壳聚糖包裹利格列汀纳米混悬液鼻内增强认知功能的优化研究

Q3 Engineering
Deepika Joshi, Bhavna
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引用次数: 0

摘要

本研究旨在设计和统计优化经鼻给药壳聚糖包裹利格列汀纳米混悬液的潜力,作为脑靶向治疗的替代方法,以增强认知行为,增加其溶解度/渗透性特征并减少副作用。采用纳米沉淀法制备利格列汀纳米混悬液。通过中心复合设计考察了利格列汀浓度(D)、壳聚糖浓度(P)对药物负荷% (R1)、包封率% (R2)和药物释放% (R3)等因变量的影响。并对优化后的制剂进行了表面形貌/尺寸、体外渗透、体外释放和稳定性研究。通过FESEM和TEM等不同评价参数对优化后的配方进行了进一步的评价,优化后的配方(LS 1)形貌呈球形。平均粒径(250.7 nm),电荷(-16.3 mV),包封效率(95.8±1.45%),载药量(35.78±0.19%)。LS - 1的饱和溶解度(0.987 mg/ml)、体外溶出度(89.65±0.82%)和体外透入度(82.23±1.25%)均高于利格列汀纯品。响应面法成功地获得了LS 1的最佳配方,该配方在最小剂量下具有增强的溶解度和溶出特性,减轻了副作用,并具有临时的认知效果。因此,设计了一种基于纳米混悬液的利格列汀有效的鼻内给药平台,可以绕过血脑屏障,直接将治疗药物输送到大脑。这可能是一种未来的方法,通过鼻内途径增强利格列汀纳米混悬液的认知效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of Chitosan Wrapped Linagliptin Nanosuspension For Cognitive Enhancement Through Intranasal Route
This study aimed to design and statistically optimize the potential of intranasaly delivered chitosan wrapped linagliptin nanosuspension as an alternative approach for brain targeting for enhancing cognitive behaviour, increasing its solubility/permeability characteristics and reducing the side effects. Linagliptin nanosuspensions were prepared by nanoprecipitation method. We investigated the effects of independent variables, i.e., linagliptin concentration (D), Chitosan concentration (P) on the dependent factors like % drug loading (R1), % entrapment efficiency (R2) and % drug release (R3) via a central composite design. Furthermore, the optimized formulation was evaluated for surface morphology/size, ex-vivo permeation study, in-vitro release study, and stability study. The optimized formulation was further evaluated by different evaluation parameters such FESEM & TEM study of the optimized formulation (LS 1) showed spherical morphology. Mean particle size (250.7 nm), charge (-16.3 mV), % entrapment efficiency (95.8 ± 1.45 %), % drug loading (35.78 ± 0.19 %) was achieved. Saturation solubility (0.987 mg/ml), in vitro dissolution rate (89.65 ± 0.82 %) and ex vivo permeation (82.23 ± 1.25 %) of LS 1 were higher than pure Linagliptin. Response surface methodology was applied successfully to obtain LS 1 as an optimized formulation with enhanced solubility and dissolution characteristics at minimized dose alleviating side effects and with improvised cognitive effects. Thus, an efficient intranasal delivery platform of linagliptin based on nanosuspension was designed for bypassing the BBB and delivering therapeutics directly to the brain. This can be a futuristic approach for enhancing cognitive effects by linagliptin nanosuspension via intranasal route.
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来源期刊
Nanoscience and Nanotechnology - Asia
Nanoscience and Nanotechnology - Asia Engineering-Engineering (all)
CiteScore
1.90
自引率
0.00%
发文量
35
期刊介绍: Nanoscience & Nanotechnology-Asia publishes expert reviews, original research articles, letters and guest edited issues on all the most recent advances in nanoscience and nanotechnology with an emphasis on research in Asia and Japan. All aspects of the field are represented including chemistry, physics, materials science, biology and engineering mainly covering the following; synthesis, characterization, assembly, theory, and simulation of nanostructures (nanomaterials and assemblies, nanodevices, nano-bubbles, nano-droplets, nanofluidics, and self-assembled structures), nanofabrication, nanobiotechnology, nanomedicine and methods and tools for nanoscience and nanotechnology.
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