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首页> 外文期刊>Pharmaceutics >Fliposomes: pH-Sensitive Liposomes Containing a trans-2-morpholinocyclohexanol-Based Lipid That Performs a Conformational Flip and Triggers an Instant Cargo Release in Acidic Medium
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Fliposomes: pH-Sensitive Liposomes Containing a trans-2-morpholinocyclohexanol-Based Lipid That Performs a Conformational Flip and Triggers an Instant Cargo Release in Acidic Medium

机译:脂质体:pH敏感的脂质体,包含基于反式2-吗啉代环己醇的脂质,该脂质执行构象翻转并触发酸性介质中的即时货物释放

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摘要

Incorporation of a pH-sensitive conformational switch into a lipid structure enables a drastic conformational flip upon protonation that disrupts the liposome membrane and causes rapid release of cargo specifically in areas of increased acidity. pH-sensitive liposomes containing the amphiphile (1) with trans-2-morpholinocyclohexanol conformational switch, a phospholipid, and a PEG-lipid conjugate were constructed and characterized. The optimized composition—1/POPC/PEG-ceramide (50/4/5)—could be stored at 4 °C and pH 7.4 for up to 1.5 years, and was stable in blood serum in vitro after 48 h at 37 °C. Liposomes loaded with ANTS/DPX or methotrexate demonstrated an unusually quick content release (in a few seconds) at pH below 5.5, which was independent of inter-liposome contact. The pH-titration curve for the liposome leakage paralleled the curve for the acid-induced conformational flip of 1 studied by 1H-NMR. Freeze-fracture electron microscopy images showed budding and division of the bilayer at pH 5.5. A plausible mechanism of pH-sensitivity involves an acid-triggered conformational flip of 1, shortening of lipid tails, and membrane perturbations, which cause the content leakage. The methotrexate-loaded liposomes demonstrated much higher cytotoxicity in HeLa cells than the free drug indicating that they can serve as viable drug delivery systems.
机译:将pH敏感的构象转换键结合到脂质结构中,可使质子化后发生剧烈的构象翻转,从而破坏脂质体膜,并导致酸度增加的区域中货物的快速释放。构建并表征了含有两亲物(1)和反式-2-吗啉代环己醇构象开关,磷脂和PEG-脂质缀合物的pH敏感脂质体。优化的组合物(1 / POPC / PEG-神经酰胺(50/4/5))可以在4°C和pH 7.4下保存长达1.5年,并且在37°C下放置48 h后在体外血清中稳定。载有ANTS / DPX或甲氨蝶呤的脂质体在pH值低于5.5时显示出异常快速的内容释放(几秒钟内),这与脂质体之间的接触无关。 1 H-NMR研究脂质体渗漏的pH滴定曲线与酸诱导的1构象翻转的曲线平行。冷冻断裂电子显微镜图像显示在pH 5.5下双层的出芽和分裂。 pH敏感性的合理机制包括1的酸触发构象翻转,脂质尾巴的缩短和膜的扰动,这会导致内容物泄漏。负载甲氨蝶呤的脂质体在HeLa细胞中显示出比游离药物高得多的细胞毒性,这表明它们可以用作可行的药物传递系统。

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