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Nanoparticle Beacons: Supersensitive Smart Materials with On/Off-Switchable Affinity to Biomedical Targets

机译:纳米粒子信标:超敏智能材料,具有对生物医学目标的开/关可切换亲和力

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摘要

Smart materials that can switch between different states under the influence of chemical triggers are highly demanded in biomedicine, where specific responsiveness to biomarkers is imperative for precise diagnostics and therapy. Superior selectivity of drug delivery to malignant cells may be achieved with the nanoagents that stay "inert" until "activation" by the characteristic profile of microenvironment cues (e.g., tumor metabolites, angiogenesis factors, microRNA/DNA, etc.). However, despite a wide variety and functional complexity of smart material designs, their real-life applications are hindered by very limited sensitivity to inputs. Here, we present ultrasensitive smart nanoagents with input-dependent On/Off switchable affinity to a biomedical target based on a combination of gold nanoparticles with low-energy polymer structures. In the proposed method, a nanoparticle-based agent is surface coated with a custom designed flexible polymer chain, which has an input-switchable structure that regulates accessibility of the terminal receptor for target binding. Implementation of the concept with a DNA-model of such polymer has yielded nanoagents that have input-dependent cell-targeting capabilities and responsiveness to as little as 30 fM of DNA input in 15 min lateral flow assay. Thus, we show that surface phenomena can augment nanoagents with capability for switchable affinity without compromising the sensitivity to inputs. The proposed approach is promising for development of next-generation theranostic agents and ultrasensitive nanosensors for point-of-care diagnostics.
机译:在化学触发器的影响下可以在不同状态下切换的智能材料在生物医学中,对生物医学的特殊反应是对生物标志物的特异性反应来说是精确的诊断和治疗。通过将“惰性”保持“惰性”直至“激活”的纳米剂,可以通过微环境提示(例如肿瘤代谢物,血管生成因子,MicroRNA / DNA等)的特征分布来实现药物递送给恶性细胞的卓越选择性。然而,尽管智能材料设计具有各种各样和功能性的复杂性,但它们的现实寿命应用因对输入而受到非常有限的敏感性。这里,我们基于具有低能量聚合物结构的金纳米粒子的组合,将超敏智能纳米物与基于生物医学靶的输入依赖性开/关可切换亲和力。在该方法中,基于纳米颗粒的试剂用定制设计的柔性聚合物链涂覆,其具有可输入可切换结构,该结构调节终端受体的可达性以进行靶结合。使用这种聚合物的DNA模型的概念的实施得到了纳米蛋白,其具有输入依赖性细胞靶向能力,并且在15分钟的横向流动测定中的DNA输入的响应性较小。因此,我们表明,表面现象可以增强纳瓦品,具有可切换亲和力的能力,而不会影响对输入的敏感性。该拟议的方法是对下一代治疗剂的开发,以及用于护理点诊断的超敏感纳米传感器。

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