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Biomedical subjects

A Rutman

Publications and source records attributed to A Rutman.

At least 19 recordsLinked to original sources

Recovery of the ciliated epithelium following acute bronchiolitis in infancy.

BACKGROUND: Little is known about the longitudinal changes in the ciliated respiratory epithelium of infants following viral bronchiolitis. A study was undertaken to investigate the time required for the ciliated epithelium to return to normal following bronchiolitis in infants treated with inhaled steroids or placebo. METHODS: Thirty one previously healthy term infants were studied as part of a clinical trial to determine the effect of 12 weeks of treatment with inhaled fluticasone (FP) or placebo via a spacer device (17 FP, 14 placebo). Nineteen healthy children aged 0-6 years previously studied in our department were used as controls. Nasal biopsy specimens were taken from infants with bronchiolitis and ciliary beat frequency (CBF) was measured before treatment and repeated 3, 6, 12, and 24 weeks later. The epithelial ultrastructure was examined by transmission electron microscopy and a normal errors mixed model based on normal controls was used to examine the time for cilia to return to normal in bronchiolitic infants. RESULTS: The mean CBF of infants with bronchiolitis (in Hz) at weeks 0, 3, 6, 12, and 24 were 0.5 (n = 4), 10.9 (n = 4), 12.0 (n = 9), 11.9 (n = 8), and 12.1 (n = 7) in the placebo group and 10.6 (n = 6), 11.4 (n = 9), 8.8 (n = 8), 10.9 (n = 4), and 13.2 (n = 7) in the FP group. The time for the epithelial ultrastructure to normalise was as follows: epithelial integrity score (13.1 weeks), % ciliated cells with loss of cilia (14.0 weeks), and % epithelial cells with abnormalities in projection (16.7 weeks) or mitochondria (15.9 weeks). Inhaled steroids had no significant effects on CBF or epithelial ultrastructure. CONCLUSION: Ciliary loss and epithelial abnormalities persist on average for 13-17 weeks following acute bronchiolitis in infancy.

Acute Disease↗

Haemophilus parainfluenzae infection of respiratory mucosa.

The pathogenicity of Haemophilus parainfluenzae (Hpi) in the respiratory tract is unclear, in contrast to the accepted pathogenicity of its close relative non-typable H. influenzae. We have investigated the interaction of two Hpi isolates with the mucosa of adenoid and bronchial tissue organ cultures. The adherence of bacteria to the mucosa of organ cultures, the effect of broth culture filtrates on human nasal epithelium, and interleukin (IL)-8 production by A549 cell cultures was investigated. Hpi 4846 adhered infrequently in clusters of pleomorphic cocco-bacilli to areas of epithelial damage, mucus and unciliated cells in adenoid organ culture experiments at 24 h, but not bronchial mucosa. Hpi 3698 was seen in only one adenoid and no bronchial organ cultures at 24 h. In separate experiments, Hpi 3698 was cleared more rapidly from the centre of the adenoid organ culture and was not cultured at 24 h. Although not adhering to the mucosa at 24 h, Hpi 3698, but not Hpi 4846, caused an increase in the amount of epithelial damage in both types of organ culture. Broth culture filtrates of both strains caused immediate slowing of ciliary beat frequency that progressed, and disrupted epithelial integrity. Dialysed culture filtrates of both strains stimulated IL-8 production by A549 cells, with the culture filtrate of Hpi 3698 being most potent. We conclude that two strains of Hpi varied in their adherence to adenoid tissue, and neither adhered to bronchial tissue. These results lead us to speculate that Hpi is only likely to be a pathogen in the lower respiratory tract when impaired airway defences delay bacterial clearance.

Bronchi↗

Functional analysis of cilia and ciliated epithelial ultrastructure in healthy children and young adults.

