ADAM-family metalloproteinases in lung inflammation: potential therapeutic targets

Daniela Dreymueller1, Stefan Uhlig1, Andreas Ludwig2

  • 1Institute of Pharmacology and Toxicology, Rheinisch-Westfälische Technische Hochschule Aachen University, Aachen, Germany.

Insights

A disintegrin and metalloproteinase (ADAM) proteases are key regulators of lung inflammation and bacterial virulence. Targeting specific ADAMs shows promise for treating inflammatory lung diseases and Staphylococcus aureus infections.

Area of Science:

  • Biochemistry
  • Immunology
  • Pulmonology

Background:

  • A disintegrin and metalloproteinase (ADAM) proteases mediate lung inflammation by converting surface proteins to soluble mediators.
  • ADAM10 and ADAM17 are pivotal in acute lung inflammation, influencing cell permeability, leukocyte migration, and mediator production.
  • Other ADAM family members are upregulated in lung inflammation, suggesting broader roles in disease.

Purpose of the Study:

  • To elucidate the roles of ADAM proteases in acute and chronic lung inflammation.
  • To investigate the involvement of ADAM10 and ADAM17 in specific inflammatory pathways and Staphylococcus aureus virulence.
  • To assess the therapeutic potential of targeting ADAM proteases in lung diseases.

Main Methods:

  • Review of recent research on ADAM proteases in lung inflammation.
  • Analysis of cell-specific functions of ADAM10 and ADAM17.
  • Examination of the impact of pharmacological inhibitors on inflammatory responses and bacterial virulence.

Main Results:

  • ADAM17 drives endothelial/epithelial permeability and leukocyte migration; ADAM10 is crucial for leukocyte recruitment and allergic asthma.
  • ADAM10 facilitates Staphylococcus aureus alpha-toxin binding, enhancing bacterial virulence.
  • Targeting ADAMs with inhibitors suppressed inflammation and S. aureus virulence in preclinical models.

Conclusions:

  • ADAM proteases are critical regulators of lung inflammatory and infectious processes.
  • Pharmacological targeting of specific ADAMs offers a promising therapeutic strategy for lung inflammation and S. aureus infections.
  • Further research is needed to explore ADAMs' roles in lung repair and regeneration for comprehensive therapeutic development.

Related Concept Videos

Role of Matrix Metalloproteases in Degradation of ECM01:23

Role of Matrix Metalloproteases in Degradation of ECM

Matrix metalloproteases (MMPs) are enzymes involved in the hydrolysis of proteins and glycoproteins of the extracellular matrix. MMPs are essential for the migration and proliferation of cells through the dense matrix network, throughout embryonic development, and throughout morphogenesis. The first MMP activity discovered was a collagenase in a tadpole's tail undergoing metamorphosis. The active collagen deposition and modifications lead to the morphogenesis of tadpoles into the adult...
3.8K
Antiasthma Drugs: Leukotriene Modifiers01:19

Antiasthma Drugs: Leukotriene Modifiers

Leukotriene modifiers, or cysteinyl leukotriene receptor antagonists, are medications used to manage chronic asthma. These agents target specific inflammatory mediators produced during arachidonic acid metabolism, an essential process in generating inflammation in the body.
Leukotriene modifiers work through two distinct mechanisms:
2.3K
Antiasthma Drugs: Mast Cell Stabilizers and Anti-IgE Drugs01:25

Antiasthma Drugs: Mast Cell Stabilizers and Anti-IgE Drugs

Asthma is a chronic respiratory condition for which new therapeutic avenues, including anti-inflammatory drugs like mast cell stabilizers and anti-IgE treatments, continue to be developed.
Mast cell stabilizers, such as cromolyn (also known as sodium cromoglycate) and nedocromil (Tilade), are effective drugs in asthma management. These stabilizers hinder histamine release by skillfully obstructing the activation of mast cells and other cellular entities. Notably, they navigate this task without...
2.5K
Chronic Obstructive Pulmonary Disease II: Emphysema01:23

Chronic Obstructive Pulmonary Disease II: Emphysema

Emphysema, a major phenotype of chronic obstructive pulmonary disease (COPD), is characterized by irreversible destruction of alveolar walls and permanent enlargement of distal airspaces. Unlike chronic bronchitis, which primarily affects the airways, emphysema predominantly involves the lung parenchyma, where structural damage leads to airflow limitation.PathophysiologyIt most commonly results from prolonged exposure to cigarette smoke and other toxic gases, particularly cigarette smoke.
16