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Method for the Instant In-Flight Manufacture of Black Phosphorus to Assemble Core@Shell Nanocomposites for Targeted Photoimmunotherapy

机译:用于组装核心@壳纳米复合材料的黑色磷的瞬间内飞行制造方法,用于靶向光瘤疗法

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Inorganic nanomaterial (INM)-based combination cancer therapies have been extensively employed over the past two decades because of their benefits over traditional chemo- and radiotherapies. However, issues regarding the toxicity and accumulation of INMs in the body have arisen. This problem may be improved through the use of biodegradable or disintegrable nanosystems such as black phosphorus (BP). Challenges to the manufacture of fully nanodimensional BP remain. In addition, improvements in recently developed cancer immunotherapies require their incorporation with drugs, targeting agents, and delivery vehicles. With these needs in mind, this study develops a method for instant in-flight manufacture of nanodimensional BP using plug-and-play devices for subsequent assembly of photoimmunotherapeutic core@shell composites containing mutated B-raf inhibitors (dabrafenib), immune checkpoint inhibitors (PD-L1), and cancer-targeting antibodies (CXCR4). The resulting nanocomposites exhibited cancer targetability and regulatability of PD-L1 expression both in vitro and in vivo. These activities were further increased upon near-infrared irradiation due to the incorporation of a phototherapeutic component. These results suggest that these nanocomposites are promising as a new class of advanced cancer therapeutic agents.
机译:由于对传统化学和放射疗法的益处,过去二十年来,无机纳米材料(INM)组合癌症疗法已被广泛使用。然而,有关于体内毒性和体积积累的问题已经出现。通过使用可生物降解或可崩解的纳米系统(例如黑磷(BP),可以改善该问题。仍然存在完全纳米二维BP的挑战。此外,最近开发的癌症免疫治疗的改进需要它们与药物,靶向剂和递送载体的掺入。考虑到这些需求,该研究使用即插即用装置对纳米二维BP的瞬间内飞行制造方法进行了一种方法,用于随后的含有突变的B-RAF抑制剂(DabrafeNIB),免疫检查点抑制剂( PD-L1)和癌症靶向抗体(CXCR4)。所得纳米复合材料在体外和体内表现出PD-L1表达的癌症靶向性和调节性。由于掺入光照组分,这些活性在近红外辐射时进一步增加。这些结果表明,这些纳米复合材料很有前途作为一类新的晚期癌症治疗剂。

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