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Nanoconjugate Platforms Development Based in Poly(β,L-Malic Acid)Methyl Esters for Tumor Drug Delivery

机译:基于聚(β,L-苹果酸)甲基酯的纳米共轭平台开发用于肿瘤药物递送

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New copolyesters derived from poly(β,L-malic acid) have been designed to serve as nanoconjugate platforms in drug delivery. 25% and 50% methylated derivatives (coPMLA-Me25H75andcoPMLA-Me50H50) with absolute molecular weights of 32 600 Da and 33 100 Da, hydrodynamic diameters of 3.0 nm and 5.2 nm and zeta potential of−15 mV and−8.25 mV, respectively, were found to destabilize membranes of liposomes at pH 5.0 and pH 7.5 at concentrations above 0.05 mg/mL. The copolymers were soluble in PBS (half life of 40 hours) and in human plasma (half life of 15 hours) but they showed tendency to aggregate at high levels of methylation. Fluorescence-labeled copolymers were internalized into MDA-MB-231 breast cancer cells with increased efficiency for the higher methylated copolymer. Viability of cultured brain and breast cancer cell lines indicated moderate toxicity that increased with methylation. The conclusion of the present work is that partially methylated poly(β,L-malic acid) copolyesters are suitable as nanoconjugate platforms for drug delivery.
机译:衍生自聚(β,L-苹果酸)的新共聚酯已被设计为可在药物输送中用作纳米共轭物平台。 25%和50%的甲基化衍生物(coPMLA-Me25H75和coPMLA-Me50H50)的绝对分子量分别为32 600 Da和33 100 Da,流体动力学直径分别为3.0 nm和5.2 nm,ζ电位分别为−15 mV和−8.25 mV。发现在浓度高于0.05 mg / mL时,pH 5.0和pH 7.5会使脂质体膜不稳定。该共聚物可溶于PBS(半衰期为40小时)和人体血浆(半衰期为15小时),但在高甲基化水平下表现出聚集趋势。将荧光标记的共聚物内化到MDA-MB-231乳腺癌细胞中,提高了对更高甲基化共聚物的效率。培养的脑和乳腺癌细胞系的生存能力表明其毒性随甲基化而增加。本工作的结论是部分甲基化的聚(β,L-苹果酸)共聚酯适合作为药物递送的纳米共轭物平台。

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