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Plasmonic Material Engineering for Targeted Therapeutics

机译:针对靶向治疗的等离子体材料工程

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Nanomedicine approaches based on targeted delivery of nanoparticles have enormous therapeutic potential. For this to succeed, the nanoparticles, possibly functionalized or activatable by lasers, need to reach their target in the organism and preferably accumulate at this target. However, administration of nanoparticles in vivo results in rapid clearance of the particles by the immune system, thus preventing the nanomedicine in reaching its target. Passivation by polymer coatings has provided some success, but has not been sufficient to transform nanomedicine into an effective therapy. Recently, a new approach has been adopted which utilizes native cellular membranes for coating of nanoparticles. Motivated by the signaling and recognition capabilities of natural cell membranes, it is now feasible to produce nanoparticles with both immune evasive and tumor targeting abilities. Circulation times are dramatically enhanced by natural membrane coatings allowing significant increase in the passive accumulation by the enhanced permeability and retention effect. Membrane coating of nanoparticles provides a promising new development for advanced nanoparticle photothermal therapy (PTT). Here, the recent advances and challenges facing this new type of nanoparticle technology, bridging advanced optical properties with bio-compatibility, are reviewed with a focus on membrane coating of plasmonic nanoparticles which has shown great promise in PTT.
机译:基于纳米颗粒的靶向递送的纳米美发方法具有巨大的治疗潜力。为此,为了成功,纳米颗粒,可能通过激光官能化或激活,需要在生物体中达到它们的靶,并且优选在该靶标中积聚。然而,在体内施用纳米颗粒导致免疫系统的快速清除颗粒,从而防止纳米胺在达到其靶标中。聚合物涂层的钝化提供了一些成功,但尚未足以将纳米卫生细胞转化为有效的治疗。最近,已经采用了一种新方法,其利用用于涂覆纳米颗粒的天然细胞膜。通过天然细胞膜的信号和识别能力的激励,现在可以生产具有免疫稀释和肿瘤靶向能力的纳米颗粒是可行的。循环时间通过天然膜涂层显着增强,允许通过增强的渗透率和保留效果显着增加被动积累。纳米粒子的膜涂层为先进的纳米粒子光热疗(PTT)提供了一个有希望的新开发。这里,这种新型纳米粒子技术面临的最近的进步和挑战,弥合具有生物兼容性的先进光学性能,重点介绍了在PTT中显示出很大的通知的血浆纳米颗粒的膜涂层。

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