BACKGROUND: There are very few data on normal ciliary beat frequency, beat pattern, and ultrastructure in healthy children and adults. A study was undertaken to define ciliary structure, beat frequency and beat pattern in a healthy paediatric and young adult population. METHODS: Ciliated epithelial samples were obtained from 76 children and adult volunteers aged 6 months to 43 years by brushing the inferior nasal turbinate. Beating cilia were recorded using a digital high speed video camera which allowed analysis of ciliary beat pattern and beat frequency. Tissue was fixed for transmission electron microscopy. RESULTS: The mean ciliary beat frequency for the paediatric population (12.8 Hz (95% CI 12.3 to 13.3)) was higher than for the adult group (11.5 Hz (95% CI 10.3 to 12.7 Hz), p<0.01, t test); 10% (range 6-24%) of ciliated edges were found to have areas of dyskinetically beating cilia. All samples had evidence of mild epithelial damage. This reflected changes found in all measurements used for assessment of epithelial damage. Ciliary ultrastructural defects were found in less than 5% of cilia. CONCLUSION: Normal age related reference ranges have been established for ciliary structure and beat frequency. In a healthy population localised epithelial damage may be present causing areas of ciliary dyskinesia.

Adolescent↗

The effects of coronavirus on human nasal ciliated respiratory epithelium.

Human coronavirus (HCoV) accounts for 15-30% of common colds, but only one case report has described the effect of a coronavirus infection, that was asymptomatic, on human respiratory epithelium. The authors examined the effects of infection with HCoV on ciliary structure and function in healthy volunteers infected by intranasal inoculation with HCoV 229E. A further four volunteers were sham infected with ultraviolet-inactivated virus. Immediately before inoculation (day 0) and 3 days later (day 3), ciliated epithelium was obtained by brushing the inferior nasal turbinate. Ciliary beat frequency was determined and beat pattern analysed for evidence of dyskinesia (0=normal, 3=severely dyskinetic) using digital high-speed video photography. Ciliary ultrastructure was examined by transmission electron microscopy. Symptom diaries were kept for the duration of the study. All subjects inoculated with HCoV, including the three who did not develop symptoms of an upper respiratory tract infection, had disruption of their respiratory epithelium on day 3. Although there was no difference in the mean ciliary beat frequency between day 0 (11.3 Hz (95% confidence interval (CI): 8.6-14.0) and day 3 (9.4 Hz (95% CI 7.2-11.6)), there was a significant increase (p<0.05) in the ciliary dyskinesia score between day 0 (0.2 (95% CI 0-0.5)) and day 3 (1.1 (95% CI 0.5-1.7). In sham-infected subjects, no differences in epithelial integrity, or ciliary structure and function were found between day 0 and day 3. Inoculation of healthy volunteers with human coronavirus caused disruption of the ciliated epithelium and ciliary dyskinesia. This is likely to impair mucociliary clearance. Damage to the respiratory epithelium, due to human coronavirus infection, may occur without overt clinical symptoms.

Adult↗

Relative roles of pneumolysin and hydrogen peroxide from Streptococcus pneumoniae in inhibition of ependymal ciliary beat frequency.

Ciliated ependymal cells line the ventricular system of the brain and the cerebral aqueducts. This study characterizes the relative roles of pneumolysin and hydrogen peroxide (H(2)O(2)) in pneumococcal meningitis, using the in vitro ependymal ciliary beat frequency (CBF) as an indicator of toxicity. We have developed an ex vivo model to examine the ependymal surface of the brain slices cut from the fourth ventricle. The ependymal cells had cilia beating at a frequency of between 38 and 44Hz. D39 (wild-type) and PLN-A (pneumolysin-negative) pneumococci at 10(8) CFU/ml both caused ciliary slowing. Catalase protected against PLN-A-induced ciliary slowing but afforded little protection from D39. Lysed PLN-A did not reduce CBF, whereas lysed D39 caused rapid ciliary stasis. There was no effect of catalase, penicillin, or catalase plus penicillin on the CBF. H(2)O(2) at a concentration as low as 100 microM caused ciliary stasis, and this effect was abolished by coincubation with catalase. An additive inhibition of CBF was demonstrated using a combination of both toxins. A significant inhibition of CBF at between 30 and 120 min was demonstrated with both toxins compared with either H(2)O(2) (10 microM) or pneumolysin (1 HU/ml) alone. D39 released equivalent levels of H(2)O(2) to those released by PLN-A, and these concentrations were sufficient to cause ciliary stasis. The brain slices did not produce H(2)O(2), and in the presence of 10(8) CFU of D39 or PLN-A per ml there was no detectable bacterially induced increase of H(2)O(2) release from the brain slice. Coincubation with catalase converted the H(2)O(2) produced by the pneumococci to H(2)O. Penicillin-induced lysis of bacteria dramatically reduced H(2)O(2) production. The hemolytic activity released from D39 was sufficient to cause rapid ciliary stasis, and there was no detectable release of hemolytic activity from the pneumolysin-negative PLN-A. These data demonstrate that D39 bacteria released pneumolysin, which caused rapid ciliary stasis. D39 also released H(2)O(2), which contributed to the toxicity, but this was masked by the more severe effects of pneumolysin. H(2)O(2) released from intact PLN-A was sufficient to cause rapid ciliary stasis, and catalase protected against H(2)O(2)-induced cell toxicity, indicating a role for H(2)O(2) in the response. There is also a slight additive effect of pneumolysin and H(2)O(2) on ependymal toxicity; however, the precise mechanism of action and the role of these toxins in pathogenesis remain unclear.

