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首页> 外文期刊>International Journal of Nanomedicine >Improved biological properties and hypouricemic effects of uricase from Candida utilis loaded in novel alkaline enzymosomes
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Improved biological properties and hypouricemic effects of uricase from Candida utilis loaded in novel alkaline enzymosomes

机译:新型碱性酶体中添加的丝假丝酵母尿酸酶的生物学特性和降尿酸作用改善

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Objective: Previous studies on various enzymosomes (functional lipid vesicles encapsulating an enzyme) have been mostly carried out in vitro and have focused on preserving catalytic activity and improving the stability of the enzyme. Until now, few studies have focused on their in vivo fate. Similarly, although we have previously reported the increased in vitro uricolytic activity (about 2.2 times higher than that of free uricase, or three times higher than that of PEGylated uricase, Puricase?, under physiological pH and temperature) and improved stability of the novel alkaline enzymosomes (functional lipid vesicles encapsulating uricase from Candida utilis: uricase-containing lipid vesicles, UOXLVs), it is still necessary to study the biological properties and hypouricemic effects of UOXLVs in vivo.Methods: The enzyme kinetics, pharmacokinetics, pharmacodynamics, immunogenicity, and preliminary safety of UOXLVs were evaluated.Results: The Michaelis constant (Km) value of the UOXLVs was slightly lower than that of the free enzyme. The enzyme release from the UOXLVs lasted over 12 hours and their circulation half-life was about sevenfold longer than that of the free uricase. Meanwhile, the UOXLVs had a 22-fold increase in the area under the curve compared with the free uricase. Furthermore, it took less than 3 hours for the UOXLVs to lower the plasma uric acid concentration from a high to a normal level, compared with 6 hours for the free uricase. In addition, the UOXLVs had much less immunogenicity than free uricase and were well tolerated by all animals throughout the observation period.Conclusion: The UOXLVs markedly improved the biological properties and enhanced the hypouricemic effects of uricase in vivo.
机译:目的:以往对各种酶体(包囊酶的功能性脂质囊泡)的研究大多是在体外进行的,并且致力于保持催化活性和提高酶的稳定性。迄今为止,很少有研究关注其体内命运。类似地,尽管我们先前已经报道了在生理pH和温度下体外尿酸溶解活性增加(比游离尿酸酶大约高2.2倍,或比PEG化尿酸酶Puricase?高3倍)和新型碱的稳定性提高。酶体(功能性脂质囊泡封装了来自尿假丝酵母的尿囊素:含尿酶的脂质囊泡,UOXLVs),仍然有必要研究UOXLVs在体内的生物学特性和降尿酸作用。方法:酶动力学,药代动力学,药代动力学,免疫原性和结果:UOXLVs的米氏常数(Km)值略低于游离酶。从UOXLVs释放的酶持续了12个小时以上,其循环半衰期比游离尿酸酶的循环半衰期长约七倍。同时,与游离尿酸酶相比,UOXLV的曲线下面积增加了22倍。此外,UOXLVs将血浆尿酸浓度从高水平降至正常水平所需的时间少于3小时,而游离尿酸酶则需要6小时。此外,UOXLVs的免疫原性远低于游离尿酸酶,并且在整个观察期内对所有动物都具有良好的耐受性。结论:UOXLVs明显改善了尿酸酶在体内的生物学特性并增强了降尿酸作用。

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