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Dual-functional melanin-based nanoliposomes for combined chemotherapy and photothermal therapy of pancreatic cancer

机译:双功能黑色素基纳米脂质体用于胰腺癌化学疗法和光热疗法的联合治疗

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Pancreatic cancer, one of the most common gastrointestinal tract cancers, leads to a high mortality rate of over 80% among patients. Conventional chemotherapy with gemcitabine (GEM) is undesirable due to the lack of effective tumor accumulation. To improve the survival of pancreatic cancer patients and the therapeutic efficiency of chemotherapy, dual-functional melanin-based nanoliposomes loaded with GEM were synthesized in our study, which combined chemotherapy and photothermal therapy (PTT). Hypothermia caused by melanin under near-infrared (NIR) laser exerted detrimental damage on pancreatic cancer cells after the passive accumulation of nanoliposomes in the tumor sites. Besides, the temperature increase could enhance the release of GEM from the nanoliposomes by changing the structural integrity of the nanoliposomes. Therefore, a synergistic antitumor effect was achieved by loading the chemotherapy agent GEM and the photothermal agent melanin into the nanoliposomes. The findings in this study strongly support that melanin-based nanoliposomes could be a desirable strategy against pancreatic carcinoma.
机译:胰腺癌是最常见的胃肠道癌症之一,导致患者的高死亡率超过80%。由于缺乏有效的肿瘤积累,使用吉西他滨(GEM)进行常规化疗是不可取的。为了提高胰腺癌患者的生存率和化疗的疗效,本研究合成了双功能黑色素基纳米脂质体与GEM结合,将化疗和光热疗法(PTT)结合在一起。黑色素在近红外(NIR)激光作用下引起的体温过低在纳米脂质体在肿瘤部位的被动积累后对胰腺癌细胞产生了有害的损害。此外,温度升高可通过改变纳米脂质体的结构完整性来增强GEM从纳米脂质体的释放。因此,通过将化疗剂GEM和光热剂黑色素装载到纳米脂质体中获得了协同的抗肿瘤作用。这项研究中的发现强烈支持基于黑色素的纳米脂质体可能是抗胰腺癌的理想策略。

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