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1.
P R Health Sci J ; 43(3): 119-124, 2024 Sep.
Article in English | MEDLINE | ID: mdl-39269762

ABSTRACT

OBJECTIVE: Primary ciliary dyskinesia (PCD) is a respiratory disorder that impairs mucociliary clearance, leading to decreased lung function. Conventional chest physiotherapy (CCP) is the traditional airway clearance technique (ACT) and is considered a standard treatment for PCD patients. This systematic review investigated whether device supported ACTs are better alternatives for improving lung function and/or quality of life in PCD, compared with CCP. METHODS: The OVID Medline, PubMed, CINAHL, and Cochrane databases were searched. The Preferred Reporting Items for Systematic Reviews and Meta-Analyses guidelines were followed, and the Grading of Recommendations, Assessment, Development, and Evaluation approach was used to aggregate the data. This systematic review has been registered on the International Prospective Register of Systematic Reviews website. RESULTS: Of the 389 citations that resulted from our literature search, 2 randomized crossover trials that included a total of 54 patients were analyzed. The certainty of the aggregated study evidence was very low. No difference was identified between device-supported ACTs and CCP in terms of forced vital capacity and forced expiratory volume in 1 second in PCD patients aged 6 to 20 years. CONCLUSION: Device-supported ACTs could be considered alternative treatment options to replace CCP. High quality research is required to confirm this result.


Subject(s)
Kartagener Syndrome , Quality of Life , Humans , Child , Kartagener Syndrome/therapy , Kartagener Syndrome/physiopathology , Respiratory Therapy/methods , Adolescent , Young Adult , Randomized Controlled Trials as Topic , Forced Expiratory Volume , Vital Capacity , Mucociliary Clearance/physiology
2.
Vestn Otorinolaringol ; 89(4): 26-29, 2024.
Article in Russian | MEDLINE | ID: mdl-39171873

ABSTRACT

The article presents the results of a study that included 127 children aged 8 to 17 years with a diagnosis of turbinate hypertrophy. The children are divided into three groups depending on the chosen vasotomy method. The methods of vasotomy were determined, after which there was a faster restoration of mucociliary clearance of the mucous membrane of the lower nasal concha.


Subject(s)
Hypertrophy , Mucociliary Clearance , Nasal Mucosa , Turbinates , Humans , Mucociliary Clearance/physiology , Turbinates/surgery , Child , Female , Male , Adolescent , Nasal Mucosa/surgery , Nasal Mucosa/physiopathology , Hypertrophy/physiopathology , Hypertrophy/surgery , Treatment Outcome , Nasal Obstruction/surgery , Nasal Obstruction/physiopathology , Nasal Obstruction/diagnosis , Nasal Obstruction/etiology
3.
Biol Pharm Bull ; 47(7): 1307-1313, 2024.
Article in English | MEDLINE | ID: mdl-39019610

ABSTRACT

Airway ciliary cells are components of the mucociliary transport system and play an important role in sweeping out small particles, such as bacteria and viruses, towards the oropharynx by the action of beating cilia. Several lines of evidence have shown that the ciliary beat is under the regulation of the purinergic system; however, the subtype of receptor and the intracellular signaling pathways involved in the activation of ciliary movement remain to be elucidated. In addition, although the activity of ciliary movement comprises two parameters, the ciliary beat frequency (CBF) and ciliary bend angle (CBA), few reports have analyzed CBA. In this study, we examined the effects of ATP and other purinergic ligands on both CBF and CBA and demonstrated that the purinergic signaling requirements for CBF and CBA are different, with CBF mediated by P2Y1 receptor activation and CBA mediated by the P2X4 receptor.


Subject(s)
Adenosine Triphosphate , Bronchi , Cilia , Animals , Cilia/metabolism , Cilia/physiology , Adenosine Triphosphate/metabolism , Mice , Bronchi/cytology , Mucociliary Clearance/physiology , Male , Receptors, Purinergic P2X4/metabolism , Receptors, Purinergic P2Y1/metabolism , Receptors, Purinergic/metabolism , Signal Transduction
5.
Thorax ; 79(7): 597-598, 2024 Jun 14.
Article in English | MEDLINE | ID: mdl-38604666
6.
Thorax ; 79(7): 607-614, 2024 Jun 14.
Article in English | MEDLINE | ID: mdl-38378235

