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多功能核壳杂化纳米凝胶用于 pH 依赖性磁操控、荧光 pH 传感和药物递送。

Multi-functional core-shell hybrid nanogels for pH-dependent magnetic manipulation, fluorescent pH-sensing, and drug delivery.

机构信息

Department of Chemistry, College of Staten Island, and The Graduate Center, The City University of New York, Staten Island, NY 10314, USA.

出版信息

Biomaterials. 2011 Dec;32(36):9876-87. doi: 10.1016/j.biomaterials.2011.08.082. Epub 2011 Sep 25.

Abstract

Remotely optical sensing and drug delivery using an environmentally-guided magnetically-driven hybrid nanogel particle could allow for medical diagnostics and treatment. Such multifunctional hybrid nanogels (<200 nm) were prepared through the first synthesis of magnetic Ni NPs, followed by a moderate growth of fluorescent metallic Ag on the surface of Ni NPs, and then a coverage of a pH-responsive copolymer gel shell of poly(ethylene glycol-co-methacrylic acid) [p(EG-MAA)] onto the Ni-Ag bimetallic NP cores (18 ± 5 nm). The introduction of the pH-responsive p(EG-MAA) gel shell onto the magnetic and fluorescent Ni-Ag NPs makes the polymer-bound Ni-Ag NPs responsive to pH over the physiologically important range 5.0-7.4. The hybrid nanogels can adapt to surrounding pH and regulate the sensitivity in response to external magnetic field (such as a small magnet of 0.1 T), resulting in the accumulation of the hybrid nanogels within the duration from hours to a few seconds as the pH value decreases from 7.4 to 5.0. The pH-dependent magnetic response characteristic of the hybrid nanogels were further integrated with the pH change to fluorescent signal transduction and pH-regulated anticancer drug (a model drug 5-fluorouracil) delivery functions. The hybrid nanogels can overcome cellular barriers to enter the intracellular region and light up the mouse melanoma B16F10 cells. The multiple responsive hybrid nanogel that can be manipulated in tandem endogenous and exogenous activation should enhance our ability to address the complexity of biological systems.

摘要

使用环境引导的磁驱动杂化纳米凝胶颗粒进行远程光学传感和药物输送,可以实现医学诊断和治疗。这种多功能杂化纳米凝胶(<200nm)是通过首次合成磁性 Ni NPs 来制备的,然后在 Ni NPs 表面适度生长荧光金属 Ag,然后在 Ni-Ag 双金属 NP 核上覆盖一层 pH 响应性共聚物凝胶壳聚(乙二醇-co-甲基丙烯酸)[p(EG-MAA)](18±5nm)。将 pH 响应性 p(EG-MAA)凝胶壳引入磁性和荧光 Ni-Ag NPs 中,使聚合物结合的 Ni-Ag NPs 对 pH 具有响应性,范围在生理上重要的 5.0-7.4 之间。杂化纳米凝胶可以适应周围的 pH 值,并根据外部磁场(如 0.1T 的小磁铁)的变化调节灵敏度,导致杂化纳米凝胶在 pH 值从 7.4 降低到 5.0 的过程中在几小时到几秒钟的时间内积累。杂化纳米凝胶的 pH 依赖性磁响应特性进一步与 pH 变化相结合,实现了荧光信号转导和 pH 调节抗癌药物(模型药物 5-氟尿嘧啶)输送功能。杂化纳米凝胶可以克服细胞屏障进入细胞内区域,并点亮小鼠黑色素瘤 B16F10 细胞。这种可以通过内源性和外源性激活进行串联操纵的多响应杂化纳米凝胶应该增强我们解决生物系统复杂性的能力。

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