首页> 外文期刊>Biomaterials >Comparison of the antioxidant properties of HYAFF-11p75, AQUACEL and hyaluronan towards reactive oxygen species in vitro.
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Comparison of the antioxidant properties of HYAFF-11p75, AQUACEL and hyaluronan towards reactive oxygen species in vitro.

机译:HYAFF-11p75,AQUACEL和透明质酸在体外对活性氧的抗氧化性能比较。

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摘要

In chronic wounds, a number of host factors are released which perpetuate the inflammatory process, including polymorphonuclear leukocyte (PMN)-derived reactive oxygen species (ROS), such as superoxide radical (O2*-) and hydroxyl radical (*OH) species. The glycosaminoglycan. hyaluronan, has been shown to act as an antioxidant towards ROS, although the potential for biomaterials, such as HYAFF -11p75 (the 75% benzyl ester of hyaluronan) and AQUACEL (carboxymethylcellulose), to act in this manner has yet to be elucidated. This study compared the antioxidant properties of high and low molecular weight hyaluronan (HMWT HA and LMWT HA), HYAFF -11p75, AQUACEL and an AQUACEL /hyaluronan composite (AQUACEL /HA) against O2*- and *OH. The antioxidant capacities of each material were assessed by their ability to inhibit cytochrome C reduction by O2*- fluxes, generated via the oxidation of hypoxanthine by xanthine oxidase, and their inhibition of 2-deoxy-D-ribose degradation by *OH fluxes, generated by the reaction of hydrogen peroxide (H2O2) and iron (Fe2+). All materials studied possessed dose dependent antioxidant properties towards O2*-, with HYAFF 11p75 having the greatest antioxidant potential towards these species, followed by AQUACEL, HMWT HA, AQUACEL /HA and LMWT HA. Only HMWT HA exhibited dose dependent antioxidant properties towards *OH at the fluxes examined. Gas chromatography/mass spectrometry analysis implied that ester bonds between the hyaluronan backbone and benzyl groups of HYAFF -11p75 are highly susceptible to O2*- hydrolysis, with the de-esterified benzyl alcohol being rapidly degraded in the presence of *OH. This data supports the hypothesis that HYAFF -11p75 has greater antioxidant capacity towards O2*-, due to the esterified benzyl groups providing alternative sites for O2*- attack other than the hyaluronan backbone of HYAFF -11p75 itself and explains the inability of HYAFF -11p75 to scavenge *OH, due to benzyl alcohol degradation by *OH. The antioxidant activities of these biomaterials, particularly HYAFF -11p75 and AQUACEL, towards O2*- could be beneficial, as the scavenging of PMN-derived O2*- may remove initial sources of O2*- and further prevent the secondary formation of *OH. These ROS are thought to be a primary causal factor for the extensive degradation and metabolic alterations observed in chronic wounds.
机译:在慢性伤口中,许多宿主因子被释放,使炎症过程永久化,包括多形核白细胞(PMN)衍生的活性氧(ROS),例如超氧自由基(O2 *-)和羟自由基(* OH)。糖胺聚糖。透明质酸已显示出对ROS的抗氧化剂作用,尽管尚未阐明生物材料(如HYAFF -11p75(透明质酸的75%苄基酯)和AQUACEL(羧甲基纤维素))以这种方式起作用的潜力。这项研究比较了高分子量和低分子量的透明质酸(HMWT HA和LMWT HA),HYAFF -11p75,AQUACEL和AQUACEL /透明质酸复合物(AQUACEL / HA)对O2 *-和* OH的抗氧化性能。通过每种材料通过黄嘌呤氧化酶氧化次黄嘌呤产生的O2 *-通量抑制细胞色素C还原的能力以及通过* OH通量产生的对2-脱氧-D-核糖降解的抑制作用来评估每种材料的抗氧化能力。通过过氧化氢(H2O2)和铁(Fe2 +)的反应。所有研究的材料均具有针对O2 *-的剂量依赖性抗氧化性能,其中HYAFF 11p75对这些物种具有最大的抗氧化潜力,其次是AQUACEL,HMWT HA,AQUACEL / HA和LMWT HA。在检测的通量下,仅HMWT HA对* OH表现出剂量依赖性的抗氧化剂性能。气相色谱/质谱分析表明,透明质酸骨架和HYAFF -11p75的苄基之间的酯键高度易受O2 *-水解的影响,在* OH的存在下,脱酯化的苯甲醇会迅速降解。该数据支持以下假设:HYAFF -11p75对O2 *-具有更大的抗氧化能力,这是因为酯化的苄基为H2FF--11p75本身的透明质酸骨架提供了O2 *-攻击的替代位点,并解释了HYAFF -11p75的无能由于苄醇被* OH降解,从而清除* OH。这些生物材料(尤其是HYAFF -11p75和AQUACEL)对O2 *-的抗氧化活性可能是有益的,因为清除PMN衍生的O2 *-可以清除O2 *-的原始来源,并进一步防止* OH的二次形成。这些ROS被认为是在慢性伤口中观察到的广泛降解和代谢改变的主要原因。

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