park, TV Patil, SD Dutta, J Lee… - Advanced …, 2024 - Wiley Online Library
The skin serves as the body's outermost barrier and is the largest organ, providing protection
not only to the body but also to various internal organs. Owing to continuous exposure to …

Structural and topological design of conformal bilayered scaffolds for bone tissue engineering

L Vaiani, AE Uva, A Boccaccio - Thin-Walled Structures, 2023 - Elsevier
A fundamental outcome of bone tissue engineering is the regeneration of bone defects
presenting large dimensions. A promising solution in biomedical practice is the implantation …

In Vitro Studies on 3D-Printed PLA/HA/GNP Structures for Bone Tissue Regeneration

AM Negrescu, AC Mocanu, F Miculescu, V Mitran… - Biomimetics, 2024 - mdpi.com
The successful regeneration of large-size bone defects remains one of the most critical
challenges faced in orthopaedics. Recently, 3D printing technology has been widely used to …

Unravelling hierarchical patterning of biomaterial inks with 3D microfluidic-assisted spinning: a paradigm shift in bioprinting technologies

S Mohammadi, G Cidonio - Frontiers in Biomaterials Science, 2023 - frontiersin.org
For decades, 3D bioprinting has offered a revolutionising approach to combine living cells
and biomaterials to engineer complex, yet functional constructs. However, traditional 3D …

Lithium-doped titanium dioxide-based multilayer hierarchical structure for accelerating nerve-induced bone regeneration

Q Zhang, S Gao, B Li, Q Li, X Li, J Cheng… - … Applied Materials & …, 2024 - ACS Publications
Despite considerable advances in artificial bone tissues, the absence of neural network
reconstruction in their design often leads to delayed or ineffective bone healing. Hence, we …

Biomimetic Scaffolds—A Novel Approach to Three Dimensional Cell Culture Techniques for Potential Implementation in Tissue Engineering

T Górnicki, J Lambrinow, A Golkar-Narenji, K Data… - Nanomaterials, 2024 - mdpi.com
Biomimetic scaffolds imitate native tissue and can take a multidimensional form. They are
biocompatible and can influence cellular metabolism, making them attractive bioengineering …

Biomimetic injectable and bilayered hydrogel scaffold based on collagen and chondroitin sulfate for the repair of osteochondral defects

Y Cao, H Zhang, M Qiu, Y Zheng, X Shi… - International Journal of …, 2024 - Elsevier
The simultaneous regeneration of articular cartilage and subchondral bone is a major
challenge. Bioinspired scaffolds with distinct regions resembling stratified anatomical …

Fabrication of novel strontium-coated bioactive ceramic-glass (C2S (2P6) C2S) 3D-porous scaffold for the proliferation and osteogenic differentiation of bone marrow …

J Elango, K Salazar, P Velasquez, A Murciano… - Ceramics …, 2024 - Elsevier
This study fabricated novel multilayer 3D-scaffolds by coating bioactive Calcium silicate (Ca
2 SiO 4)/glass phase (calcium ultraphosphate, Ca 2 P 6 O 17)/Ca 2 SiO 4 (C 2 S (2P 6) C 2 …