Development, characterization and stability evaluation of ciprofloxacin-loaded parenteral nutrition nanoemulsions
Autor: | Ibrahim Tolaymat, Abdelbary Elhissi, Kirsty Palmer, Ammar Said Suliman, Husam M. Younes, Basel Arafat, Rose Tom, Mohammad Najlah |
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Rok vydání: | 2020 |
Předmět: |
Fat Emulsions
Intravenous Drug Compounding Drug Storage nanoemulsion Biological Availability Pharmaceutical Science 02 engineering and technology polydispersity index 030226 pharmacology & pharmacy zeta potential 03 medical and health sciences 0302 clinical medicine Drug Stability Ciprofloxacin ciprofloxacin Zeta potential medicine Plant Oils Particle Size Droplet size Phospholipids Drug Carriers Chromatography Chemistry General Medicine Hydrogen-Ion Concentration stability 021001 nanoscience & nanotechnology Anti-Bacterial Agents Nanostructures Soybean Oil Drug Liberation Parenteral nutrition Emulsions 0210 nano-technology medicine.drug |
Zdroj: | Pharmaceutical Development and Technology. 25:579-587 |
ISSN: | 1097-9867 1083-7450 |
Popis: | © 2020, © 2020 Informa UK Limited, trading as Taylor & Francis Group. In this study, two licensed total parenteral nanoemulsion formulations (Clinoleic® and Intralipid®) were loaded with ciprofloxacin (CP). The physicochemical characteristics and stability profiles of the formulations were investigated using a range of drug concentrations. Furthermore, formulation stability was evaluated over a period of six months at room temperature (RT) or 4 °C. Loading CP into nanoemulsions resulted in no significant differences in their measured droplet size, polydispersity index (PI), zeta potential, and pH. Drug entrapment efficiency (EE) was relatively high for all formulations, regardless of nanoemulsion type, and the drug release was sustained over 24 h. Stability studies of all formulations were performed at 4 °C and RT for 180 and 60 days, respectively. At 4 °C for 180 days, both Clinoleic® and Intralipid® formulations at a range of drug concentrations (1–10 mg/ml) showed high stabilities measured periodically by the average droplet sizes, PI, pH, and zeta potential values. Similar results, but pH values, were shown when the formulations for both nanoemulsion stored at RT for 60 days. Overall, this study has shown that CP was successfully loaded into clinically licensed TPN lipid nanoemulsions. The resultant CP-loaded nanoemulsion formulations demonstrated desirable physicochemical properties and were stable upon storage at 4 °C for up to six months. |
Databáze: | OpenAIRE |
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