Citrate Versus Heparin in Continuous Renal Replacement Therapy :
NCT ID: NCT04865510
Last Updated: 2021-04-29
Study Results
The study team has not published outcome measurements, participant flow, or safety data for this trial yet. Check back later for updates.
Basic Information
Get a concise snapshot of the trial, including recruitment status, study phase, enrollment targets, and key timeline milestones.
COMPLETED
NA
41 participants
INTERVENTIONAL
2019-02-04
2021-03-31
Brief Summary
Review the sponsor-provided synopsis that highlights what the study is about and why it is being conducted.
Related Clinical Trials
Explore similar clinical trials based on study characteristics and research focus.
Citrate-based Regional Anticoagulation Versus Heparin for Continuous Renal Replacement Therapy
NCT01269112
Citrate Versus Heparin Anticoagulation in Continuous Venovenous Hemofiltration
NCT00209378
Immunomodulation Effect of Regional Citrate Anticoagulation in Acute Kidney Injury Requiring Continuous Renal Replacement Therapy
NCT02423642
Effect of Citrate on the Coagulation System in Patients Receiving CRRT
NCT02486614
Regional Citrate Anticoagulation for RRT During V-V ECMO
NCT05148026
Detailed Description
Dive into the extended narrative that explains the scientific background, objectives, and procedures in greater depth.
Conditions
See the medical conditions and disease areas that this research is targeting or investigating.
Study Design
Understand how the trial is structured, including allocation methods, masking strategies, primary purpose, and other design elements.
RANDOMIZED
FACTORIAL
TREATMENT
SINGLE
Study Groups
Review each arm or cohort in the study, along with the interventions and objectives associated with them.
Citrate
The RCA group CRRT were performed with Prisma flex or (Baxter Healthcare/Gambro Spain) or Informed machine with citrate pump. The function mode was continuous venovenous hemodiafiltration (CVVHDF) in postdilution mode with ST 150 filter sets. The substitution fluid was Accusol or Prismocal B22 .The dose of dialysis was 20-25 ml/kg/hr with blood flow 150-200 ml/min. Trisodium citrate solution (4%,136mmol/L) was infused into the arterial line prior to the blood pump at a dose of 4 mmol/L of plasma flow. Calcium chloride (5% 340 mmol/L elemental calcium) was infused into the venous return to maintain systemic ionized calcium in the normal range (0.99-1.30 mmol/L) and the targets values for ionized calcium (iCa2+) after the dialysis membrane were 0.25-0.35 mmol/L. The rale of calcium infusion was adjusted in a timely manner based on repeated measurements of calcium concentration
Regional citrate anticoagulation
The investigators collected patient's plasma at study start (day 0) and at day 3, 5, 7, 14, 28) .Samples were used to measure inflammatory markers (Il 6, IL 8, IL 10 and TNFα) .
. Markers of dialysis efficiency (BUN, creatinine) and other parameters related to AKI (acid base status, calcium, phosphorus, hemoglobin). The recorded variables also included adverse events, dialysis clotting, hemodynamic status, duration of mechanical ventilation, inotropic support. The hemodynamic parameters were monitored by EV 1000 clinical platform .The investigators measured cardiac performance data, which includes cardiac output (CO), cardiac index (CI), stroke volume (SV), and stroke volume indexes (SVI). Moreover, it also provides information about systemic vascular resistance (SVR). Thus, patient hemodynamic parameters as mentioned above were measured at the following 6 time-point: after the initiation of CRRT (T1), every 6 hours later for 24 hours (T2, T3, T4, T5), and at hour-72 (T6).
Heparin-free
The heparin- free group The circuit was periodically flushed with 50 ml saline via access limb every 30 minutes .When pre-filter pressure started to rise, additional saline flushes would be given.
Regional citrate anticoagulation
The investigators collected patient's plasma at study start (day 0) and at day 3, 5, 7, 14, 28) .Samples were used to measure inflammatory markers (Il 6, IL 8, IL 10 and TNFα) .
