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find Author "CHEN Dezheng" 3 results
  • Effect of different filtration fraction calculation formulas on extracorporeal circulation life of continuous renal replacement therapy

    Objective To evaluate the effects of two filtration fraction formulas on extracorporeal circulation life of continuous renal replacement therapy (CRRT) under regional citrate anticoagulation. Methods Patients with acute kidney injury who received CRRT treatment with regional citrate anticoagulation and the estimated CRRT duration was greater than 24 h at West China Hospital of Sichuan University between June 2022 and April 2023 were selected. They were randomly divided into continuous veno-venous hemofiltration (CVVH), continuous veno-venous hemodialysis (CVVHD) and continuous veno-venous hemodiafiltration (CVVHDF) groups using Prismaflex machines. The life of the CRRT extracorporeal circulation in the three groups of patients was compared, and the reasons for replacing the extracorporeal circulation after 72 h were not used, and the filtration fraction score of the three groups was calculated according to the two filtration score calculation formulas (Formula 1 and Formula 2) currently used in the world. The filtration value obtained by the two filtration fraction calculation formulas was taken as the test variable, and whether the median life of the group with the longest extracorporeal circulation life was taken as the state variable, and the receiver operating characteristic curve was drawn, and the area under the curve was calculated. Results A total of 121 patients were included, including 40 patients in the CVVH group, 40 patients in the CVVHD group, and 41 patients in the CVVHDF group. The extracorporeal circulation life of CVVH group, CVVHD group and CVVHDF group was 64 (46, 71) h, 47 (31.5, 54) h and 70 (65, 72) h, respectively, with statistical difference (log-rank P=0.036). A total of 94 cases were replaced due to filter or venous pot clotting after 72 h after the filter was not used, including 30 cases in the CVVH group, 39 cases in the CVVHD group, and 25 cases in the CVVHDF group. The difference between the three groups was statistically significant (χ2=15.83, P<0.001). According to Formula 1, the filtration fraction of CVVH group, CVVHD group and CVVHDF group was 15.8% (15.2%, 17.0%), 1.1% (0.7%, 2.1%) and 16.2% (14.9%, 17.6%), respectively, and the difference among the three groups was statistically significant (H=69.402, P<0.001). According to Formula 2, the filtration fraction of CVVH group, CVVHD group and CVVHDF group was 33.1% (32.4%, 35.7%), 4.0% (3.6%, 4.9%) and 19.1% (17.7%, 20.7%), respectively, and the differences among the three groups and pairwise comparison between groups were statistically significant (P<0.001). The area under the receiver operating characteristic curvec calculated by the Formula 1 and 2 for the influence of filtration fraction on extracorporeal circulation life were 0.539 and 0.668, the sensitivity were 43.18% and 82.22%, and the specificity were 80.65% and 56.25%, respectively. Conclusions When using Prismaflex machine, the filter life of CVVHD is shorter than CVVH and CVVHDF modes. The filtration fraction calculated by Formula 2 is more sensitive but less specific in predicting CRRT extracorporeal circulation life. Filtration fraction as a CRRT extracorporeal circulation risk assessment has limitations, especially for the CVVH model with pre and post replacement.

    Release date:2024-07-23 01:47 Export PDF Favorites Scan
  • Continuous renal replacement therapy for rhabdomyolysis with acute kidney injury following multiple wasp stings

