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Multifunctional Drug-Delivery Nanoparticles for Elastic Matrix Stabilization and Repair in Aortic Aneurysms

机译:用于弹性基质的多功能药物递送纳米颗粒和主动脉瘤中的弹性基质稳定和修复

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Abdominal aortic aneurysms (AAAs) result from progressive elastic matrix degradation by matrix metalloproteases (MMPs) -2 & -9. Orally-delivered doxycycline (DOX) has been shown effective in slowing AAA growth in human & animal studies by limiting ECM degradation within through inhibition of MMP-2 & -9. However, systemic delivery and high circulating doses appear to have adverse side-effects'. DOX doses in the delivered μg/mL range also appear to inhibit elastic matrix deposition by vascular cells. Hence, we investigated a nanoparticle (NP)-based approach towards localized, controlled, & sustained DOX delivery to AAAs. We evaluated effects of (a) DOX released from NPs on elastic matrix synthesis & MMP-inhibition in rat AAA smooth muscle cell (EaRASMC) cultures, and (b) surface modification of these NPs with cationic amphiphiles on elastin binding and LOX activity, which mediates crosslinking of elastin into a mature matrix.
机译:腹主动脉瘤(AAAS)由基质金属蛋白酶(MMPS)-2&-9的逐步弹性基质降解导致。通过限制通过抑制MMP-2和-9的ECM降解,在口服递送的十二胞菌素(DOX)在减缓人和动物研究中的生长有效。然而,全身递送和高循环剂量似乎具有不良副作用“。在递送的μg/ ml范围内的DOx剂量也似乎通过血管细胞抑制弹性基质沉积。因此,我们研究了基于局部,受控和持续的DOX送给AAA的纳米粒子(NP)的方法。我们评估了(a)dox在大鼠AAA平滑肌细胞(Entasmc)培养物中的弹性基质合成和MMP抑制的影响,(b)与阳离子两亲物质对弹性蛋白结合和LOX活性的影响将弹性蛋白的交联介导成熟基质。

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