Felton Linda A, Binzet Gülşilan, Wiley Cody, McChesney David, McConville Jason, Ҫelik Metin, Muttil Pavan
University of New Mexico College of Pharmacy, MSC09 5360, 1 University of New Mexico, Albuquerque, NM 87131, USA.
University of New Mexico College of Pharmacy, MSC09 5360, 1 University of New Mexico, Albuquerque, NM 87131, USA; Altınbaş University, Faculty of Pharmacy, Department of Pharmaceutical Technology, Bakırköy 34147 İstanbul, Turkey.
Int J Pharm. 2024 Jun 10;658:124191. doi: 10.1016/j.ijpharm.2024.124191. Epub 2024 May 1.
Conventional spray drying using a 2-fluid nozzle forms matrix microparticles, where drug is distributed throughout the particle and may not effectively mask taste. In contrast, spray drying using a 3-fluid nozzle has been reported to encapsulate material. The objective of this study was to spray dry Eudragit® E-PO (EE) with acetaminophen (APAP), a water-soluble model drug with a bitter taste, using 2- and 3-fluid nozzles for taste masking. Spray drying EE with APAP, however, resulted in yields of ≤ 13 %, irrespective of nozzle configuration. Yields improved when Eudragit® L 100-55 (EL) or Methocel® E6 (HPMC) was used in the inner fluid stream of the 3-fluid nozzle or in place of EE for the 2-fluid nozzle. Drug release from microparticles prepared with the 2-fluid nozzle was relatively rapid. Using EE in the outer fluid stream of the 3-fluid nozzle resulted in comparatively slower drug release, although drug release was observed, indicating that encapsulation was incomplete. Results from these studies also show that miscible polymers used in the two fluid streams mix during the spray drying process. In addition, findings from this study indicate that the polymer used in the inner fluid stream can impact drug release.
使用二流体喷嘴的传统喷雾干燥形成基质微粒,药物分布于整个颗粒中,可能无法有效掩盖味道。相比之下,据报道使用三流体喷嘴的喷雾干燥可包封材料。本研究的目的是使用二流体和三流体喷嘴对具有苦味的水溶性模型药物对乙酰氨基酚(APAP)与尤特奇®E-PO(EE)进行喷雾干燥以掩盖味道。然而,无论喷嘴配置如何,用APAP对EE进行喷雾干燥的产率均≤13%。当在三流体喷嘴的内部流体流中使用尤特奇®L 100-55(EL)或甲基纤维素®E6(HPMC),或在二流体喷嘴中代替EE使用时,产率提高。用二流体喷嘴制备的微粒的药物释放相对较快。在三流体喷嘴的外部流体流中使用EE导致药物释放相对较慢,尽管观察到有药物释放,这表明包封不完全。这些研究结果还表明,在喷雾干燥过程中,在两个流体流中使用的可混溶聚合物会混合。此外,本研究结果表明,在内部流体流中使用的聚合物会影响药物释放。