Winiarczyk Dagmara, Winiarczyk Mateusz, Winiarczyk Stanisław, Michalak Katarzyna, Adaszek Łukasz
Department of Internal Diseases of Small Animals, University of Life Sciences of Lublin, 20-950 Lublin, Poland.
Department of Vitreoretinal Surgery, Medical University of Lublin, 20-950 Lublin, Poland.
Animals (Basel). 2020 Dec 17;10(12):2416. doi: 10.3390/ani10122416.
Canine diabetes mellitus is a significant health burden, followed with numerous systemic complications, including diabetic cataracts and retinopathy, leading to blindness. Diabetes should be considered as a disease damaging all the body organs, including gastrointestinal tract, through a complex combination of vascular and metabolic pathologies, leading to impaired gut function. Tear film can be obtained in a non-invasive way, which makes it a feasible biomarker source. In this study we compared proteomic changes ongoing in tear film of diabetic dogs. The study group consisted of 15 diabetic dogs, and 13 dogs served as a control group. After obtaining tear film with Schirmer strips, we performed 2-dimensional electrophoresis, followed by Delta2D software analysis, which allowed to select statistically significant differentially expressed proteins. After their identification with MALDI-TOF (matrix assisted laser desorption and ionisation time of flight) spectrometry we found one up-regulated protein in tear film of diabetic dogs-SRC kinase signaling inhibitor 1 (SRCIN1). Eight proteins were down-regulated: phosphatidylinositol-4 kinase type 2 alpha (PI4KIIα), Pro-melanin concentrating hormone (Pro-MCH), Flotillin-1, Protein mono-ADP ribosyltransferase, GRIP and coiled coil domain containing protein 2, tetratricopeptide repeat protein 36, serpin, and Prelamin A/C. Identified proteins were analyzed by Panther Gene Ontology software, and their possible connections with diabetic etiopathology were discussed. We believe that this is the first study to target tear film proteome in canine diabetes. We believe that combined with traditional examination, the tear film proteomic analysis can be a new source of biomarkers both for clinical practice, and experimental research.
犬糖尿病是一项重大的健康负担,随之而来的是众多全身并发症,包括糖尿病性白内障和视网膜病变,可导致失明。糖尿病应被视为一种通过血管和代谢病理的复杂组合损害包括胃肠道在内的所有身体器官的疾病,从而导致肠道功能受损。泪膜可以通过非侵入性方式获取,这使其成为一种可行的生物标志物来源。在本研究中,我们比较了糖尿病犬泪膜中正在发生的蛋白质组变化。研究组由15只糖尿病犬组成,13只犬作为对照组。用施密特试纸获取泪膜后,我们进行了二维电泳,随后进行Delta2D软件分析,这使得我们能够选择具有统计学意义的差异表达蛋白。在用基质辅助激光解吸电离飞行时间(MALDI-TOF)光谱法对其进行鉴定后,我们在糖尿病犬的泪膜中发现了一种上调蛋白——SRC激酶信号抑制剂1(SRCIN1)。有8种蛋白下调:磷脂酰肌醇-4激酶2型α(PI4KIIα)、前黑素浓缩激素(Pro-MCH)、浮舰蛋白-1、蛋白质单ADP核糖基转移酶、含GRIP和卷曲螺旋结构域蛋白2、四肽重复蛋白36、丝氨酸蛋白酶抑制剂和前层粘连蛋白A/C。通过Panther基因本体软件对鉴定出的蛋白进行了分析,并讨论了它们与糖尿病病因病理的可能联系。我们认为这是第一项针对犬糖尿病泪膜蛋白质组的研究。我们相信,结合传统检查,泪膜蛋白质组分析可以成为临床实践和实验研究中生物标志物的新来源。
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