Bone infection is a feared complication following surgery or trauma that remains as an extremely difficult disease to deal with. So far, the outcome of therapy could be improved with the design of 3D implants, which combine the merits of osseous regeneration and local multidrug therapy so as to avoid bacterial growth, drug resistance and the feared side effects. Herein, hierarchical 3D multidrug scaffolds based on nanocomposite bioceramic and polyvinyl alcohol (PVA) prepared by rapid prototyping with an external coating of gelatin-glutaraldehyde (Gel-Glu) have been fabricated. These 3D scaffolds contain three antimicrobial agents (rifampin, levofloxacin and vancomycin), which have been localized in different compartments of the scaffold to ...
The development of new biomaterials for bone tissue regeneration with high bioactivity abilities and...
The rising prevalence of arthritis and osteochondral defects (OCDs) has led to growing worldwide dem...
In this article, the synthesis of biocompatible fibrous scaffolds with antimicrobial properties base...
Multifunctional-therapeutic three-dimensional (3D) scaffolds have been prepared. These biomaterials ...
Bone infection is a devastating condition resulting from implant or orthopaedic surgery. Therapeutic...
Bone infections following open bone fracture or implant surgery remain a challenge in the orthopedic...
Surgical implant-associated bone infections (osteomyelitis) have severe clinical and socioeconomic c...
The regeneration of bone remains one of the main challenges in the biomedical field, with the need t...
Bone infection treatment is a clinical challenge, often complicated by simultaneous polymicrobial in...
Thesis (Ph. D.)--University of Rochester. Department of Biomedical Engineering, 2019.Implant-associa...
3D-printing and additive manufacturing can be powerful techniques to design customized structures an...
Bone implant infection constitutes a major sanitary concern which is associated to high morbidity an...
Implant-associated infections are notoriously difficult to treat and may even result in amputation a...
3D porous scaffolds based on agarose and nanocrystalline apatite, two structural components that act...
The elimination of microbial flora in cases of immature permanent teeth with necrotic pulp is both k...
The development of new biomaterials for bone tissue regeneration with high bioactivity abilities and...
The rising prevalence of arthritis and osteochondral defects (OCDs) has led to growing worldwide dem...
In this article, the synthesis of biocompatible fibrous scaffolds with antimicrobial properties base...
Multifunctional-therapeutic three-dimensional (3D) scaffolds have been prepared. These biomaterials ...
Bone infection is a devastating condition resulting from implant or orthopaedic surgery. Therapeutic...
Bone infections following open bone fracture or implant surgery remain a challenge in the orthopedic...
Surgical implant-associated bone infections (osteomyelitis) have severe clinical and socioeconomic c...
The regeneration of bone remains one of the main challenges in the biomedical field, with the need t...
Bone infection treatment is a clinical challenge, often complicated by simultaneous polymicrobial in...
Thesis (Ph. D.)--University of Rochester. Department of Biomedical Engineering, 2019.Implant-associa...
3D-printing and additive manufacturing can be powerful techniques to design customized structures an...
Bone implant infection constitutes a major sanitary concern which is associated to high morbidity an...
Implant-associated infections are notoriously difficult to treat and may even result in amputation a...
3D porous scaffolds based on agarose and nanocrystalline apatite, two structural components that act...
The elimination of microbial flora in cases of immature permanent teeth with necrotic pulp is both k...
The development of new biomaterials for bone tissue regeneration with high bioactivity abilities and...
The rising prevalence of arthritis and osteochondral defects (OCDs) has led to growing worldwide dem...
In this article, the synthesis of biocompatible fibrous scaffolds with antimicrobial properties base...