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Quantitative Aspect of Leucophyllum frutescens Fraction before and after Encapsulation in Polymeric Nanoparticles

机译:包裹在聚合物纳米颗粒中之前和之后的白果树级分的定量方面

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The interest on plants has been focalized due to their biological activities. Extracts or fractions from plants in biodegradable polymeric nanoparticles (NP) provide many advantages on application studies. The encapsulation of the extract or fraction in NP is determined for the establishment of the test dose. HPLC method is an alternative to calculate this parameter. An analytical method based on HPLC for quantification of a hexane fraction from L. frutescens was developed and validated according to ICH. Different concentrations of the hexane fraction from leaves (HFL) were prepared (100–600?μg/mL). Linearity, limit of detection, limit of quantification, and intra- and interday precision parameters were determined. HFL was encapsulated by nanoprecipitation technique and analyzed by HPLC for quantitative aspect. The method was linear and precise for the quantification of the HFL components. NP size was 190?nm with homogeneous size distribution. Through validation method, it was determined that the encapsulation of components (), (), (), and () was 44, 74, 86, and 97%, respectively. A simple, repeatable, and reproducible methodology was developed for the propose of quantifying the components of a vegetable material loaded in NP, using as a model the hexane fraction of L. frutescens leaves.
机译:由于它们的生物活性,对植物的兴趣已经集中。可生物降解的聚合物纳米颗粒(NP)中植物的提取物或馏分在应用研究中具有许多优势。确定提取物或级分在NP中的封装以建立测试剂量。 HPLC方法是计算此参数的替代方法。根据ICH,开发了一种基于HPLC的定量方法,用于定量测定苦果中己烷的含量。制备了叶中不同浓度的己烷馏分(HFL)(100–600?μg/ mL)。确定了线性,检测限,定量限以及日内和日间精度参数。通过纳米沉淀技术将HFL包囊,并通过HPLC进行定量分析。该方法是线性且精确的,用于HFL成分的定量。 NP尺寸为190nm,具有均匀的尺寸分布。通过验证方法,确定组件(),(),()和()的封装率分别为44%,74%,86%和97%。开发了一种简单,可重复和可重现的方法,以提出使用果糖乳杆菌叶的己烷馏分作为模型来量化装载在NP中的植物材料的成分的建议。

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