首页> 外文期刊>Journal of pharmaceutical sciences. >Brain delivery of proteins by the intranasal route of administration: a comparison of cationic liposomes versus aqueous solution formulations.
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Brain delivery of proteins by the intranasal route of administration: a comparison of cationic liposomes versus aqueous solution formulations.

机译:通过鼻内给药途径脑部递送蛋白质:阳离子脂质体与水溶液制剂的比较。

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The goal of this research was to evaluate the effectiveness of cationic liposomes for intranasal administration of proteins to the brain. Cationic liposomes were loaded with a model protein, ovalbumin (OVAL), and a 50 microg dose was administered intranasally to rats. In qualitative studies, liposomes were loaded with Alexa 488-OVAL and delivery was assessed by fluorescence microscopy. By 6 and 24 h after administration, Alexa 488-OVAL deposits were widely distributed throughout brain, with apparent cellular uptake in midbrain by 6 h after administration. In quantitative studies, liposomes were loaded with (111)In-OVAL, and distribution to brain and peripheral tissues was monitored by gamma counting at 1, 4, 6, and 24 h after administration. The highest brain concentrations were achieved at the shortest time point, 1 h, for both liposomal and aqueous OVAL. However, the liposomes yielded higher (111)In-OVAL concentrations in brain than (111)In-OVAL in PBS. Moreover, a 2 microg/microL form of liposomal OVAL yielded a higher percentage of dose in brain, and a lower percentage in stomach and intestines, than twice the volume of a 1 microg/microL preparation. Cationic liposomes may provide a novel, noninvasive strategy for delivery of neuroactive proteins to the brain for treatment of central nervous system disorders.
机译:这项研究的目的是评估阳离子脂质体对鼻内向大脑给药蛋白质的有效性。阳离子脂质体中装有模型蛋白卵清蛋白(OVAL),并向大鼠鼻内给药50微克剂量。在定性研究中,脂质体装有Alexa 488-OVAL,并通过荧光显微镜评估了递送。给药后6和24小时,Alexa 488-OVAL沉积物广泛分布于整个大脑,给药后6小时,中脑明显吸收了细胞。在定量研究中,脂质体中装有(111)In-OVAL,并在给药后1、4、6和24小时通过伽玛计数监测到脑和周围组织的分布。对于脂质体和水性OVAL,在最短的时间点1小时都达到了最高的大脑浓度。但是,脂质体在大脑中产生的(111)In-OVAL浓度高于PBS中的(111)In-OVAL浓度。此外,脂质体OVAL的2微克/微升形式在大脑中的剂量百分比更高,在胃和肠中的百分比更低,是1微克/微升制剂体积的两倍。阳离子脂质体可为将神经活性蛋白递送至大脑以治疗中枢神经系统疾病提供一种新颖的非侵入性策略。

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