ArticleGels (Basel, Switzerland)2022
Formulation and Evaluation of Moxifloxacin Loaded Bilosomes In-Situ Gel: Optimization to Antibacterial Evaluation.
Article in Gels (Basel, Switzerland), 2022. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 19 papers.
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Who cites it
19 citing papers in PubMed.
- Development and evaluation of an in situ gelling flurbiprofen throat spray for enhanced mucosal drug delivery and throat inflammation treatment.Naunyn-Schmiedeberg's archives of pharmacology · 2026Article
- Evaluating the potential of travoprost-thymoquinone co-loaded liposomes: a glaucomatous rabbit model study.Therapeutic delivery · 2025Article
- Nanovesicular Drug Delivery Systems for Rare Ocular Diseases: Advances, Challenges, and Future Directions.AAPS PharmSciTech · 2025Review
- The Pharmaceutical and Pharmacological Potential Applications of Bilosomes as Nanocarriers for Drug Delivery.Molecules (Basel, Switzerland) · 2025Review
- Gels as Promising Delivery Systems: Physicochemical Property Characterization and Recent Applications.Pharmaceutics · 2025Review
- Intranasal Mucoadhesive In Situ Gel of Glibenclamide-Loaded Bilosomes for Enhanced Therapeutic Drug Delivery to the Brain.Pharmaceutics · 2025Article
- Deep-insights: Nanoengineered gel-based localized drug delivery for arthritis management.Asian journal of pharmaceutical sciences · 2025Review
- Development and optimization of dapagliflozin oral nano-bilosomes using response surface method:Nanotheranostics · 2025Article
- Delafloxacin-Loaded Poly(d,l-lactide-ACS omega · 2024Article
- Development of Gentamicin Bilosomes LadenAdvanced pharmaceutical bulletin · 2024Article
- Spanlastic-laden nanogel as a plausible platform for dermal delivery of bimatoprost with superior cutaneous deposition and hair regrowth efficiency in androgenic alopecia.International journal of pharmaceutics: X · 2024Article
- Formulation, optimization and evaluation of ocular gel containing nebivolol Hcl-loaded ultradeformable spanlastics nanovesicles: In vitro and in vivo studies.International journal of pharmaceutics: X · 2024Article
- Emerging Trends in Bilosomes as Therapeutic Drug Delivery Systems.Pharmaceutics · 2024Review
- Formulation, optimization, in-vivo biodistribution studies and histopathological safety assessment of duloxetine HCl-loaded ultra-elastic nanovesicles for antidepressant effect after intranasal and transdermal delivery.International journal of pharmaceutics: X · 2023Article
- Spanlastic-laden in situ gel as a promising approach for ocular delivery of Levofloxacin: In-vitro characterization, microbiological assessment, corneal permeability and in-vivo study.International journal of pharmaceutics: X · 2023Article
- Bilosomes as Nanocarriers for the Drug and Vaccine Delivery against Gastrointestinal Infections: Opportunities and Challenges.Journal of functional biomaterials · 2023Review
- Moxifloxacin HCl-Incorporated Aqueous-Induced Nitrocellulose-Based In Situ Gel for Periodontal Pocket Delivery.Gels (Basel, Switzerland) · 2023Article
- Article
- Development of Ciprofloxacin-Loaded Bilosomes In-Situ Gel for Ocular Delivery: Optimization, In-Vitro Characterization, Ex-Vivo Permeation, and Antimicrobial Study.Gels (Basel, Switzerland) · 2022Article
Corrections and comments
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Authors and funding
6 authors.
Funding
Abstract
In this study, moxifloxacin (MX)-loaded bilosome (BS) in situ gel was prepared to improve ocular residence time. MX-BSs were prepared using the thin-film hydration method. They were optimized using a Box−Behnken design (BBD) with bile salt (A, sodium deoxycholate), an edge activator (B, Cremophor EL), and a surfactant (C, Span 60) as process variables. Their effects were assessed based on hydrodynamic diameter (Y1), entrapment efficacy (Y2), and polydispersity index (Y3). The optimized formulation (MX-BSop) depicted a low hydrodynamic diameter (192 ± 4 nm) and high entrapment efficiency (76 ± 1%). Further, MX-BSop was successfully transformed into an in situ gel using chitosan and sodium alginate as carriers. The optimized MX-BSop in situ gel (MX-BSop-Ig4) was further evaluated for gelling capacity, clarity, pH, viscosity, in vitro release, bio-adhesiveness, ex vivo permeation, toxicity, and antimicrobial properties. MX-BSop-Ig4 exhibited an optimum viscosity of 65.4 ± 5.3 cps in sol and 287.5 ± 10.5 cps in gel states. The sustained release profile (82 ± 4% in 24 h) was achieved with a Korsmeyer−Peppas kinetic release model (R2 = 0.9466). Significant bio-adhesion (967.9 dyne/cm2) was achieved in tear film. It also exhibited 1.2-fold and 2.8-fold higher permeation than MX-Ig and a pure MX solution, respectively. It did not show any toxicity to the tested tissue, confirmed by corneal hydration (77.3%), cornea histopathology (no internal changes), and a HET-CAM test (zero score). MX-BSop-Ig4 exhibited a significantly (p < 0.05) higher antimicrobial effect than pure MX against Staphylococcus aureus and Escherichia coli. The findings suggest that bilosome in situ gel is a good alternative to increase corneal residence time, as well as to improve therapeutic activity.
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Registered trials
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