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作 者:Priyanka Prakash Rade Prabhanjan Shridhar Giram Ajinkya A.Shitole Neeti Sharma Baijayantimala Garnaik
机构地区:[1]Polymer Science and Engineering Division,CSIR-National Chemical Laboratory,Pune 411008,India [2]Academy of Scientifc and Innovative Research(AcSIR),Ghaziabad 201002,India [3]Symbiosis School of Biological Sciences,Symbiosis International(Deemed University),Pune 412115,India
出 处:《Advanced Fiber Materials》2022年第1期76-88,共13页先进纤维材料(英文)
基 金:Ms.Priyanka P.Rade gratefully acknowledges the Department of Science and Technology,New Delhi,India for the award of DST-INSPIRE fellowship(IF160594)for her doctoral research;The authors also gratefully acknowledge LIA MATSUCAT,France for the collaboration;The authors express their heartfelt gratitude to Evonik Industries,Mumbai,India,for providing Eudragit S 100 as a gift sample.
摘 要:Metronidazole(MTZ)loaded Eudragit S-100(ES-100)nonwoven nanofbrous mats were successfully electrospun and evaluated for intestinal drug delivery.MTZ was varied in the range of 1–15%(w/w)in ES-100 nanofbrous mats,the morphological characterization of nanofbrous mats was carried out using FE-SEM and the average diameter of nanofber was found in the range 150–600 nm.WAXD and DSC demonstrated the amorphous nature of MTZ in ES-100 nanofbrous mats.Their contact angle analysis confrmed the hydrophobic nature.The mechanical strength of ES-100 nanofbrous mats decreased with increasing MTZ concentration.The drug release profles showed 74%MTZ release from ES-100d within 2 h at pH 6.8 which is the colonic environment.Antibacterial activities against gram-positive bacteria(Staphylococcus aureus)and gramnegative bacteria(Escherichia coli)showed that the ES-100 nanofbrous mats loaded with MTZ exhibited good activity.
关 键 词:ES-100 METRONIDAZOLE Nanofbers Antibacterial Intestinal drug delivery
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