    Objective To investigate the effect of continuous renal replacement therapy (CRRT) on rhabdomyolysis with acute kidney injury (AKI) following multiple wasp stings. Methods We designed a prospective study which enrolled 132 patients who developed rhabdomyolysis after multiple wasp stings between January 2013 and December 2016 in Jianyang People’s Hospital, West China Hospital of Sichuan University and Anyue People’s Hospital. Among these, 62 patients with AKI were treated with CRRT. The modality of CRRT was continuous veno-venous hemofiltration (CVVH). CVVH was performed for at least 48 hours by using Prismaflex and M100-AN69 hemofilter. Hemofiltration was accomplished using predilution bicarbonate with the replacement fluid rate of 2 000–2 500 mL/h [30–35 mL/(kg·h)]. Heparin or low-molecular-weight heparin was used for anticoagulation, with blood flow rate of 180–200 mL/min. Then intermittent hemodialysis was performed when patients’ condition became stable. Mortality, kidney recovery, biochemical indicators and length of stay were collected. Results Fifty-one patients met the inclusion criteria finally, and four (7.8%) of them died during hospitalization, and the remaining 47 patients survived with completed treatment and follow-up. At 3, 7, and 14 days after treatment, the creatine kinase, myoglobin and lactate dehydrogenase of the patients all decreased significantly and gradually, and returned to normal level finally. Kidney function was recovered in 45 (95.7%) patients within 3 months, and 2 patients suffered chronic kidney disease. The patients’ hemoglobin recovered to normal level at (30.5±11.3) days. Conclusion Rhabdomyolysis and AKI were severe complications following multiple wasp stings, and early CRRT may bring significant benefits to such patients.

    Release date:2018-07-27 09:54 Export PDF Favorites Scan
  • Renal prognosis of patients with acute kidney injury after bee sting with different renal replacement therapy modes

    Objective To evaluate the efficacy and safety of intermittent hemodialysis (IHD) and continuous renal replacement therapy (CRRT) on patients with acute kidney injury (AKI) after bee sting. Methods A prospective observational analysis was made on patients with AKI after bee sting treated in Jianyang People’s Hospital or West China Hospital of Sichuan University between July 2015 and December 2020. According to different initial renal replacement therapy modes, the patients were divided into IHD group and CRRT group. The IHD group received hemodialysis for 4 hours each time, once a day or 3-5 times a week; the CRRT group used Prismaflex machine for continuous veno-venous hemofiltration or continuous veno-venous hemodiafiltration within 72 hours after admission, for at least 12 hours a day, followed by CRRT or IHD, depending on the patient’s condition. Both groups could be treated with hemoperfusion (HP) and symptomatic support such as glucocorticoid, blood transfusion and fluid rehydration. The IHD group was divided into IHD subgroup and IHD+HP subgroup, and the CRRT group was divided into CRRT subgroup and CRRT+HP subgroup according to whether renal replacement therapy was combined with HP. The basic information of patients and clinical laboratory examination results were collected, and the renal function recovery and mortality rates of patients in the two groups were compared, as well as the changes of laboratory indicators. Results A total of 106 patients were enrolled, 50 in the IHD group and 56 in the CRRT group. There was no statistical difference in the rate of complete renal function recovery 30, 60, or 90 days after treatment between the two groups (28.2% vs. 31.2%, P=0.758; 46.2% vs. 50.0%, P=0.721; 82.1% vs. 81.2%, P=0.924). But in the CRRT subgroup analysis, there was a statistical difference in the 30-day renal function recovery rate of CRRT+HP patients compared with CRRT alone (47.6% vs. 18.5%, P=0.031), while no statistical difference was found in the IHD subgroup analysis. After 3 days of treatment, the levels of creatine kinase of the IHD+HP subgroup and the CRRT+HP subgroup were lower than those in the IHD and CRRT subgroups, and the differences were statistically significant [(7875±6871) vs. (15157±8546) U/L, P=0.026; (10002±8256) vs. (14498±10362) U/L, P=0.032]. There was no statistical difference in 30-day mortality or incidence of serious adverse reactions between the two groups (P>0.05). Conclusions There is no obvious difference in improving renal prognosis or reducing mortality between CRRT and IHD for patients with AKI after bee sting. However, CRRT combined with HP therapy could shorten the recovery time of renal function and increase the 30-day kidney recovery rate. HP may contribute to early renal function recovery in patients with AKI after bee sting, but more high-quality randomized controlled trials are needed to further confirm this.

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