High-Efficiency Broad-Spectrum Antibacterial Activity of Chitosan/Zinc Ion/Polyoxometalate Composite Films for Water Treatment DOI
Zhe Ji, Margaret Liang, Chunhui Wang

et al.

Langmuir, Journal Year: 2024, Volume and Issue: unknown

Published: Dec. 10, 2024

The development of multifunctional films with rapidly killing microorganisms and adsorbing residual antibiotics in wastewater remains a challenging endeavor. In this work, the chitosan/zinc ion/polyoxometalate (CS/Zn

Language: Английский

Trash to treasure: advancing resource efficiency using waste-derived fillers as sustainable reinforcing agents in bioplastics DOI Creative Commons
Zeba Tabassum, Madhuri Girdhar, Abhinav Anand

et al.

Materials Advances, Journal Year: 2025, Volume and Issue: unknown

Published: Jan. 1, 2025

The escalating environmental challenges posed by different waste sources, including agricultural residues and industrial byproducts, necessitate innovative solutions for utilization.

Language: Английский

Citations

3

An Overview on the Big Players in Bone Tissue Engineering: Biomaterials, Scaffolds and Cells DOI Open Access
María Pía Ferraz

International Journal of Molecular Sciences, Journal Year: 2024, Volume and Issue: 25(7), P. 3836 - 3836

Published: March 29, 2024

Presently, millions worldwide suffer from degenerative and inflammatory bone joint issues, comprising roughly half of chronic ailments in those over 50, leading to prolonged discomfort physical limitations. These conditions become more prevalent with age lifestyle factors, escalating due the growing elderly populace. Addressing these challenges often entails surgical interventions utilizing implants or grafts, though treatments may entail complications such as pain tissue death at donor sites for along immune rejection. To surmount challenges, engineering has emerged a promising avenue injury repair reconstruction. It involves use different biomaterials development three-dimensional porous matrices scaffolds, alongside osteoprogenitor cells growth factors stimulate natural regeneration. This review compiles methodologies that can be used develop are important replacement Biomaterials orthopedic implants, several scaffold types production methods, well techniques assess biomaterials’ suitability human use—both laboratory settings within living organisms—are discussed. Even researchers have had some success, there is still room improvements their processing techniques, especially ones make scaffolds mechanically stronger without weakening biological characteristics. Bone therefore area rise bone-related injuries.

Language: Английский

Citations

15

Application of Gelatin-Based Composites in Bone Tissue Engineering DOI Creative Commons

Enguang Wu,

Lianghui Huang,

Yaochun Shen

et al.

Heliyon, Journal Year: 2024, Volume and Issue: 10(16), P. e36258 - e36258

Published: Aug. 1, 2024

Natural bone tissue has the certain function of self-regeneration and repair, but it is difficult to repair large damage. Recently, although autologous grafting "gold standard" for improving high cost, few donor sources. Besides, allogeneic causes greater immune reactions, which hardly meet clinical needs. The engineering (BTE) been developed promote repair. Gelatin, due its biocompatibility, receives a great deal attention in BTE research field. However, disadvantages natural gelatin are poor mechanical properties single structural property. With development BTE, often used combination with range natural, synthetic polymers, inorganic materials achieve synergistic effects complex physiological process review delves into fundamental structure unique gelatin, as well excellent necessary scaffold materials. Then this explores application modified three-dimensional (3D) scaffolds various structures including 3D fiber scaffolds, hydrogels, nanoparticles. In addition, focuses on efficacy composite consisting or polymeric materials, bioactive ceramics metallic/non-metallic defects. these gelatin-based provides new ideas design good biosafety.

Language: Английский

Citations

13

Recent progress in green thin film membrane based materials for desalination: Design, properties and applications DOI
Saleem Raza, Asif Hayat,

Tariq Bashir

et al.

Desalination, Journal Year: 2024, Volume and Issue: 591, P. 117973 - 117973

Published: Aug. 5, 2024

Language: Английский

Citations

11

3D bioprinting: Advancing the future of food production layer by layer DOI Creative Commons

Nisansala Chandimali,

Seon-Gyeong Bak,

Eun Hyun Park

et al.

Food Chemistry, Journal Year: 2025, Volume and Issue: 471, P. 142828 - 142828

Published: Jan. 9, 2025

Language: Английский

Citations

1

Recent Progress in Alginate-based Nanocomposites for Bone Tissue Engineering Applications DOI

Sundaravadhanan Lekhavadhani,

Sushma Babu,

Abinaya Shanmugavadivu

et al.

Colloids and Surfaces B Biointerfaces, Journal Year: 2025, Volume and Issue: 250, P. 114570 - 114570

Published: Feb. 18, 2025

Language: Английский

Citations

1

Insight into recent trends in ZnO nanoparticle reinforced chitosan-based composite films for sustainable packaging: A critical review on its current status, challenges and perspective DOI
Zeba Tabassum, Anand Mohan, Madhuri Girdhar

et al.

Materials Today Proceedings, Journal Year: 2024, Volume and Issue: unknown

Published: May 1, 2024

Language: Английский

Citations

6

Insights into depolymerization of chitosan using acid hydrolysis, direct photolysis, and photocatalysis: A review DOI Creative Commons

Nurul Amanina A. Suhaimi,

Nur Batrisyia Amirul,

A. Hasman

et al.

Results in Chemistry, Journal Year: 2025, Volume and Issue: unknown, P. 102044 - 102044

Published: Jan. 1, 2025

Language: Английский

Citations

0

Bone Tissue Engineering: From Biomaterials to Clinical Trials DOI

Swapnali Jagadale,

Mrunal N. Damle, Meghnad G. Joshi

et al.

Advances in experimental medicine and biology, Journal Year: 2025, Volume and Issue: unknown

Published: Jan. 1, 2025

Language: Английский

Citations

0

Functionalized zeolite regulates bone metabolic microenvironment DOI Creative Commons
Mingwei Xu, He Liu, Jiaxin Zhang

et al.

Materials Today Bio, Journal Year: 2025, Volume and Issue: 31, P. 101558 - 101558

Published: Feb. 5, 2025

The regulation of bone metabolic microenvironment imbalances in diseases such as osteoporosis, defects, infections, and tumors remains a significant challenge orthopedics. Therefore, it has become urgent to develop biomaterials with effective microenvironmental regulatory functions. Zeolites, advanced biomedical materials, possess distinctive physicochemical properties multi-level pore structures, adjustable frameworks, easily modifiable surfaces, excellent adsorption capabilities. These advantageous characteristics give zeolites broad application prospects regulating the microenvironment. this paper first classifies used regulate based on their topological structures compositional frameworks. Subsequently, provides detailed description modification strategies for zeolite materials aimed at Next, comprehensive summary was provided preparation Additionally, focuses specific applications conditions imbalance, orthopedic tumors, highlighting potential enhancing osteogenic microenvironments, controlling treating tumors. Finally, outlines challenges associated This review comprehensively summarizes regulation, aiming provide guidance future research development.

Language: Английский

Citations

0