ABSTRACT

BACKGROUND: Mucociliary clearance (MCC) is critical to lung health and is impaired in many diseases. The path of MCC may have an important impact on clearance but has never been rigorously studied. The objective of this study is to assess the three-dimensional path of human tracheal MCC in disease and health. METHODS: Tracheal MCC was imaged in 12 ex-smokers, 3 non-smokers (1 opportunistically imaged during acute influenza and repeated after recovery) and 5 individuals with primary ciliary dyskinesia (PCD). Radiolabelled macroaggregated albumin droplets were injected into the trachea via the cricothyroid membrane. Droplet movement was tracked via scintigraphy, the path of movement mapped and helical and axial models of tracheal MCC were compared. MEASUREMENTS AND MAIN RESULTS: In 5/5 participants with PCD and 1 healthy participant with acute influenza, radiolabelled albumin coated the trachea and did not move. In all others (15/15), mucus coalesced into globules. Globule movement was negligible in 3 ex-smokers, but in all others (12/15) ascended the trachea in a helical path. Median cephalad tracheal MCC was 2.7 mm/min ex-smokers vs 8.4 mm/min non-smokers (p=0.02) and correlated strongly to helical angle (r=0.92 (p=0.00002); median 18o ex-smokers, 47o non-smokers (p=0.036)), but not to actual speed on helical path (r=0.26 (p=0.46); median 13.6 mm/min ex-smokers vs 13.9 mm/min non-smokers (p=1.0)). CONCLUSION: For the first time, we show that human tracheal MCC is helical, and impairment in ex-smokers is often caused by flattened helical transit, not slower movement. Our methodology provides a simple method to map tracheal MCC and speed in vivo.


Subject(s)
Mucociliary Clearance , Trachea , Humans , Mucociliary Clearance/physiology , Trachea/diagnostic imaging , Male , Female , Adult , Middle Aged , Mucus/metabolism , Ciliary Motility Disorders/diagnostic imaging , Smoking/adverse effects , Aged , Young Adult
7.
Mil Med ; 189(7-8): e1537-e1543, 2024 Jul 03.
Article in English | MEDLINE | ID: mdl-38287786

ABSTRACT

INTRODUCTION: Respiratory diseases such as chronic rhinosinusitis and asthma are observed at increased rates in active duty and veteran military members, and they are especially prevalent in individuals who have been deployed in Southwest Asia during Operation Iraqi Freedom and Operation Enduring Freedom. Particulate matter, specifically the fine-grain desert sand found in the Middle East, may be a key source of this pathology because of deleterious effects on mucociliary clearance. MATERIALS AND METHODS: With IRB approval, human sinonasal tissue was grown at an air-liquid interface and cultures were exposed to different types and sizes of particulate matter, including sand from Afghanistan and Kuwait. Ciliary dynamic responses to mechanical stimulation and ATP application were assessed following particulate exposure. RESULTS: Particle size of the commercial sand was substantially larger than that of the sand of Afghan or Kuwaiti origin. Following exposure to particulate matter, normal dynamic ciliary responses to mechanical stimulation and ATP application were significantly decreased (P < .01), with corresponding decreases in ATP-induced calcium flux (P < .05). These changes were partially reversible with apical washing after a 16-h period of exposure. After 36 h of exposure to Middle Eastern sand, ciliary responses to purinergic stimulation were completely abolished. CONCLUSIONS: There is a neutralization of the dynamic ciliary response following chronic particulate matter exposure, similar to ciliary pathologies observed in patients with chronic rhinosinusitis. Aerosolized particulate matter endured by military personnel in the Southwest Asia may cause dysfunctional mucociliary clearance; these data help to explain the increased prevalence of respiratory pathology in individuals who are or have been deployed in this region.


Subject(s)
Military Personnel , Particulate Matter , Veterans , Humans , Particulate Matter/analysis , Particulate Matter/adverse effects , Veterans/statistics & numerical data , Military Personnel/statistics & numerical data , Cilia/drug effects , Cilia/physiology , Mucociliary Clearance/drug effects , Mucociliary Clearance/physiology , Kuwait/epidemiology , Afghan Campaign 2001- , Sand , Sinusitis/physiopathology , Sinusitis/epidemiology , Particle Size
8.
Am J Physiol Lung Cell Mol Physiol ; 325(6): L765-L775, 2023 12 01.
Article in English | MEDLINE | ID: mdl-37847709

