Related Experiment Video
Updated: Aug 26, 2025

Murine Kidney Transplant Technique
Published on: October 20, 2015
Kidney support for babies: building a comprehensive and integrated neonatal kidney support therapy program
Tahagod H Mohamed1,2, Jolyn Morgan3, Theresa A Mottes4
1Division of Nephrology and Hypertension, Nationwide Children's Hospital and The Ohio State University College of Medicine, Columbus, OH, USA. Tahagod.Mohamed@Nationwidechildrens.org.
Insights
Kidney support therapy (KST) in neonates has evolved with new devices and filters, expanding treatment options. Establishing a neonatal KST program requires a multidisciplinary team and institutional support for safe and effective care.
Area of Science:
- Pediatric Nephrology
- Neonatal Intensive Care
- Critical Care Medicine
Background:
- Kidney support therapy (KST), including peritoneal dialysis (PD), intermittent hemodialysis (iHD), and continuous kidney support therapy (CKST), treats severe acute kidney injury (AKI) and kidney failure.
- Extracorporeal KST in neonates traditionally faced challenges due to small patient size and device limitations, making PD the most common modality.
- Recent advancements in CKST machines and filters designed for neonates have improved safety and efficacy, expanding treatment options.
Conclusions:
- Advancements in KST technology are transforming neonatal care for AKI and kidney failure.
- Developing a neonatal KST program requires careful planning, expert teams, and quality improvement initiatives.
- These evolving treatment options necessitate a recalibration of the benefit:risk assessment for neonatal KST.
Abstract:
Kidney support therapy (KST), previously referred to as Renal Replacement Therapy, is utilized to treat children and adults with severe acute kidney injury (AKI), fluid overload, inborn errors of metabolism, and kidney failure. Several forms of KST are available including peritoneal dialysis (PD), intermittent hemodialysis (iHD), and continuous kidney support therapy (CKST). Traditionally, extracorporeal KST (CKST and iHD) in neonates has had unique challenges related to small patient size, lack of neonatal-specific devices, and risk of hemodynamic instability due to large extracorporeal circuit volume relative to patient total blood volume. Thus, PD has been the most commonly used modality in infants, followed by CKST and iHD. In recent years, CKST machines designed for small children and novel filters with smaller extracorporeal circuit volumes have emerged and are being used in many centers to provide neonatal KST for toxin removal and to achieve fluid and electrolyte homeostasis, increasing the options available for this unique and vulnerable group. These new treatment options create a dramatic paradigm shift with recalibration of the benefit: risk equation. Renewed focus on the infrastructure required to deliver neonatal KST safely and effectively is essential, especially in programs/units that do not traditionally provide KST to neonates. Building and implementing a neonatal KST program requires an expert multidisciplinary team with strong institutional support. In this review, we first describe the available neonatal KST modalities including newer neonatal and infant-specific platforms. Then, we describe the steps needed to develop and sustain a neonatal KST team, including recommendations for provider and nursing staff training. Finally, we describe how quality improvement initiatives can be integrated into programs.
Related Concept Videos
Continuous Renal Replacement Therapy
Acute Kidney Injury V: Interprofessional Care
Acute Kidney Injury VI: Nursing Management
Kidney Transplant III: Nursing Management
Chronic Kidney Disease III: Interprofessional Care
Acute Kidney Injury IV: Diagnostic Studies and Prevention

