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首页> 外文期刊>Scientific reports. >Comparing ultrafiltration and equilibrium dialysis to measure unbound plasma dolutegravir concentrations based on a design of experiment approach
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Comparing ultrafiltration and equilibrium dialysis to measure unbound plasma dolutegravir concentrations based on a design of experiment approach

机译:基于实验方法设计比较超滤和平衡透析测量未结血浆DoluteGraviR浓度

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Dolutegravir therapeutic drug monitoring (TDM) could be improved by measuring the unbound dolutegravir plasma concentration (Cu), particularly in patients experiencing virological failure or toxicity despite achieving appropriate DTG total plasma concentrations. Equilibrium dialysis (ED) is the gold standard to measure Cu, but ED is time consuming, precluding its use in clinical practice. In contrast, ultrafiltration is applicable to TDM, but is sensitive to numerous analytical conditions. In order to evaluate measurements of Cu by ultrafiltration, ultrafiltration conditions were validated by comparison with ED. DTG concentrations were measured by LC–MS/MS. Three ultrafiltration factors (temperature, duration and relative centrifugal force [RCF]) were evaluated and compared to ED (25/37?°C), using a design of experiment strategy. Temperature was found to influence Cu results by ED (p?=?0.036) and UF (p?=?0.002) when results were analysed with ANOVA. Relative centrifugal force (2000?g) and time (20?min) interacted to influence Cu (p?=?0.006), while individually they did not influence Cu (p?=?0.88 and p?=?0.42 for RCF and time). Ultrafiltration conditions which yielded the most comparable results to ED were 37?°C, 1000?g for 20?min. Ultrafiltration results greatly depended on analytical conditions, confirming the need to validate the method by comparison with ED in order to correctly interpret DTG Cu.
机译:通过测量未结合的DoluteGravir血浆浓度(Cu),可以改善DoluteGravir治疗药物监测(TDM),特别是尽管达到了有适当的DTG总血浆浓度,但仍然可以提高患者病毒学失败或毒性的患者。平衡透析(ED)是测量Cu的金标准,但ed是耗时,妨碍其在临床实践中的使用。相比之下,超滤适用于TDM,但对许多分析条件敏感。为了通过超滤评估Cu的测量,通过与ED进行比较验证超滤条件。通过LC-MS / MS测量DTG浓度。评估三种超滤因子(温度,持续时间和相对离心力[RCF]),并使用实验策略设计与ED(25/37Ω°C)进行比较。当通过ANOVA分析结果时,发现温度影响CU通过ED(p≤X.036)和UF(p?= 0.002)。相对离心力(2000〜g)和时间(20≤m)相互作用以影响Cu(p?= 0.006),而单独的它们没有影响Cu(p?= 0.88和p?= 0.42用于RCF和时间)。超滤条件,其产生最佳结果的ED为37Ω·℃,1000?g为20?min。超滤结果大大依赖于分析条件,确认需要通过与ED进行比较来验证方法,以便正确解释DTG Cu。

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