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首页> 外文期刊>ACS Omega >Smart Nanoformulation Based on Stimuli-Responsive Nanogels and Curcumin: Promising Therapy against Colon Cancer
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Smart Nanoformulation Based on Stimuli-Responsive Nanogels and Curcumin: Promising Therapy against Colon Cancer

机译:基于刺激响应纳米凝胶和姜黄素的智能纳米型:对抗结肠癌的疗法治疗

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Curcumin (CUR) has gained much attention for its widely reported anticancer effect; however, its clinical use is restricted due to its low water solubility and, consequently, its poor bioavailability. Here, we report on the use of a nanoformulation of CUR with cationic nanogels for colon cancer therapy. Cationic stimuli-sensitive nanogels were prepared using a scale-up polymerization methodology based on surfactant-free emulsion polymerization of N ,N ′-diethylaminoethyl methacrylate (DEAEM) and poly(ethyleneglycol) methacrylate (PEGMA). The obtained nanogels showed a homogeneous size distribution (from 51 to 162 nm, polydispersity index (PDI) < 0.138) and exhibited a spherical form and core–shell morphology as confirmed by dynamic light scattering and electron microscopy, respectively. Nanogels were responsive to and degradable by variations of pH, temperature, or the redox environment, depending on the cross-linker used in the synthesis. Nanogels cross-linked with bis(acryloyl)cystamine incubated in a buffer (pH 7.4) containing 3 mM glutathione degraded in 60 min, while nanogels cross-linked with a divinylacetal cross-linker degraded in 10 min (pH ≤ 6). Nanoformulations of nanogels with CUR were stable as tested up to 30 days at physiological conditions. In vitro studies of the human colon cancer cell line (HCT-116) showed a synergistic effect of CUR and the degradable nanogels. Further, in vivo acute cytotoxicity tests of empty nanogels in mice demonstrate their potential as CUR nanocarriers for colon-anticancer therapies.
机译:姜黄素(CUR)对其广泛报告的抗癌效果产生了很多关注;然而,由于其低水溶性,因此,其临床用途受到限制,因此其生物利用度差。在这里,我们报告使用CONONIC纳米凝胶进行CONONIC纳米凝胶进行结肠癌疗法的用途。使用基于A> N, N'-二甲基氨基甲基丙烯酸酯(DEAEM)和聚(乙二醇)(PEGMA)的表面活性剂的乳液聚合,制备阳离子刺激纳米凝胶。所得纳米凝胶显示均匀尺寸分布(从51至162nm,多分散指数(PDI)<0.138),并分别显示出通过动态光散射和电子显微镜证实的球形形式和核 - 壳形态。根据合成中使用的交联剂,纳米凝胶通过pH,温度或氧化还原环境的变异而敏感和可降解。将纳米凝胶与双(丙烯酰基)胱胺交联在含有3mM谷胱甘肽的缓冲液(pH7.4)中孵育的胱胺(丙烯酰库)在60分钟中降解,而纳米凝胶与二氨基乙酰基交联剂交联,在10分钟(pH≤6)中降解。具有Cur的纳米粒子的纳米型在生理条件下最多30天进行稳定。 人结肠癌细胞系(HCT-116)的体外研究表明了Cur和可降解纳米凝胶的协同作用。此外,小鼠空纳米凝胶的体内急性细胞毒性试验证明了它们作为结肠抗癌疗法的Cur纳米载体的潜力。

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