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1.
Adv Sci (Weinh) ; 9(23): e2201415, 2022 08.
Article in English | MEDLINE | ID: mdl-35657076

ABSTRACT

The spread of viral and bacterial pathogens mediated by contact with surfaces is a leading cause of infection worldwide. COVID-19 and the continuous rise of deaths associated with antibiotic-resistant bacteria highlight the need to impede surface-mediated transmission. A sprayable coating with an intrinsic ability to resist the uptake of bacteria and viruses from surfaces and droplets, such as those generated by sneezing or coughing, is reported. The coating also provides an effective microbicidal functionality against bacteria, providing a dual barrier against pathogen uptake and transmission. This antimicrobial functionality is fully preserved following scratching and other induced damage to its surface or 9 days of submersion in a highly concentrated suspension of bacteria. The coatings also register an 11-fold decrease in viral contamination compared to the noncoated surfaces.


Subject(s)
Anti-Infective Agents , COVID-19 , Viruses , Anti-Bacterial Agents/pharmacology , Anti-Infective Agents/pharmacology , Bacteria , Humans
2.
Biomaterials ; 219: 119366, 2019 10.
Article in English | MEDLINE | ID: mdl-31374482

ABSTRACT

Biomedical implants have been widely used in various orthopedic treatments, including total hip arthroplasty, joint arthrodesis, fracture fixation, non-union, dental repair, etc. The modern research and development of orthopedic implants have gradually shifted from traditional mechanical support to a bioactive graft in order to endow them with better osteoinduction and osteoconduction. Inspired by structural and mechanical properties of natural bone, this review provides a panorama of current biological surface modifications for facilitating the interaction between medical implants and bone tissue and gives a future outlook for fabricating the next-generation multifunctional and smart implants by systematically biomimicking the physiological processes involved in formation and functioning of bones.


Subject(s)
Biomimetics , Bone and Bones/physiology , Orthopedics , Prostheses and Implants , Tissue Engineering , Animals , Bone and Bones/blood supply , Bone and Bones/immunology , Humans , Prostheses and Implants/microbiology , Surface Properties
3.
Materials (Basel) ; 12(14)2019 Jul 20.
Article in English | MEDLINE | ID: mdl-31330857

ABSTRACT

Bioabsorbable materials have received increasing attention as innovative systems for the development of osteoconductive biomaterials for bone tissue engineering. In this paper, chitosan-based composites were synthesized adding hydroxyapatite and/or magnetite in a chitosan matrix by in situ precipitation technique. Composites were characterized by optical and electron microscopy, thermogravimetric analyses (TGA), x-ray diffraction (XRD), and in vitro cell culture studies. Hydroxyapatite and magnetite were found to be homogeneously dispersed in the chitosan matrix and the composites showed superior biocompatibility and the ability to support cell attachment and proliferation; in particular, the chitosan/hydroxyapatite/magnetite composite (CS/HA/MGN) demonstrated superior bioactivity with respect to pure chitosan (CS) and to the chitosan/hydroxyapatite (CS/HA) scaffolds.

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