scholarly journals Primary ciliary dyskinesia: a major player in a bigger game

Breathe ◽  
2020 ◽  
Vol 16 (2) ◽  
pp. 200047
Author(s):  
Reena Bhatt ◽  
Claire Hogg

Primary ciliary dyskinesia (PCD) is an inherited disorder of clinical and genetic heterogeneity resulting from mutations in genes involved in the transport, assembly and function of motile cilia. The resulting impairment in mucociliary clearance means patients suffer from chronic progressive lung disease, bronchiectasis, rhinosinusitis and middle ear disease. Subfertility is common to both male and female patients. Situs abnormalities occur in around half of patients, with a subgroup suffering more complex situs arrangements where congenital heart defects or other organ abnormalities frequently coexist. Variations from the classical PCD phenotype are increasingly recognised where overlapping features across a range of motile and nonmotile ciliopathies are redefining our approach to both diagnosis and management of these complex conditions. PCD offers an ideal opportunity for direct visualisation of ciliary function and structure, following nasal brush biopsy, allowing opportunities for researchers to directly interrogate the downstream impact of loss of function mutations. In turn, this has led to rapid advances in the development of new diagnostic tests. These advances mean that PCD is an excellent disease model for understanding the genetic and mechanistic causes of the clinical phenotype for all respiratory ciliopathies. Furthermore, the overlapping role of motile ciliary defects in a wider set of complex and syndromic disorders related to loss of function mutations in primary, nonmotile cilia has been recognised. As we better understand the role of ciliary defects in a broad spectrum of diseases, we should aim to map out a framework through which we can identify, diagnose and treat all respiratory ciliopathies.Key pointsPrimary ciliary dyskinesia is just one of a group of conditions where a heterogeneous array of genetic mutations affect the assembly or structure of motile cilia.Overlapping phenotypes between motile and nonmotile ciliopathies are redefining the diagnostic and therapeutic approach to encompass all ciliopathy patients with a respiratory phenotype.An extended diagnostic algorithm may be required to capture the majority of cases with a respiratory ciliopathy, including patients with syndromic ciliopathies.The terminology around disorders of motile cilia is becoming more descriptive to better reflect the heterogeneity and underlying disease mechanisms across the spectrum of respiratory ciliopathies.Educational aimsTo summarise the existing knowledge base around the disease mechanisms for respiratory ciliopathies, including primary ciliary dyskinesia (PCD).To explore and understand the reasons for changing terminology around respiratory ciliopathies.To emphasise key messages around the diagnosis and treatment of all ciliopathies.Diagnosing PCD is complex and time consuming, and there is no single stand-alone test that can confirm or exclude a diagnosis in all cases.

2020 ◽  
Vol 106 (2) ◽  
pp. 153-169 ◽  
Author(s):  
Lucie Thomas ◽  
Khaled Bouhouche ◽  
Marjorie Whitfield ◽  
Guillaume Thouvenin ◽  
Andre Coste ◽  
...  

2015 ◽  
Vol 7 ◽  
Author(s):  
Kavita Praveen ◽  
Erica E. Davis ◽  
Nicholas Katsanis

Breathe ◽  
2017 ◽  
Vol 13 (3) ◽  
pp. 166-178 ◽  
Author(s):  
Claudia E. Kuehni ◽  
Jane S. Lucas

Key pointsPrimary ciliary dyskinesia (PCD) is a genetically and clinically heterogeneous disease characterised by abnormal motile ciliary function.There is no “gold standard” diagnostic test for PCD.The European Respiratory Society (ERS) Task Force Guidelines for diagnosing PCD recommend that patients should be referred for diagnostic testing if they have several of the following features: persistent wet cough; situs anomalies; congenital cardiac defects; persistent rhinitis; chronic middle ear disease with or without hearing loss; or a history, in term infants, of neonatal upper and lower respiratory symptoms or neonatal intensive care admission.The ERS Task Force recommends that patients should be investigated in a specialist PCD centre with access to a range of complementary tests: nasal nitric oxide, high-speed video microscopy analysis and transmission electron microscopy. Additional tests including immunofluorescence labelling of ciliary proteins and genetic testing may also help determine the diagnosis.Educational aimsThis article is intended for primary and secondary care physicians interested in primary ciliary dyskinesia (PCD), i.e. those who identify patients for testing, and those involved in diagnosing and managing PCD patients. It aims: to inform readers about the new European Respiratory Society Task Force Guidelines for diagnosing patients with PCDto enable primary and secondary care physicians to: identify patients who need diagnostic testing; understand the diagnostic tests that their patients will undergo, the results of the tests and their limitations; and ensure that appropriate care is subsequently delivered.


Circulation ◽  
2007 ◽  
Vol 116 (suppl_16) ◽  
Author(s):  
Serena Y Tan ◽  
Linda Leatherbury ◽  
Julie Rosenthal ◽  
Xiao-Qing Zhao ◽  
Cecilia W Lo

Specification of left-right asymmetry is essential for formation of the four chamber heart and separate systemic and pulmonary circulation. Previous studies suggest monocilia at the embryonic node is required for left-right patterning. This patterning is perturbed in primary ciliary dyskinesia (PCD) where situs defects and bronchiectasis are observed, often due to ciliary dysfunction arising from dynein mutations. Most PCD patients exhibit situs solitus or situs inversus totalis, but heterotaxy with complex congenital heart disease (CHD) appears to be rare, reported as 6%. We recovered a mouse mutation in dynein Mdnah5 that disrupts ciliary function. Homozygote mutants exhibit situs phenotypes consistent with PCD in humans. To assess the frequency of CHD associated with PCD, we harvested16 litters of embryos. All wildtype and heterozygous offspring (89) showed normal body situs. Of the 21 (19%) homozygous mutants obtained, 6 had situs solitus, 7 situs inversus and 8 heterotaxy, with heterotaxy being any situs deviation in the cardiac, pulmonary or visceral anatomy. Of the heterotaxic embryos, 3 had levo and 5 dextrocardia. Histology and 3D reconstruction showed 7 of the heterotaxy embryos had complex CHD, which included atrial isomerism, superior-inferior ventricles (Figure ), malposition of the great arteries, AV cushion defects, and azygous continuation of the inferior vena cava. These results show a much higher frequency of heterotaxy and complex CHD than previously reported for PCD (38% vs. 6%), suggesting PCD patients should be screened for CHD. The high incidence of CHD associated with PCD indicates ciliary function may have other roles in cardiovascular patterning.


Cilia ◽  
2015 ◽  
Vol 4 (Suppl 1) ◽  
pp. P30
Author(s):  
A Onoufriadis ◽  
R Hjeij ◽  
CM Watson ◽  
CE Slagle ◽  
NT Klena ◽  
...  

2019 ◽  
Vol 11 (3) ◽  
pp. 839-847
Author(s):  
Hyun-Il Gil ◽  
Taebum Lee ◽  
Byeong-Ho Jeong ◽  
Hyun Lee ◽  
Junsu Choe ◽  
...  

2013 ◽  
Vol 93 (3) ◽  
pp. 561-570 ◽  
Author(s):  
Esther Kott ◽  
Marie Legendre ◽  
Bruno Copin ◽  
Jean-François Papon ◽  
Florence Dastot-Le Moal ◽  
...  

1999 ◽  
Vol 65 (6) ◽  
pp. 1508-1519 ◽  
Author(s):  
Gaëlle Pennarun ◽  
Estelle Escudier ◽  
Catherine Chapelin ◽  
Anne-Marie Bridoux ◽  
Valère Cacheux ◽  
...  

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