Animals↗

Effect of pneumolysin on rat brain ciliary function: comparison of brain slices with cultured ependymal cells.

This study compares two models for examining ependymal ciliary function: rat brain slices cut from the fourth ventricle and primary ependymal cells in culture. The cilia from both preparations were very reproducible; each preparation had cilia beating at a constant frequency of between 38 and 44 Hz. With the brain slices, ciliary stasis occurred after 5 d in culture. However, ependymal cells had fully functional cilia for up to 48 d in culture. The pneumococcal toxin, pneumolysin, caused a dose-dependent inhibition of cilia beat frequency within 15 min in both models. There were no significant differences in the mean log 50% inhibitory concentration (pIC50) slice = 0.65 +/- 0.05, equivalent to 4.4 hemolytic units (HU)/mL; cells = 0.57 +/- 0.14, equivalent to 3.7 HU/mL. There were also no significant differences in the mean Hill slope factors for the curves (slice = 1.4 +/- 0.05; cells = 1.6 +/- 0.4). These data demonstrate that both models can be used to examine the acute (15-min) effects of pneumolysin on cilia beat frequency. The main advantage of the primary ependymal culture model is that considerably more cultured ependymal cells (approximately 70%) are available, compared with the number of ependymal cells on the brain slices (approximately 2%), thus reducing the number of animals used. A pure ependymal culture was not achieved (approximately 30% of the cells were not ciliated). The increased survival time of the ependymal cells compared with the brain slices make cultured ependymal cells more useful for examining long-term ciliary function, whereas brain slices may be more useful for examining the interactions between ependymal and other nearby cells.

Animals↗

Pseudomonas aeruginosa pyocyanin and 1-hydroxyphenazine inhibit fungal growth.

AIM: To examine strains of Pseudomonas aeruginosa for specific antifungal factors. METHODS: Two clinical strains of P aeruginosa with strong in vitro inhibition (by cross streak assay) of Candida albicans and Aspergillus fumigatus were examined. Both strains were isolated from sputum--one from a patient with cystic fibrosis and one from a patient with bronchiectasis. Bacterial extracts were fractionated by high performance liquid chromatography and examined by ultraviolet absorbance and mass spectroscopy. Antifungal activity against C albicans and A fumigatus was determined in a well plate assay. RESULTS: Pyocyanin was the major antifungal agent of P aeruginosa; 1-hydroxy-phenazine also possessed activity. Pyocyanin MICs for C albicans and A fumigatus were > 64 micrograms/ml. These phenazines were active against nine other yeast species pathogenic for man. Preliminary experiments also suggested possible inhibition of yeast mycelial transformation in C albicans by pyocyanin. CONCLUSIONS: There may be a role for pyocyanin and 1-hydroxyphenazine in the prevention of pulmonary candidiasis in patients colonised by P aeruginosa.

Aspergillus fumigatus↗

Respiratory and brain ependymal ciliary function.

