Development of surface modified bilosomes for the oral delivery of quercetin: optimization, characterization in-vitro antioxidant, antimicrobial, and cytotoxicity study.

IF 6.5 2区 医学 Q1 PHARMACOLOGY & PHARMACY Drug Delivery Pub Date : 2022-12-01 DOI:10.1080/10717544.2022.2122634
Nabil K Alruwaili, Ameeduzzafar Zafar, Omar Awad Alsaidan, Mohd Yasir, Ehab M Mostafa, Sultan F Alnomasy, Alenazy Rawaf, Ali Alquraini, Fadhel A Alomar
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引用次数: 11

Abstract

Quercetin (QT) is a flavonoid that exhibits anti-oxidant and chemo-preventive activity. This research work aimed to develop surface-modified bilosomes (BS) of QT. The BS was prepared by the solvent evaporation method and optimized by the Box-Behnken design. The optimized QT-BS (QT-BS3opt) displayed vesicle size (143.51 nm), PDI (0.256), zeta potential (-15.4 mV), and entrapment efficiency (89.52%). Further, the optimized QT-BS formulation was coated with chitosan (CS). The XRD diffractogram of CS-QT-BS3opt1 did not exhibit extensive peaks of QT, revealing that QT is properly encapsulated in the polymer matrix. The QT-BS3opt and CS-QT-BS3opt1 exhibited sustained-release (86.62 ± 3.23% and 69.32 ± 2.57%, respectively) up to 24 h with the Korsmeyer-Peppas kinetic model (R=0.9089). CS-QT-BS3opt1 exhibited significantly (P < .05) high flux, i.e. 4.20-fold more than pure QT dispersion and 1.27-fold higher than QT-BS3opt. CS-QT-BS3opt1 showed significantly greater bio-adhesion (76.43 ± 2.42%) than QT-BS3opt (20.82 ± 1.45%). The antioxidant activity showed that QT from CS-QT-BS3opt1 has more remarkable (P < .05) antioxidant activity at each concentration than pure QT. The CS-QT-BS3opt1 exhibited 1.61-fold higher cytotoxicity against MFC7 and 1.44-fold higher cytotoxicity against MDA-MB-231 than pure QT. The CS-QT-BS3opt1 displayed a significantly greater antimicrobial potential against E. coli than against S. aureus. From all these findings, it could be concluded that surface-modified QT-BS might be an effective approach for increasing the efficacy of QT in the treatment of certain ailments.

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用于口服给药槲皮素的表面修饰胆小体的开发:优化、表征、体外抗氧化、抗菌和细胞毒性研究。
槲皮素(QT)是一种具有抗氧化和化学预防活性的类黄酮。本研究旨在开发QT表面修饰的胆甾体(BS),采用溶剂蒸发法制备,并采用Box-Behnken设计优化。优化后的QT-BS (QT-BS3opt)显示出囊泡大小(143.51 nm)、PDI(0.256)、zeta电位(-15.4 mV)和包封效率(89.52%)。并对优化后的QT-BS进行壳聚糖包被。CS-QT-BS3opt1的XRD衍射图没有出现广泛的QT峰,说明QT被适当地封装在聚合物基体中。根据korsmeer - peppas动力学模型(R2 =0.9089), QT-BS3opt和CS-QT-BS3opt1的缓释时间为24 h(分别为86.62±3.23%和69.32±2.57%)。CS-QT-BS3opt1表现出显著的P P E。大肠杆菌比金黄色葡萄球菌更有效。综上所述,表面修饰QT- bs可能是提高QT治疗某些疾病疗效的有效方法。
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来源期刊
Drug Delivery
Drug Delivery 医学-药学
CiteScore
11.80
自引率
5.00%
发文量
250
审稿时长
3.3 months
期刊介绍: Drug Delivery is an open access journal serving the academic and industrial communities with peer reviewed coverage of basic research, development, and application principles of drug delivery and targeting at molecular, cellular, and higher levels. Topics covered include all delivery systems including oral, pulmonary, nasal, parenteral and transdermal, and modes of entry such as controlled release systems; microcapsules, liposomes, vesicles, and macromolecular conjugates; antibody targeting; protein/peptide delivery; DNA, oligonucleotide and siRNA delivery. Papers on drug dosage forms and their optimization will not be considered unless they directly relate to the original drug delivery issues. Published articles present original research and critical reviews.
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