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Magnetically-responsive, multifunctional drug delivery nanoparticles for elastic matrix regenerative repair

机译:磁性响应,多功能药物递送纳米粒子,用于弹性基质再生修复

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Arresting or regressing growth of abdominal aortic aneurysms (AAAs), localized expansions of the abdominal aorta are contingent on inhibiting chronically overexpressed matrix metalloproteases (MMPs)-2 and-9 that disrupt elastic matrix within the aortic wall, concurrent with providing a stimulus to augmenting inherently poor auto-regeneration of these matrix structures. In a recent study we demonstrated that localized, controlled and sustained delivery of doxycycline (DOX; a tetracycline-based antibiotic) from poly(lactic-co-glycolic acid) nanoparticles (PLGA NPs), enhances elastic matrix deposition and MMP-inhibition at a fraction of the therapeutically effective oral dose. The surface functionalization of these NPs with cationic amphiphiles, which enhances their arterial uptake, was also shown to have pro-matrix regenerative and anti-MMP effects independent of the DOX. Based on the hypothesis that the incorporation of superparamagnetic iron oxide NPs (SPIONs) within these PLGA NPs would enhance their targetability to the AAA site under an applied external magnetic field, we sought to evaluate the functional effects of NPs co-encapsulating DOX and SPIONs (DOX-SPION NPs) on elastic matrix regeneration and MMP synthesis/activity in vitro within aneurysmal smooth muscle cell (EaRASMC) cultures. The DOX-SPION NPs were mobile under an applied external magnetic field, while enhancing elastic matrix deposition 1.5-2-fold and significantly inhibiting MMP-2 synthesis and MMP-2 and-9 activities, compared to NP-untreated control cultures. These results illustrate that the multifunctional benefits of NPs are maintained following SPION co-incorporation. Additionally, preliminary studies carried out demonstrated enhanced targetability of SPION-loaded NPs within proteolytically-disrupted porcine carotid arteries ex vivo, under the influence of an applied external magnetic field. Thus, this dual-agent loaded NP system proffers a potential non-surgical option for treating small growing AAAs, via controlled and sustained drug release from multifunctional, targetable nanocarriers.
机译:腹主动脉瘤(AAAs)的生长(AAAs)的抑制或回归生长,腹主动脉的局部扩展是抑制长期过表达的基质金属蛋白酶(MMPS)-2和-9,其破坏主动脉膜内的弹性基质,同时提供刺激以增强的刺激本质上具有本质上的自动再生。在最近的一项研究中,我们证明了来自聚(乳酸 - 共乙醇酸)纳米颗粒(PLGA NPS)的局部化,控制和持续递送了十氧环(DOX;一种四环素类抗生素),增强了弹性基质沉积和MMP抑制治疗有效的口服剂量的分数。这些NPS具有阳离子两亲物的表面官能化,其增强其动脉吸收,也显示出具有独立于DOX的Pro-Matrix再生和抗MMP效果。基于这些PLGA NPS内掺入超顺磁性氧化铁NPS(栓塞)的假设将在应用的外部磁场下提高它们对AAA位点的靶向,我们寻求评估NPS共封装DOX和酱的功能效果( Dox-Spion NPS)对动脉瘤平滑肌细胞(Enarasmc)培养物体外弹性基质再生和MMP合成/活性。与NP-未处理的对照培养相比,DOX-SPION NPS在施加的外部磁场下是移动的,同时增强弹性基质沉积1.5-2折叠并显着抑制MMP-2合成和MMP-2和-9活性。这些结果表明,在Spion共同融合后,NP的多功能益处是维持的。另外,在施加的外部磁场的影响下,进行的初步研究表明了在蛋白水溶性破坏的猪颈动脉中的SpiOn-Loaded NP的靶向性。因此,这种双剂量的NP系统利用来自多功能,可靶纳米载体的受控和持续的药物释放来治疗小生长AAAS的潜在非手术选择。

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