ABSTRACT

Airway mucociliary clearance (MCC) is required for host defense and is often diminished in chronic lung diseases. Effective clearance depends upon coordinated actions of the airway epithelium and a mobile mucus layer. Dysregulation of the primary secreted airway mucin proteins, MUC5B and MUC5AC, is associated with a reduction in the rate of MCC; however, how other secreted proteins impact the integrity of the mucus layer and MCC remains unclear. We previously identified the gene Bpifb1/Lplunc1 as a regulator of airway MUC5B protein levels using genetic approaches. Here, we show that BPIFB1 is required for effective MCC in vivo using Bpifb1 knockout (KO) mice. Reduced MCC in Bpifb1 KO mice occurred in the absence of defects in epithelial ion transport or reduced ciliary beat frequency. Loss of BPIFB1 in vivo and in vitro altered biophysical and biochemical properties of mucus that have been previously linked to impaired MCC. Finally, we detected colocalization of BPIFB1 and MUC5B in secretory granules in mice and the protein mesh of secreted mucus in human airway epithelia cultures. Collectively, our findings demonstrate that BPIFB1 is an important component of the mucociliary apparatus in mice and a key component of the mucus protein network.NEW & NOTEWORTHY BPIFB1, also known as LPLUNC1, was found to regulate mucociliary clearance (MCC), a key aspect of host defense in the airway. Loss of this protein was also associated with altered biophysical and biochemical properties of mucus that have been previously linked to impaired MCC.


Subject(s)
Lung Diseases , Mucociliary Clearance , Mice , Humans , Animals , Mucociliary Clearance/physiology , Respiratory System/metabolism , Mucus/metabolism , Lung Diseases/metabolism , Mice, Knockout
9.
Respir Med ; 218: 107372, 2023 11.
Article in English | MEDLINE | ID: mdl-37516275

ABSTRACT

Bronchial asthma is a heterogeneous respiratory condition characterized by chronic airway inflammation, airway hyperresponsiveness and airway structural changes (known as remodeling). The clinical symptoms can be evoked by (non)specific triggers, and their intensity varies over time. In the past, treatment was mainly focusing on symptoms' alleviation; in contrast modern treatment strategies target the underlying inflammation, even during asymptomatic periods. Components of airway remodeling include epithelial cell shedding and dysfunction, goblet cell hyperplasia, subepithelial matrix protein deposition, fibrosis, neoangiogenesis, airway smooth muscle cell hypertrophy and hyperplasia. Among the other important, and frequently forgotten aspects of airway remodeling, also loss of epithelial barrier integrity, immune defects in anti-infectious defence and mucociliary clearance (MCC) dysfunction should be pointed out. Mucociliary clearance represents one of the most important defence airway mechanisms. Several studies in asthmatics demonstrated various dysfunctions in MCC - e.g., ciliated cells displaying intracellular disorientation, abnormal cilia and cytoplasmic blebs. Moreover, excessive mucus production and persistent cough are one of the well-recognized features of severe asthma and are also associated with defects in MCC. Damaged airway epithelium and impaired function of the ciliary cells leads to MCC dysfunction resulting in higher susceptibility to infection and inflammation. Therefore, new strategies aimed on restoring the remodeling changes and MCC dysfunction could present a new therapeutic approach for the management of asthma and other chronic respiratory diseases.


Subject(s)
Airway Remodeling , Asthma , Humans , Mucociliary Clearance/physiology , Hyperplasia , Asthma/drug therapy , Inflammation
10.
Respir Med ; 213: 107260, 2023 07.
Article in English | MEDLINE | ID: mdl-37146737

ABSTRACT

BACKGROUND: MUC5 dysregulation is a hallmark of severe neutrophilic asthmatic patients. This study investigates the expression of MUC5AC and MUC5B at mRNA levels on asthma severity and airway wall thickness in severe neutrophilic asthmatic patients. METHOD: In this case-control clinical trial, twenty-five severe neutrophilic asthmatic patients and ten control subjects were enrolled. Subjects underwent ACT, pulmonary functions tests, and fractional exhaled nitric oxide (FENO). Also, induced sputum has been obtained to assess the expression of MUC5AC and MUC5B by the real-time PCR. In addition, the thickness of the airway wall was assessed by high-resolution computed tomography (HRCT), and bioinformatic analysis was implemented to approve the selection of the appropriate genes and for further investigations. RESULT: A significant difference was observed between the asthmatic and control in MUC5AC and MUC5B mRNA expression. Meanwhile, the expression of MUC5AC increased remarkably by asthma severity; also, it is associated with airway wall thickness (WT) (both P-value <0.05). The expression of MUC5B in asthmatic patients was lower than in control. There is no significant correlation between MUC5B mRNA level and WT and asthma severity. Notably, MUC5AC transcription level was correlated to sputum neutrophil percentage, while MUC5B transcription level had a positive correlation with sputum macrophages and a negative one with sputum neutrophils. CONCLUSION: In severe neutrophilic asthma, airway wall thickness increases with MUC5AC mRNA overexpression, which is probably related to asthma severity and the formation of mucus plugs. However, the expression of MUC5B was decreased, resulting in poor mucociliary clearance in the airways. TRIAL REGISTRATION: IR.IAU.MSHD.REC.1400.124.


