首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Preparation of optimized lipid-coated calcium phosphate nanoparticles for enhanced in vitro gene delivery to breast cancer cells
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Preparation of optimized lipid-coated calcium phosphate nanoparticles for enhanced in vitro gene delivery to breast cancer cells

机译:优化脂质包覆的磷酸钙纳米粒子的制备,用于增强体外基因向乳腺癌细胞的传递

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Lipid coated calcium phosphate (LCP) nanoparticles (NPs) remain an attractive option for siRNA systemic delivery. Previous research has shown that the stoichiometry of reactants affects the size and morphology of nanostructured calcium phosphate (CaP) particles. However, it is unclear how synthesis parameters such as the Ca/P molar ratio and mixing style influence the siRNA loading and protection by LCP NPs, and subsequent siRNA delivery efficiency. In this research, we found that the Ca/P molar ratio is critical in controlling the size, zeta potential, dispersion state, siRNA loading and protection. Based on the siRNA loading efficiency and capacity as well as siRNA protection effectiveness, we suggested an optimized LCP NPs delivery system. The optimized LCP NPs had a hollow, spherical structure with the average particle size of similar to 40 nm and were able to maintain their stability in serum containing media and PBS for over 24 h, with a pH-sensitive dissolution property. The superior ability of optimized LCP NPs to maintain the integrity of encapsulated siRNA and the colloidal stability in culture medium allow this formulation to achieve improved cellular accumulation of siRNA and enhanced growth inhibition of human breast cancer cells in vitro, compared with the commercial transfection agent Oligofectamine (TM).
机译:脂质包裹的磷酸钙(LCP)纳米颗粒(NPs)仍然是siRNA全身性递送的诱人选择。先前的研究表明,反应物的化学计量会影响纳米结构的磷酸钙(CaP)颗粒的大小和形态。但是,尚不清楚诸如Ca / P摩尔比和混合方式等合成参数如何影响LCP NP对siRNA的负载和保护以及随后的siRNA输送效率。在这项研究中,我们发现Ca / P摩尔比对于控制大小,Zeta电位,分散状态,siRNA装载和保护至关重要。基于siRNA装载效率和容量以及siRNA保护效果,我们提出了一种优化的LCP NPs输送系统。优化的LCP NP具有空心球形结构,平均粒径接近40 nm,并且能够在含血清的培养基和PBS中保持超过24小时的稳定性,并具有pH敏感的溶解特性。与商业转染剂Oligofectamine相比,优化的LCP NP保持封装的siRNA完整性和在培养基中的胶体稳定性的卓越能力使该制剂能够实现siRNA的细胞积累改善和体外对人乳腺癌细胞生长的抑制作用。 (TM值)。

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