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   Erythromycin Releasing PVA/sucrose and PVA/honey Hydrogels as Wound Dressings with AntibacterialActivity and Enhanced Bio-adhesion  
   
نویسنده fathollahipour shahrzad ,koosha mojtaba ,tavakoli javad ,maziarfar susan ,fallah mehrabadi jalil
منبع iranian journal of pharmaceutical research - 2020 - دوره : 19 - شماره : 1 - صفحه:448 -464
چکیده    The present study deals with preparation and characterization of thermally crosslinked pva-based hydrogels containing honey and sucrose for the purpose of erythromycin delivery. the hydrogels have been characterized and compared by scanning electron microscopy, fourier transform infrared spectroscopy, and bio-adhesion tests. swelling measurements showed that addition of sucrose and honey decreased the equilibrium swelling of the hydrogels. results of release studies showed that the amount of erythromycin, released at the early hours was higher for pva/sucrose and pva/honey hydrogels compared to pva hydrogel while the drug released at later times was highly reduced for pva/honey hydrogel. both peppas-sahlin and korsmeyer-peppas models fitted well to the release data. fitting peppas-sahlin model to the release data showed that at the initial times, release of drug from the hydrogel network was mainly governed by fickian mechanism; however, at later times the drug is dominantly released by relaxational mechanism due to swelling of the network,. addition of honey improved the bio-adhesion of pva/honey hydrogel as compared to pva/sucrose and pure pva hydrogel. results of antibacterial tests showed growth inhibitory action of erythromycin-loaded pva hydrogels against pseudomonas aeruginosa and staphylococcus aureus bacteria. this study indicates that these hybrid hydrogels are capable of being used as functional wound dressings aiming to control the rate of antibiotic delivery to the wound site and prevent the wounds from infection.
کلیدواژه Erythromycin; Honey; Hydrogel; Polyvinyl alcohol; Sucrose; Wound dressing
آدرس university of akron, department of chemical and biomolecular engineering, USA, shahid beheshti university, faculty of new technologies engineering, Iran, flinders university, the medical device research institute (mdri), school of computer science engineering and mathematics, mechanical engineering biomechanics and implants research group, australia, university of tehran, faculty of new science and technologies, department of life science engineering, Iran, lister laboratory of microbiology, iran
 
     
   
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