Biobased plastics and bionanocomposites: Current status and future opportunities

MM Reddy, S Vivekanandhan, M Misra… - Progress in polymer …, 2013 - Elsevier
This paper presents a broad review on the recent advances in the research and
development of biobased plastics and bionanocomposites that are used in various …

Nanofiller reinforced biodegradable PLA/PHA composites: Current status and future trends

J Sun, J Shen, S Chen, MA Cooper, H Fu, D Wu… - Polymers, 2018 - mdpi.com
The increasing demand for environmental protection has led to the rapid development of
greener and biodegradable polymers, whose creation provided new challenges and …

[HTML][HTML] Current natural bioactive materials in bone and tooth regeneration in dentistry: a comprehensive overview

ET Moghadam, M Yazdanian, M Alam… - Journal of Materials …, 2021 - Elsevier
Tissue regeneration is a vital phenomenon in the skeletal system of human beings during
their life span. The structure of bony architecture and teeth are highly dependent to this …

Synthetic calcium–phosphate materials for bone grafting

O Mishchenko, A Yanovska, O Kosinov, D Maksymov… - Polymers, 2023 - mdpi.com
Synthetic bone grafting materials play a significant role in various medical applications
involving bone regeneration and repair. Their ability to mimic the properties of natural bone …

Biomedical applications of soy protein: A brief overview

S Tansaz, AR Boccaccini - Journal of Biomedical Materials …, 2016 - Wiley Online Library
Soy protein (SP) based materials are gaining increasing interest for biomedical applications
because of their tailorable biodegradability, abundance, being relatively inexpensive …

[HTML][HTML] Multiscale porous scaffolds constructed of carbonate apatite honeycomb granules for bone regeneration

K Hayashi, A Tsuchiya, M Shimabukuro, K Ishikawa - Materials & Design, 2022 - Elsevier
The use of scaffolds with pores ranging from macroscale to nanoscale (ie, multiscale pores),
is an effective strategy to achieve favorable bone regeneration. Here, we report the …

Three-dimensional printing of soy protein scaffolds for tissue regeneration

KB Chien, E Makridakis, RN Shah - Tissue Engineering Part C …, 2013 - liebertpub.com
Fabricating three-dimensional (3D) porous scaffolds with controlled structure and geometry
is crucial for tissue regeneration. To date, exploration in printing 3D natural protein scaffolds …

Osseointegration of additive manufacturing Ti–6Al–4V and Co–Cr–Mo alloys, with and without surface functionalization with hydroxyapatite and type I collagen

S Brogini, M Sartori, G Giavaresi, P Cremascoli… - Journal of the …, 2021 - Elsevier
The introduction of additive manufacturing (AM) technologies has profoundly revolutionized
the implant manufacturing industry, with a particularly significant impact on the field of …

Biodegradable composite scaffolds of bioactive glass/chitosan/carboxymethyl cellulose for hemostatic and bone regeneration

C Chen, H Li, J Pan, Z Yan, Z Yao, W Fan, C Guo - Biotechnology letters, 2015 - Springer
Hemostasis in orthopedic osteotomy or bone cutting requires different methods and
materials. The bleeding of bone marrow can be mostly stopped by bone wax. However, the …

Porous nano-hydroxyapatite/collagen scaffold containing drug-loaded ADM–PLGA microspheres for bone cancer treatment

ZJ Rong, LJ Yang, BT Cai, LX Zhu, YL Cao… - Journal of Materials …, 2016 - Springer
To develop adriamycin (ADM)-encapsulated poly (lactic-co-glycolic acid)(PLGA)
nanoparticles in a porous nano-hydroxyapatite/collagen scaffold (ADM–PLGA–NHAC). To …