The aims of this study were to compare beat frequencies of tracheal and ependymal cilia and the beat frequencies of ependymal cilia from infant and adult rats. The length of respiratory and ependymal cilia of infant and adult rats was also compared. We have developed an ex vivo model that allows ependymal and respiratory ciliary beat frequency to be measured with a high-speed video system. The beat frequencies of cilia, incubated at 37 degrees C, were measured after an incubation period of 30 min. Ependymal cilia beat at a similar frequency in 10- to 15-d-old rats (mean 38.8 Hz: 95% confidence intervals 37.1-40.6) as in adult animals (mean 40.7 Hz: 95% confidence intervals 38.5-42.9). However, respiratory cilia from adult animals beat (mean 20.9 Hz: 95% confidence intervals 14-27) at a significantly (p = 0.003) lower frequency than ependymal cilia. Ependymal cilia (mean length +/- SD: 8.2 +/- 0.3 microm) measured by scanning electron microscopy were significantly (p = 0.001) longer than respiratory cilia (5.5 +/- 0.6 microm) from the trachea of 9- to 15-d-old rats. Cilia did not grow longer between the time the rats were 9-15 d old and adulthood. Adult respiratory and ependymal ciliary length (mean +/- SD) were 5.6 +/- 0.5 microm and 8.1 +/- 0.2 microm, respectively. In summary, ependymal cilia beat at approximately twice the rate of respiratory cilia and are significantly longer.

Aging↗

Effect of dirithromycin on Haemophilus influenzae infection of the respiratory mucosa.

Macrolides have properties other than their antibiotic action which may benefit patients with airway infections. We have investigated the effect of dirithromycin (0.125 to 8.0 microg/ml) on the interaction of Haemophilus influenzae with respiratory mucosa in vitro using human nasal epithelium, adenoid tissue, and bovine trachea. Dirithromycin did not affect the ciliary beat frequency of the nasal epithelium or the transport of mucus on bovine trachea, but dirithromycin (1 microg/ml) did reduce the slowing of the ciliary beat frequency and the damage to the nasal epithelium caused by H. influenzae broth culture filtrate. Amoxicillin (2 microg/ml) did not reduce the effects of the H. influenzae broth culture filtrate. H. influenzae infection of the organ cultures for 24 h caused mucosal damage and the loss of ciliated cells. Bacteria adhered to damaged epithelium and to a lesser extent to mucus and unciliated cells. Incubation of H. influenzae with dirithromycin at sub-MICs (0.125 and 0.5 microg/ml) prior to infection of the organ cultures did not reduce the mucosal damage caused by bacterial infection. By contrast, incubation of adenoid tissue with dirithromycin (0.125 to 1.0 microg/ml) for 4 h prior to assembling the organ culture reduced the mucosal damage caused by subsequent H. influenzae infection by as much as 50%. The number of bacteria adherent to the mucosa was reduced, although the tissue that had been incubated with dirithromycin (0.125 and 0.5 microg/ml) did not inhibit bacterial growth. This was achieved by a reduction in the amount of damaged epithelium to which H. influenzae adhered and a reduction in the density of bacteria adhering to mucus. We conclude that dirithromycin at concentrations achievable in vivo markedly reduces the mucosal damage caused by H. influenzae infection due to a cytoprotective effect.

Amoxicillin↗

Effect of salmeterol on Pseudomonas aeruginosa infection of respiratory mucosa.

We have studied the effect of salmeterol on both P. aeruginosa interactions with the mucosa of nasal turbinate organ cultures and on pyocyanin-induced (20 microg/ml) and elastase-induced (100 microg/ml) damage to nasal epithelial cells. Organ cultures were exposed to salmeterol either by preincubation with 4 x 10(-7) M salmeterol for 30 min or by pipetting 20 microl of 4 x 10(-7) M salmeterol onto the organ culture surface immediately prior to bacterial inoculation. Infected organ cultures (8 h) had significantly (p < or = 0.01) increased epithelial damage, and P. aeruginosa was predominantly associated with damaged epithelium and mucus. Salmeterol significantly (p < or = 0.02) reduced epithelial damage caused by infection and the total number of adherent bacteria (p < or = 0.05), but bacterial distribution on the mucosa was unchanged. Nasal epithelial cells incubated with pyocyanin (20 microg/ml) or elastase (100 microg/ml) for 3 h had significantly (p < or = 0.05) increased cytoplasmic blebbing and mitochondrial damage versus control values. Elastase also significantly (p < or = 0.05) increased cell projection and reduced the level of ciliation. Cells preincubated with salmeterol (2 x 10(-7) M) showed a significant reduction in some features of cell damage caused by both toxins, which was inhibited by the beta2-adrenoceptor antagonist propranolol. Our results indicate that salmeterol reduces P. aeruginosa-induced damage to both organ culture and nasal epithelium.

