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基于 CCRD 的溴隐亭和谷胱甘肽纳米乳液的开发,经超声处理后具有协同抗帕金森作用。

CCRD based development of bromocriptine and glutathione nanoemulsion tailored ultrasonically for the combined anti-parkinson effect.

机构信息

Department of Pharmaceutics, School of Pharmaceutical Education and Research, Jamia Hamdard, New Delhi, 110062, India.

Department of Pharmaceutical Technology, Meerut Institute of Engineering and Technology, NH-58, Delhi-Roorkee Highway, Meerut, 250005 Uttar Pradesh, India.

出版信息

Chem Phys Lipids. 2021 Mar;235:105035. doi: 10.1016/j.chemphyslip.2020.105035. Epub 2021 Jan 2.

Abstract

Bromocriptine Mesylate (BRM) acts as a dopamine receptor agonist along with antioxidant effect and is utilized in the treatment of Parkinson's disease (PD). Glutathione (GSH) is a thiol- reducing agent having antioxidant properties in the brain. Replenishment of GSH inside the brain can play a major role in the management of PD. Both BRM and GSH suffer from low oral bioavailability and poor absorption. The objective of the present study was to develop BRM and GSH loaded nanoemulsion for the combined and synergistic effect delivered through the intranasal route for the better and effective management of PD. After extensive screening experiments, Capmul PG-8 NF was selected as oil, polyethylene glycol (PEG) 400 as a surfactant and propylene glycol as co-surfactant. Ultrasonication technique was employed for the fabrication of nanoemulsion. Central composite rotatable design (CCRD) was used to obtain the best formulation by optimization. Oil (%), S (%), and sonication time (second) were chosen as independent variables for the optimization. Particle size, PDI, zeta potential, % transmittance, pH, refractive index, viscosity and conductivity of the optimized nanoemulsion were found to be 80.71 ± 2.75 nm, 0.217 ± 0.009, -12.60 ± 0.10 mV, 96.00 ± 3.05 %, 6.48 ± 0.28, 1.36 ± 0.03, 30.12 ± 0.10 mPas and 214.28 ± 2.79 μS/cm respectively. Surface morphology demonstrated that nanoemulsion possessed spherical and globular nature of the particle which showed 3.4 times and 1.5 times enhancement in drug permeation in the case of BRM and GSH respectively as compared to suspension. MTT assay done on neuro-2a cell lines revealed that nanoemulsion was safe for intranasal delivery. Behavioural studies were carried out to prove the efficacy of optimized nanoemulsion in PD using forced swimming test, locomotor activity test, catalepsy test, rota-rod test, and akinesia test in Wistar rats. The outcomes of the behavioural studies revealed that BRM and GSH loaded nanoemulsion treatment showed significant improvement in behavioural activities of PD (haloperidol-induced) rats after intranasal administration. This study concluded that BRM and GSH loaded nanoemulsion could be promising for the combined and synergistic anti-parkinson effect for the effective management of PD.

摘要

甲磺酸溴隐亭(BRM)作为一种多巴胺受体激动剂,具有抗氧化作用,用于治疗帕金森病(PD)。谷胱甘肽(GSH)是一种具有抗氧化特性的巯基还原剂。脑内 GSH 的补充可以在 PD 的治疗中发挥重要作用。BRM 和 GSH 的口服生物利用度低,吸收不良。本研究的目的是开发 BRM 和 GSH 负载的纳米乳液,通过鼻腔途径联合传递,以更好、更有效地治疗 PD。经过广泛的筛选实验,选择 Capmul PG-8 NF 作为油相,聚乙二醇(PEG)400 作为表面活性剂,丙二醇作为助表面活性剂。采用超声技术制备纳米乳液。采用中心复合旋转设计(CCRD)对最佳配方进行优化。以油(%)、S(%)和超声时间(秒)为自变量进行优化。优化后的纳米乳液的粒径、PDI、zeta 电位、透光率%、pH 值、折射率、粘度和电导率分别为 80.71±2.75nm、0.217±0.009、-12.60±0.10mV、96.00±3.05%、6.48±0.28、1.36±0.03、30.12±0.10mPas 和 214.28±2.79μS/cm。表面形态表明,纳米乳液具有球形和球形颗粒的性质,与混悬液相比,BRM 和 GSH 的药物渗透分别提高了 3.4 倍和 1.5 倍。在神经-2a 细胞系上进行的 MTT 测定表明,纳米乳液对鼻腔给药是安全的。通过强迫游泳试验、运动活性试验、僵住试验、转棒试验和运动不能试验在 Wistar 大鼠中进行了行为研究,以证明优化后的纳米乳液在 PD 中的疗效。行为研究的结果表明,BRM 和 GSH 负载的纳米乳液治疗后,经鼻腔给予帕金森病(氟哌啶醇诱导)大鼠,其行为活动有显著改善。本研究得出结论,BRM 和 GSH 负载的纳米乳液有望用于联合和协同的抗帕金森效应,以有效治疗 PD。

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