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首页> 外文期刊>Biomacromolecules >Multistimuli-Responsive Amphiphilic Poly(ester-urethane) Nanoassemblies Based on L-Tyrosine for Intracellular Drug Delivery to Cancer Cells
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Multistimuli-Responsive Amphiphilic Poly(ester-urethane) Nanoassemblies Based on L-Tyrosine for Intracellular Drug Delivery to Cancer Cells

机译:基于L-酪氨酸的多体敏敏倍差聚(酯 - 氨基甲酸酯)纳米结合物,用于细胞内药物递送给癌细胞

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Multistimuli-responsive L-tyrosine-based amphiphilic poly(ester-urethane) nanocarriers were designed and developed for the first time to administer anticancer drugs in cancer tissue environments via thermoresponsiveness and lysosomal enzymatic biodegradation from a single polymer platform. For this purpose, multifunctional L-tyrosine monomer was tailor-made with a PEGylated side chain at the phenolic position along with urethane and carboxylic ester functionalities. Under melt dual ester-urethane polycondensation, the tyrosine monomer reacted with diols to produce high molecular weight amphiphilic poly(ester-urethane)s. The polymers produced 100 +/- 10 nm spherical nanoparticles in aqueous medium, and they exhibited thermoresponsiveness followed by phase transition from clear solution into a turbid solution in heating/cooling cycles. Variable temperature transmittance, dynamic light scattering, and H-1 NMR studies revealed that the polymer chains underwent reversible phase transition from coil-to-expanded chain conformation for exhibiting the thermoresponsive behavior. The lower critical solution temperature of the nanocarriers was found to correspond to cancer tissue temperature (at 42-44 degrees C), which was explored as an extracellular trigger (stimuli-1) for drug delivery through the disassembly process. The ester bond in the poly(ester-urethane) backbones readily underwent enzymatic biodegradation in the lysosomal compartments that served as intracellular stimuli (stimuli-2) to deliver drugs. Doxorubicin (DOX) and camptothecin (CPT) drug-loaded polymer nanocarriers were tested for cellular uptake and cytotoxicity studies in the normal WT-MEF cell line and cervical (HeLa) and breast (MCF7) cancer cell lines. In vitro drug release studies revealed that the polymer nanoparticles were stable under physiological conditions (37 degrees C, pH 7.4) and they exclusively underwent disassembly at cancer tissue temperature (at 42 degrees C) and biodegradation by lysosomal-esterase enzyme to deliver 90% of DOX and CPT. Drug-loaded polymer nanoparticles exhibited better cytotoxic effects than their corresponding free drugs. Live cell confocal microscopy imaging experiments with lysosomal tracker confirmed the endocytosis of the polymer nanoparticles and their biodegradation in the lysosomal compartments in cancer cells. The increment in the drug content in the cells incubated at 42 degrees C compared to 37 degrees C supported the enhanced drug uptake by the cancer cells under thermoresponsive stimuli. The present work creates a new platform for the L-amMo acid multiple-responsive polymer nanocarrier platform for drug delivery, and the proof-of-concept was successfully demonstrated for L-tyrosine polymers in cervical and breast cancer cells.
机译:基于MultiSimuli-encoversive L-酪氨酸的两亲性聚(酯 - 氨基甲酸酯)纳米载体首次设计并开发,通过来自单个聚合物平台的热反应性和溶酶体酶生物降解来施用癌组织环境中的抗癌药物。为此目的,多官能L-酪氨酸单体用聚乙二醇化侧链在酚类位置与聚氨酯和羧酸酯官能团定制。在熔融双酯 - 氨基甲酸酯缩聚下,酪氨酸单体与二醇反应以产生高分子量两亲性聚(酯 - 氨基甲酸酯)。聚合物在水性介质中产生100 +/- 10nm球形纳米颗粒,并且它们表现出热反应性,然后通过透明溶液在加热/冷却循环中的混浊溶液中的相转变。可变温度透射率,动态光散射和H-1 NMR研究表明,聚合物链接受了从线圈 - 膨胀的链构象的可逆相转变,以表现出热响应行为。发现纳米载体的临数临界溶液温度对应于癌症组织温度(42-44℃),其通过拆卸过程探索为用于药物递送的细胞外触发(刺激1)。聚(酯 - 氨基甲酸酯)骨架中的酯键在溶酶体隔室中容易进行酶生物降解,其用作细胞内刺激(刺激-2)以提供药物。在正常的WT-MEF细胞系和宫颈(HELA)和乳腺(MCF7)癌细胞系中测试了多柔比星(CPP)和CPPTOHECIN(CPT)药物负载聚合物纳米载体。体外药物释放研究表明,聚合物纳米颗粒在生理条件下稳定(37摄氏度,pH7.4),它们在癌症组织温度(42℃)下专门拆卸,并通过溶酶 - 酯酶生物降解以提供90% dox和cpt。药物负载聚合物纳米颗粒比其相应的游离药物表现出更好的细胞毒性效应。活细胞共聚焦显微镜成像实验用溶酶体跟踪器确认了聚合物纳米颗粒的内吞作用及其在癌细胞中溶酶体隔室中的生物降解。与37摄氏度相比,在42℃下孵育的细胞中药物含量的增量支持热致敏刺激下的癌细胞增强的药物吸收。目前的作品为用于药物递送的L-Ammo酸多响应聚合物纳米骨载体平台创造了一种新的平台,并且成功地对宫颈和乳腺癌细胞中的L-酪氨酸聚合物证明了概念的证据。

著录项

  • 来源
    《Biomacromolecules 》 |2018年第6期| 共16页
  • 作者单位

    Indian Inst Sci Educ &

    Res IISER Pune Dept Chem Dr Homi Bhabha Rd Pune 411008 Maharashtra India;

    Indian Inst Sci Educ &

    Res IISER Pune Dept Chem Dr Homi Bhabha Rd Pune 411008 Maharashtra India;

    Indian Inst Sci Educ &

    Res IISER Pune Dept Chem Dr Homi Bhabha Rd Pune 411008 Maharashtra India;

    Indian Inst Sci Educ &

    Res IISER Pune Dept Chem Dr Homi Bhabha Rd Pune 411008 Maharashtra India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学 ;
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