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1.
目的 观察不同钙离子浓度的透析液对血液透析患者透析后血清钙离子水平及血压变化的影响,为肾功能衰竭血液透析患者的高钙血症及高血压的防治提供依据。方法 选择不同钙离子浓度的透析液,将维持性血液透析患者分为高钙组(1.75mmol/L)和低钙组(1.25mmol/L),比较患者每次透析前后脉搏、血压,同时抽查患者透析前后血钙及血肌酐浓度的变化。结果透析后两组患者血肌酐浓度均显著下降,透析前后差异均具有统计学意义(P〈0.01);高钙组患者透析后血钙较透析前升高,差异具有统计学意义(P〈0.01),而低钙组患者血钙比透析前略降低,差异无统计学意义(P〉0.05)。高钙组患者透析后较透析前收缩压、舒张压及平均动脉压都升高,差异均具有统计学意义(P〈0.05),而低钙组患者透析后较透析前收缩压、舒张压及平均动脉压都降低,差异均具有统计学意义(P〈0.05)。透析后两组血钙比较差异具有统计学意义(P〈0.01);透析后低钙组较高钙组患者的收缩压、舒张压及平均动脉压都降低,三者差异均具有统计学意义(P〈0.01)。结论透析液钙离子浓度与血液透析患者血清钙离子水平及血压呈正相关,低钙透析液透析有助于维持性血液透析患者高血压的控制。  相似文献   
2.
Background. Transferrin binds extracellular iron and protectstissues from iron-induced oxidative stress. The binding of ironand transferrin is pH dependent and conventional peritonealdialysis (PD) solutions have unphysiologically low pH values.Herein, we investigated whether conventional PD solution releasesiron from transferrin and if the released iron causes oxidativestress. Methods. Effects of PD solutions on iron binding to transferrinwere examined with purified human transferrin and transferrinin dialysates drained from PD patients. Oxidative stress inducedby iron released from transferrin was evaluated in terms ofthe formation of thiobarbituric acid reactive substance (TBARS)and protein carbonylation in the human red blood cell (RBC)membrane. The iron deposition in peritoneal tissue from PD patientswas evaluated by Perls' staining with diaminobenzidine intensification. Results. Low pH PD solution released iron from transferrin.This iron release occurred within 1 min. Iron release was notobserved in neutralized PD solution. Iron released from transferrinin low pH PD solution increased TBARS formation and proteincarbonylation in the human RBC membrane. Iron deposition, whichis prominent in the fibrotic area facing the peritoneal cavity,was observed in the peritoneum of PD patients. Conclusions. Iron released from transferrin in low pH PD solutioncan produce oxidative stress in the peritoneum of a PD patient.Neutralizing PD solution can avoid this problem. Iron depositionin the peritoneum may participate in the pathogenesis of peritonealfibrosis in PD patients.  相似文献   
3.
In this in-vivo study, dialysate and serum endotoxin was evaluated before and after haemodialysis with small-pore (PS400) and large-pore (PS600) polysulphone dialysers, and before and after haemodiafiltration with the PS600 filter. The source of the endotoxin was the presence in dialysate of Pseudomonads at a concentration of 10(3)-10(4) CFU/ml. Endotoxin was measured by a modified chromogenic limulus amoebocyte lysate (LAL) assay. In spite of dialysate endotoxin concentrations greater than 100 pg/ml, no changes in pre- versus posttreatment LAL reactivity were observed in PS400 dialysis and PS600 haemodiafiltration. In contrast, PS600 haemodialysis was related to an increase in serum LAL reactivity from 1.3 +/- 1.5 to 3.8 +/- 2.0 pg/ml (n = 15, P less than 0.01), and five patients (33.3%) showed a post-dialysis value in excess of 5 pg/ml. Our data are consistent with the absence of in-vivo endotoxin transfer during haemodialysis with small-pore dialyser membranes, and during haemodiafiltration with membranes with larger pores. An increase in LAL reactivity during haemodialysis with membranes with larger pores is, however, present, presumably due to the occurrence of backdiffusion/filtration with that specific strategy.  相似文献   
4.
目的 探讨滤膜法和涂抹法检测血液透析相关用水微生物的效果,为选择合适的检测方法提供依据。方法 回顾性收集某三级甲等综合性医院2018年1-12月同时采用滤膜法和涂抹法检测血液透析相关用水微生物的结果,对比分析滤膜法和涂抹法检测细菌检出率、单位菌落数、超干预值检出率和微生物合格率。结果 共收集274份血液透析相关用水微生物检测结果,其中透析液131份,反渗水39份,B浓缩液(下简称B液)14份,置换液34份,其他透析用水56份。滤膜法细菌检出率均高于涂抹法,其中透析液、反渗水、置换液、其他透析用水标本使用两种方法的细菌检出率比较,差异有统计学意义(均P<0.05)。透析液、B液、其他透析用水标本单位菌落数滤膜法数值上低于涂抹法,但仅其他透析用水标本使用两种方法检测结果单位菌落数差异有统计学意义(t=-3.011,P=0.004)。超干预值检出率其他透析用水滤膜法低于涂抹法,差异有统计学意义(χ2=6.596,P=0.010)。置换液、反渗水标本微生物合格率滤膜法数值上低于涂抹法,但仅置换液标本微生物合格率差异有统计学意义(χ2=18.987,P<0.001)。结论 滤膜法检出细菌的能力高于涂抹法,但其在血液透析相关用水微生物检测中存在一定局限性,除用于置换液比较适合外,应用在其余血液透析相关用水微生物的检测效果并不优于涂抹法。  相似文献   
5.
