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载曲唑酮的脂质核聚己内酯纳米囊:制备、表征及体内抗抑郁效果评价。

Trazodone Loaded Lipid Core Poly (ε-caprolactone) Nanocapsules: Development, Characterization and in Vivo Antidepressant Effect Evaluation.

机构信息

Department of Pharmaceutics, Faculty of Pharmacy, The British University in Egypt, El-Sherouk City, Cairo, 11837, Egypt.

The Center for Drug Research and Development (CDRD), The British University in Egypt, El-Sherouk city, Cairo, 11837, Egypt.

出版信息

Sci Rep. 2020 Feb 6;10(1):1964. doi: 10.1038/s41598-020-58803-z.

Abstract

Trazodone hydrochloride (TRH) is a lipophilic drug which is used effectively as an antidepressant. Its poor solubility and short half-life represent an obstacle for its successful use. Nanocapsules with biodegradable polymeric shell are successful drug delivery systems for controlling the release of drugs. To enhance the entrapment of lipophilic drugs, oils can be added forming a lipophilic core in which the drug is more soluble. The aim of this study was to enhance the efficacy of TRH and prolong its action by formulating it into lipid core polymeric shell nanocapsules. Nanocapules were prepared using nanoprecipitation technique. All prepared formulations were in nano size range and negatively charged. The TRH entrapment efficiency (EE%) in lipid core nanocapsules was up to 74.8 ± 0.5% when using Labrafac lipophile as a lipid core compared to only 55.7 ± 0.9% in lipid free polymeric nanospheres. Controlled TRH release was achieved for all prepared formulations. Forced swim test results indicated the significant enhancement of antidepressant effect of the selected TRH loaded Labrafac lipophile core nanocapsules formulation compared to control and TRH dispersion in phosphate buffer. It is concluded that lipid core nanocapsules is a promising carrier for the enhancement of TRH efficacy.

摘要

盐酸曲唑酮(TRH)是一种亲脂性药物,作为抗抑郁药非常有效。其较差的溶解度和较短的半衰期使其成功应用受到阻碍。具有生物降解聚合物壳的纳米胶囊是控制药物释放的成功药物传递系统。为了增强亲脂性药物的包封,可加入油形成亲脂性核,使药物更易溶解。本研究的目的是通过将 TRH 制成脂质核聚合物壳纳米胶囊来提高其疗效并延长其作用时间。纳米胶囊采用纳米沉淀技术制备。所有制备的制剂均处于纳米尺寸范围且带负电荷。当使用 Labrafac lipophile 作为脂质核时,脂质核纳米胶囊中 TRH 的包封效率(EE%)高达 74.8±0.5%,而无脂质的聚合物纳米球中仅为 55.7±0.9%。所有制备的制剂均实现了 TRH 的控制释放。强迫游泳试验结果表明,与对照和磷酸盐缓冲液中的 TRH 分散体相比,选定的载有 TRH 的 Labrafac lipophile 核纳米胶囊制剂的抗抑郁作用显著增强。结论:脂质核纳米胶囊是提高 TRH 疗效的有前途的载体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e0c3/7005163/3881f9325f1b/41598_2020_58803_Fig1_HTML.jpg

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