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1.
J Biomater Appl ; 35(2): 287-298, 2020 08.
Article in English | MEDLINE | ID: mdl-32443958

ABSTRACT

PURPOSE: In this study, we aimed to determine the regenerative and antimicrobial impact of the electrospun nanofiber mats, with/without silver nanoparticles (AgNPs), on full-thickness skin wounds in rabbits. METHODS: Polyvinyl alcohol was combined with gelatin to provide biocompatible electrospun binary nanofiber mats. AgNPs were added to the polyvinyl alcohol/gelatin mixture to obtain ternary nanofiber-AgNPs mats. Binary and ternary nanofiber mats were characterized by scanning electron microscopy before being applied as wound dressings in vivo. Subsequently, wound healing was evaluated. RESULTS: Both nanofiber/nanofiber-AgNPs mats improved the microscopic quality of the healed skin, albeit without obvious acceleration of the healing rate. As well, both types of nanofiber mats were able to combat microbial invasion into the wound bed. CONCLUSIONS: Both binary polyvinyl alcohol/gelatin and ternary polyvinyl alcohol/gelatin/AgNPs nanofiber mats developed in the present study depicted similar regenerative and antimicrobial potential when applied as full-thickness wound dressing. However, in comparison to the binary nanofiber mats, no obvious synergistic effect was observed after loading nanofibers with AgNPs.


Subject(s)
Gelatin/therapeutic use , Metal Nanoparticles/therapeutic use , Nanofibers/therapeutic use , Polyvinyl Alcohol/therapeutic use , Silver/therapeutic use , Wound Healing , Animals , Anti-Bacterial Agents/therapeutic use , Bandages , Biocompatible Materials/therapeutic use , Male , Nanofibers/ultrastructure , Rabbits , Skin/drug effects , Skin/pathology , Skin/ultrastructure , Wound Healing/drug effects
2.
J Equine Vet Sci ; 88: 102904, 2020 05.
Article in English | MEDLINE | ID: mdl-32303299

ABSTRACT

The donkey is of socio-economic value yet imaging techniques in both healthy and abnormal limbs are a limiting factor in research and medicine. The objective was to determine anatomical features of both healthy and clinically abnormal donkey metacarpophalangeal and metatarsophalangeal joints (n = 13) using anatomical dissection, casting, X-ray and computed tomography. The joint capsule contained two palmar/plantar and two dorsal recesses. The proximal-palmar or plantar recess was larger than the distodorsal recess and potential sites of approaches to the recesses were determined. Soft tissue structures were distinguished using computed tomography at 300 mA, which was superior to 120 mA. This methodology gave better assessments of the synovial tendon sheath, joint recesses, and cruciate, collateral, and short sesamoidean ligaments. Computed tomography provided outstanding discrimination between the cortex and medulla of the third metacarpal, the proximal sesamoid bones, the proximal phalanx, and excellent details of the osseous structures. Although the joints appeared free from exostosis using X-ray; the position and extension of exostosis in pathologically affected donkeys (a novel finding) were revealed using computed tomography with 300 mA in comparison to 120 mA. The study also provided an anatomical record of the metacarpophalangeal and metatarsophalangeal joints using the latest technology, which could impact on clinical situations including anesthesia injection sites.


Subject(s)
Metatarsophalangeal Joint , Sesamoid Bones , Animals , Equidae , Metatarsophalangeal Joint/diagnostic imaging , Radiography , Sesamoid Bones/diagnostic imaging , Tomography, X-Ray Computed/veterinary
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