# A nurse is caring for a client with stage 3 chronic kidney disease (CKD) who presents with multiple complications including fluid overload, hyperphosphatemia, and hyperkalemia. Which nursing action should be the highest priority?

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> subject: Adult Health

## 문제

A nurse is caring for a client with stage 3 chronic kidney disease (CKD) who presents with multiple complications including fluid overload, hyperphosphatemia, and hyperkalemia. Which nursing action should be the highest priority?

The nurse must prioritize care for a client with advanced CKD presenting with multiple systemic complications.

## 보기

1. Monitor daily weight and fluid intake/output balance
2. Administer prescribed phosphate binders with meals
3. Assess for signs of hyperkalemia and cardiac dysrhythmias **✔ 정답**
4. Educate the client about dietary protein restrictions

**정답: 3**

## 해설

In stage 3 CKD, hyperkalemia poses the most immediate life-threatening risk due to potential fatal cardiac dysrhythmias, making assessment for signs of hyperkalemia and cardiac dysrhythmias the highest priority. Other options address important but less urgent aspects of CKD management.

## 심화 해설

Understanding the Priority: Airway, Breathing, Circulation, and the “Killer” Electrolyte

When a client with stage 3 chronic kidney disease (CKD) presents with multiple complications, clinical decision-making must follow the ABC (Airway, Breathing, Circulation) framework and Maslow’s hierarchy of needs, with an emphasis on identifying the most immediate threat to life. While fluid overload, hyperphosphatemia, and hyperkalemia are all serious, they do not pose an equal risk of rapid deterioration. Hyperkalemia is uniquely dangerous because of its direct and swift impact on cardiac conduction, potentially causing lethal dysrhythmias before other symptoms of CKD become critical.

The provided evidence underscores this urgency. A simulation-based study on managing hyperkalemia-induced tachyarrhythmia highlights that prompt recognition and treatment of these arrhythmias is vital because they can be life-threatening [1]. The study notes that severe hyperkalemia, if untreated, may lead to renal failure, arrhythmias, or multi-organ failure [1]. This directly supports prioritizing the assessment of cardiac effects over other interventions, as a fatal arrhythmia can occur within minutes, whereas complications from fluid overload or hyperphosphatemia typically develop over hours to days.

Why the Other Options Are Not the Immediate Priority

-   Option 1: Monitoring daily weight and fluid intake/output balance is a core intervention for managing fluid overload in CKD. However, it is an ongoing monitoring activity, not an immediate response to a potentially fatal complication. The data it provides is crucial for long-term management but will not prevent a sudden cardiac arrest from hyperkalemia right now.

-   Option 2: Administering prescribed phosphate binders with meals addresses hyperphosphatemia, a key factor in renal osteodystrophy and cardiovascular calcification. This is a critical long-term management strategy, but its effects are not immediate. Missing a single dose does not present an imminent threat to life, making it a lower priority than assessing for a lethal cardiac rhythm.

-   Option 4: Educating the client about dietary protein restrictions is an important nursing function for slowing CKD progression and managing uremic symptoms. However, patient education is never the highest priority in an acute, unstable situation. The client’s immediate physiological stability must be established first.

The Physiological Basis for the Priority

The priority of assessing for hyperkalemia and cardiac dysrhythmias is rooted in the pathophysiology of myocardial conduction. Elevated serum potassium (hyperkalemia) alters the resting membrane potential of cardiac myocytes, initially making them more excitable. As potassium levels rise further, the rate of phase 0 depolarization is depressed, slowing impulse conduction. This manifests on an ECG as peaked T-waves, loss of P-waves, and a widened QRS complex. This progressive conduction delay creates a substrate for re-entrant tachyarrhythmias and can ultimately degenerate into ventricular fibrillation or asystole. The simulation case specifically focused on the challenge of recognizing and managing a hyperkalemia-induced tachyarrhythmia, reinforcing that the initial and most critical nursing action is a focused cardiac assessment to detect these early, life-threatening ECG changes [1]. For a client with CKD, the kidneys’ reduced ability to excrete potassium creates a constant risk for this emergency, making vigilant assessment the highest priority.References (research sources)

- [1]Recognition and Management of Hyperkalemia-Induced Tachyarrhythmia in Pediatric Spontaneous Tumor Lysis Syndrome: A Simulation Case.Research articleSoliman YH, Kochhar M, Petrone G, Wing R, Sojar SH. (2026) · DOI: 10.7759/cureus.107494

## 임상 시나리오

Managing Life-Threatening Hyperkalemia in CKDPrioritizing the 'Killer' Electrolyte
In clients with CKD, hyperkalemia is the highest priority because it directly disrupts cardiac conduction, leading to lethal dysrhythmias. Assessment must precede intervention.

Immediately obtain a 12-lead ECG to assess for peaked T-waves, loss of P-waves, and widened QRS complexes. Continuous cardiac monitoring is essential.

CautionDo not delay treatment for a serum potassium level. A potassium level above 6.5 mEq/L or any ECG changes constitute a medical emergency requiring immediate intervention, such as IV calcium gluconate to stabilize the myocardium.

## 핵심 개념

- **Hyperkalemia** — An elevated serum potassium level that impairs cardiac conduction, potentially leading to life-threatening dysrhythmias and cardiac arrest.
- **ABC Framework** — A prioritization model (Airway, Breathing, Circulation) used in nursing to identify and address the most immediate threats to life first.
- **Stage 3 CKD** — Moderate chronic kidney disease with a glomerular filtration rate (GFR) of 30-59 mL/min, where the kidneys' ability to filter waste and regulate electrolytes is significantly reduced.

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