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首页> 外文期刊>American Journal of Kidney Diseases: The official journal of the National Kidney Foundation >Peritoneal dialysis fluids with a physiologic pH based on either lactate or bicarbonate buffer-effects on human mesothelial cells.
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Peritoneal dialysis fluids with a physiologic pH based on either lactate or bicarbonate buffer-effects on human mesothelial cells.

机译:具有生理pH的腹膜透析液,其基于乳酸或碳酸氢盐对人间皮细胞的缓冲作用。

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Conventional lactate (Lac)-buffered peritoneal dialysis (PD) solutions have turned out to be detrimental to human peritoneal cells, especially because of a low pH. In the present study, we focus on potential differences between Lac and bicarbonate (Bic) as a buffer when adjusted to a physiological pH. All test fluids were buffered with either 40 mmol/L of Lac or 34 mmol/L of Bic, sterile filtered, and adjusted to a pH of 7.4. Osmotic agents used were 1.36% glucose (Glu), 3.86% Glu, 1% amino acids (AA), and 7.5% Glu polymer (Glupoly). Human peritoneal mesothelial cells (HPMCs) were isolated from the omentum majus, grown to confluence, and incubated after the second passage for 15 minutes (37 degrees C and 5% carbon dioxide) with the test fluids. Cytotoxicity was controlled by measuring apoptotic and necrotic cells with cytofluorometry. Aerobic cell metabolism (3-[4,5-dimethylthiazol-2-yl]-2,5-diphenyltetrazolium bromide [MTT] assay) and intracellular adenosine triphosphate (ATP) concentrations were measured to assess cell viability. Release of interleukin-6 (IL-6) from HPMCs was determined as a parameter of cellular host defense. No significant difference in apoptosis or necrosis rates was found between the solutions adjusted to normal pH. However, in the MTT assay, Bic solutions were superior to corresponding Lac pendants at an identical pH of 7.4 (P < 0.01). Intracellular ATP concentrations reflected a very similar pattern (P < 0.05). Glupoly in combination with Lac showed an impaired pattern with both the MTT and ATP assays. Regarding IL-1beta-stimulated IL-6 release, there was a small, but not significantly better, response for Bic. Differences in manifest cell cytotoxicity reflected by apoptosis and necrosis rates could not be detected comparing PD solutions buffered with Lac or Bic at a physiological pH. However, distinct parameters of cell metabolism were superior with Bic compared with Lac. Especially Glupoly was inferior in combination with Lac as a buffer.
机译:事实证明,传统的乳酸(Lac)缓冲腹膜透析(PD)溶液对人体腹膜细胞有害,特别是因为pH值低。在本研究中,我们着眼于调节至生理pH值的Lac和碳酸氢盐(Bic)作为缓冲液之间的潜在差异。用40 mmol / L的Lac或34 mmol / L的Bic缓冲所有测试液,进行无菌过滤,并将其pH调节至7.4。使用的渗透剂是1.36%的葡萄糖(Glu),3.86%的Glu,1%的氨基酸(AA)和7.5%的Glu聚合物(Glupoly)。从大网膜中分离人腹膜间皮细胞(HPMC),使其生长至汇合,并在第二次传代后与测试液一起孵育15分钟(37摄氏度和5%的二氧化碳)。通过用细胞荧光法测量凋亡和坏死细胞来控制细胞毒性。测量有氧细胞代谢(3- [4,5-二甲基噻唑-2-基] -2,5-二苯基溴化四溴甲烷[MTT]测定)和细胞内三磷酸腺苷(ATP)浓度,以评估细胞活力。将白细胞介素6(IL-6)从HPMC的释放确定为细胞宿主防御的参数。在调节至正常pH的溶液之间,未发现凋亡或坏死率的显着差异。但是,在MTT分析中,在相同的7.4 pH值下,Bic溶液优于相应的Lac悬垂液(P <0.01)。细胞内ATP浓度反映出非常相似的模式(P <0.05)。在MTT和ATP分析中,与Lac结合使用的Glupoly均显示出受损的模式。关于IL-1β刺激的IL-6释放,对Bic的反应很小,但没有明显改善。比较在生理pH值下用Lac或Bic缓冲的PD溶液,无法检测到由凋亡和坏死率所反映的明显细胞杀伤力的差异。但是,与Lac相比,Bic具有更好的细胞代谢参数。特别是Glupoly与Lac组合使用时效果较差。

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