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Tumor acidity and CD44 dual targeting hyaluronic acid-coated gold nanorods for combined chemo- and photothermal cancer therapy

机译:肿瘤酸度和CD44双靶向透明质酸涂覆的化学和光热癌疗法

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In this work, tumor acidity and CD44 dual targeting hyaluronic acid-coated gold nanorods (AuNRs) are investigated for combined chemo- and photothermal cancer therapy. Low molecular weight hyaluronic acid (LMWHA) is conjugated with pH-sensitive groups for pH-induced aggregation and lipoic acid for coating of AuNRs. By changing pH-sensitive groups with different pKa values, pH-sensitivity of modified LMWHA can be tuned. After coating modified LMWHA onto AuNRs, biocompatibility of the AuNRs is significantly improved. These LMWHA-coated AuNRs can gradually aggregate under slightly acidic conditions, making them favorable for accumulation at acidic tumor sites. Surface LMWHA allows the nanocomposites to be selectively uptaken by CD44-expressing cancer cells, and AuNRs endows the nanocomposites with excellent photothermal ability. Loading of doxorubicin, a chemical drug, provides the LMWHA-coated AuNRs synergistic cancer cell-killing (in vitro) and tumor growth inhibiting (in vivo) ability. Taken together, these results demonstrate that this multi-functional nanosystem with pH-induced aggregation and CD44 targeting has potential for combined chemo- and photothermal cancer therapy.
机译:在这项工作中,研究了肿瘤酸度和CD44双靶向透明质酸涂覆的金纳米棒(AUNR),用于组合化学和光热癌疗法。低分子量透明质酸(LMWha)与pH敏感基团与pH诱导的聚集和硫辛酸缀合,用于涂覆AUNR。通过改变具有不同PKA值的pH敏感组,可以调整修改的LMWha的pH激光度。在将改性的LMWHA涂覆到AUNR上后,AUNR的生物相容性显着提高。这些LMWha涂层的AUNR可以在微酸性条件下逐渐汇集,使它们能够在酸性肿瘤位点积累。表面LMWHA允许通过CD44表达癌细胞选择性地抑制纳米复合材料,并且AUNR赋予纳米复合材料具有优异的光热能力。装载多柔比星是一种化学药物,提供了LMWHA涂层的AUNRS协同癌细胞杀灭(体外)和肿瘤生长抑制(体内)能力。总之,这些结果表明,该多功能纳米系统具有pH诱导的聚集和CD44靶向具有组合化学和光热癌疗法的可能性。

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