Subject(s)
Asthma , Mucin 5AC , Mucin-5B , Humans , Asthma/complications , Lung/metabolism , Mucin 5AC/genetics , Mucin 5AC/metabolism , Mucin-5B/genetics , Mucin-5B/metabolism , Mucociliary Clearance/physiology , Respiratory Physiological Phenomena , Sputum/metabolism
11.
Adv Exp Med Biol ; 1413: 107-120, 2023.
Article in English | MEDLINE | ID: mdl-37195528

ABSTRACT

The large airways are a critical component of the respiratory tree serving both an immunoprotective role and a physiological role for ventilation. The physiological role of the large airways is to move a large amount of air to and from the gas exchange surfaces of the alveoli. This air becomes divided along the respiratory tree as it moves from the large airways to smaller airways, bronchioles, and alveoli. The large airways are incredibly important from an immunoprotective role as the large airways are an early line of defense against inhaled particles, bacteria, and viruses. The key immunoprotective feature of the large airways is mucus production and mucociliary clearance mechanism. Each of these key features of the lung is important from both a basic physiology perspective and an engineering perspective for regenerative medicine. In this chapter, we will cover the large airways from an engineering perspective to highlight existing models of the large airways as well as future directions for modeling and repair.


Subject(s)
Lung , Tissue Engineering , Lung/physiology , Respiratory Physiological Phenomena , Mucociliary Clearance/physiology , Pulmonary Alveoli
12.
J Chem Phys ; 158(9): 095103, 2023 Mar 07.
Article in English | MEDLINE | ID: mdl-36889954

ABSTRACT

Mucociliary clearance is the first defense mechanism of the respiratory tract against inhaled particles. This mechanism is based on the collective beating motion of cilia at the surface of epithelial cells. Impaired clearance, either caused by malfunctioning or absent cilia, or mucus defects, is a symptom of many respiratory diseases. Here, by exploiting the lattice Boltzmann particle dynamics technique, we develop a model to simulate the dynamics of multiciliated cells in a two-layer fluid. First, we tuned our model to reproduce the characteristic length- and time-scales of the cilia beating. We then check for the emergence of the metachronal wave as a consequence of hydrodynamic mediated correlations between beating cilia. Finally, we tune the viscosity of the top fluid layer to simulate the mucus flow upon cilia beating, and evaluate the pushing efficiency of a carpet of cilia. With this work, we build a realistic framework that can be used to explore several important physiological aspects of mucociliary clearance.


Subject(s)
Cilia , Mucociliary Clearance , Cilia/physiology , Mucociliary Clearance/physiology , Kinetics , Epithelial Cells , Mucus/physiology
13.
Eur Arch Otorhinolaryngol ; 280(5): 2359-2364, 2023 May.
Article in English | MEDLINE | ID: mdl-36854810

ABSTRACT

PURPOSE: Autosomal dominant polycystic kidney disease (ADPKD) is a renal disease with genetic transmisson. Mutations in the PKD1 and PKD2 genes, which encode integral membrane proteins of the cilia of primary renal tubule epithelial cells, are seen in ADPKD. The aim of this study was to evaluate the sinonasal epithelium, which is epithelium with cilia, by measuring the nasal mucociliary clearance time, and to investigate the effect of ADPKD on nasal mucociliary clearance. METHODS: The study included 34 patients, selected from patients followed up in the Nephrology Clinic, and 34 age and gender-matched control group subjects. The nasal mucociliary clearance time (NMCT) was measured with the saccharin test. RESULTS: The mean age of the study subjects was 47.15 ± 14.16 years in the patient group and 47.65 ± 13.85 years in the control group. The eGFR rate was determined as mean 72.06 ± 34.26 mL/min in the patient group and 99.79 ± 17.22 mL/min in the control group (p < 0.001). The NMCT was determined to be statistically significantly longer in the patient group (903.6 ± 487.8 s) than in the control group (580 ± 259 s) (p = 0.006). CONCLUSIONS: The study results showed that the NMCT was statistically significantly longer in patients with ADPKD compared to the control group, but in the linear regression analysis results, no correlation was determined between eGFR and NMCT.


