# A nurse is assessing a 58-year-old patient with stage 4 chronic kidney disease (CKD). Which assessment finding would be the MOST concerning and require immediate intervention?

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## 문제

A nurse is assessing a 58-year-old patient with stage 4 chronic kidney disease (CKD). Which assessment finding would be the MOST concerning and require immediate intervention?

The nurse is conducting a comprehensive assessment of a patient with advanced CKD.

## 보기

1. Serum potassium level of 6.8 mEq/L with peaked T waves on ECG **✔ 정답**
2. Blood pressure reading of 168/94 mmHg
3. Hemoglobin level of 9.2 g/dL with reports of fatigue
4. Serum phosphorus level of 6.5 mg/dL with mild bone pain

**정답: 1**

## 해설

Hyperkalemia with ECG changes (peaked T waves) is a life-threatening emergency requiring immediate intervention to prevent fatal arrhythmias. Other options (hypertension, anemia, hyperphosphatemia) are chronic complications that do not pose an immediate threat.

## 심화 해설

Key Assessment Finding in Advanced CKD

The most concerning finding requiring immediate intervention is the serum potassium level of 6.8 mEq/L with peaked T waves on ECG. In the context of stage 4 chronic kidney disease (CKD), this represents a critical, life-threatening electrolyte disturbance that demands emergent treatment to prevent cardiac arrest.

Pathophysiology and Clinical Rationale

The normal range for serum potassium is typically 3.5 to 5.0 mEq/L. A level of 6.8 mEq/L constitutes severe hyperkalemia. In patients with CKD, the kidneys' ability to excrete potassium is significantly impaired, creating a constant risk for accumulation. The presence of peaked T waves on the ECG is a classic and ominous sign, indicating that the elevated potassium is already altering cardiac myocyte electrophysiology. This alteration destabilizes the resting membrane potential, initially making cells more excitable (manifesting as peaked T waves) before progressing to a dangerous reduction in excitability [1].

This scenario is a hallmark of a potentially fatal positive feedback loop. The combination of Hyperkalemia and Renal failure can synergistically depress cardiac conduction, leading to severe bradycardia and hemodynamic instability [3]. The ECG changes are not merely a diagnostic clue but a direct signal of impending cardiac emergency. If uncorrected, the conduction disturbance can rapidly progress from peaked T waves to loss of P waves, widening of the QRS complex, and ultimately a sine-wave pattern, ventricular fibrillation, or complete atrioventricular (AV) block with a slow ventricular escape rhythm, as seen in cases of severe hyperkalemia [1]. The risk is heightened if the patient is concurrently taking AV nodal-blocking agents, which can trigger the life-threatening BRASH syndrome (Bradycardia, Renal failure, AV blockade, Shock, Hyperkalemia), creating a vicious cycle of worsening bradycardia and renal dysfunction that is refractory to standard treatments [2][4].

Analysis of Other Findings

While the other options represent significant complications of CKD that require management, they do not pose the same immediate threat of death within minutes as severe hyperkalemia with ECG changes.

-   Blood pressure of 168/94 mmHg: This indicates stage 2 hypertension, a common and serious comorbidity in CKD that accelerates renal damage and increases cardiovascular risk. Management typically involves medication adjustment and monitoring, but it is not an immediate, minute-to-minute emergency like a malignant dysrhythmia.

-   Hemoglobin of 9.2 g/dL with fatigue: This reflects the anemia of CKD, caused by deficient erythropoietin production. While profoundly impactful on quality of life and cardiac workload, it is a chronic condition managed with iron supplementation and erythropoiesis-stimulating agents. It does not require emergent intervention.

-   Serum phosphorus of 6.5 mg/dL with mild bone pain: This hyperphosphatemia is a key driver of secondary hyperparathyroidism and renal osteodystrophy in CKD. Management with phosphate binders and dietary restriction is crucial for long-term bone and cardiovascular health, but it is not an acute, life-threatening finding.

The nurse's priority is to recognize that the combination of a critically high potassium level and corresponding ECG changes signals an immediate risk for fatal cardiac arrhythmias, necessitating urgent notification of the healthcare provider and preparation for emergency interventions such as intravenous calcium to stabilize the myocardium, followed by therapies to shift potassium intracellularly and remove it from the body [1][3].References (research sources)

- [1]Complete Atrioventricular Block Due to Severe Hyperkalemia in a Hemodialysis Patient: Successful Management with Temporary Transvenous Pacing.Research articleAbdi AE, Arın CB, Abdi IA, Ahmed SA, Dahir OF, Aden AS, Hassan MO. (2026) · DOI: 10.2147/imcrj.s596948

- [2]BRASH Syndrome.Research articleIyow SN, Adam AM, Adan HAA, Sağdıç A, Mohamed AY. (2026) · DOI: 10.1002/ccr3.72833

- [3]Bradycardia, Renal Failure, Atrioventricular Nodal Blockade, Shock, and Hyperkalemia (BRASH) Syndrome: A Deadly Pentad of Symptoms.Research articleKillian P, Espinosa J, Lucerna A. (2026) · DOI: 10.7759/cureus.106824

- [4]Unmasking BRASH Syndrome: A Clinical Challenge in Bradycardia and Renal Dysfunction.Research articleZuhri E, Erriyanti S. (2025) · DOI: 10.7759/cureus.98773

## 임상 시나리오

Severe Hyperkalemia in CKDImmediate Recognition and Emergency Response
In stage 4 CKD, a serum potassium of 6.8 mEq/L with peaked T waves is a medical emergency. The loss of renal potassium excretion leads to rapid accumulation, directly destabilizing cardiac myocyte membranes and risking progression to ventricular fibrillation or asystole.

Immediate nursing actions include placing the patient on a cardiac monitor, obtaining a 12-lead ECG, and notifying the provider. Anticipate emergent orders for IV calcium gluconate to stabilize the myocardium, followed by therapies like IV insulin with dextrose to shift potassium intracellularly.

CautionDo not delay treatment for repeat lab confirmation if ECG changes are present. A potassium level above 6.5 mEq/L with ECG changes indicates immediate danger of cardiac arrest, and calcium is the priority to protect the heart.

## 핵심 개념

- **Hyperkalemia** — Serum potassium level greater than 5.0 mEq/L; severe hyperkalemia (>6.5 mEq/L) can cause life-threatening cardiac arrhythmias.
- **Peaked T waves** — An early ECG manifestation of hyperkalemia, reflecting altered cardiac repolarization due to elevated extracellular potassium.
- **CKD Stage 4** — Severe reduction in glomerular filtration rate (GFR 15-29 mL/min/1.73 m²), characterized by significant loss of renal function including potassium excretion.

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