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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Preparation and optimization of PIT solid lipid nanoparticles via statistical factorial design.
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Preparation and optimization of PIT solid lipid nanoparticles via statistical factorial design.

机译:统计阶乘设计的坑固体脂质纳米粒子的制备与优化。

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The objective of this study was the preparation, physico-chemical characterization and statistical optimization of cationic solid lipid nanoparticles (SLN) prepared by the PIT method as potential carrier for gene therapy, emphasizing the application of factorial design in such a kind of studies. The preliminary screening from a physico-chemical point of view on three cationic lipids (CTAB, DDAB and DOTAP), selected on the basis of their different chemical structure and increasing lipophilicity, allowed us to select SLN with DOTAP, due to its higher zeta potential and smaller particle size. Afterward, a 2(2) full factorial experimental design was developed in order to study the effects of two independent variables (amount of DOTAP and concentration of lipid matrix) and their interaction on mean particle size and zeta potential values. The factorial planning was validated by ANOVA analysis; the correspondence between the predicted values of size and zeta and those measured experimentally confirmed the validity of the design and the equation applied for its resolution. The factorial design showed a significant influence of the independent variables on the selected parameters; in particular, a higher effect of DOTAP was observed on zeta potential value. Different dilutions of the optimized SLN containing 7% w/w of cutina CP and 1% w/w of DOTAP, with size and zeta potential values respectively of 462.9 nm and 50.8 mV, were in vitro examined to evaluate the possible cytotoxicity on two models of cell cultures: human prostate cancer androgen-non-responsive DU-145 cells and primary cultures of rat astrocytes.
机译:本研究的目的是通过坑法制备的阳离子固体脂质纳米颗粒(SLN)作为基因治疗的潜在载体制备的制备,物理化学表征和统计优化,强调在这种研究中的应用程序应用。在三个阳离子脂质(CTAB,DDAB和DOTAP)上的物理化学观点中的初步筛选,根据其不同的化学结构选择并增加亲脂性,使我们能够用Dotap选择SLN,因为其较高的Zeta电位粒径较小。之后,开发了2(2)个完整的阶段实验设计,以研究两个独立变量(Dotap的量和脂质基质的浓度)的影响及其对平均粒度和Zeta电位值的相互作用。 ACOVA分析验证了阶乘规划;预测值和Zeta的对应关系以及测量的那些实验证实了设计的有效性和所应用的方程。因子设计对所选参数的独立变量显示出显着影响;特别地,在Zeta电位值上观察到DOTAP的较高效果。在体外检查含有7%w / w的含有7%w / w的Cutina Cp和1%w / w的Dotap,具有462.9nm和50.8mV的Zeta电位值,以评估两种模型上可能的细胞毒性细胞培养:人前列腺癌雄激素 - 非响应DU-145细胞和大鼠星形胶质细胞的原发性培养。

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