How dialysis frequency and duration impact uremic toxin and fluid removal: a pediatric perspective

Pauline Van Wesemael1, Sunny Eloot2, Ann Raes3

  • 1Department of Pediatric Nephrology, Ghent University Hospital, Ghent, Belgium. pauline.vanwesemael@UGent.Be.

Insights

Extended hemodialysis/hemodiafiltration (HD/HDF) offers improved uremic toxin removal and better health outcomes for children. These longer or more frequent dialysis sessions enhance blood pressure control, growth, and quality of life, reducing dietary restrictions.

Area of Science:

  • Pediatric Nephrology
  • Renal Replacement Therapy
  • Uremic Toxin Management

Background:

  • Standard three-weekly 4-h hemodialysis/hemodiafiltration (HD/HDF) in children may not ensure adequate dialysis.
  • Individual patient factors like residual kidney function and preferences are often overlooked in standard regimens.
  • Some children fail to achieve optimal outcomes with conventional HD/HDF protocols.

Purpose of the Study:

  • To review the impact of dialysis duration and frequency on uremic toxin and fluid removal in pediatric patients.
  • To summarize existing literature on extended HD/HDF strategies (longer duration or increased frequency) in pediatrics.
  • To highlight benefits and challenges of extended dialysis regimens for children with kidney failure.

Main Methods:

  • Review of existing literature on pediatric hemodialysis/hemodiafiltration.
  • Analysis of studies examining extended dialysis duration and/or frequency (>12 h/week).
  • Synthesis of data on uremic toxin clearance, fluid balance, and clinical outcomes.

Main Results:

  • Extended HD/HDF significantly improves removal of uremic toxins, including those with slow transport like phosphate and beta2-microglobulin.
  • Longer/more frequent dialysis reduces the need for high ultrafiltration rates, improving fluid management.
  • Observational studies show benefits in blood pressure control, reduced left ventricular hypertrophy, improved growth, and enhanced quality of life.
  • Dietary restrictions and need for phosphate binders/potassium chelators may decrease.

Conclusions:

  • Extended HD/HDF regimens can be highly beneficial for specific pediatric populations.
  • Pediatric-specific international guidelines are needed to guide the selection of extended HD/HDF.
  • Addressing financial, organizational, and psychosocial barriers is crucial for wider implementation of extended HD/HDF.

Related Concept Videos

Dialysis01:27

Dialysis

Renal failure occurs when the kidneys lose their ability to filter waste products from the blood effectively. It can be classified into two types: acute renal failure (ARF) and chronic renal failure (CRF).
Acute kidney injury develops suddenly and can be caused by pre-renal causes (e.g., hypovolemia, shock), intrinsic renal causes (e.g., acute tubular necrosis), or post-renal causes (e.g., urinary obstruction). In contrast, chronic renal failure progresses gradually over time and is often...
264
Renal Failure: Dose Adjustments01:11

Renal Failure: Dose Adjustments

In patients with renal impairment, drugs undergo significant changes in their pharmacokinetics, which require dosage adjustments to ensure safe and effective therapy.
Reduced renal clearance and elimination rate are common outcomes of renal impairment. These alterations lead to a prolonged elimination half-life and an altered apparent volume of distribution for drugs. As a result, dosage adjustments are typically necessary to maintain optimal drug levels in the body.
However, dosage adjustments...
63
Factors Affecting Renal Clearance: Renal Impairment01:17

Factors Affecting Renal Clearance: Renal Impairment

Renal dysfunction significantly impairs the renal clearance of drugs, leading to potential complications in drug therapy. Renal failure, which can be caused by various factors, poses a significant challenge in the elimination of drugs from the body.
One condition associated with renal failure is uremia. Uremia is characterized by impaired glomerular filtration and fluid accumulation in the body. This condition hinders the renal clearance of drugs, resulting in drug accumulation and potential...
53
Renal Drug Excretion: Effect of Urine pH, Flow Rate, and Drug pKa01:22

Renal Drug Excretion: Effect of Urine pH, Flow Rate, and Drug pKa

The pH of urine, the drug's pKa, and the urine flow rate are vital parameters for drug reabsorption and excretion. Urinary pH varies between 4.6 and 8.0 and is influenced by diet, drug intake, and the patient's pathophysiology. It affects a drug's ionization state and reabsorption. For instance, carbohydrate-rich food produces alkaline urine promoting drug excretion, while proteins and certain medications like ascorbic acid lead to acidic urine enhancing reabsorption.
The pKa of a...
135
Factors Affecting Renal Clearance: Drug Distribution and Drug Interactions01:09

Factors Affecting Renal Clearance: Drug Distribution and Drug Interactions

Renal clearance plays a pivotal role in drug elimination from the body and can be influenced by drug distribution and interactions. Understanding these factors is crucial in pharmacology as they impact the effectiveness and duration of drug therapy.
One important factor is the relationship between renal clearance and the apparent volume of distribution. Renal clearance tends to be inversely proportional to the apparent volume of distribution. Drugs with an extensive distribution volume or those...
92
Filtration and Urine Formation01:32

Filtration and Urine Formation

The function of the kidneys is to filter, reabsorb, secrete, and excrete. Every day the kidneys filter nearly 180 liters of blood, initially removing water and solutes but ultimately returning nearly all filtrates into circulation with the help of osmoregulatory hormones. This process removes wastes and toxins but is also crucial to maintain water and electrolyte levels. Most of these functions are performed by the tiny but numerous nephrons contained within the kidneys.
49.5K