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首页> 外文期刊>Biochemistry and Biophysics Reports >Glutathione disulfide liposomes?– A research tool for the study of glutathione disulfide associated functions and dysfunctions
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Glutathione disulfide liposomes?– A research tool for the study of glutathione disulfide associated functions and dysfunctions

机译:谷胱甘肽二硫化物脂质体?–研究谷胱甘肽二硫化物相关功能和功能障碍的研究工具

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Glutathione disulfide (GSSG) is the oxidized form of glutathione (GSH). GSH is a tripeptide present in the biological system in mM concentration and is the major antioxidant in the body. An increase in GSSG reflects an increase in intracellular oxidative stress and is associated with disease sates. The increase has also been demonstrated to lead to an increase in protein S -glutathionylation that can affect the structure and function of proteins. Protein S -glutathionylation serves as a regulatory mechanism during cellular oxidative stress. Though GSSG is commercially available, its roles in various GSSG-associated normal/abnormal physiological functions have not been fully delineated due to the reason that GSSG is not cell membrane permeable and a lack of method to specifically increase GSSG in cells. We have developed cationic liposomes that can effectively deliver GSSG into cells. Various concentrations of GSSG liposomes can be conveniently prepared. At 1 mg/mL, the GSSG liposomes effectively increased intracellular GSSG by 27.1±6.9 folds (n=3) in 4 h and led to a significant increase in protein S -glutathionylation confirming that the increased GSSG is functionally effective. The Trypan blue assay demonstrated that GSSG liposomes were not cytotoxic; the cell viability was greater than 95% after cells were treated with the GSSG liposomes for 4 h. A stability study showed that the dry form of the GSSG liposomes were stable for at least 70 days when stored at ?80 °C. Our data demonstrate that the GSSG liposomes can be a valuable tool in studying GSSG-associated physiological/pathological functions. Highlights ? Glutathione disulfide (GSSG) liposomes were developed to deliver GSSG into cells. ? The GSSG liposomes effectively increased intracellular GSSG by 27.1±6.9 folds. ? The delivered GSSG is confirmed to be functionally effective through protein S -glutathionylation.
机译:谷胱甘肽二硫化物(GSSG)是谷胱甘肽(GSH)的氧化形式。 GSH是生物系统中以mM浓度存在的三肽,是人体中的主要抗氧化剂。 GSSG的增加反映了细胞内氧化应激的增加,并且与疾病状态有关。还已经证明该增加导致可影响蛋白质的结构和功能的蛋白质S-谷胱甘肽酰化的增加。蛋白S-谷胱甘肽酰化在细胞氧化应激期间充当调节机制。尽管GSSG可商购,但由于GSSG不透细胞膜的原因以及缺乏专门增加细胞中GSSG的方法,因此尚未完全描述其在各种与GSSG相关的正常/异常生理功能中的作用。我们已经开发出阳离子脂质体,可以有效地将GSSG传递到细胞中。可以方便地制备各种浓度的GSSG脂质体。在1 mg / mL下,GSSG脂质体在4小时内有效地将细胞内GSSG增加了27.1±6.9倍(n = 3),并导致蛋白质S-谷胱甘肽酰化的显着增加,证实了增加的GSSG在功能上是有效的。锥虫蓝试验表明,GSSG脂质体无细胞毒性。 GSSG脂质体处理细胞4 h后,细胞存活率大于95%。稳定性研究表明,干燥形式的GSSG脂质体在约80°C的温度下至少可稳定70天。我们的数据表明,GSSG脂质体可以是研究GSSG相关的生理/病理功能的有价值的工具。强调 ?开发了谷胱甘肽二硫化物(GSSG)脂质体以将GSSG递送到细胞中。 ? GSSG脂质体有效地将细胞内GSSG增加了27.1±6.9倍。 ?通过蛋白S-谷胱甘肽酰化证实了所递送的GSSG在功能上是有效的。

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