Key result
Chronic lung allograft dysfunction is a multifactorial disease driven by innate and adaptive immune reactions that remains irreversible and unpredictable.
This review highlights the complex immune mechanisms underlying chronic lung allograft dysfunction and suggests a systems-biology approach to better predict and understand the condition.
CLAD immune mechanisms remain poorly defined; review leaves open targeted interventions after lung transplant.
In Brief Chronic lung allograft dysfunction (CLAD) is the major limitation of long-term survival after lung transplantation. Chronic lung allograft dysfunction manifests as bronchiolitis obliterans syndrome or the recently described restrictive allograft syndrome. Although numerous risk factors have been identified so far, the physiopathological mechanisms of CLAD remain poorly understood. We investigate here the immune mechanisms involved in the development of CLAD after lung transplantation. We explore the innate or adaptive immune reactions induced by the allograft itself or by the environment and how they lead to allograft dysfunction. Because current literature suggests bronchiolitis obliterans syndrome and restrictive allograft syndrome as 2 distinct entities, we focus on the specific factors behind one or the other syndromes. Chronic lung allograft dysfunction is a multifactorial disease that remains irreversible and unpredictable so far. We thus finally discuss the potential of systems-biology approach to predict its occurrence and to better understand its underlying mechanisms. Royer et al review the immune mechanisms involved in the development chronic lung allograft dysfunction (CLAD), which manifests as bronchiolitis obliterans syndrome (BOS) or restrictive allograft syndrome (RAS), concluding that CLAD is a multifactorial disease that remains irreversible and unpredictable.
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Royer et al. (2016) conducted a review in Chronic lung allograft dysfunction (CLAD). Immune mechanisms was evaluated. Chronic lung allograft dysfunction is a multifactorial disease driven by innate and adaptive immune reactions that remains irreversible and unpredictable.
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