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Alpha-lipoic acid restores tear production in an animal model of dry eye

机译:α-硫辛酸可恢复干眼动物模型的眼泪产生

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The tear film comprises a major mechanism for protection of the ocular surface against harmful external agents. Disruption of tear production can lead to dry eye syndrome, causing damage ranging from mild discomfort to scarring of the ocular surface with irreversible vision impairment. The production of tears by the lacrimal gland is influenced by neuroendocrine, hormonal, and immunological factors. Reactive oxygen and nitrogen species play an important role in its regulation. We assessed the effects of oxidative stress on antioxidant defenses in the lacrimal gland and ocular surface in ovariectomized rats supplemented with n-3 polyunsaturated fatty acids (n-3 PUFA) and alpha-lipoic acid (ALP). We found that n-3 PUFA did not measurably influence oxidative stress, but ALP had site-specific pro-oxidant and antioxidant effects, and was an important influence on ocular surface dry eye improvement. As an index of oxidative damage to proteins and lipids, we measured levels of carbonyl and malondialdehyde (MDA), respectively. Enzymatic antioxidant defenses were measured as total superoxide dismutase (tSOD) and glutathione peroxidase (GPx), and non-enzymatic defenses were estimated by vitamin C, total glutathione, and indirect oxide nitric levels. PUFA and ALP treatment restored lacrimal production with resulting improvement in the dry eye Schirmer test in all supplemented groups. The results indicated that reactive oxygen species resulting from oxidative stress in the lacrimal gland did not play an important role in dry eye through reactive oxygen species; however, alpha-lipoic acid altered the metabolism of reactive nitrogen species, causing increased activity of lacrimal peroxidase and improved lacrimal production.
机译:泪膜包括保护眼表免受有害外部物质影响的主要机制。泪液产生的中断可导致干眼症,引起从轻度不适到眼表疤痕以及不可逆视力损害的损害。泪腺产生的泪液受神经内分泌,激素和免疫学因素的影响。活性氧和氮物质在其调节中起重要作用。我们在补充n-3多不饱和脂肪酸(n-3 PUFA)和α-硫辛酸(ALP)的去卵巢大鼠中评估了氧化应激对泪腺和眼表抗氧化防御的影响。我们发现n-3 PUFA并没有显着影响氧化应激,但ALP具有特定部位的促氧化剂和抗氧化剂作用,并且是改善眼表干眼症的重要因素。作为蛋白质和脂质氧化损伤的指标,我们分别测量了羰基和丙二醛(MDA)的水平。酶促抗氧化剂防御系统以总超氧化物歧化酶(tSOD)和谷胱甘肽过氧化物酶(GPx)进行测量,非酶促防御系统通过维生素C,总谷胱甘肽和间接氧化氮水平进行评估。 PUFA和ALP治疗可恢复泪液产生,从而在所有补充组中改善干眼Schirmer试验。结果表明,泪腺中氧化应激产生的活性氧通过活性氧在干眼症中没有重要作用。然而,α-硫辛酸改变了活性氮的代谢,导致泪腺过氧化物酶活性增加和泪腺产生增加。

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