Impact of inhalers used in the treatment of respiratory diseases on global warming

Adv Respir Med. 2021;89(4):427-438. doi: 10.5603/ARM.a2021.0092.

Abstract

The term "carbon footprint" describes the emission of greenhouse gases into the environment as a result of human activities. The healthcare sector is responsible for 5-8% of the value of global greenhouse gas emissions, of which medical aerosols account for only 0.03% of the total emissions. The reduction of greenhouse gases, including those used for the production and use of medicinal products and medical devices, is part of the responsibilities that Poland and the respective countries should undertake in order to implement the assumptions of international law. At the level of medical law, this obligation correlates with the need to exercise due diligence in the process of providing health services, including the selection of low-emission medical products and devices (inhalers) and providing patients with information on how to handle used products and devices, with particular emphasis on those that imply greenhouse gas emissions. Pressurized metered dose inhalers (pMDI) containing the hydrofluoroalkane 134a demonstrate the largest carbon footprint, followed by a metered dose liquid inhaler and dry powder inhalers (DPI). The carbon footprint of DPI with a given drug is 13-32 times lower than it is in the case of the corresponding pMDI. Replacement of pMDI by DPI is one of the effective methods to reduce the carbon footprint of inhalers, and the replacement should be based on current medical knowledge. A recycling system for all types of inhalers must be urgently implemented.

Keywords: carbon footprint; dry powder inhaler; global warming potential; hydrofluoroalkane; inhalation therapy; pressurized metered dose inhaler.

MeSH terms

  • Administration, Inhalation
  • Asthma / drug therapy*
  • Bronchodilator Agents / therapeutic use*
  • Dry Powder Inhalers / statistics & numerical data
  • Global Warming*
  • Humans
  • Metered Dose Inhalers / statistics & numerical data
  • Poland

Substances

  • Bronchodilator Agents