Literature DB >> 28279741

Enhanced non invasive trans-tympanic delivery of ciprofloxacin through encapsulation into nano-spanlastic vesicles: Fabrication, in-vitro characterization, and comparative ex-vivo permeation studies.

Abdulaziz Mohsen Al-Mahallawi1, Omneya Mohammed Khowessah2, Raguia Ali Shoukri2.   

Abstract

The aim of this research was to encapsulate ciprofloxacin, a broad spectrum fluoroquinolone antibiotic, into Span 60 based nano-elastic vesicles, nano-spanlastics, for accomplishing improved non invasive trans-tympanic delivery, providing means for ototopical treatment of acute otitis media (AOM). To achieve this purpose, ciprofloxacin-loaded nano-spanlastics were prepared by thin film hydration (TFH) technique, using several non-ionic edge activators (EAs) according to full factorial design (32). The investigation of the effect of formulation variables on nano-spanlastic characteristics and selection of the optimum formula were performed using Design-Expert® software. The selected formulation was also subjected to comparative ex-vivo permeation studies through tympanic membrane (TM) of rabbits. Results revealed that the optimal nano-spanlastic formulation (S-2; containing 20% Brij 35 as an EA) exhibited nano-sized spherical vesicles (287.55±9.97nm), relatively high entrapment efficiency percent (51.81±1.57%), and good physical stability after six months of storage at 4-8°C. Ex-vivo TM permeation studies demonstrated the superiority of the optimal nano-spanlastic formulation over the commercial Ciprocin® drops. However, when compared to lipid-based elastic vesicles, nano-transfersomes, nano-spanlastics exhibited lower drug permeation through the TM. Concisely, the obtained results suggested that nano-spanlastics can be promising for improving trans-tympanic delivery of ciprofloxacin.
Copyright © 2017 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Elastic vesicles; Hydrophilic edge activator; Span 60; Thin film hydration; Tympanic membrane permeation

Mesh:

Substances:

Year:  2017        PMID: 28279741     DOI: 10.1016/j.ijpharm.2017.03.005

Source DB:  PubMed          Journal:  Int J Pharm        ISSN: 0378-5173            Impact factor:   5.875


  22 in total

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4.  A Method for Efficient Loading of Ciprofloxacin Hydrochloride in Cationic Solid Lipid Nanoparticles: Formulation and Microbiological Evaluation.

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6.  Tailoring of PEGylated bilosomes for promoting the transdermal delivery of olmesartan medoxomil: in-vitro characterization, ex-vivo permeation and in-vivo assessment.

Authors:  Rofida Albash; Mohamed A El-Nabarawi; Hanan Refai; Aly A Abdelbary
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7.  Transdermal delivery of fluvastatin sodium via tailored spanlastic nanovesicles: mitigated Freund's adjuvant-induced rheumatoid arthritis in rats through suppressing p38 MAPK signaling pathway.

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Journal:  Drug Deliv       Date:  2019-12       Impact factor: 6.419

8.  Statistical optimization of hyaluronic acid enriched ultradeformable elastosomes for ocular delivery of voriconazole via Box-Behnken design: in vitro characterization and in vivo evaluation.

Authors:  Abdurrahman Muhammad Fahmy; Mariam Hassan; Doaa Ahmed El-Setouhy; Saadia Ahmed Tayel; Abdulaziz Mohsen Al-Mahallawi
Journal:  Drug Deliv       Date:  2021-12       Impact factor: 6.419

9.  Formulation of Nanospanlastics as a Promising Approach for ‎Improving the Topical Delivery of a Natural Leukotriene Inhibitor (3-‎Acetyl-11-Keto-β-Boswellic Acid): Statistical Optimization, in vitro ‎Characterization, and ex vivo Permeation Study.

Authors:  Farid Badria; Eman Mazyed
Journal:  Drug Des Devel Ther       Date:  2020-09-15       Impact factor: 4.162

10.  Formulation of Sodium Valproate Nanospanlastics as a Promising Approach for Drug Repurposing in the Treatment of Androgenic Alopecia.

Authors:  Farid A Badria; Hassan A Fayed; Amira K Ibraheem; Ahmed F State; Eman A Mazyed
Journal:  Pharmaceutics       Date:  2020-09-11       Impact factor: 6.321

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