Adrenergic beta-Agonists↗

Ciliary disorientation alone as a cause of primary ciliary dyskinesia syndrome.

Ciliary disorientation has been proposed as a variant of primary ciliary dyskinesia (PCD); cilia have normal ultrastructure and normal or near normal ciliary beat frequency (CBF) but lack efficacy because their beat direction is disorientated. We have identified 11 patients, including two siblings, with the clinical features of PCD, who satisfy these criteria. A chest radiograph, pulmonary function tests, nasal mucociliary clearance (NMCC), CBF, ciliary ultrastructure, and orientation were assessed in each subject. One patient had biopsies taken from the nose and both main bronchi. Eight patients had a computed tomography scan (CT) of the thorax; the clinical features were compatible with PCD. Cilia ultrastructure was normal and NMCC was absent in all cases. Mean CBF was normal (11.6-14.9 Hz) in five cases and slow in six (range 8.4-9.7 Hz). Ciliary beat pattern was stiff in seven cases, six of which had slow CBF. The cilia were disorientated when measured by both the central pair (range, 21.8 degrees - 26.4 degrees) and basal feet (range, 20.6 degrees - 28.9 degrees) compared with 16 normal controls (range, 11.0 degrees - 15.5 degrees and 12.3 degrees - 17.6 degrees, respectively). Two siblings had the clinical features of PCD and ciliary disorientation alone on repeated biopsies taken 10 yr apart. Orientation of cilia from the nose and bronchus was similar. Two cases had unchanged ciliary disorientation after 3 mo of treatment with antibiotics and topical corticosteroids. We concluded that ciliary disorientation alone can lead to the clinical syndrome of PCD.

Administration, Topical↗

Cloning and primary sequence of the rpoH gene from Pseudomonas aeruginosa.

A DNA fragment from Pseudomonas aeruginosa containing the rpoH gene encoding the heat-shock sigma factor sigma 32 has been cloned and sequenced. The gene is expressed in Escherichia coli and complements an rpoH- strain. An open reading frame encoding 284 amino acids shows 61% identity and 78% similarity to the RpoH protein of Escherichia coli.

Amino Acid Sequence↗

The effects of low concentrations of antibiotics on epithelial damage caused by non-typable Haemophilus influenzae and bacterial morphology.

Sterile culture filtrates from non-typable Haemophilus influenzae (NTHi) grown in medium containing no antibiotics or 0.25 MIC of amoxycillin, ciprofloxacin or loracarbef were examined for their effect on the ciliary beat frequency (CBF) and structure of human respiratory epithelium. CBF slowing was significantly (P < 0.05) less with 0.25 MIC of all three antibiotics. The epithelium was significantly (P < 0.05) less disrupted with ciprofloxacin. The morphology of NTHi infecting human adenoid organ cultures after 24 h with or without 0.25 MIC of the same antibiotics was measured by scanning electron microscopy. Only ciprofloxacin caused a significant (P < 0.05) change in morphology.

Anti-Bacterial Agents↗

Interaction of pneumolysin-sufficient and -deficient isogenic variants of Streptococcus pneumoniae with human respiratory mucosa.

Streptococcus pneumoniae is the most common cause of community-acquired pneumonia, and pneumolysin, a hemolytic toxin, is thought to be an important virulence factor. We have studied the interaction of a pneumolysin-sufficient type II S. pneumoniae strain (PL+) and an otherwise identical pneumolysin-deficient derivative (PL-) with human respiratory mucosa in an organ culture with an air interface for up to 48 h. Ciliary beat frequency (CBF) was measured by a photometric technique, and adherence to and invasion of the epithelium were assessed by scanning and transmission electron microscopy. PL+ and PL- caused a progressive fall in CBF compared with the control which became significant (P < 0.01) at 24 h for PL+ and at 48 h for PL-. At 24 h, there was a significant increase in the percentage of the mucosa of the organ culture that was damaged for PL+ compared with the control (P < 0.01) and PL- (P < 0.02). At 48 h, there was a significant increase in mucosal damage for both PL+ (P < 0.005) and PL- (P < 0.05) compared with the control. At 24 and 48 h, PL+ and PL- adhered predominantly to mucus and damaged cells. PL+ infection alone caused separation of tight junctions between epithelial cells, and at 48 h PL+ cells were adherent to the separated edges of otherwise healthy unciliated cells. PL+ and PL- both caused damage to the epithelial cell ultrastructure. S. pneumoniae infection caused patchy damage to the respiratory mucosa and a lowered CBF. These changes were more severe and occurred earlier with the pneumolysin-sufficient variant.

