Essential Oils and Their Compounds as Potential Anti-Influenza Agents

Molecules. 2022 Nov 12;27(22):7797. doi: 10.3390/molecules27227797.

Abstract

Essential oils (EOs) are chemical substances, mostly produced by aromatic plants in response to stress, that have a history of medicinal use for many diseases. In the last few decades, EOs have continued to gain more attention because of their proven therapeutic applications against the flu and other infectious diseases. Influenza (flu) is an infectious zoonotic disease that affects the lungs and their associated organs. It is a public health problem with a huge health burden, causing a seasonal outbreak every year. Occasionally, it comes as a disease pandemic with unprecedentedly high hospitalization and mortality. Currently, influenza is managed by vaccination and antiviral drugs such as Amantadine, Rimantadine, Oseltamivir, Peramivir, Zanamivir, and Baloxavir. However, the adverse side effects of these drugs, the rapid and unlimited variabilities of influenza viruses, and the emerging resistance of new virus strains to the currently used vaccines and drugs have necessitated the need to obtain more effective anti-influenza agents. In this review, essential oils are discussed in terms of their chemistry, ethnomedicinal values against flu-related illnesses, biological potential as anti-influenza agents, and mechanisms of action. In addition, the structure-activity relationships of lead anti-influenza EO compounds are also examined. This is all to identify leading agents that can be optimized as drug candidates for the management of influenza. Eucalyptol, germacrone, caryophyllene derivatives, eugenol, terpin-4-ol, bisabolene derivatives, and camphecene are among the promising EO compounds identified, based on their reported anti-influenza activities and plausible molecular actions, while nanotechnology may be a new strategy to achieve the efficient delivery of these therapeutically active EOs to the active virus site.

Keywords: anti-influenza agents; antiviral activity; essential oils; flu-related diseases; influenza viruses.

Publication types

  • Review

MeSH terms

  • Antiviral Agents / chemistry
  • Antiviral Agents / pharmacology
  • Antiviral Agents / therapeutic use
  • Humans
  • Influenza, Human* / epidemiology
  • Oils, Volatile* / pharmacology
  • Oils, Volatile* / therapeutic use
  • Orthomyxoviridae*
  • Oseltamivir / pharmacology

Substances

  • Oils, Volatile
  • Antiviral Agents
  • Oseltamivir

Grants and funding

The APC was funded by the Directorate of Research Development and Innovation, Walter Sisulu University (WSU), South Africa.