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对生理相关pH值和温度有响应的智能纳米凝胶的设计。

Design of smart nanogels that respond to physiologically relevant pH values and temperatures.

作者信息

Omura Tomoyuki, Ebara Mitsuhiro, Lai James J, Yin Xiangchun, Hoffman Allan S, Stayton Patrick S

出版信息

J Nanosci Nanotechnol. 2014 Mar;14(3):2557-62. doi: 10.1166/jnn.2014.8551.

DOI:10.1166/jnn.2014.8551
PMID:24745263
Abstract

Herein, we report the synthesis and characterization of monodisperse 'smart' nanogels that exhibit a sharp volume phase transition at physiologically relevant temperatures and pH values. The nanogels were prepared by precipitation copolymerization of N-isopropylacrylamide (NIPAAm) and propylacrylic acid (PAA). Briefly, the reaction was performed using a PAA feed of between 0 and 10 mol% in the presence of a crosslinker at 70 degrees C. The size of the nanogel particles was determined as a function of pH and temperature using dynamic light scattering (DLS). At room temperature, the NIPAAm-PAA nanogels were discrete, spherical structures with diameters ranging from 200 to 250 nm. The hydrodynamic diameter of the nanogels decreased to ca. 100-150 nm when the solution temperature was increased to 37 degrees C. At 37 degrees C, when the pKa was below that of the NIPAAm-PAA (ca. 6.0), the gels collapsed and aggregated. However, at 37 degrees C and a physiological pH of 7.4, the nanogels did not fully collapse due to the charge-charge repulsion derived from the ionized carboxyl groups of the PAA. Similar phase transition behavior was observed with the corresponding linear copolymers. Thus, such nanogel particles could be useful for releasing drugs in regions of local acidosis, including sites of infection, tumors, ischemia, and intracellular endosomes.

摘要

在此,我们报道了单分散“智能”纳米凝胶的合成与表征,该纳米凝胶在生理相关温度和pH值下呈现出急剧的体积相变。纳米凝胶通过N - 异丙基丙烯酰胺(NIPAAm)和丙基丙烯酸(PAA)的沉淀共聚制备。简要地说,反应在交联剂存在下,使用0至10摩尔%的PAA进料在70℃下进行。使用动态光散射(DLS)测定纳米凝胶颗粒的尺寸作为pH和温度的函数。在室温下,NIPAAm - PAA纳米凝胶是离散的球形结构,直径范围为200至250nm。当溶液温度升高到37℃时,纳米凝胶的流体动力学直径减小到约100 - 150nm。在37℃下,当pKa低于NIPAAm - PAA的pKa(约6.0)时,凝胶塌陷并聚集。然而,在37℃和生理pH值7.4时,由于PAA电离羧基产生电荷 - 电荷排斥,纳米凝胶并未完全塌陷。相应的线性共聚物也观察到类似的相变行为。因此,这种纳米凝胶颗粒可用于在局部酸中毒区域释放药物,包括感染部位、肿瘤、缺血和细胞内内涵体部位。

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