. Markers of dialysis efficiency (BUN, creatinine) and other parameters related to AKI (acid base status, calcium, phosphorus, hemoglobin). The recorded variables also included adverse events, dialysis clotting, hemodynamic status, duration of mechanical ventilation, inotropic support. The hemodynamic parameters were monitored by EV 1000 clinical platform .The investigators measured cardiac performance data, which includes cardiac output (CO), cardiac index (CI), stroke volume (SV), and stroke volume indexes (SVI). Moreover, it also provides information about systemic vascular resistance (SVR). Thus, patient hemodynamic parameters as mentioned above were measured at the following 6 time-point: after the initiation of CRRT (T1), every 6 hours later for 24 hours (T2, T3, T4, T5), and at hour-72 (T6).
Interventions
Learn about the drugs, procedures, or behavioral strategies being tested and how they are applied within this trial.
Regional citrate anticoagulation
The investigators collected patient's plasma at study start (day 0) and at day 3, 5, 7, 14, 28) .Samples were used to measure inflammatory markers (Il 6, IL 8, IL 10 and TNFα) .
. Markers of dialysis efficiency (BUN, creatinine) and other parameters related to AKI (acid base status, calcium, phosphorus, hemoglobin). The recorded variables also included adverse events, dialysis clotting, hemodynamic status, duration of mechanical ventilation, inotropic support. The hemodynamic parameters were monitored by EV 1000 clinical platform .The investigators measured cardiac performance data, which includes cardiac output (CO), cardiac index (CI), stroke volume (SV), and stroke volume indexes (SVI). Moreover, it also provides information about systemic vascular resistance (SVR). Thus, patient hemodynamic parameters as mentioned above were measured at the following 6 time-point: after the initiation of CRRT (T1), every 6 hours later for 24 hours (T2, T3, T4, T5), and at hour-72 (T6).
Other Intervention Names
Discover alternative or legacy names that may be used to describe the listed interventions across different sources.
Eligibility Criteria
Check the participation requirements, including inclusion and exclusion rules, age limits, and whether healthy volunteers are accepted.
Inclusion Criteria
* no contraindication to CRRT
Exclusion Criteria
* history of renal transplantation
* known pregnancy
* previous dialysis within 30 days
* severe liver disease
* end stage heart disease or untreatable malignancy
* moribund patients with expected survival less than 30 days
* previous use of heparin or other anticoagulant, antiplatelet within 7 day except use for deep vein thrombosis
* active bleeding at the time of enrollment and/or severe coagulopathy
* receiving blood or blood components prior to enrollment
* hemoglobin less than 7.5 g/dL and/or platelet count less than 100,000/mm3
* previous underlying clotting disorders such as hypercoagulable state
* severe malnutrition (Body mass index (BMI ) less than 18)
* underwent CRRT for other reasons besides acute kidney injury (AKI)
18 Years
80 Years
ALL
No
Sponsors
Meet the organizations funding or collaborating on the study and learn about their roles.
King Chulalongkorn Memorial Hospital
OTHER
Chiang Mai University
OTHER
Department of Medicine, Somdech Phra Pinklao Hospital, Bangkok, Thailand.
UNKNOWN
Bangkok Metropolitan Administration Medical College and Vajira Hospital
OTHER_GOV
Responsible Party
Identify the individual or organization who holds primary responsibility for the study information submitted to regulators.
Thananda Trakarnvanich
Associate Professor
Principal Investigators
Learn about the lead researchers overseeing the trial and their institutional affiliations.
Thananda Trakarnvanich, M.D.
Role: PRINCIPAL_INVESTIGATOR
Renal unit,Faculty of Medicine,Vajira Hospital,Navamindradhiraj University
Locations
Explore where the study is taking place and check the recruitment status at each participating site.
Faculty of Medicine ,Vajira hospital,Navamindradhiraj University
Bangkok, , Thailand
Countries
Review the countries where the study has at least one active or historical site.
