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用于毛囊药物递送的载非那雄胺纳米脂质载体:处方前筛选及用于变量优化的Box-Behnken实验设计

Finasteride-loaded nano-lipidic carriers for follicular drug delivery: preformulation screening and Box-Behnken experimental design for optimization of variables.

作者信息

Ramkar Shweta, Suresh Preeti K

机构信息

University Institute of Pharmacy, Pt. Ravishankar Shukla University, Raipur, Chhattisgarh, 492010, India.

出版信息

Heliyon. 2022 Aug 15;8(8):e10175. doi: 10.1016/j.heliyon.2022.e10175. eCollection 2022 Aug.

Abstract

Finasteride (FIN), a 5-α reductase enzyme inhibitor is mainly used orally for the treatment of androgenic alopecia and benign prostate hyperplasia. The present study was undertaken for systematic optimization and assessment of the designed nanostructured lipid carriers (NLC) to enhance follicular delivery of FIN by topical administration. The NLCs were prepared by microemulsion method, by employing a 3 Box-Behnken design and subsequently confirmed by ANOVA analysis. Compritol ATO-888 and Fenugreek oil were selected as the solid lipid and liquid lipid respectively for the fabrication of NLCs. The formulations were characterized for particle size, zeta potential, entrapment efficiency, storage stability and drug release profile. Morphological profile of the NLCs nanocarriers was studied by transmission electron microscopy (TEM). The Fourier Transform Infrared Spectroscopy (FT-IR) spectrum and differential scanning calorimetry (DSC) thermogram demonstrated that FIN entrapment within NLCs was devoid of chemical interaction with the components. The prepared NLCs had satisfactory particle dimensions, zeta potential and entrapment efficiency. The numerical optimization process indicated the optimal NLC composition with 3 mg of SPC, 6 mg lipid and 5 mg of drug. NLCs loaded with FIN had acceptable particle size at 379.8 nm, zeta potential of -37.1 mV and an entrapment efficiency of 84%. Transmission electron microscopy indicated the spherical morphology. release profile indicated a fast initial release and subsequently a prolonged release of FIN from the carrier for 24 h. The release kinetics data displayed a Higuchi diffusion release model with the best match R value (0.848). Short-term stability tests conducted over 4 weeks at 6° and 25 °C demonstrated that the formulation could retain their initial properties during the test period.

摘要

非那雄胺(FIN)是一种5-α还原酶抑制剂,主要用于口服治疗雄激素性脱发和良性前列腺增生。本研究旨在对设计的纳米结构脂质载体(NLC)进行系统优化和评估,以通过局部给药增强FIN的毛囊递送。NLC通过微乳液法制备,采用三水平Box-Behnken设计,随后通过方差分析进行确认。分别选择Compritol ATO-888和胡芦巴油作为固体脂质和液体脂质来制备NLC。对制剂的粒径、zeta电位、包封率、储存稳定性和药物释放曲线进行了表征。通过透射电子显微镜(TEM)研究了NLC纳米载体的形态。傅里叶变换红外光谱(FT-IR)和差示扫描量热法(DSC)热谱图表明,FIN包封在NLC中与各成分无化学相互作用。制备的NLC具有令人满意的粒径、zeta电位和包封率。数值优化过程表明,最佳NLC组成是3 mg大豆卵磷脂、6 mg脂质和5 mg药物。负载FIN的NLC粒径为379.8 nm,zeta电位为-37.1 mV,包封率为84%,可接受。透射电子显微镜显示为球形形态。释放曲线表明,FIN从载体中最初快速释放,随后在24小时内持续释放。释放动力学数据显示为Higuchi扩散释放模型,最佳匹配R值为0.848。在6℃和25℃下进行的4周短期稳定性试验表明,该制剂在试验期间可保持其初始性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b45b/9420366/65030707e7ba/gr1.jpg

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