首页> 外文期刊>Frontiers in Pharmacology >Localized Delivery of Cl-Amidine From Electrospun Polydioxanone Templates to Regulate Acute Neutrophil NETosis: A Preliminary Evaluation of the PAD4 Inhibitor for Tissue Engineering
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Localized Delivery of Cl-Amidine From Electrospun Polydioxanone Templates to Regulate Acute Neutrophil NETosis: A Preliminary Evaluation of the PAD4 Inhibitor for Tissue Engineering

机译:从静电纺丝聚二恶烷酮模板的本地交付的Cl A,以调节急性中性粒细胞netosis:组织工程学PAD4抑制剂的初步评估。

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Upon interaction, neutrophils can potentially release neutrophil extracellular traps (NETs) on the surface of an implanted electrospun template, which may be a significant preconditioning event for implantable biomaterials of yet unknown consequences. In this study, we investigated the potential of polydioxanone templates as a delivery vehicle for Cl-amidine, an inhibitor of peptidyl arginase deiminase 4 (PAD4), and if drug elution could attenuate PAD4-mediated NETosis in the vicinity of implanted templates. Electrospun polydioxanone templates were fabricated with distinct architectures, small diameter (0.4 μm) or large diameter (1.8 μm) fibers, and incorporated with 0–5 mg/mL Cl-amidine to examine dose-dependent effects. Acute neutrophil-template interactions were evaluated in vitro with freshly isolated human neutrophils and in vivo with a rat subcutaneous implant model. The in vitro results suggest large diameter templates with 0 mg/mL Cl-amidine significantly attenuate NETosis compared to small diameter templates. As the drug concentration increased, NETosis was significantly decreased on small diameter templates in a dose-dependent manner. The opposite was observed for large diameter templates, indicating multiple mechanisms of NETosis may be regulating neutrophil template preconditioning. Similar results were observed in vivo , verifying local NETosis inhibition by Cl-amidine eluting templates in a physiological environment. Importantly, large diameter templates with Cl-amidine enhanced neutrophil invasion and survival, supporting the potential for long-term modulation of tissue integration and regeneration. This preliminary study demonstrates a novel delivery vehicle for Cl-amidine that can be used to regulate acute NETosis as the potential critical link between the innate immune response, inflammation, and template-guided tissue regeneration.
机译:相互作用后,中性粒细胞可能会在植入的电纺模板表面上释放中性粒细胞胞外陷阱(NETs),这对于后果不明的可植入生物材料而言可能是重要的预处理事件。在这项研究中,我们研究了聚二恶烷酮模板作为Cl-am(一种肽基精氨酸酶脱亚氨酶4(PAD4)的抑制剂)的传递载体的潜力,并且如果药物洗脱能够减弱PAD4介导的在植入模板附近的NETosis。静电纺丝聚二恶烷酮模板具有独特的结构,小直径(0.4μm)或大直径(1.8μm)纤维制成,并掺有0-5 mg / mL Cl- incorporated,以检查剂量依赖性效应。急性中性粒细胞与模板的相互作用在体外用新鲜分离的人中性粒细胞进行评价,而在体内用大鼠皮下植入模型进行评价。体外结果表明,与小直径模板相比,含0 mg / mL Cl-am的大直径模板可显着减轻NETosis。随着药物浓度的增加,小直径模板上的NETosis呈剂量依赖性降低。对于大直径模板观察到相反的情况,表明NETosis的多种机制可能是调节中性粒细胞模板的预处理。在体内观察到相似的结果,证实了在生理环境中Cl-am洗脱模板对局部NETosis的抑制作用。重要的是,带有Cl-am的大直径模板可增强嗜中性粒细胞的侵袭和存活,支持长期调节组织整合和再生的潜力。这项初步研究证明了一种新型的Cl-am载体,可用于调节急性NETosis,作为先天免疫反应,炎症和模板引导的组织再生之间的潜在关键环节。

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