# A nurse is reviewing laboratory results for a patient with chronic kidney disease and notes a potassium level of 2.8 mEq/L. Which action should the nurse take first?

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## 문제

A nurse is reviewing laboratory results for a patient with chronic kidney disease and notes a potassium level of 2.8 mEq/L. Which action should the nurse take first?

## 보기

1. Encourage the patient to eat potassium-rich foods such as bananas and oranges
2. Administer oral potassium supplements as prescribed
3. Continuously monitor cardiac rhythm and prepare for emergency interventions **✔ 정답**
4. Increase fluid intake to promote potassium retention

**정답: 3**

## 해설

With severe hypokalemia (K+ 2.8 mEq/L), the most critical priority is continuous cardiac monitoring as hypokalemia can cause life-threatening cardiac arrhythmias. Other interventions like oral supplements or diet are important but secondary to immediate monitoring.

## 심화 해설

Understanding the Clinical Priority

A serum potassium level of 2.8 mEq/L represents severe hypokalemia. In a patient with chronic kidney disease (CKD), this finding is particularly dangerous because it can rapidly lead to life-threatening cardiac arrhythmias. The immediate priority is not to replace potassium blindly, but to assess and manage the most acute threat: cardiac instability.

Why Cardiac Monitoring Comes First

The rationale for prioritizing continuous cardiac monitoring and emergency preparedness is rooted in the electrophysiological consequences of severe hypokalemia. As demonstrated in a case report of profound hypokalemia (2.3 mmol/L), this electrolyte disturbance directly causes electrocardiographic abnormalities, including the emergence of U waves and a prolonged corrected QT (QTc) interval. The QTc prolongation is a critical marker of severity and is strongly associated with a high risk of life-threatening arrhythmias such as Torsades de Pointes and ventricular fibrillation [4]. Before administering any treatment, the nurse must first establish a baseline cardiac rhythm and be prepared to intervene if a lethal arrhythmia develops. Administering potassium, while necessary, does not provide immediate protection against an arrhythmia that could occur at any moment in a profoundly hypokalemic patient.

Evaluating the Other Options

- Option 1 (Encourage potassium-rich foods): Dietary modification is appropriate for mild, chronic hypokalemia prevention, not for a critically low level of 2.8 mEq/L. Oral intake is too slow and insufficient to correct severe depletion rapidly.

- Option 2 (Administer oral potassium supplements): While potassium replacement is essential, it is not the first action. The nurse must first ensure the patient is on a cardiac monitor to safely observe the effects of replacement and detect any deterioration. Furthermore, in CKD, potassium excretion is impaired, making replacement potentially dangerous if not carefully monitored. The risk of overshooting to hyperkalemia is significant, a condition associated with increased all-cause mortality in hemodialysis patients .

- Option 4 (Increase fluid intake to promote potassium retention): This action is physiologically incorrect and potentially harmful. Increasing fluid intake would promote diuresis, which could worsen renal potassium loss, especially if the hypokalemia is due to a condition causing renal potassium wasting, such as a mineralocorticoid excess state. The case report on licorice tea-induced pseudo-hyperaldosteronism illustrates a mechanism of renal potassium wasting leading to severe hypokalemia, where increased fluid intake would be counterproductive [4]. In CKD, fluid management is also carefully balanced, and indiscriminate increases can lead to fluid overload.

Clinical Reasoning for the NCLEX-RN

The nursing process dictates that assessment comes before implementation. In this scenario, the most critical assessment is evaluating the electrophysiological impact of the 2.8 mEq/L potassium level on the heart. The nurse’s first action is to place the patient on a cardiac monitor, analyze the rhythm for signs of myocardial instability like U waves or a prolonged QT interval, and ensure emergency equipment (including a defibrillator) is readily available. Only after this safety net is established should the nurse proceed with prescribed potassium replacement, which is typically intravenous for this level of severity in a monitored setting.References (research sources)

- [4]Pseudo-Hyperaldosteronism After the Ingestion of Licorice Tea: A Case Report.Case reportGuarneri C, Al-Kai L. (2026) · DOI: 10.7759/cureus.109726

## 임상 시나리오

Clinical Practice Guide: Severe Hypokalemia in CKD

Immediate Nursing Actions

- **Priority: Cardiac Monitoring.** Initiate continuous telemetry and obtain a 12-lead ECG immediately. Assess for U waves, flattened T waves, ST depression, and prolonged QTc interval.

- **Prepare for Emergencies.** Ensure emergency cart with defibrillator and antiarrhythmic medications (e.g., magnesium sulfate for Torsades de Pointes) is readily available.

- **Assess Clinical Status.** Evaluate for signs of cardiac instability: palpitations, syncope, hypotension, or weak irregular pulse. Assess respiratory muscle weakness and decreased deep tendon reflexes.

Safe Potassium Replacement Strategy

- **Verify Renal Function.** In CKD, potassium excretion is impaired. Replacement must be cautious to avoid rebound hyperkalemia. Confirm urine output is adequate before administering potassium.

- **Route of Administration.** For severe symptomatic hypokalemia, intravenous replacement with continuous cardiac monitoring is standard. Oral supplements are used for mild to moderate asymptomatic cases. Never administer IV potassium as a bolus; use an infusion pump.

- **Monitor During Replacement.** Recheck serum potassium levels frequently (e.g., every 2-4 hours) based on institutional protocol. Monitor the IV site closely for phlebitis or infiltration, as potassium is a vesicant.

Key Clinical Pearls

- A serum potassium of 2.8 mEq/L in a CKD patient is a critical value requiring immediate intervention, not dietary advice.

- ECG changes correlate roughly with severity, but life-threatening arrhythmias can occur without dramatic warning signs on the monitor.

- Magnesium deficiency often coexists with hypokalemia and makes it refractory to treatment; check and replete magnesium levels concurrently.

## 핵심 개념

- **Hypokalemia** — Hypokalemia. A condition where the serum potassium level falls below the normal range (3.5-5.0 mEq/L). Severe cases usually mean below 3.0 mEq/L.
- **Cardiac Arrhythmia** — Arrhythmia. A condition where the heart's electrical activity is disrupted, causing the pulse to be too fast, too slow, or irregular. Hypokalemia can cause life-threatening ventricular arrhythmias.
- **Electrocardiogram (ECG/EKG) Monitoring** — Electrocardiogram monitoring. Continuous observation of the heart's electrical activity. In hypokalemia, it is essential for detecting changes such as U waves, QT prolongation, T wave flattening, and arrhythmias.
- **Ventricular Fibrillation (V-fib)** — Ventricular fibrillation. A life-threatening arrhythmia where the myocardial fibers of the ventricles fail to contract in a coordinated manner and instead quiver chaotically. Hypokalemia can be a cause, and immediate defibrillation is required.
- **Sodium-Potassium Pump (Na+/K+-ATPase)** — Sodium-potassium pump. An enzyme present in the cell membrane that uses ATP to bring potassium into the cell and expel sodium out of the cell. Potassium imbalance disrupts the function of this pump and the cell membrane potential, severely affecting nerve and muscle (especially cardiac muscle) function.

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