Formulation and processing of solid self-emulsifying drug delivery systems (HME S-SEDDS): A single-step manufacturing process via hot-melt extrusion technology through response surface methodology

挤压 溶解度 肺表面活性物质 材料科学 非诺贝特 响应面法 药物输送 结晶度 色谱法 中心组合设计 化学工程 化学 纳米技术 药理学 有机化学 复合材料 医学 工程类
作者
Venkata Raman Kallakunta,Narendar Dudhipala,Dinesh Nyavanandi,Sandeep Sarabu,Karthik Yadav Janga,Srinivas Ajjarapu,Suresh Bandari,Michael A. Repka
出处
期刊:International Journal of Pharmaceutics [Elsevier]
卷期号:641: 123055-123055 被引量:7
标识
DOI:10.1016/j.ijpharm.2023.123055
摘要

The objective of the current study is the formulation development and manufacturing of solid self-emulsifying drug delivery systems (HME S-SEDDS) via a single-step continuous hot-melt extrusion (HME) process. For this study, poorly soluble fenofibrate was selected as a model drug. From the results of pre-formulation studies, Compritol® HD5 ATO, Gelucire® 48/16, and Capmul® GMO-50 were selected as oil, surfactant and co-surfactant respectively for manufacturing of HME S-SEDDS. Neusilin® US2 was selected as a solid carrier. The design of experiments (response surface methodology) was employed to prepare formulations via a continuous HME process. The formulations were evaluated for emulsifying properties, crystallinity, stability, flow properties and drug release characteristics. The prepared HME S-SEDDS showed excellent flow properties, and the resultant emulsions were stable. The globule size of the optimized formulation was 269.6 nm. The DSC and XRD studies revealed the amorphous nature of the formulation and FTIR studies showed no significant interaction between fenofibrate and excipients. The drug release studies showed significant (p < 0.05) improvement in solubility compared to the pure drug (DE15 = 45.04 for the optimized formulation), as >90% of drug release was observed within 15 min. The stability studies for the optimized formulation were conducted for 3 months at 40 °C/75% RH.
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