References
Explore related publications, articles, or registry entries linked to this study.
Oudemans-van Straaten HM, Kellum JA, Bellomo R. Clinical review: anticoagulation for continuous renal replacement therapy--heparin or citrate? Crit Care. 2011 Jan 24;15(1):202. doi: 10.1186/cc9358.
Gatward JJ, Gibbon GJ, Wrathall G, Padkin A. Renal replacement therapy for acute renal failure: a survey of practice in adult intensive care units in the United Kingdom. Anaesthesia. 2008 Sep;63(9):959-66. doi: 10.1111/j.1365-2044.2008.05514.x. Epub 2008 Jun 28.
Borg R, Ugboma D, Walker DM, Partridge R. Evaluating the safety and efficacy of regional citrate compared to systemic heparin as anticoagulation for continuous renal replacement therapy in critically ill patients: A service evaluation following a change in practice. J Intensive Care Soc. 2017 Aug;18(3):184-192. doi: 10.1177/1751143717695835. Epub 2017 Mar 14.
Cutts MW, Thomas AN, Kishen R. Transfusion requirements during continuous veno-venous haemofiltration: -the importance of filter life. Intensive Care Med. 2000 Nov;26(11):1694-7. doi: 10.1007/s001340000676.
Morabito S, Pistolesi V, Tritapepe L, Fiaccadori E. Regional citrate anticoagulation for RRTs in critically ill patients with AKI. Clin J Am Soc Nephrol. 2014 Dec 5;9(12):2173-88. doi: 10.2215/CJN.01280214. Epub 2014 Jul 3.
Tuerdi B, Zuo L, Sun H, Wang K, Wang Z, Li G. Safety and efficacy of regional citrate anticoagulation in continuous blood purification treatment of patients with multiple organ dysfunction syndrome. Braz J Med Biol Res. 2017 Nov 17;51(1):e6378. doi: 10.1590/1414-431X20176378.
Schrezenmeier EV, Barasch J, Budde K, Westhoff T, Schmidt-Ott KM. Biomarkers in acute kidney injury - pathophysiological basis and clinical performance. Acta Physiol (Oxf). 2017 Mar;219(3):554-572. doi: 10.1111/apha.12764. Epub 2016 Aug 25.
Kwon O, Molitoris BA, Pescovitz M, Kelly KJ. Urinary actin, interleukin-6, and interleukin-8 may predict sustained ARF after ischemic injury in renal allografts. Am J Kidney Dis. 2003 May;41(5):1074-87. doi: 10.1016/s0272-6386(03)00206-3.
Liangos O, Kolyada A, Tighiouart H, Perianayagam MC, Wald R, Jaber BL. Interleukin-8 and acute kidney injury following cardiopulmonary bypass: a prospective cohort study. Nephron Clin Pract. 2009;113(3):c148-54. doi: 10.1159/000232595. Epub 2009 Aug 12.
de Fontnouvelle CA, Greenberg JH, Thiessen-Philbrook HR, Zappitelli M, Roth J, Kerr KF, Devarajan P, Shlipak M, Coca S, Parikh CR; TRIBE-AKI Consortium. Interleukin-8 and Tumor Necrosis Factor Predict Acute Kidney Injury After Pediatric Cardiac Surgery. Ann Thorac Surg. 2017 Dec;104(6):2072-2079. doi: 10.1016/j.athoracsur.2017.04.038. Epub 2017 Aug 16.
Trakarnvanich T, Sirivongrangson P, Trongtrakul K, Srisawat N. The effect of citrate in cardiovascular system and clot circuit in critically ill patients requiring continuous renal replacement therapy. J Artif Organs. 2023 Mar;26(1):53-64. doi: 10.1007/s10047-022-01329-0. Epub 2022 Apr 12.
Other Identifiers
Review additional registry numbers or institutional identifiers associated with this trial.
COA033/61
Identifier Type: -
Identifier Source: org_study_id
More Related Trials
Additional clinical trials that may be relevant based on similarity analysis.