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A Large Animal Model for Acute Kidney Injury by Temporary Bilateral Renal Artery Occlusion
Published on: February 2, 2021
Continuous renal replacement therapy (CRRT) program initiation in PICU of a resource limited setting: a retrospective
Jerin C Sekhar1, Karthi Nallasamy2, Muralidharan Jayashree1
1Division of Pediatric Critical Care, Department of Pediatrics, Advanced Pediatric Centre, Postgraduate Institute of Medical Education and Research (PGIMER), Chandigarh, India.
Insights
Initiating Continuous Renal Replacement Therapy (CRRT) in low-resource settings is feasible with dedicated teams and external support. Hyperlactatemia at CRRT initiation predicts mortality in critically ill children, highlighting the need for in-house sustainability.
Area of Science:
- Pediatric Critical Care Medicine
- Nephrology
- Global Health
Background:
- Continuous Renal Replacement Therapy (CRRT) is crucial for organ support in critically ill children.
- Low- and middle-income countries (LMICs) face significant barriers to establishing CRRT programs, including resource limitations, technical support, cost, and administrative hurdles.
Purpose of the Study:
- To assess the feasibility, challenges, and outcomes of initiating and sustaining a CRRT program in a tertiary care pediatric intensive care unit (PICU) in an LMIC.
- To identify predictors of mortality in children undergoing CRRT.
Main Methods:
- Retrospective review of 52 children undergoing 71 CRRT sessions between February 2019 and May 2023.
- Analysis of CRRT indications, prescription details, complications, and survival to discharge.
- Investigated challenges such as the SARS-CoV-2 pandemic, technical support, and funding, and strategies to overcome them.
Main Results:
- Common indications for CRRT included acute kidney injury (53.8%) and hyperammonemia (21.2%).
- Continuous venovenous hemodiafiltration was the primary modality. Filter clotting (33.8%) and access flow issues (7%) were key complications.
- Survival to discharge was 25%. Hyperlactatemia (serum lactate ≥3 mmol/L) at CRRT initiation independently predicted mortality (aOR 6.1, P=0.04).
Conclusions:
- Establishing a CRRT program in LMICs is achievable through dedicated, trained teams and external resource mobilization.
- Sustainability hinges on developing in-house technical and financial support.
- Hyperlactatemia is a critical predictor of mortality in this population, emphasizing the need for early intervention.
Background:
Continuous Renal Replacement Therapy (CRRT) is emerging as an essential component of organ support in critically ill children. In low- and middle- income countries (LMIC), limited resources, lack of technical support, cost, and administrative issues are major barriers in initiating and sustaining a CRRT program.
Methods:
A core team, comprising a consultant and two pediatric intensive care fellows, was assigned additional responsibility of initiating and sustaining a CRRT program in the PICU of a tertiary care teaching and referral hospital. We retrospectively reviewed the data from initiation in February 2019 till May 2023 to understand the indications, prescription details, challenges, and their relation to outcomes.
Results:
During this period, 52 children with mean (SD) age of 7.6 (3.2) years and median (IQR) weight of 20 (17, 30) kg underwent CRRT in 71 sessions. The mean PRISM-III score was 18 (5.2), with 98.1% having multiorgan dysfunction at CRRT initiation. Acute kidney injury (53.8%), hyperammonemia (21.2%), and a combination of both (17.3%) were common indications. Continuous venovenous hemodiafiltration was the most used modality (61.5%). Median CRRT duration was 36 (20.3, 58) hours. Filter usage averaged 1.4 per patient with a median life of 35 (17, 48) hours, improving from 24 to 36 h over time. Filter clotting (33.8%), access flow issues (7%), and hemodynamic instability (4.2%) were complications encountered. Survival to discharge was 25%, with serum lactate [Formula: see text]3 mmol/L at CRRT initiation being an independent predictor of mortality (adjusted OR 6.1, 95% CI: 1.1-34.9; P = 0.04). Major challenges faced in our program included the SARS-CoV-2 pandemic, non-availability of technical support, and out-of-pocket expenses. These were circumvented by involvement of fellows and nurses, training them with internal and external experts, and mobilizing resources from governmental and non-governmental organizations.
Conclusion:
Initiating a CRRT program in LMICs is feasible despite challenges. Creating a team with members willing to shoulder additional responsibility and training them gave impetus to our program. Tapping governmental and non-governmental support helped us circumvent financial challenges. However, in a resource limited setting, sustainability requires in-house technical and financial support. Survival to discharge was 25%, with hyperlactatemia at CRRT initiation predicting mortality.
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