CICS-UBI - Centro de Investigação em Ciências da Saúde, Universidade da Beira Interior, 6200-506 Covilhã, Portugal.
CICS-UBI - Centro de Investigação em Ciências da Saúde, Universidade da Beira Interior, 6200-506 Covilhã, Portugal.
Eur J Pharm Biopharm. 2019 Apr;137:86-94. doi: 10.1016/j.ejpb.2019.02.016. Epub 2019 Feb 20.
IR780 is a near infrared (NIR) dye with a huge potential to be applied in cancer phototherapy and imaging. However, IR780 poor water solubility and acute cytotoxicity limit its direct use in cancer theragnostic. Herein, a novel Hyaluronic acid (HA)-based amphiphilic polymer was used, for the first time, in the preparation of polymeric nanoparticles (HPN) encapsulating IR780 aimed to be applied in breast cancer therapy. Furthermore, HPN co-encapsulating IR780 and Doxorubicin (DOX) were also produced in order to further enhance the therapeutic effectiveness of this nanoformulation. The results revealed that HPN were able to successfully encapsulate IR780 (IR-HPN) and the IR780-DOX combination (IR/DOX-HPN). Furthermore, the encapsulation of IR780 in HPN improved its absorption at 808 nm by about 2.2-fold, thereby enhancing its photothermal potential, as well as its cytocompatibility. The 2D in vitro cell uptake studies demonstrated that the nanostructures displayed a higher internalization by breast cancer cells than by normal cells. In addition, the assays performed in 3D in vitro models of breast cancer revealed that HPN can penetrate into spheroids. Furthermore, the 3D in vitro studies also demonstrated that the combined application of IR-HPN and NIR light was unable to induce cytotoxicity on spheroids. In contrast, IR/DOX-HPN produced a decrease on spheroids cells' viability, and their combination with NIR light induced an even stronger therapeutic effect, thus revealing the potential of these nanoparticles for cancer chemo-phototherapy.
IR780 是一种近红外(NIR)染料,具有在癌症光疗和成像中应用的巨大潜力。然而,IR780 较差的水溶性和急性细胞毒性限制了其直接在癌症诊断和治疗中的应用。在此,首次使用了一种新型的透明质酸(HA)基两亲聚合物,用于制备包裹 IR780 的聚合物纳米粒(HPN),旨在应用于乳腺癌治疗。此外,还制备了共包裹 IR780 和多柔比星(DOX)的 HPN,以进一步增强这种纳米制剂的治疗效果。结果表明,HPN 能够成功包裹 IR780(IR-HPN)和 IR780-DOX 复合物(IR/DOX-HPN)。此外,IR780 在 HPN 中的包裹提高了其在 808nm 处的吸收约 2.2 倍,从而增强了其光热潜力和细胞相容性。二维体外细胞摄取研究表明,与正常细胞相比,这些纳米结构被乳腺癌细胞更高地内化。此外,在乳腺癌的 3D 体外模型中进行的实验表明,HPN 可以穿透球体。此外,3D 体外研究还表明,IR-HPN 和 NIR 光的联合应用不能诱导球体上的细胞毒性。相比之下,IR/DOX-HPN 降低了球体细胞的活力,并且它们与 NIR 光的联合应用诱导了更强的治疗效果,从而揭示了这些纳米粒子用于癌症化学光疗的潜力。