2024
DOI: 10.1016/j.mtbio.2023.100940
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Coaxial electrospun Ag-NPs-loaded endograft membrane with long-term antibacterial function treating mycotic aortic aneurysm

Qingxi Hu,
Zhenwei Huang,
Haiguang Zhang
et al.
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Cited by 2 publications
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“…Drugs can be loaded into electrospun filament materials and the release of drugs from the nanofibers can be regulated by adjusting the process and formulation parameters. Drug release from the fibers can be attributed to dissolution, absorption, subsequent diffusion through water-filled pores, and controlled degradation of the polymer ( Hu et al, 2024 ). Hatamzadeh et al reported a novel conductive nanofiber scaffold that can be used for tissue engineering requiring electrical activity, including nerve, bone, and muscle reconstruction ( Massoumi et al, 2019 ).…”
Section: Application Of Biomaterials Scaffolds In Scimentioning
confidence: 99%
“…Drugs can be loaded into electrospun filament materials and the release of drugs from the nanofibers can be regulated by adjusting the process and formulation parameters. Drug release from the fibers can be attributed to dissolution, absorption, subsequent diffusion through water-filled pores, and controlled degradation of the polymer ( Hu et al, 2024 ). Hatamzadeh et al reported a novel conductive nanofiber scaffold that can be used for tissue engineering requiring electrical activity, including nerve, bone, and muscle reconstruction ( Massoumi et al, 2019 ).…”
Section: Application Of Biomaterials Scaffolds In Scimentioning
confidence: 99%
“…Therefore, antimicrobial packaging materials can be prepared by introducing antimicrobial additives into cellulose-based materials that do not have antimicrobial activity by themselves, allowing them to be used more widely in the market. Silver nanoparticles (Ag NPs) are considered to be the most commonly used inorganic antibacterial material, which has been widely used in medicine [14], wound dressing [15], pharmaceutical [16], and other fields. Ag NPs have good antimicrobial performance and biocompatibility, which are suitable for incorporation into cellulose-based materials to prepare antimicrobial composites.…”
Section: Introductionmentioning
confidence: 99%