首页> 美国卫生研究院文献>BioMed Research International >In Vitro Evaluation of the Biological Availability of Hyaluronic Acid Polyethylene Glycols-Cross-Linked Hydrogels to Bovine Testes Hyaluronidase
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In Vitro Evaluation of the Biological Availability of Hyaluronic Acid Polyethylene Glycols-Cross-Linked Hydrogels to Bovine Testes Hyaluronidase

机译:透明质酸聚乙二醇交联的水凝胶对牛睾丸透明质酸酶的生物利用度的体外评价

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摘要

During last years, hyaluronic acid- (HA-) based dermal fillers have grown rapidly and continuously, as reported by the American Society of Aesthetic Plastic Surgery (ASAPS). In fact, HA fillers are considered the gold standard technique for soft tissue augmentation, deep skin hydration, and facial recontouring, playing a key role as an alternative to plastic surgery. HA fillers are less invasive, more biocompatible, and safer and with a more natural and immediate result if compared to plastic surgery. Hence, the safety of HA-based dermal fillers plays a crucial role, mostly in terms of biocompatibility and adjustability in case of unpleasant results and side effects such as, tyndall effect, edema, or granulomas. Hyaluronidase is a naturally occurring enzyme, present in the human body, and can degrade HA fillers avoiding more severe complications. In this article, we analyzed the bioavailability of hyaluronidase degradation of five fillers of Neauvia® hydrogels line (MatexLab SA, Lugano, CH), composed of pure hyaluronic acid and based on PEGDE cross-linking (polyethylene glycol) technology that guarantees a higher biocompatibility and an optimal biointegration and rheological characteristics. The performed in vitro testing is based on the colorimetric determination of the N-acetyl-D-glucosamine (NAG) present in solution after incubation with hyaluronidase, determined at different time points in order to assess the kinetic of each product degradation (1h, 3h, 6h, 24h, 48h, 72h, 120h, and 168h). The aim of this study was to assess, in vitro, how the difference in HA content and PEGDE concentration of the analyzed fillers can influence the product biocompatibility, intended as product enzymatic clearance and duration in time. The results demonstrated that the method was reproducible and easy to perform and that all the analyzed fillers are naturally immediately available for hyaluronidase-mediated degradation.
机译:在过去的几年中,根据美国美容整形外科学会(ASAPS)的报道,透明质酸(HA-)基的皮肤填充剂得到了快速而持续的发展。实际上,HA填充剂被认为是软组织增强,深层皮肤水合作用和面部轮廓修复的金标准技术,在替代整形外科手术中起着关键作用。与整形外科手术相比,HA填充剂具有较低的侵入性,更高的生物相容性和安全性,并且具有更自然和直接的效果。因此,基于HA的真皮填充剂的安全性起着至关重要的作用,主要是在生物相容性和可调节性方面,以防出现不良结果和副作用,例如廷德尔效应,水肿或肉芽肿。透明质酸酶是存在于人体中的天然酶,可降解HA填充物,避免更严重的并发症。在本文中,我们分析了由纯透明质酸组成并基于PEGDE交联(聚乙二醇)技术的Neauvia®水凝胶系列(MatexLab SA,位于卢加诺,CH)的5种填充剂的透明质酸酶降解的生物利用度,可确保更高的生物相容性以及最佳的生物整合和流变特性。进行的体外测试基于比色法测定透明质酸酶孵育后溶液中存在的N-乙酰基-D-葡糖胺(NAG),并在不同时间点测定,以评估每种产品降解的动力学(1h,3h ,6h,24h,48h,72h,120h和168h)。这项研究的目的是在体外评估HA含量和所分析填料的PEGDE浓度的差异如何影响产品的生物相容性,即产品酶的清除率和持续时间。结果表明该方法具有可重现性且易于执行,并且所有分析的填充剂自然可以立即用于透明质酸酶介导的降解。

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