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新型 3 流体喷嘴喷雾干燥技术用于多功能分层微颗粒的工程研究。

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

机构信息

School of Pharmacy, Royal College of Surgeons in Ireland, 123, St Stephens Green, Dublin 2, Ireland.

出版信息

Expert Opin Drug Deliv. 2012 Dec;9(12):1463-74. doi: 10.1517/17425247.2012.734295. Epub 2012 Oct 13.

Abstract

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.

摘要

目的

研究新型 3 流体喷嘴喷雾干燥技术将双氯芬酸钠(DFS)/乙基纤维素(EC)制成差异化分层微颗粒(MPs)的潜力。

方法

使用新型 3 流体喷嘴的内喷嘴和/或外喷嘴来配制 DFS/EC MPs,并与常规(2 流体)喷雾干燥形成的 MPs 进行比较。通过 TEM 和 SEM 对 MPs 的粒径和形态进行了表征。通过 FT-IR 和 DSC 分析 MPs 中 DFS 和 EC 的分布。采用二因素三水平(3(2))析因设计研究总进料固体含量(TSC)和进料流速(FFR)对 MP 粒径、D(50%)和 D(90%)、堆密度和 MP 产率的影响和相互作用。

结果

有趣的是,TEM 表明,3 流体喷嘴喷雾干燥形成的 MPs 表现出不均匀的内部形态,由核和壳组成,这是微胶囊的特征。相比之下,常规喷雾干燥形成的 MPs 具有均匀的内部形态,这是基质系统的特征。这种 DFS/EC 的差异分布得到了 FT-IR 和 DSC 的支持。多元线性回归分析结果表明,除了 D(50%)之外,TSC 和 FFR 对所有响应的影响均呈线性关系,D(50%)的情况则有效。TSC/FFR 对 MP 粒径和产率的影响与常规喷雾干燥相似。

结论

新型 3 流体喷嘴喷雾干燥为设计分层 MPs 或微胶囊提供了一种新方法,从药物稳定到控释和靶向给药,都具有广泛的应用前景。

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