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一种有效的聚合物交联策略,可在缓冲液和生物生长培养基中获得上转换 NaYF4 纳米粒子的稳定分散体,用于生物标记应用。

An effective polymer cross-linking strategy to obtain stable dispersions of upconverting NaYF4 nanoparticles in buffers and biological growth media for biolabeling applications.

机构信息

Department of Physics, University of Science and Technology of China, Hefei 230026, China.

出版信息

Langmuir. 2012 Feb 14;28(6):3239-47. doi: 10.1021/la204020m. Epub 2012 Feb 2.

Abstract

Ligands on the nanoparticle surface provide steric stabilization, resulting in good dispersion stability. However, because of their highly dynamic nature, they can be replaced irreversibly in buffers and biological medium, leading to poor colloidal stability. To overcome this, we report a simple and effective cross-linking methodology to transfer oleate-stabilized upconverting NaYF(4) core/shell nanoparticles (UCNPs) from hydrophobic to aqueous phase, with long-term dispersion stability in buffers and biological medium. Amphiphilic poly(maleic anhydride-alt-1-octadecene) (PMAO) modified with and without poly(ethylene glycol) (PEG) was used to intercalate with the surface oleates, enabling the transfer of the UCNPs to water. The PMAO units on the phase transferred UCNPs were then successfully cross-linked using bis(hexamethylene)triamine (BHMT). The primary advantage of cross-linking of PMAO by BHMT is that it improves the stability of the UCNPs in water, physiological saline buffers, and biological growth media and in a wide range of pH values when compared to un-cross-linked PMAO. The cross-linked PMAO-BHMT coated UCNPs were found to be stable in water for more than 2 months and in physiological saline buffers for weeks, substantiating the effectiveness of cross-linking in providing high dispersion stability. The PMAO-BHMT cross-linked UCNPs were extensively characterized using various techniques providing supporting evidence for the cross-linking process. These UCNPs were found to be stable in serum supplemented growth medium (37 °C) for more than 2 days. Utilizing this, we demonstrate the uptake of cross-linked UCNPs by LNCaP cells (human prostate cancer cell line), showing their utility as biolabels.

摘要

纳米粒子表面的配体提供了空间稳定作用,从而实现了良好的分散稳定性。然而,由于其高度动态的性质,它们在缓冲液和生物介质中可能会不可逆地被取代,从而导致较差的胶体稳定性。为了克服这一问题,我们报告了一种简单有效的交联方法,将油酸钠稳定的上转换 NaYF(4)核/壳纳米粒子(UCNPs)从疏水性转移到水相,在缓冲液和生物介质中具有长期的分散稳定性。我们使用带有和不带有聚乙二醇(PEG)的两亲性聚(马来酸酐-alt-1-十八烯)(PMAO)来插入表面油酸,从而实现 UCNPs 的转移。然后,使用双(己二胺)三胺(BHMT)成功地对转移到水相的 UCNPs 进行了交联。通过 BHMT 交联 PMAO 的主要优势在于,与未交联的 PMAO 相比,它可以提高 UCNPs 在水中、生理盐缓冲液和生物生长培养基中的稳定性,并在广泛的 pH 值范围内提高稳定性。研究发现,交联的 PMAO-BHMT 涂层 UCNPs 在水中稳定超过 2 个月,在生理盐缓冲液中稳定数周,证明了交联在提供高分散稳定性方面的有效性。我们使用各种技术对 PMAO-BHMT 交联的 UCNPs 进行了广泛的表征,为交联过程提供了支持证据。这些 UCNPs 在补充有血清的生长培养基(37°C)中稳定超过 2 天。利用这一点,我们证明了交联 UCNPs 被 LNCaP 细胞(人前列腺癌细胞系)摄取,表明它们可用作生物标记物。

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