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Colloidal Apatite Nanoparticles: Insights on Their Interaction with Cells and Artificial Lipid Membranes

机译:胶体磷灰石纳米粒子:见解它们与细胞和人工脂膜相互作用的见解

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Biomimetic nanocrystalline apatites are analogous to bone mineral. They can be exploited not only for bone regeneration applications, but it is also possible to take advantage of their biomimetic features to explore novel domains of research such as in nanomedicine, if the nanoparticles are stabilized as a colloidal formulation. In this contribution, we concentrate on AEP/HMP-stabilized colloidal apatite nanoparticles (NPs) and on their interaction with different types of cells so as to get experimental evidence on their low cytotoxicity, non-proinflammatory potential, and good compatibility with Red Blood Cells. We then started to explore their interaction with an artificial free-standing phospholipid bilayer, as a simplified model for cell membranes: results indicate, for the first time, that these colloidal apatite NPs can modulate phospholipid bilayer membrane properties, and may even favor the permeation of small molecules (illustrated here with luminescent FITC), which could ultimately be exploited for nanomedicine applications in view of enhancing intracellular drug delivery.
机译:仿生纳米晶磷灰石类似于骨矿物质。它们不仅可以用于骨再生应用,而且还可以利用它们的仿生特征来探索纳米麦芽胺,如纳米颗粒作为胶体配方,探索如纳米胺的新域。在这一贡献中,我们专注于AEP / HMP稳定的胶体磷灰石纳米粒子(NPS)以及它们与不同类型细胞的相互作用,以获得对其低细胞毒性,非促炎潜力和与红细胞的良好相容性的实验证据。然后我们开始探讨它们与人工自由磷脂双层的相互作用,作为细胞膜的简化模型:结果表明这些胶体磷灰石NPS可以调节磷脂双层膜特性,并且甚至可能有利于渗透鉴于增强细胞内药物递送,小分子(用发光FITC示出)最终能够利用纳米医生应用。

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