Resorbable biomaterials used for 3D scaffolds in tissue engineering: A review

S Vach Agocsova, M Culenova, I Birova, L Omanikova… - Materials, 2023 - mdpi.com
This article provides a thorough overview of the available resorbable biomaterials
appropriate for producing replacements for damaged tissues. In addition, their various …

[HTML][HTML] Unraveling the potential of 3D bioprinted immunomodulatory materials for regulating macrophage polarization: State-of-the-art in bone and associated tissue …

SD Dutta, TV Patil, K Ganguly, A Randhawa, KT Lim - Bioactive Materials, 2023 - Elsevier
Macrophage-assisted immunomodulation is an alternative strategy in tissue engineering,
wherein the interplay between pro-inflammatory and anti-inflammatory macrophage cells …

Enhanced bone tissue regeneration using a 3D-printed poly (lactic acid)/Ti6Al4V composite scaffold with plasma treatment modification

M Zarei, M Shabani Dargah, M Hasanzadeh Azar… - Scientific reports, 2023 - nature.com
The mechanical and biological properties of polylactic acid (PLA) need to be further
improved in order to be used for bone tissue engineering (BTE). Utilizing a material …

3D printing of complicated GelMA-coated Alginate/Tri-calcium silicate scaffold for accelerated bone regeneration

N Beheshtizadeh, A Farzin, S Rezvantalab… - International Journal of …, 2023 - Elsevier
Polymer-based composite scaffolds are an attractive class of biomaterials due to their
suitable physical and mechanical performance as well as appropriate biological properties …

[HTML][HTML] Degradation assessment of Mg-Incorporated 3D printed PLA scaffolds for biomedical applications

F Ali, SN Kalva, KH Mroue, KS Keyan, Y Tong… - Bioprinting, 2023 - Elsevier
Abstract Polylactic acid (PLA)/Magnesium (Mg)-based composites exhibit great potential for
applications in bone regeneration and tissue engineering. PLA is a biodegradable and …

Improving physio-mechanical and biological properties of 3D-printed PLA scaffolds via in-situ argon cold plasma treatment

M Zarei, SS Sayedain, A Askarinya, M Sabbaghi… - Scientific Reports, 2023 - nature.com
As a bone tissue engineering material, polylactic acid (PLA) has received significant
attention and interest due to its ease of processing and biocompatibility. However, its …

Fabrication, characterization and evaluating properties of 3D printed PLA-Mn scaffolds

S Dehghan-Toranposhti, R Bakhshi, R Alizadeh… - Scientific Reports, 2024 - nature.com
Polylactic acid (PLA) based scaffolds have attained considerable attention in recent years
for being used as biodegradable implants in bone tissue engineering (BTE), owing to their …

Synergistic effect of CaCO3 addition and in-process cold atmospheric plasma treatment on the surface evolution, mechanical properties, and in-vitro degradation …

M Zarei, MMH Nikoo, R Alizadeh… - Journal of the Mechanical …, 2024 - Elsevier
The ease of processing and biocompatibility of polylactic acid (PLA) have made it a widely
used material for fused deposition modeling (FDM)-based 3D printing. In spite of this, PLA …

Encapsulation of thymol in gelatin methacryloyl (GelMa)-based nanoniosome enables enhanced antibiofilm activity and wound healing

M Moghtaderi, S Bazzazan, G Sorourian, M Sorourian… - Pharmaceutics, 2023 - mdpi.com
Non-healing wounds impose huge cost on patients, healthcare, and society, which are
further fortified by biofilm formation and antimicrobial resistance (AMR) problems. Here …

Mg-doped PLA composite as a potential material for tissue engineering—synthesis, characterization, and additive manufacturing

F Ali, A Al Rashid, SN Kalva, M Koç - Materials, 2023 - mdpi.com
Magnesium (Mg)/Polylactic acid (PLA) composites are promising materials for bone
regeneration and tissue engineering applications. PLA is a biodegradable and …