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Besifloxacin Nanocrystal: Towards an Innovative Ophthalmic Preparation
José Izo Santana da Silva de Jesus1, Felipe Rebello Lourenço1, Kelly Ishida2
1Department of Pharmacy, Faculty of Pharmaceutical Sciences, University of São Paulo, Professor Lineu Prestes Av 580, Cidade Universitária, São Paulo 05508-000, Brazil.
Abstract:
Bacterial conjunctivitis significantly impacts public health, including more than one-third of eye diseases reported worldwide. It is an infection caused by various aerobic and anaerobic bacteria and is highly contagious. Therefore, it has a high incidence of bacterial resistance to the antibiotics commonly used for treatment. Among the most recent antibiotics, besifloxacin is a fourth-generation fluoroquinolone antibiotic indicated exclusively for topical ophthalmic use. Due to its importance in treating bacterial conjunctivitis and its low solubility in water, limiting its efficacy, a nanotechnology-based drug delivery preparation was developed to overcome this hurdle. Besifloxacin nanocrystals were prepared by small-scale wet milling and response surface methodology, using Povacoat® as a stabilizer. The particle's average hydrodynamic diameter (Z-ave) was approximately 550 nm (17 times smaller than raw material), with a polydispersity index (PdI) of less than 0.2. The saturation solubility increased about two times compared to the raw material, making it possible to increase the dissolution rate of this drug substance, potentially improving its bioavailability and safety. The optimized preparation was stable under an accelerated stability study (90 days). The Z-ave, PZ, PdI, and content did not alter significantly during this period. Furthermore, the 0.6% m/m besifloxacin nanocrystals at the maximum dose and the Povacoat® stabilizer did not show toxicity in Galleria mellonella larvae. The innovative ophthalmic preparation minimum inhibitory concentration (MIC) was 0.0960 µg/mL and 1.60 µg/mL against Staphylococcus aureus and Pseudomonas aeruginosa, respectively, confirming in vitro efficacy. Therefore, besifloxacin nanocrystals revealed the potential for reduced dosing of the drug substance, with a minor occurrence of adverse effects and greater patient adherence to treatment.
Insights
This study developed besifloxacin nanocrystals to improve treatment for bacterial conjunctivitis. The nanotechnology approach enhanced drug solubility and stability, showing promising in vitro efficacy and safety.
Area of Science:
- Ophthalmology
- Nanotechnology
- Pharmacology
Background:
- Bacterial conjunctivitis affects over one-third of global eye diseases and poses challenges due to antibiotic resistance.
- Besifloxacin, a topical ophthalmic antibiotic, has limited efficacy due to poor water solubility.
Purpose of the Study:
- To develop a nanotechnology-based drug delivery system for besifloxacin to enhance its solubility and therapeutic potential.
- To characterize the besifloxacin nanocrystals and evaluate their stability, safety, and in vitro antimicrobial activity.
Main Methods:
- Besifloxacin nanocrystals were prepared using wet milling and response surface methodology with Povacoat® as a stabilizer.
- Characterization included particle size (Z-ave), polydispersity index (PdI), and saturation solubility.
- Stability was assessed over 90 days, and toxicity was evaluated in Galleria mellonella larvae. In vitro efficacy was determined using minimum inhibitory concentration (MIC) assays.
Main Results:
- Besifloxacin nanocrystals achieved an average hydrodynamic diameter of ~550 nm with a PdI < 0.2, significantly reducing particle size.
- Saturation solubility and dissolution rate were approximately doubled, indicating improved bioavailability potential.
- The preparation demonstrated good stability over 90 days, was non-toxic in larvae, and showed potent in vitro activity against Staphylococcus aureus and Pseudomonas aeruginosa.
Conclusions:
- Besifloxacin nanocrystals represent a promising nanotechnology-based formulation for bacterial conjunctivitis treatment.
- This approach may allow for reduced dosing, fewer adverse effects, and improved patient adherence.
- The enhanced solubility and bioavailability of besifloxacin nanocrystals offer a viable alternative to conventional treatments.
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