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Targeting to Endothelial Cells Augments the ProtectiveEffect of Novel Dual Bioactive Antioxidant/Anti-Inflammatory Nanoparticles

机译:靶向内皮细胞可增强保护作用新型双重生物活性抗氧化剂/消炎纳米颗粒的作用

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摘要

Oxidative stress and inflammation are intertwined contributors to numerous acute vascular pathologies. A novel dual bioactive nanoparticle with antioxidant/anti-inflammatory properties was developed based on the interactions of tocopherol phosphate and the manganese porphyrin SOD mimetic, MnTMPyP. The size and drug incorporation efficiency were shown to be dependent on the amount of MnTMPyP added as well as the choice of surfactant. MnTMPyP was shown to retain its SOD-like activity while in intact particles and to release in a slow and controlled manner. Conjugation of anti-PECAM antibody to the nanoparticles provided endothelial targeting and potentiated nanoparticle-mediated suppression of inflammatory activation of these cells manifested by expression of VCAM, E-selectin, and IL-8. This nanoparticle technology may find applicability with drug combinations relevant for other pathologies.
机译:氧化应激和炎症是许多急性血管病变的相互交织的因素。基于生育酚磷酸酯和锰卟啉SOD模拟物MnTMPyP的相互作用,开发了一种具有抗氧化/抗炎特性的新型双重生物活性纳米颗粒。结果表明大小和药物掺入效率取决于所添加的MnTMPyP的量以及表面活性剂的选择。 MnTMPyP已显示在完整颗粒中仍保留其类SOD活性,并以缓慢且受控的方式释放。抗PECAM抗体与纳米颗粒的缀合提供了内皮靶向作用,并通过VCAM,E-选择素和IL-8的表达证明了纳米颗粒介导的这些细胞炎症激活的抑制。这种纳米颗粒技术可以发现与其他病理相关的药物组合的适用性。

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