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用于鼻内给药的加巴喷丁固体脂质纳米粒的设计质量开发与表征方法及组织病理学评价

Quality by design approach for development and characterization of gabapentin-loaded solid lipid nanoparticles for intranasal delivery: , and histopathological evaluation.

作者信息

Toksoy Mahmut Ozan, Aşır Fırat, Güzel Mert Can

机构信息

Department of Pharmaceutical Technology, Dicle University, Diyarbakır, Turkey.

Department of Histology and Embryology, Dicle University, Diyarbakır, Turkey.

出版信息

Iran J Basic Med Sci. 2024;27(7):904-913. doi: 10.22038/IJBMS.2024.76281.16511.

DOI:10.22038/IJBMS.2024.76281.16511
PMID:38800014
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11127077/
Abstract

OBJECTIVES

"Quality by Design" (QbD) is a novel approach to product development that involves understanding the product and process, as well as the relationship between critical quality attributes (CQA) and critical process parameters (CPP). This study aimed to optimize the gabapentin-loaded solid lipid nanoparticle formulation (GP-SLN) using a QbD approach and evaluate in vitro and ex vivo performance.

MATERIALS AND METHODS

The GP-SLN formulation was created using the microemulsion method by combining Gelucire 48/16, Tween 80, and Plurol Oleique CC 497. The Box-Behnken experimental design was adopted to investigate the effects of independent factors on dependent factors. The GP-SLN formulation was assessed based on particle size and distribution, zeta potential, morphology, entrapment efficiency, release kinetics, permeation parameters, stability, and nasal toxicity.

RESULTS

The nanoparticles had a cubical shape with a particle size of 185.3±45.6 nm, a zeta potential of -24±3.53 mV, and an entrapment efficiency of 82.57±4.02%. The particle size and zeta potential of the GP-SLNs remained consistent for 3 months and followed Weibull kinetics with a significantly higher permeability (1.7 fold) than a gabapentin solution (GP-SOL). Histopathology studies showed that intranasal administration of the GP-SLN formulation had no harmful effects.

CONCLUSION

The current study reports the successful development of a GP-SLN formulation using QbD. A sustained release of GP was achieved and its nasal permeability was increased. Solid lipid nanoparticles with optimum particle size and high entrapment efficiency may offer a promising approach for the intranasal delivery of drugs.

摘要

目的

“质量源于设计”(QbD)是一种产品开发的新方法,涉及对产品和工艺的理解,以及关键质量属性(CQA)与关键工艺参数(CPP)之间的关系。本研究旨在采用QbD方法优化加巴喷丁固体脂质纳米粒制剂(GP-SLN),并评估其体外和离体性能。

材料与方法

采用微乳法,将Gelucire 48/16、吐温80和Plurol Oleique CC 497混合制备GP-SLN制剂。采用Box-Behnken实验设计研究独立因素对相关因素的影响。基于粒径和分布、zeta电位、形态、包封率、释放动力学、渗透参数、稳定性和鼻腔毒性对GP-SLN制剂进行评估。

结果

纳米粒呈立方体形状,粒径为185.3±45.6 nm,zeta电位为-24±3.53 mV,包封率为82.57±4.02%。GP-SLN的粒径和zeta电位在3个月内保持一致,遵循威布尔动力学,渗透率比加巴喷丁溶液(GP-SOL)显著提高(1.7倍)。组织病理学研究表明,鼻内给药GP-SLN制剂无有害影响。

结论

本研究报告了采用QbD成功开发GP-SLN制剂。实现了加巴喷丁的缓释,并提高了其鼻腔渗透性。具有最佳粒径和高包封率的固体脂质纳米粒可能为药物的鼻内递送提供一种有前景的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0868/11127077/bcba77bc651e/IJBMS-27-904-g009.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0868/11127077/7d2fde1b9359/IJBMS-27-904-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0868/11127077/df0cf8893de3/IJBMS-27-904-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0868/11127077/0d769eb07b56/IJBMS-27-904-g003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0868/11127077/d31205ae2fc7/IJBMS-27-904-g004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0868/11127077/f56bd656f959/IJBMS-27-904-g005.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0868/11127077/2c440fa3d0ef/IJBMS-27-904-g006.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0868/11127077/f7c07b0933da/IJBMS-27-904-g007.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0868/11127077/fe0dbb046e05/IJBMS-27-904-g008.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0868/11127077/bcba77bc651e/IJBMS-27-904-g009.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0868/11127077/7d2fde1b9359/IJBMS-27-904-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0868/11127077/df0cf8893de3/IJBMS-27-904-g002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0868/11127077/0d769eb07b56/IJBMS-27-904-g003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0868/11127077/d31205ae2fc7/IJBMS-27-904-g004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0868/11127077/f56bd656f959/IJBMS-27-904-g005.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0868/11127077/2c440fa3d0ef/IJBMS-27-904-g006.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0868/11127077/f7c07b0933da/IJBMS-27-904-g007.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0868/11127077/fe0dbb046e05/IJBMS-27-904-g008.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0868/11127077/bcba77bc651e/IJBMS-27-904-g009.jpg

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