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Activatable Interpolymer Complex-Superparamagnetic Iron Oxide Nanoparticles as Magnetic Resonance Contrast Agents Sensitive to Oxidative Stress

机译:可活化的共聚体-超顺磁性氧化铁纳米粒子作为对氧化应激敏感的磁共振造影剂

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摘要

Magnetic resonance contrast agents that can be activated in response to specific triggers hold potential as molecular biosensors that may be of great utility in non-invasive disease diagnosis. We developed an activatable agent based on superparamagnetic iron oxide nanoparticles (SPIOs) that is sensitive to oxidative stress, a factor in the pathophysiology of numerous diseases. SPIOs were coated with poly(ethylene glycol) (PEG) and complexed with poly(gallol), a synthetic tannin. Hydrogen bonding between PEG and poly(gallol) creates a complexed layer around the SPIO that decreases the interaction of solute water with the SPIO, attenuating its magnetic resonance relaxivity. The complexed interpolymer nanoparticle is in an OFF state (decreased T2 contrast), where the contrast agent has a low T2 relaxivity of 7 ± 2 mM−1 s−1. In the presence of superoxides, the poly(gallol) is oxidized and the polymers decomplex, allowing solute water to again interact with the SPIO, representing an ON state (increased T2 contrast) with a T2 relaxivity of 70 ± 10 mM−1 s−1. These contrast agents show promise as effective sensors for diseases characterized in part by oxidative stress such as atherosclerosis, diabetes, and cancer.
机译:可以响应特定触发而被激活的磁共振造影剂作为分子生物传感器具有潜力,在非侵入性疾病诊断中可能具有很大的用途。我们开发了一种基于超顺磁性氧化铁纳米粒子(SPIO)的可活化剂,该物质对氧化应激敏感,氧化应激是多种疾病的病理生理因素。 SPIO涂有聚乙二醇(PEG),并与合成鞣酸聚(gallol)复合。 PEG和聚(gallol)之间的氢键会在SPIO周围形成一个复合层,从而降低了溶质水与SPIO的相互作用,从而减弱了其磁共振弛豫性。复合的互聚物纳米颗粒处于OFF状态(T2对比度降低),其中造影剂的T2弛豫度低,为7±2 mM -1 s -1 。在超氧化物的存在下,聚(没食子酚)被氧化并且聚合物分解,从而使溶质水再次与SPIO相互作用,表现为ON状态(T2对比度增加),T2弛豫度为70±10 mMs- 1 s -1 。这些造影剂有望作为一种有效的传感器,用于部分以氧化应激为特征的疾病,如动脉粥样硬化,糖尿病和癌症。

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