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果糖胺-3-激酶在白内障治疗中的潜在作用

A Potential Role for Fructosamine-3-Kinase in Cataract Treatment.

作者信息

De Bruyne Sander, van Schie Loes, Himpe Jonas, De Somer Filip, Everaert Inge, Derave Wim, Van den Broecke Caroline, Huizing Manon, Bostan Nezahat, Speeckaert Marijn, Callewaert Nico, Van Aken Elisabeth, Delanghe Joris R

机构信息

Department of Diagnostic Sciences, Ghent University, 9000 Ghent, Belgium.

VIB-UGent Center for Medical Biotechnology, VIB, 9052 Ghent, Belgium.

出版信息

Int J Mol Sci. 2021 Apr 7;22(8):3841. doi: 10.3390/ijms22083841.

Abstract

Cataracts are the major cause of blindness worldwide, largely resulting from aging and diabetes mellitus. Advanced glycation end products (AGEs) have been identified as major contributors in cataract formation because they alter lens protein structure and stability and induce covalent cross-linking, aggregation, and insolubilization of lens crystallins. We investigated the potential of the deglycating enzyme fructosamine-3-kinase (FN3K) in the disruption of AGEs in cataractous lenses. Macroscopic changes of equine lenses were evaluated after ex vivo intravitreal FN3K injection. The mechanical properties of an equine lens pair were evaluated after treatment with saline and FN3K. AGE-type autofluorescence (AF) was measured to assess the time-dependent effects of FN3K on glycolaldehyde-induced AGE-modified porcine lens fragments and to evaluate its actions on intact lenses after in vivo intravitreal FN3K injection of murine eyes. A potential immune response after injection was evaluated by analysis of IL-2, TNFα, and IFNγ using an ELISA kit. Dose- and time-dependent AF kinetics were analyzed on pooled human lens fragments. Furthermore, AF measurements and a time-lapse of macroscopic changes were performed on intact cataractous human eye lenses after incubation with an FN3K solution. At last, AF measurements were performed on cataractous human eyes after crossover topical treatment with either saline- or FN3K-containing drops. While the lenses of the equine FN3K-treated eyes appeared to be clear, the saline-treated lenses had a yellowish-brown color. Following FN3K treatment, color restoration could be observed within 30 min. The extension rate of the equine FN3K-treated lens was more than twice the extension rate of the saline-treated lens. FN3K treatment induced significant time-dependent decreases in AGE-related AF values in the AGE-modified porcine lens fragments. Furthermore, in vivo intravitreal FN3K injection of murine eyes significantly reduced AF values of the lenses. Treatment did not provoke a systemic immune response in mice. AF kinetics of FN3K-treated cataractous human lens suspensions revealed dose- and time-dependent decreases. Incubation of cataractous human eye lenses with FN3K resulted in a macroscopic lighter color of the cortex and a decrease in AF values. At last, crossover topical treatment of intact human eyes revealed a decrease in AF values during FN3K treatment, while showing no notable changes with saline. Our study suggests, for the first time, a potential additional role of FN3K as an alternative treatment for AGE-related cataracts.

摘要

白内障是全球失明的主要原因,主要由衰老和糖尿病引起。晚期糖基化终末产物(AGEs)已被确定为白内障形成的主要促成因素,因为它们会改变晶状体蛋白的结构和稳定性,并诱导晶状体晶状体蛋白的共价交联、聚集和不溶性。我们研究了去糖基化酶果糖胺-3-激酶(FN3K)在破坏白内障晶状体中AGEs的潜力。在玻璃体腔内注射FN3K后,评估马晶状体的宏观变化。在用生理盐水和FN3K处理后,评估一对马晶状体的力学性能。测量AGE型自发荧光(AF),以评估FN3K对乙醇醛诱导的AGE修饰猪晶状体片段的时间依赖性影响,并评估其在玻璃体腔内注射FN3K后对小鼠眼睛完整晶状体的作用。通过使用ELISA试剂盒分析IL-2、TNFα和IFNγ来评估注射后的潜在免疫反应。对收集的人晶状体片段分析剂量和时间依赖性AF动力学。此外,在用FN3K溶液孵育后,对完整的白内障人眼晶状体进行AF测量和宏观变化的延时观察。最后,在用含生理盐水或FN3K的滴眼液进行交叉局部治疗后,对白内障人眼进行AF测量。虽然接受FN3K治疗的马眼晶状体看起来是透明的,但接受生理盐水治疗的晶状体呈黄褐色。在FN3K治疗后,30分钟内可观察到颜色恢复。接受FN3K治疗的马晶状体的伸展率是接受生理盐水治疗的晶状体伸展率的两倍多。FN3K治疗导致AGE修饰的猪晶状体片段中与AGE相关的AF值随时间显著降低。此外,在小鼠眼内玻璃体腔注射FN3K可显著降低晶状体的AF值。治疗未在小鼠中引发全身免疫反应。FN3K处理的白内障人晶状体悬液的AF动力学显示出剂量和时间依赖性降低。用FN3K孵育白内障人眼晶状体导致皮质宏观颜色变浅和AF值降低。最后,对完整人眼的交叉局部治疗显示,在FN3K治疗期间AF值降低,而用生理盐水治疗则无明显变化。我们的研究首次表明,FN3K作为与AGE相关白内障的替代治疗方法可能具有额外的作用。

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