首页> 外文期刊>Peritoneal dialysis international: Journal of the International Society for Peritoneal Dialysis >Ultrafiltration characteristics of glucose polymers with low polydispersity.
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Ultrafiltration characteristics of glucose polymers with low polydispersity.

机译:低分散性葡萄糖聚合物的超滤特性。

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Icodextrin, a glucose polymer with a polydispersity [ratio of weight-average molecular weight (Mw) to number-average molecular weight] of approximately 2.6, has been shown, compared with glucose, to provide superior ultrafiltration (UF) efficiency [ratio of UF to carbohydrate (CHO) absorbed] when used as an osmotic agent during a long-dwell peritoneal dialysis exchange. In an experimental rabbit model, we evaluated the effect of Mw on the UF and UF efficiency of glucose polymers with low polydispersity.A crossover trial in female New Zealand White rabbits (2.20 - 2.65 kg) with surgically implanted peritoneal catheters evaluated two glucose polymers at nominal concentrations of 7.5 g/dL: a 6K polymer (Mw: 6.4 kDa; polydispersity: 2.3) and a 19K polymer (Mw: 18.8 kDa; polydispersity: 2.0). Rabbits were randomized to receive either the 6K (n = 11) or the 19K (n = 12) solution during the first exchange (40 mL/kg body weight). The alternative solution was evaluated in a second exchange 3 days later. During each 4-hour dwell, the UF and total glucose polymer CHO absorbed were determined.The UF was higher for the 6K (p < 0.0001) than for the 19K polymer (mean ± standard deviation: 73.6 ± 30.8 mL vs. 43.0 ± 20.2 mL), as was the amount of CHO absorbed (42.5% ± 9.8% vs. 35.7% ± 11.0%, p = 0.021). In spite of higher CHO absorption, an approximately 50% higher (p = 0.029) UF efficiency was achieved with the 6K polymer (28.3 ± 18.8 mL/g) than with the 19K polymer (19.0 ± 11.3 mL/g). The results were independent of the order of the experimental exchanges.Glucose polymers with low polydispersity are effective osmotic agents in a rabbit model. The low-Mw polymer was more effective at generating UF and had a higher UF efficiency, but those results came at the expense of the polymer being more readily absorbed from the peritoneal cavity.
机译:与葡萄糖相比,已证明多糖度[重均分子量(Mw)与数均分子量之比]为约2.6的葡萄糖聚合物Icodextrin具有优异的超滤(UF)效率[UF]当在长时腹膜透析交换中用作渗透剂时。在实验性兔模型中,我们评估了Mw对多分散度低的葡萄糖聚合物的UF和UF效率的影响。在雌性新西兰白兔(2.20-2.65 kg)中,通过手术植入腹膜导管的交叉试验评估了两种葡萄糖聚合物标称浓度为7.5 g / dL:6K聚合物(Mw:6.4 kDa;多分散性:2.3)和19K聚合物(Mw:18.8 kDa;多分散性:2.0)。兔子在第一次交换(40 mL / kg体重)期间随机接受6K(n = 11)或19K(n = 12)溶液。 3天后,在第二次交换中评估替代溶液。在每个4小时的停留时间内,测定了UF和总葡萄糖聚合物CHO的吸收量.6K的UF(p <0.0001)高于19K的UF(平均值±标准偏差:73.6±30.8 mL对43.0±20.2毫升)以及CHO的吸收量(42.5%±9.8%与35.7%±11.0%,p = 0.021)。尽管有更高的CHO吸收率,但6K聚合物(28.3±18.8 mL / g)的UF效率比19K聚合物(19.0±11.3 mL / g)约高50%(p = 0.029)。结果与实验交换的顺序无关。低分散性的葡萄糖聚合物在兔模型中是有效的渗透剂。低分子量聚合物在产生超滤方面更有效,并且具有更高的超滤效率,但是这些结果是以聚合物更容易从腹膜腔吸收为代价的。

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