Drug-Drug Interaction Associated with Mold-Active Triazoles among Hospitalized Patients

David Andes1, Nkechi Azie2, Hongbo Yang3

  • 1Departments of Medicine and Medical Microbiology and Immunology, University of Wisconsin, Madison, Wisconsin, USA dra@medicine.wisc.edu.

Insights

Hospitalized patients on mold-active triazoles (MATs) face high risks of severe drug-drug interactions (DDIs). Increased awareness and antifungal stewardship are crucial to prevent adverse events from these common antifungal treatments.

Area of Science:

  • Pharmacology
  • Infectious Diseases
  • Clinical Pharmacy

Background:

  • Triazoles are essential antifungals, with mold-active triazoles (MATs) like itraconazole, voriconazole, and posaconazole being first-line treatments for serious fungal infections.
  • These MATs are associated with a significant potential for drug-drug interactions (DDIs), posing risks to patient safety.
  • Awareness of these DDIs is critical for managing hospitalized patients effectively.

Purpose of the Study:

  • To evaluate the prevalence and severity of DDIs associated with mold-active triazole use in hospitalized patients.
  • To identify the proportion of hospitalizations involving MATs that also included concomitant interacting medications.
  • To underscore the need for enhanced antifungal stewardship programs.

Main Methods:

  • Retrospective analysis of the Cerner HealthFacts database (2005-2013) for U.S. adult hospitalizations involving MATs.
  • Categorization of DDIs into contraindicated, major, moderate, and minor severity based on drug labels and the Drugdex system.
  • Inclusion criteria for DDI events: concomitant use of at least one drug with a moderate-to-contraindicated interaction with MAT, with at least one day of overlap in administration.

Main Results:

  • A total of 6,962 hospitalizations with MAT use were analyzed.
  • High prevalence of interacting drug use: 88% for voriconazole, 86% for itraconazole, and 93% for posaconazole.
  • Significant rates of severe DDIs: 20% for voriconazole, 34% for itraconazole, and 68% for posaconazole involved contraindicated interactions; 82%, 61%, and 83% respectively involved severe interactions.

Conclusions:

  • The majority of hospitalized patients receiving MATs are exposed to potentially severe drug-drug interactions.
  • These findings highlight a critical need for improved awareness and management of MAT-related DDIs.
  • Strengthening antifungal stewardship is essential to mitigate risks and ensure patient safety.

Related Concept Videos

Drug toxicity: Drug–Drug Interaction01:30

Drug toxicity: Drug–Drug Interaction

Drug–drug interactions can precipitate toxicity through multiple mechanisms. Absorption interactions alter how drugs enter the body, exemplified when ranitidine increases the absorption of basic drugs, while cholestyramine decreases the levels of propranolol. Protein binding interactions occur when drugs share the same binding sites on plasma proteins. Drugs like aspirin and warfarin, when bound in excess, can lead to increased free drug concentrations, enhancing the potential for...
314
Pharmacokinetics: Drug–Food and Drug–Viral Interactions01:26

Pharmacokinetics: Drug–Food and Drug–Viral Interactions

A drug interaction occurs when the concurrent use of another drug, food, or an external substance alters the pharmacological activity of a drug. This interaction can modify the action of the original drug, affecting its effectiveness and safety.Drug–food interactions are significant as they impact drug absorption, metabolism, and excretion. For example, grapefruit juice is a well-known disruptor of drug metabolism. It inhibits the cytochrome P450 3A4 enzyme, crucial for the metabolism of...
464
Pharmacokinetics: Drug–Drug Interactions01:25

Pharmacokinetics: Drug–Drug Interactions

Drug interactions occur when the pharmacological effect of one drug is altered by another substance, either enhancing or diminishing its activity. The drug whose activity is altered is known as the object drug, and the substance causing the alteration is called the agent drug or the precipitant. The net effects of these interactions are mostly undesirable, leading to decreased effectiveness or increased adverse effects. In rare cases, interactions can be beneficial, such as the enhanced...
636
Combined Effects of Drugs: Synergism01:27

Combined Effects of Drugs: Synergism

Synergism is a useful mechanism where combining two or more drugs is more effective than each constituent used alone. Such combinations are also called supra-additive interactions. The drugs collectively enhance the final therapeutic effect by acting on different targets. Another advantage is that the low dose of each constituent drug is sufficient to achieve the desired effect. This helps reduce the duration of therapy and lower the adverse effects of these drugs.
Such synergistic combinations...
7.3K
Drug Toxicity: Risk factors01:24

Drug Toxicity: Risk factors

Adverse Drug Reactions (ADRs) are potential complications that arise during pharmacotherapy, influenced by multiple risk factors. Age plays a significant role; both neonates and the elderly are at heightened risk due to their respective immature and diminished metabolic and elimination processes. Gender also impacts ADRs, with females experiencing a 1.5 to 1.7-fold greater risk than males, which may be linked to pharmacokinetic, pharmacodynamic, and hormonal differences. Notably, neonates, the...
148
Antifungal Agents01:15

Antifungal Agents

Amphotericin B is a broad-spectrum antifungal agent that exploits structural differences between fungal and mammalian cell membranes. Its amphipathic structure—featuring a hydrophobic polyene-lactone ring and a hydrophilic region containing mycosamine and carboxylic acid groups—enables selective binding to ergosterol, a sterol predominantly found in fungal plasma membranes. This selective interaction underlies the drug’s antifungal activity, although weak binding to...
29