In peritoneal dialysis (PD), a cloudy dialysate is an alarming finding. Bacterial peritonitis is the most common cause, however, atypical infections and non‐infectious causes must be considered. A 46‐year‐old man presented with asthenia, paraesthesia, foamy urine and hypertension. Laboratory testing revealed severe azotaemia, anaemia, hyperkalaemia and nephrotic‐range proteinuria. Haemodialysis was started through a central venous catheter. Later, due to patient preference, a Tenckhoff catheter was inserted. Conversion to PD occurred 3 weeks later, during hospitalization for a presumed central line infection. A month later, the patient was hospitalized for neutropenic fever. He was diagnosed an acute parvovirus infection and was discharged under isoniazid for latent tuberculosis. Four months later, the patient presented with fever and a cloudy effluent. Peritoneal fluid (PF) cytology was suggestive of infectious peritonitis, but the symptoms persisted despite antibiotic therapy. Bacterial and mycological cultures were negative. No neoplastic cells were detected. Mycobacterium tuberculosis eventually grew in PF cultures, despite previous negative molecular tests. Directed therapy was then initiated with excellent response. Thus, facing a cloudy effluent, one must consider multiple aetiologies. Diagnosis of peritoneal tuberculosis is hampered by the lack of highly sensitive and specific exams. Here, diagnosis was only possible due to positive mycobacterial cultures.  相似文献   
6.
目的 :探讨无糖型碳酸氢盐透析液的配制及其临床应用。方法 :采用无糖型碳酸氢盐透析液组方 ,用于185例慢性肾功能衰竭患者进行血液透析。结果 :共配制 2 18次 ,经 85 0 8次透析 ,透析后各离子浓度符合要求。结论 :本制剂用于慢性肾功能衰竭患者血液透析 ,质量稳定 ,效果良好。  相似文献   
7.
A bloodless technique of evaluating protein catabolic rate (PCR) and KT/V (K, clearance; T, dialysis time; V, urea distribution volume) in hemodialysis patients is presented based on serial measurement of urea in the dialysate effluent stream. PCR follows from equating urea generation and urea removal over a 7 day cycle, changes in body stores being comparatively negligible: PCR = 0.026 [U1 + U2 + U3]/BWdry + 0.17, where U1 is the amount of urea in mmol appearing in the dialysate for each session in the 7 day period. KT/V is obtained from the slope of the natural logarithm of spent dialysate urea concentration-time plot: KT/V = [- slope.T + 3.delta BW/BWdry]/[1 - 0.01786.T(hr], where delta BW = amount ultrafiltered in liters. The dialysate-based approach was validated and compared with conventional urea kinetic modeling (UKM) for 17 patients studied for three consecutive dialyses. The dialysate-based and UKM values of PCR agreed well when in vivo clearance values based on total dialysate collection were used for UKM. KT/V values agreed poorly on a session-by-session basis but were nearly equivalent when averaged for the three dialyses of the week. These findings lay the foundation for UKM automation with a urea sensor in the effluent dialysate stream.  相似文献   
8.
目的:改进透析液中氯化钾含量测定方法提高回收率。方法:将原方法中四苯硼钠的浓度增加到0.02mol/l。结果:测得的回收率从原来的94.79%增加以100.15%。结论:改进后的方法准确、可靠。  相似文献   
9.
10.
透析液流量对血液透析充分性的影响   总被引:2,自引:0,他引:2  
目的:观察增加透析液流量(Qd)对维持性血液透析(MHD)患者透析充分性的影响。方法:随机选择稳定透析6个月以上的MHD患者38例。血透透析液流量定于500ml/min和800ml/min各透析4周,其他透析参数[透析时间,血流量(Qb),超滤量和透析器型号与面积]不变。每种Qd量于第3周和第4周分别测定透析前后血尿素氮(BUN)、血肌酐(SCr)水平,记录每次透析的透析时间、超滤量及透析后体重(W),并根据Kt/V的自然对数公式计算Kt/V、尿素下降率(URR),取2次测定值的平均值作为患者该透析液流量的Kt/V。同时检测第4周及第8周透析前的血红蛋白(Hb)和红细胞压积(Hct)水平。采用成对t检验和卡方检验进行统计学分析。结果:本研究中每例患者构成自身对照,研究前后一般情况完全一致。Qd为800ml/min时URR及Kt/V值均较Qd流量为500ml/min时增加,具有统计学意义(P〈0.05),而SCr下降率、Hb和Hct水平略有增加趋势,无显著性差异。Qd为800ml/min时透析后URR〉65%的百分数明显高于Qd为500ml/min时,具有显著统计学意义(P〈0.001)。结论:将Qd从500ml/min增加至800ml/min,可显著增加URR、增加Kt/V,提高透析充分性达标率。800ml/min透析液流量的MHD可选择性用于不便于延长治疗时间和提高血流量达到透析充分性的患者。  相似文献   
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