Seafood waste: a source for preparation of commercially employable chitin/chitosan materials

M Yadav, P Goswami, K Paritosh, M Kumar… - Bioresources and …, 2019 - Springer
Modern seafood processing practices result in amassment of a large volume of waste
products, ie, skin, head, tails, shells, scales, backbones, etc. These waste products may …

Biological properties of copper-doped biomaterials for orthopedic applications: A review of antibacterial, angiogenic and osteogenic aspects

A Jacobs, G Renaudin, C Forestier, JM Nedelec… - Acta biomaterialia, 2020 - Elsevier
Copper is an essential trace element required for human life, and is involved in several
physiological mechanisms. Today researchers have found and confirmed that Cu has …

The roles of ions on bone regeneration

E O'Neill, G Awale, L Daneshmandi, O Umerah… - Drug discovery today, 2018 - Elsevier
Highlights•Alternative bone regenerative therapeutics are needed.•Ions have been
proposed to regenerate skeletal tissue.•Drug delivery systems have been studied to deliver …

[HTML][HTML] Current biocompatible materials in oral regeneration: a comprehensive overview of composite materials

E Tahmasebi, M Alam, M Yazdanian… - Journal of Materials …, 2020 - Elsevier
Reconstructive orthodontics is increasingly benefiting from regenerative medicine and tissue
engineering strategies. The scaffolds used both in reconstruction or in the regeneration of …

[HTML][HTML] Copper-based biomaterials for bone and cartilage tissue engineering

Y Wang, W Zhang, Q Yao - Journal of orthopaedic translation, 2021 - Elsevier
Backgroud Tissue engineering using cells, scaffolds, and bioactive molecules can promote
the repair and regeneration of injured tissues. Copper is an essential element for the human …

Application of bioactive metal ions in the treatment of bone defects

S Li, Y Cui, H Liu, Y Tian, G Wang, Y Fan… - Journal of Materials …, 2022 - pubs.rsc.org
The treatment of bone defects is an important problem in clinical practice. The rapid
development of bone tissue engineering (BTE) may provide a new method for bone defect …

Nano-hydroxyapatite structures for bone regenerative medicine: Cell-material interaction

AH Hoveidaei, M Sadat-Shojai, S Mosalamiaghili… - Bone, 2024 - Elsevier
Bone tissue engineering holds great promise for the regeneration of damaged or severe
bone defects. However, several challenges hinder its translation into clinical practice. To …

Applications of metals for bone regeneration

K Glenske, P Donkiewicz, A Köwitsch… - International journal of …, 2018 - mdpi.com
The regeneration of bone tissue is the main purpose of most therapies in dental medicine.
For bone regeneration, calcium phosphate (CaP)-based substitute materials based on …

Multifunctional copper-containing carboxymethyl chitosan/alginate scaffolds for eradicating clinical bacterial infection and promoting bone formation

Y Lu, L Li, Y Zhu, X Wang, M Li, Z Lin… - … applied materials & …, 2018 - ACS Publications
Repairing infected bone defects relies on a scaffold that can not only fill the defects to
promote bone formation but also kill clinically present bacterial pathogens such as …

Effects of magnesium alloy corrosion on biological response–Perspectives of metal-cell interaction

J Kim, H Pan - Progress in Materials Science, 2023 - Elsevier
Mg alloys are biodegradable metals widely used in orthopedic and cardiovascular
applications because Mg ions are essential trace elements known to induce angiogenesis …