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微波辅助合成生物相容性的掺铕羟基磷灰石和氟磷灰石发光纳米棒,并用聚丙烯酸对其进行功能化修饰。

Microwave-assisted synthesis of biocompatible europium-doped calcium hydroxyapatite and fluoroapatite luminescent nanospindles functionalized with poly(acrylic acid).

机构信息

Instituto de Ciencia de Materiales de Sevilla, CSIC-Universidad de Sevilla, Calle Américo Vespucio 49, E- 41092 Seville, Spain.

出版信息

Langmuir. 2013 Feb 12;29(6):1985-94. doi: 10.1021/la304534f. Epub 2013 Jan 29.

DOI:10.1021/la304534f
PMID:23317411
Abstract

Europium-doped calcium hydroxyapatite and fluoroapatite nanophosphors functionalized with poly(acrylic acid) (PAA) have been synthesized through a one-pot microwave-assisted hydrothermal method from aqueous basic solutions containing calcium nitrate, sodium phosphate monobasic, and PAA, as well as sodium fluoride in the case of the fluoroapatite particles. In both cases a spindlelike morphology was obtained, resulting from an aggregation process of smaller subunits which also gave rise to high specific surface area. The size of the nanospindles was 191 (32) × 40 (5) nm for calcium hydroxyapatite and 152 (24) × 38 (6) nm for calcium fluoroapatite. The luminescent nanoparticles showed the typical red luminescence of Eu(3+), which was more efficient for the fluoroapatite particles than for the hydroxyapatite. This is attributed to the presence of OH(-) quenchers in the latter. The nanophosphors showed negligible toxicity for Vero cells. Both PAA-functionalized nanophosphors showed a very high (up to at least 1 week) colloidal stability in 2-(N-morpholino)ethanesulfonic acid (MES) at pH 6.5, which is a commonly used buffer for physiological pH. All these features make both kinds of apatite-based nanoparticles promising tools for biomedical applications, such as luminescent biolabels and tracking devices in drug delivery systems.

摘要

通过一锅微波辅助水热法,从含有硝酸钙、磷酸一钠和 PAA 的碱性水溶液中,以及在氟磷灰石颗粒的情况下,合成了掺铕的钙羟磷灰石和氟磷灰石纳米荧光粉,同时对其进行了功能化处理。在这两种情况下,都得到了一种纺锤形的形貌,这是由较小亚基的聚集过程引起的,同时也导致了高的比表面积。钙羟磷灰石纳米棒的尺寸为 191(32)×40(5)nm,钙氟磷灰石纳米棒的尺寸为 152(24)×38(6)nm。这些发光纳米粒子显示出 Eu(3+)的典型红光发射,对于氟磷灰石颗粒比对于羟磷灰石颗粒更为有效。这归因于后者中存在 OH(-)猝灭剂。纳米荧光粉对 Vero 细胞的毒性可忽略不计。两种 PAA 功能化的纳米荧光粉在 pH 值为 6.5 的 2-(N-吗啉基)乙磺酸(MES)中均具有非常高的(高达至少 1 周)胶体稳定性,MES 是生理 pH 值下常用的缓冲液。所有这些特性都使这两种基于磷灰石的纳米粒子成为生物医学应用的有前途的工具,例如发光生物标记物和药物输送系统中的跟踪装置。

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