通过芦丁负载涂层固体脂质纳米颗粒开发和评估异拉地平。

Q2 Medicine
Vikash Kumar, Hema Chaudhary, Anjoo Kamboj
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引用次数: 0

摘要

目的是利用聚合物(Eudragit L100)和类脂质(单硬脂酸甘油酯:大豆卵磷脂)开发一种稳定且无依从性的涂布固脂纳米粒子(涂布 SLN),用于降低伊斯拉地平[ISR;2.5 毫克,结合等比例的生物增强剂(芦丁;Ru)]的部分剂量。通过 FT-IR 和 DSC 对选出的模型药物(ISR)、药物与 Ru/聚合物的混合物以及涂有 Ru 的 SLN(ONbp)进行了理化表征;结果表明,它们之间没有化学作用和不相容性。制剂(ONbp)的血浆样本采用液相色谱法(HPLC)和紫外光谱仪进行分析。在计算机设计程序 "Kinetica 软件"(Thermo Scientific Kinetica,PK/PD 分析,5.0 版,费城,宾夕法尼亚州)的帮助下,对数据进行了整合和分析。药代动力学研究表明,与不含 Ru 的 ISR 包衣制剂(ONps)和传统药物混悬液相比,含 Ru 的 ISR 包衣 SLN(ONbp)的口服生物利用度提高了 3.2 至 4.7 倍。体内研究显示,该药物的口服吸收率(药物稳定性和溶解度)明显提高,这表明其潜在的包埋效率(97.85% ± 1.02%)可提高对高血压的生物活性。因此,纳米 ISR 系统可在提高全身生物利用度的同时减少剂量,从而达到防治高血压的目的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Development and evaluation of isradipine via rutin-loaded coated solid-lipid nanoparticles.

Development and evaluation of isradipine via rutin-loaded coated solid-lipid nanoparticles.

Development and evaluation of isradipine via rutin-loaded coated solid-lipid nanoparticles.

Development and evaluation of isradipine via rutin-loaded coated solid-lipid nanoparticles.

The objective was to develop a stable and non-compliance coated solid-lipid nanoparticles (coated SLN) using polymer (Eudragit L100) and lipoid (glycerol monostearate: soya lecithin) for partial dose reduction of isradipine [ISR; 2.5 mg by combination of bioenhancing agent (rutin; Ru) in equivalent ratio]. The physicochemical characterizations were performed by FT-IR and DSC of elected model drug (ISR), drug mixer with Ru/polymer and coated SLN with Ru (ONbp); the resulted distinctive peaks demonstrated that no chemical interaction and incompatibility found between them. The plasma samples of formulation (ONbp) were analyzed by liquid chromatography (HPLC) using UV-spectrometer. Data were integrated and analyzed with the help of a computer-designed program "Kinetica Software" (Thermo Scientific Kinetica, PK/PD Analysis, version 5.0, Philadelphia, PA). The pharmacokinetic study showed 3.2- to 4.7-folds enhancement in oral bioavailability of coated SLN of ISR with Ru (ONbp) when compared to a coated formulation of ISR without Ru (ONps) and conventional drug suspension. In vivo studies were revealed significantly at greater extent in (drug stability and solubility) oral absorption, which has shown potential entrapment efficiency (97.85% ± 1.02%) to improve biological activity against hypertension. Hence, nano-system of ISR against hypertension is achieved with consequent dose reduction with enhanced systemic bioavailability.

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来源期刊
Interventional Medicine and Applied Science
Interventional Medicine and Applied Science MEDICINE, GENERAL & INTERNAL-
CiteScore
1.60
自引率
0.00%
发文量
0
审稿时长
15 weeks
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