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首页> 外文期刊>Quimica nova >CHARACTERIZING THE MECHANISM OF QUETIAPINE DISTRIBUTION IN LIPID-CORE NANOCAPSULES PSEUDO-PHASES USING A VALIDATED LC/UV METHOD
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CHARACTERIZING THE MECHANISM OF QUETIAPINE DISTRIBUTION IN LIPID-CORE NANOCAPSULES PSEUDO-PHASES USING A VALIDATED LC/UV METHOD

机译:使用验证的LC / UV方法表征脂核纳米胶囊假相中奎他命的分布机理

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Quetiapine is an atypical antipsychotic used to treat schizophrenia. However, despite great interest for its chronic therapeutic use, quetiapine has some important side effects such as weight gain induction. The development of a quetiapine nanocarrier can potentially target the drug into central nervous system, resulting in a reduction of systemic side effects and improved patient treatment. In the present work, a simple liquid chromatography/ultraviolet detection (LC/UV) analytical method was developed and validated for quantification of total quetiapine content in lipid core nanocapsules as well as for determination of incorporation efficiency. An algorithm proposed by Oliveira et al. (2012) was applied to characterize the distribution of quetiapine in the pseudo-phases of the nanocarrier, leading to a better understanding of the quetiapine nanoparticles produced. The analytical methodology developed was specific, linear in the range of 0.5 to 100 ?μg mLa?’1 (r2 0,99), and accurate and precise (R.S.D ?±5%). The absolute recovery of quetiapine from the nanoparticles was approximately 98% with an incorporation efficiency of approximately 96%. The results indicated that quetiapine was present in a type III distribution according to the algorithm, and was mainly located in the core of the nanoparticle because of its logD in the formulation pH (6.86 ?± 0.4).
机译:喹硫平是一种非典型的抗精神病药,用于治疗精神分裂症。然而,尽管喹硫平对其长期治疗用途产生了极大的兴趣,但它仍具有一些重要的副作用,例如引起体重增加。喹硫平纳米载体的开发可以潜在地将药物靶向中枢神经系统,从而减少全身性副作用并改善患者治疗。在目前的工作中,开发了一种简单的液相色谱/紫外线检测(LC / UV)分析方法,并经过验证可用于定量脂质核心纳米胶囊中的总喹硫平含量以及确定掺入效率。 Oliveira等人提出的算法。 (2012年)被用来表征喹硫平在纳米载体假相中的分布,从而使人们对喹硫平产生的纳米颗粒有了更好的了解。所开发的分析方法是特定的,线性范围为0.5至100μgmLa?1(r2> 0.99),并且准确无误(R.S.D <±±5%)。从纳米颗粒中喹硫平的绝对回收率约为98%,掺入效率约为96%。结果表明,根据该算法,喹硫平以III型分布存在,并且由于其在配方pH(6.86±0.4)中的logD而主要位于纳米颗粒的核心。

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