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Synthesis of an amphiphilic tetrazine derivative and its application as a liposomal component to accelerate release of encapsulated drugs

机译:两亲硫酸四嗪衍生物的合成及其作为脂质体组分的应用,以加速包封的药物释放

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Tetrazine irreversibly reacts with dienophiles, and its derivatives find wide applications in the fields of biochemistry and biophysics. We have synthesized an amphiphilic tetrazine derivative (2-hexadecyl-N-(6-(6-(pyr-idin- 2-yl)-1,2,4,5-tetrazine-3-yl) pyridin-3-yl) octadecanamide; 1), which has a hydrophilic tetrazine structure and hydrophobic alkyl chains. Liposomes composed of compound 1 and 1-palmitoyl-2-oleoylphosphatidylcholine (POPC) (PTz-liposome) were prepared. In search of a new drug delivery system (DDS), we investigated the viability of inverse electron-demand Diels-Alder, a reaction between tetrazine and 2-norbornene, on the surface of the liposomes to change membrane fluidity and promote spatial and temporal controlled release of the encapsulated drugs. Compound 1 was synthesized with a yield of 71%. MS analysis after incubation of 2-norbornene with PTz-liposome revealed the binding of 2-norbornene to tetrazine. Indium-111-labeled diethylenetriaminepentaacetic acid (111In-DTPA) was encapsulated inside PTz-liposome to evaluate the leakage of free 111In-DTPA from the liposomes quantitatively. After 24 h of adding 2-norbornene, the release percentage for PTz-liposome was significantly higher than that for the control liposome (without tetrazine structure). Furthermore, the membrane fluidity of the PTz-liposome was increased by adding 2-norbornene. These results suggested that the combination of dienophile and liposome containing a newly synthesized tetrazine derivative can be used as a controlled release DDS carrier.
机译:四斋碱不可逆转地与辅能坡反应,其衍生物在生物化学和生物物理学领域找到广泛的应用。我们已合成两亲四嗪衍生物(2-十六烷基-N-(6-(6-(Pyr-id in-2-1)-1,2,4,5-四嗪-3-基)pyridin-3-Y1))十八烷酰胺; 1),具有亲水四嗪结构和疏水性烷基链。制备由化合物1和1-棕榈酰-2-油酰基磷脂酰胆碱(POPC)(POPC)(PTZ-脂质体)组成的脂质体。为了寻找新的药物递送系统(DDS),我们研究了逆素和2-降冰片烯之间的反向电子需求DIELS - 桤木的活力,在脂质体的表面上改变膜流动性并促进空间和时间控制释放包封的药物。合成化合物1,产率为71%。用PTZ-脂质体孵育2-降冰片烯的MS分析显示2-降冰片烯与四嗪的结合。将铟-111-标记的二亚乙基三胺戊酸(111in-DTPA)包封在PTZ脂质体内,以定量地评估自由111in-DTPA的泄漏。 24小时后添加2-降冰片烯,PTZ脂质体的释放百分比显着高于对照脂质体(不含四嗪结构)。此外,通过添加2-降冰片烯来增加PTZ-脂质体的膜流动性。这些结果表明,含有新合成的四嗪衍生物的增强型和脂质体的组合可以用作控释DDS载体。

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