Subject(s)
Mucociliary Clearance , Nose , Polycystic Kidney, Autosomal Dominant , Adult , Humans , Middle Aged , Mucociliary Clearance/physiology , Mutation , Polycystic Kidney, Autosomal Dominant/complications , Polycystic Kidney, Autosomal Dominant/genetics , Polycystic Kidney, Autosomal Dominant/physiopathology , Saccharin , TRPP Cation Channels/genetics , Membrane Proteins/genetics , Paranasal Sinuses/physiopathology , Nasal Mucosa/physiopathology , Nose/physiopathology
14.
Am J Physiol Lung Cell Mol Physiol ; 323(5): L536-L547, 2022 11 01.
Article in English | MEDLINE | ID: mdl-36098422

ABSTRACT

Airway dehydration causes mucus stasis and bacterial overgrowth in cystic fibrosis (CF), resulting in recurrent respiratory infections and exacerbations. Strategies to rehydrate airway mucus including inhibition of the epithelial sodium channel (ENaC) have the potential to improve mucosal defense by enhancing mucociliary clearance (MCC) and reducing the risk of progressive decline in lung function. In the current work, we evaluated the effects of AZD5634, an ENaC inhibitor that shows extended lung retention and safety profile as compared with previously evaluated candidate drugs, in healthy and CF preclinical model systems. We found that AZD5634 elicited a potent inhibition of amiloride-sensitive current in non-CF airway cells and airway cells derived from F508del-homozygous individuals with CF that effectively increased airway surface liquid volume and improved mucociliary transport (MCT) rate. AZD5634 also demonstrated efficacious inhibition of ENaC in sheep bronchial epithelial cells, translating to dose-dependent improvement of mucus clearance in healthy sheep in vivo. Conversely, nebulization of AZD5634 did not notably improve airway hydration or MCT in CF rats that exhibit an MCC defect, consistent with findings from a first single-dose evaluation of AZD5634 on MCC in people with CF. Overall, these findings suggest that CF animal models demonstrating impaired mucus clearance translatable to the human situation may help to successfully predict and promote the successful translation of ENaC-directed therapies to the clinic.


Subject(s)
Cystic Fibrosis , Epithelial Sodium Channels , Humans , Rats , Sheep , Animals , Epithelial Sodium Channel Blockers/pharmacology , Sodium Channel Blockers/pharmacology , Sodium Channel Blockers/therapeutic use , Amiloride/pharmacology , Mucociliary Clearance/physiology , Cystic Fibrosis Transmembrane Conductance Regulator , Cystic Fibrosis/drug therapy , Respiratory Mucosa
15.
Cells Tissues Organs ; 211(6): 736-753, 2022.
Article in English | MEDLINE | ID: mdl-33902038

ABSTRACT

Mucociliary epithelia are composed of multiciliated, secretory, and stem cells and line various organs in vertebrates such as the respiratory tract. By means of mucociliary clearance, those epithelia provide a first line of defense against inhaled particles and pathogens. Mucociliary clearance relies on the correct composition of cell types, that is, the proper balance of ciliated and secretory cells. A failure to generate and to maintain correct cell type composition and function results in impaired clearance and high risk to infections, such as in congenital diseases (e.g., ciliopathies) as well as in acquired diseases, including asthma, chronic obstructive pulmonary disease (COPD), and idiopathic pulmonary fibrosis (IPF). While it remains incompletely resolved how precisely cell types are specified and maintained in development and disease, many studies have revealed important mechanisms regarding the signaling control in mucociliary cell types in various species. Those studies not only provided insights into the signaling contribution to organ development and regeneration but also highlighted the remarkable plasticity of cell identity encountered in mucociliary maintenance, including frequent trans-differentiation events during homeostasis and specifically in disease. This review will summarize major findings and provide perspectives regarding the future of mucociliary research and the treatment of chronic airway diseases associated with tissue remodeling.


