2009Humana Press eBooksRequires access

Disorders of Potassium Balance

Béatrice Goilav, Howard Trachtman

Open publisher page 11 citations

Abstract

Potassium homeostasis: • K+ is the most essential intracellular cation, generating the resting potential in neuronal and muscle cells. • Extracellular K+ levels are tightly regulated. • Any disturbances of serum K+ levels can affect the resting potential and lead to arrhythmias or muscular abnormalities. Renal K+ handling and changes during maturation: • The kidneys are primarily responsible for excreting excess K+. • The goal of adult kidneys is to maintain a zero K+ balance, while newborn kidneys retain K+ to allow somatic growth. • Premature infants are prone to develop hyperkalemia, because they cannot rapidly eliminate exogenous excess K+. Disturbances in K+ balance: • Serum K+ levels can be abnormal due to abnormal intake or abnormal excretion of K+, but can also be caused by abnormal distribution of K+ between the extra- and intracellular space. • Clinical symptoms vary and do not allow distinguishing between hypo- and hyperkalemia. Hypokalemia: • Mild hypokalemia is a common finding in clinical practice. • Administration of diuretics is the most common acquired cause of hypokalemia. • Decreased intake of K+ can lead to total body K+ depletion and hypokalemia. Hyperkalemia: • Hyperkalemia is rare in individuals with normal renal function. • ECG findings with hyperkalemia occur individually and cannot be correlated with the serum K+ level per se. • Medications are a common cause of hyperkalemia in susceptible individuals

About this research paper

What this paper is about

Potassium homeostasis: • K+ is the most essential intracellular cation, generating the resting potential in neuronal and muscle cells. • Extracellular K+ levels are tightly regulated. • Any disturbances of serum K+ levels can affect the resting potential and lead to arrhythmias or muscular abnormalities. Renal K+ handling and changes during maturation: • The kidneys are primarily responsible for excreting excess K+. • The goal of adult kidneys is to maintain a zero K+ balance, while newborn kidneys retain K+ to allow somatic growth. • Premature infants are prone to develop hyperkalemia, because they cannot rapidly eliminate exogenous excess K+. Disturbances in K+ balance: • Serum K+ levels can be abnormal due to abnormal intake or abnormal excretion of K+, but can also be caused by abnormal distribution of K+ between the extra- and intracellular space. • Clinical symptoms vary and do not allow distinguishing between hypo- and hyperkalemia. Hypokalemia: • Mild hypokalemia is a common finding in clinical practice. • Administration of diuretics is the most common acquired cause of hypokalemia. • Decreased intake of K+ can lead to total body K+ depletion and hypokalemia. Hyperkalemia: • Hyperkalemia is rare in individuals with normal renal function. • ECG findings with hyperkalemia occur individually and cannot be correlated with the serum K+ level per se. • Medications are a common cause of hyperkalemia in susceptible individuals

Why it matters

OpenAlex reports 11 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Potassium homeostasis: • K+ is the most essential intracellular cation, generating the resting potential in neuronal and muscle cells. • Extracellular K+ levels are tightly regulated. • Any disturbances of serum K+ levels can affect the resting potential and lead to arrhythmias or muscular abnormalities. Renal K+ handling and changes during maturation: • The kidneys are primarily responsible for excreting excess K+. • The goal of adult kidneys is to maintain a zero K+ balance, while newborn kidneys retain K+ to allow somatic growth. • Premature infants are prone to develop hyperkalemia, because they cannot rapidly eliminate exogenous excess K+. Disturbances in K+ balance: • Serum K+ levels can be abnormal due to abnormal intake or abnormal excretion of K+, but can also be caused by abnormal distribution of K+ between the extra- and intracellular space. • Clinical symptoms vary and do not allow distinguishing between hypo- and hyperkalemia. Hypokalemia: • Mild hypokalemia is a common finding in clinical practice. • Administration of diuretics is the most common acquired cause of hypokalemia. • Decreased intake of K+ can lead to total body K+ depletion and hypokalemia. Hyperkalemia: • Hyperkalemia is rare in individuals with normal renal function. • ECG findings with hyperkalemia occur individually and cannot be correlated with the serum K+ level per se. • Medications are a common cause of hyperkalemia in susceptible individuals

Key concepts: Hyperkalemia, Hypokalemia, Internal medicine, Endocrinology, Medicine, Homeostasis, Potassium, Reabsorption

Related papers

Back to paper searchBrowse research topicsOriginal source
Disorders of Potassium Balance — Research Paper | ScholarLens