PEŠTÁLOVÁ, Andrea, Sylvie PAVLOKOVÁ and Jan GAJDZIOK. Spray-dried microparticles containing ciprofloxacin for pulmonary delivery. In Student scientific conference MUNI PHARM 2023. 2023.
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Basic information
Original name Spray-dried microparticles containing ciprofloxacin for pulmonary delivery
Authors PEŠTÁLOVÁ, Andrea (203 Czech Republic, belonging to the institution), Sylvie PAVLOKOVÁ (203 Czech Republic, belonging to the institution) and Jan GAJDZIOK (203 Czech Republic, belonging to the institution).
Edition Student scientific conference MUNI PHARM 2023, 2023.
Other information
Original language English
Type of outcome Presentations at conferences
Field of Study 30104 Pharmacology and pharmacy
Country of publisher Czech Republic
Confidentiality degree is not subject to a state or trade secret
RIV identification code RIV/00216224:14160/23:00130642
Organization unit Faculty of Pharmacy
Keywords (in Czech) mikročástice; sprejové sušení; ciprofloxacin; cystická fibróza
Keywords in English microparticles; spray drying; ciprofloxacin; cystic fibrosis
Tags rivok, ÚFT
Changed by Changed by: JUDr. Sabina Krejčiříková, učo 383857. Changed: 7/11/2023 12:49.
Abstract
Inhalation therapy of cystic fibrosis using a dry powder inhaler (DPI) is currently being studied in many clinical trials. One possible treatment option is the administration of fluroqinolones in the treatment of P. aeruginosa infections and have been proven to reduce the bacterial load in the lungs and improve patients’ lung function. In order for antibiotic therapy to be effective, the formulation should focus on the parameters particles should have, especially their size and shape, porosity or aerosolisation properties. For the formulation of dry powders, the most common are spray technologies and also the addition of excipients such as porogens or substances from the amino acid group can modify the resulting properties. The aim was to optimize the drying conditions to produce aerodynamically suitable particles. In the next step, particles containing ciprofloxacin were formulated. The resulting particles were evaluated in terms of morphology, flow properties and geometric or aerodynamic diameter respectively.
Links
MUNI/A/1140/2021, interní kód MUName: Optimalizace porozity mikročástic pro plicní aplikaci (Acronym: porogeny)
Investor: Masaryk University
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