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Investigation of a novel 3-fluid nozzle spray drying technology for the engineering of multifunctional layered microparticles.

机译:用于多功能层状微粒工程的新型3流体喷嘴喷雾干燥技术的研究。

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摘要

OBJECTIVE: To examine the potential of a novel 3-fluid nozzle spray drying technology to formulate differentiated layered microparticles (MPs) of diclofenac sodium (DFS)/ethyl cellulose (EC).METHODS: DFS/EC MPs were formulated using the inner and/or outer nozzles of a novel 3-fluid nozzle and compared with MPs formed using conventional (2-fluid) spray drying. MPs were characterised for particle size and for morphology by TEM and SEM. Distribution of DFS and EC of MPs was analysed by FT-IR and DSC. A two-factor, three-level (3(2)) factorial design was applied to investigate the effect and interaction of total feed solid content (TSC) and feed flow rate (FFR) on MP size, D(50%) and D(90%), bulk density and MP yield.RESULTS: Interestingly, TEM demonstrated that MPs formed by 3-fluid nozzle spray drying showed a heterogeneous internal morphology consisting of a core and coat, characteristic of a microcapsule. In comparison, MPs from conventional spray drying showed a homogeneous internal morphology, characteristics of a matrix system. This differential distribution of DFS/EC was supported by FT-IR and DSC. Results of multiple linear regression analysis showed a linear relationship for the effect of TSC and FFR on all responses except for D(50%) where a quadratric model was valid. The effect of TSC/FFR on MP size and yield was similar to conventional spray drying.CONCLUSION: The novel 3-fluid nozzle spray drying offers a new method of designing layered microparticles or microcapsules which can have wide applications from drug stabilisation to controlled drug delivery and targeting.
机译:目的:研究一种新型的三流体喷嘴喷雾干燥技术在配制双氯芬酸钠(DFS)/乙基纤维素(EC)的分化层状微粒(MPs)中的潜力。方法:DFS / EC MPs使用内部和/或或新型3流体喷嘴的外部喷嘴,并与使用常规(2流体)喷雾干燥法形成的MP进行比较。通过TEM和SEM表征MP的粒度和形态。通过FT-IR和DSC分析MP的DFS和EC的分布。采用两因素三级(3(2))析因设计来研究总饲料固体含量(TSC)和饲料流速(FFR)对MP尺寸,D(50%)和D的影响和相互作用结果表明:有趣的是,TEM证实,由三流体喷嘴喷雾干燥形成的MP表现出异质的内部形态,包括核和被膜,具有微囊的特征(90%),堆积密度和MP产率。相比之下,常规喷雾干燥法制得的MP表现出均一的内部形态,即基质系统的特征。 FT-IR和DSC支持DFS / EC的这种差异分布。多元线性回归分析的结果表明,TSC和FFR对所有响应的影响呈线性关系,但D(50%)时,二次模型有效。 TSC / FFR对MP尺寸和收率的影响与常规喷雾干燥相似。结论:新型3流体喷嘴喷雾干燥提供了一种设计层状微粒或微囊的新方法,该方法可从药物稳定化到控制药物递送广泛应用和定位。

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