Subject(s)
Mucociliary Clearance , Signal Transduction , Animals , Epithelium/metabolism , Cell Differentiation , Mucociliary Clearance/physiology , Stem Cells , Cilia/metabolism
16.
IUBMB Life ; 74(1): 62-73, 2022 01.
Article in English | MEDLINE | ID: mdl-34289226

ABSTRACT

Airborne pollution has become a leading cause of global death in industrialized cities and the exposure to environmental pollutants has been demonstrated to have adverse effects on human health. Among the pollutants, particulate matter (PM) is one of the most toxic and although its exposure has been more commonly correlated with respiratory diseases, gastrointestinal (GI) complications have also been reported as a consequence to PM exposure. Due to its composition, PM is able to exert on intestinal mucosa both direct damaging effects, (by reaching it either via direct ingestion of contaminated food and water or indirect inhalation and consequent macrophagic mucociliary clearance) and indirect ones via generation of systemic inflammation. The relationship between respiratory and GI conditions is well described by the lung-gut axis and more recently, has become even clearer during coronavirus disease 2019 (COVID-19) pandemic, when respiratory symptoms were associated with gastrointestinal conditions. This review aims at pointing out the mechanisms and the models used to evaluate PM induced GI tract damage.


Subject(s)
COVID-19/etiology , Gastrointestinal Tract/injuries , Particulate Matter/toxicity , SARS-CoV-2 , Administration, Inhalation , Administration, Oral , COVID-19/physiopathology , COVID-19/prevention & control , Gastrointestinal Tract/physiopathology , Humans , Intestinal Mucosa/injuries , Intestinal Mucosa/physiopathology , Masks , Microplastics/toxicity , Models, Biological , Mucociliary Clearance/physiology , Nutrition Policy , Pandemics/prevention & control , Particulate Matter/administration & dosage , Respiratory System/injuries , Respiratory System/physiopathology
17.
Respir Res ; 22(1): 303, 2021 Nov 25.
Article in English | MEDLINE | ID: mdl-34823518

ABSTRACT

BACKGROUND: The mucociliary clearance system driven by beating cilia protects the airways from inhaled microbes and particles. Large particles are cleared by mucus bundles made in submucosal glands by parallel linear polymers of the MUC5B mucins. However, the structural organization and function of the mucus generated in surface goblet cells are poorly understood. METHODS: The origin and characteristics of different mucus structures were studied on live tissue explants from newborn wild-type (WT), cystic fibrosis transmembrane conductance regulator (CFTR) deficient (CF) piglets and weaned pig airways using video microscopy, Airyscan imaging and electron microscopy. Bronchoscopy was performed in juvenile pigs in vivo. RESULTS: We have identified a distinct mucus formation secreted from the surface goblet cells with a diameter less than two micrometer. This type of mucus was named mucus threads. With time mucus threads gathered into larger mucus assemblies, efficiently collecting particles. The previously observed Alcian blue stained mucus bundles were around 10 times thicker than the threads. Together the mucus bundles, mucus assemblies and mucus threads cleared the pig trachea from particles. CONCLUSIONS: These results demonstrate that normal airway mucus is more complex and has a more variable structural organization and function than was previously understood. These observations emphasize the importance of studying young objects to understand the function of a non-compromised lung.


Subject(s)
Goblet Cells/physiology , Mucociliary Clearance/physiology , Mucus/cytology , Trachea/physiology , Animals , Bronchoscopy , Goblet Cells/cytology , Microscopy, Video , Models, Animal , Swine
18.
Acta Otolaryngol ; 141(11): 989-993, 2021 Nov.
Article in English | MEDLINE | ID: mdl-34694199

ABSTRACT

BACKGROUND: The effect of Covid-19 infection on nasal mucociliary clearance (MCC) is unknown. AIMS/OBJECTIVES: The aim of this study is to investigate the relationship between Covid-19 and nasal MCC in terms of smoking, Covid-19 symptoms and treatment. METHODS: Thirty-six patients who were hospitalized in the pandemic ward due to Covid-19 and 36 volunteers (Covid-19 negative test result) who presented to the otolaryngology outpatient clinic with non-nasal symptoms were included in this study. The Saccharin test was performed in both groups to evaluate nasal MCC. RESULTS: The patients and control groups were not significantly different in terms of age and gender. The nasal MCC time was significantly higher in the patient group compared to the control group (19.18 ± 10.84 min and 13.78 ± 8.18 min, p = .003). CONCLUSIONS AND SIGNIFICANCE: In this study, we found that Covid-19 prolonged nasal MCC time regardless of age. We suggest that corticosteroids should be included in the treatment of Covid-19, both with its symptom reduction and its positive effect on MCC duration.


