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Inhibitory Effect of Crocin(s) on Lens alpha-Crystallin Glycation and Aggregation, Results in the Decrease of the Risk of Diabetic Cataract

机译:番红花对晶状体α-结晶蛋白的糖基化和聚集的抑制作用,导致糖尿病性白内障风险降低

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The current study investigates the inhibitory effect of crocin(s), also known as saffron apocarotenoids, on protein glycation and aggregation in diabetic rats, and -crystallin glycation. Thus, crocin(s) were administered by intraperitoneal injection to normal and streptozotocin-induced diabetic rats. The cataract progression was recorded regularly every two weeks and was classified into four stages. After eight weeks, the animals were sacrificed and the parameters involved in the cataract formation were measured in the animal lenses. Some parameters were also determined in the serum and blood of the rats. In addition, the effect of crocin(s) on the structure and chaperone activity of -crystallin in the presence of glucose was studied by different methods. Crocin(s) lowered serum glucose levels of diabetic rats and effectively maintained plasma total antioxidants, glutathione levels and catalase activity in the lens of the animals. In the in vitro study, crocin(s) inhibited -crystallin glycation and aggregation. Advanced glycation end products fluorescence, hydrophobicity and protein cross-links were also decreased in the presence of crocin(s). In addition, the decreased chaperone activity of -crystallin in the presence of glucose changed and became close to the native value by the addition of crocin(s) in the medium. Crocin(s) thus showed a powerful inhibitory effect on -crystallin glycation and preserved the structure-function of this protein. Crocin(s) also showed the beneficial effects on prevention of diabetic cataract.
机译:目前的研究调查了番红花(也称为藏红花类胡萝卜素)对糖尿病大鼠蛋白质糖基化和聚集以及-结晶蛋白糖基化的抑制作用。因此,通过腹膜内注射向正常和链脲佐菌素诱导的糖尿病大鼠施用crocin。每两周定期记录白内障进展情况,并将其分为四个阶段。八周后,处死动物,并在动物晶状体中测量白内障形成所涉及的参数。还确定了大鼠血清和血液中的一些参数。另外,用不同的方法研究了番红花对葡萄糖存在下β-晶状体蛋白的结构和分子伴侣活性的影响。番红花降低了糖尿病大鼠的血清葡萄糖水平,并有效维持了动物晶状体中血浆总抗氧化剂,谷胱甘肽水平和过氧化氢酶活性。在体外研究中,番红花具有抑制-crystallin糖基化和聚集的作用。在存在crocro(s)的情况下,高级糖基化终产物的荧光,疏水性和蛋白质交联也降低了。此外,在葡萄糖存在下,β-晶状蛋白的伴侣蛋白活性降低了,并通过在培养基中添加藏红花素而变得接近天然值。因此,番红花对β-结晶蛋白糖基化显示出强大的抑制作用,并保留了该蛋白的结构功能。番红花还显示出对预防糖尿病性白内障的有益作用。

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