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Functional Nanoparticles Activate a Decellularized Liver Scaffold for Blood Detoxification

机译:功能性纳米颗粒可激活脱细胞的肝支架进行血液排毒

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摘要

Extracorporeal devices have great promise for cleansing the body of virulence factors that are caused by venomous injuries, bacterial infections, and biological weaponry. The clinically used extracorporeal devices, such as artificial liver-support systems that are mainly based on dialysis or electrostatic interaction, are limited to remove a target toxin. Here, a liver-mimetic device is shown that consists of decellularized liver scaffold (DLS) populated with polydiacetylene (PDA) nanoparticles. DLS has the gross shape and 3D architecture of a liver, and the PDA nanoparticles selectively capture and neutralize the pore-forming toxins (PFTs). This device can efficiently and target-orientedly remove PFTs in human blood ex vivo without changing blood components or activating complement factors, showing potential application in antidotal therapy. This work provides a proof-of-principle for blood detoxification by a nanoparticle-activated DLS, and can lead to the development of future medical devices for antidotal therapy.
机译:体外装置对于清除由毒伤,细菌感染和生物武器引起的致病因子具有广阔的前景。临床上使用的体外设备(例如主要基于透析或静电相互作用的人造肝脏支持系统)仅限于去除目标毒素。在此,显示了一种仿肝装置,该装置由装有聚二乙炔(PDA)纳米粒子的脱细胞肝支架(DLS)组成。 DLS具有肝脏的总体形状和3D结构,而PDA纳米颗粒可选择性捕获并中和孔形成毒素(PFT)。该装置可在不改变血液成分或激活补体因子的情况下,在体外有效地,有针对性地去除人血中的PFT,显示了在解毒疗法中的潜在应用。这项工作为通过纳米粒子激活的DLS进行血液排毒提供了原理证明,并且可以导致未来解毒疗法医疗设备的开发。

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