Subject(s)
COVID-19/physiopathology , Mucociliary Clearance/physiology , Nasal Mucosa/physiopathology , Smoking/physiopathology , Adrenal Cortex Hormones/pharmacology , Adrenal Cortex Hormones/therapeutic use , Adult , Amides/therapeutic use , Antiviral Agents/therapeutic use , COVID-19/complications , Case-Control Studies , Female , Humans , Hydroxychloroquine/adverse effects , Length of Stay , Male , Middle Aged , Mucociliary Clearance/drug effects , Pyrazines/therapeutic use , COVID-19 Drug Treatment
19.
Nat Commun ; 12(1): 4354, 2021 07 16.
Article in English | MEDLINE | ID: mdl-34272374

ABSTRACT

Understanding how SARS-CoV-2 spreads within the respiratory tract is important to define the parameters controlling the severity of COVID-19. Here we examine the functional and structural consequences of SARS-CoV-2 infection in a reconstructed human bronchial epithelium model. SARS-CoV-2 replication causes a transient decrease in epithelial barrier function and disruption of tight junctions, though viral particle crossing remains limited. Rather, SARS-CoV-2 replication leads to a rapid loss of the ciliary layer, characterized at the ultrastructural level by axoneme loss and misorientation of remaining basal bodies. Downregulation of the master regulator of ciliogenesis Foxj1 occurs prior to extensive cilia loss, implicating this transcription factor in the dedifferentiation of ciliated cells. Motile cilia function is compromised by SARS-CoV-2 infection, as measured in a mucociliary clearance assay. Epithelial defense mechanisms, including basal cell mobilization and interferon-lambda induction, ramp up only after the initiation of cilia damage. Analysis of SARS-CoV-2 infection in Syrian hamsters further demonstrates the loss of motile cilia in vivo. This study identifies cilia damage as a pathogenic mechanism that could facilitate SARS-CoV-2 spread to the deeper lung parenchyma.


Subject(s)
COVID-19/pathology , Cilia/ultrastructure , Mucociliary Clearance/physiology , SARS-CoV-2 , Animals , Axoneme , Basal Bodies , Cilia/metabolism , Cilia/pathology , Cricetinae , Cytokines , Epithelial Cells/pathology , Forkhead Transcription Factors/metabolism , Humans , Lung/pathology , Male , Mesocricetus , Respiratory Mucosa/metabolism , Respiratory Mucosa/pathology , Virus Replication
20.
Adv Respir Med ; 89(4): 353-358, 2021.
Article in English | MEDLINE | ID: mdl-34269400

ABSTRACT

INTRODUCTION: The aim of this study was to investigate the relationship between nasal mucociliary clearance time (NMCT), degree of smoking dependence, cumulative smoking burden and OSAS severity in smokers. MATERIAL AND METHODS: 123 patients (Group 1) with OSAS and 92 healthy controls (Group 2) were included in the study. Group 1 was divided into smokers (Group 1a) and non-smokers (Group 1b). In Group 1a, cumulative smoking burden and Fagerström nicotine dependence test (FNDT) were questioned. Saccharin test was applied to Groups 1 and 2. Student-t, Mann-Whitney-U, Anova, Kruskal-Wallis tests were used to compare the means. RESULTS: NMCT was higher in Group 1 than Group 2 (p = 0.005). The duration of NMCT was higher in Group 1A than Group 1B (p = 0.002). In Group 1a, NMCT values of mild and moderate OSAS patients were longer than in Group 1b (p = 0.02, p = 0.01, respectively). NMCT values of patients with mild dependence were shorter than those with moderate or severe dependence (p = 0.032, p < 0.001, respectively). CONCLUSION: Mucociliary clearance time was higher in smokers with OSAS than non-smokers. While OSAS has a negative effect on mucociliary clearance, smoking also exacerbates the condition.


Subject(s)
Mucociliary Clearance/physiology , Nasal Mucosa/physiopathology , Sleep Apnea, Obstructive/physiopathology , Smoking/physiopathology , Adult , Case-Control Studies , Female , Humans , Male , Middle Aged , Smokers
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