Poly (lactic Acid): A versatile biobased polymer for the future with multifunctional properties—From monomer synthesis, polymerization techniques and molecular …

E Balla, V Daniilidis, G Karlioti, T Kalamas… - Polymers, 2021 - mdpi.com
Environmental problems, such as global warming and plastic pollution have forced
researchers to investigate alternatives for conventional plastics. Poly (lactic acid)(PLA), one …

[HTML][HTML] Bone physiological microenvironment and healing mechanism: Basis for future bone-tissue engineering scaffolds

G Zhu, T Zhang, M Chen, K Yao, X Huang, B Zhang… - Bioactive materials, 2021 - Elsevier
Bone-tissue defects affect millions of people worldwide. Despite being common treatment
approaches, autologous and allogeneic bone grafting have not achieved the ideal …

Multifunctional antimicrobial materials: From rational design to biomedical applications

S Duan, R Wu, YH Xiong, HM Ren, C Lei… - Progress in Materials …, 2022 - Elsevier
Though the history of mankind, we are strongly fighting with infected diseases that are
induced by bacteria, fungi, viruses, and other pathogens. Although a variety of medicines …

[HTML][HTML] Current applications of poly (lactic acid) composites in tissue engineering and drug delivery

S Liu, S Qin, M He, D Zhou, Q Qin, H Wang - Composites Part B …, 2020 - Elsevier
Biodegradable poly (lactic acid)(PLA) presents suitable physicochemical properties and
biocompatibility for biomedical engineering. However, PLA has some drawbacks, such as …

Biomaterials and nanomedicine for bone regeneration: Progress and future prospects

J Zhou, Z Zhang, J Joseph, X Zhang, BE Ferdows… - …, 2021 - Wiley Online Library
Bone defects pose a heavy burden on patients, orthopedic surgeons, and public health
resources. Various pathological conditions cause bone defects including trauma, tumors …

[HTML][HTML] Scaffolds in the microbial resistant era: Fabrication, materials, properties and tissue engineering applications

Á Serrano-Aroca, A Cano-Vicent, RS i Serra… - Materials Today Bio, 2022 - Elsevier
Due to microbial infections dramatically affect cell survival and increase the risk of implant
failure, scaffolds produced with antimicrobial materials are now much more likely to be …

[HTML][HTML] Degradation mechanisms and acceleration strategies of poly (lactic acid) scaffold for bone regeneration

P Feng, J Jia, M Liu, S Peng, Z Zhao, C Shuai - Materials & Design, 2021 - Elsevier
Abstract Poly (lactic acid)(PLA) with good biodegradability, biocompatibility and
processability has a wide application prospect in bone tissue engineering. However, PLA …

Polymeric and inorganic nanoscopical antimicrobial fillers in dentistry

P Makvandi, JT Gu, EN Zare, B Ashtari, A Moeini… - Acta biomaterialia, 2020 - Elsevier
Failure of dental treatments is mainly due to the biofilm accumulated on the dental materials.
Many investigations have been conducted on the advancements of antimicrobial dental …

The 3D bioprinted scaffolds for wound healing

PE Antezana, S Municoy, MI Álvarez-Echazú… - Pharmaceutics, 2022 - mdpi.com
Skin tissue engineering and regeneration aim at repairing defective skin injuries and
progress in wound healing. Until now, even though several developments are made in this …

[HTML][HTML] Advanced Hydrogel systems for mandibular reconstruction

J Guo, H Yao, X Li, L Chang, Z Wang, W Zhu, Y Su… - Bioactive materials, 2023 - Elsevier
Mandibular defect becomes a prevalent maxillofacial disease resulting in mandibular
dysfunctions and huge psychological burdens to the patients. Considering the routine …