Adenoids↗

Ciliary disorientation in patients with chronic upper respiratory tract inflammation.

Random ciliary orientation was recently described as a possible variant of primary ciliary dyskinesia (PCD). The cilia have normal ultrastructure and nearly normal ciliary beat frequency (CBF) but lack efficacy because the beat direction is disoriented. However, delayed mucociliary clearance (MCC), transitory changes in ultrastructure, and slowed CBF can all occur in the presence of inflammation. This study investigated groups of patients with upper respiratory tract inflammation caused by infection to assess whether ciliary disorientation was present and its relation to MCC. The study population consisted of 10 healthy nonatopic nonsmoking volunteers, 15 patients with idiopathic bronchiectasis and chronic mucopurulent sinusitis, 12 patients with cystic fibrosis, and two patients with the clinical features of PCD but normal CBF and ciliary ulstrastructure. Ciliary disorientation was significantly (p < 0.05) increased in the three patient groups compared with the volunteers, being greatest in the two patients with the clinical features of PCD and in bronchiectasis patients with P. aeruginosa, and was positively correlated (r = 0.9) with MCC but not with CBF. Treatment of one patient with antibiotics and topical corticosteroids for a prolonged period resulted in ciliary disorientation returning to normal. Ciliary disorientation may therefore occur secondary to inflammation caused by infection, and the study suggests that ciliary disorientation rather than ultrastructural abnormalities or slow CBF results in delayed MCC.

Biopsy↗

The ciliary transportability of sputum is slow on the mucus-depleted bovine trachea.

Mucus retention in the lungs is a feature of several chest diseases. It is unclear to what extent suboptimal mucus transportability is responsible for the poor clearance of lung secretions. We described a new model, the mucus-depleted bovine trachea, for measurement of the ciliary transportability of respiratory mucus. Mucus depletion was demonstrated microscopically and functionally, and it was accomplished by simple physical means without impairing ciliary action. Control mucus from the tracheas of humans and animals was transported rapidly on this system. However, sputum from 54 patients with bronchiectasis was transported slowly, at a mean of 15% of the rate of control mucus. There was no correlation between sputum transportability and either purulence or the presence of Pseudomonas aeruginosa. This work suggests that there is a serious defect in the ciliary transportability of sputum that is unrelated to the presence of infection. The model should allow in vitro assessment of agents designed to aid mucociliary clearance.

Animals↗

Interaction of fimbriated and nonfimbriated strains of unencapsulated Haemophilus influenzae with human respiratory tract mucus in vitro.

Adherence to mucus may influence bacterial colonization of the respiratory tract. Clinical isolates of nontypable Haemophilus influenzae (NTHi) from the respiratory tract are often fimbriated. We wondered whether fimbriated strains have a different adherence from related nonfimbriated strains. A microtitre plate assay has been developed to study adherence of nontypable H. influenzae to mucus. Wells were coated by incubation either with sol phase of sterile mucoid secretions or with purified preparations of mucins. Two laboratory pairs of fimbriated (F+) and nonfimbriated (F-) nontypable H. influenzae, and six fresh clinical isolates of fimbriated nontypable H. influenzae each with nonfimbriated partners derived by serial passage on agar, were cultured to mid-log phase, washed, and then added to the wells. They were then incubated at 37 degrees C for 30 min before washing to remove unbound bacteria. Adherent bacteria were desorbed by agitation with 0.5% Tween 80 and a viable count performed. The two fimbriated laboratory strains (n = 12 and n = 17), and 5 of the 6 fimbriated clinical isolates were more adherent to sol phase than their respective nonfimbriated partners. Two nonfimbriated clinical isolates were more adherent to plastic than their fimbriated partners. A fimbriated laboratory strain was more adherent than its nonfimbriated partner both to a purified preparation of high molecular mass mucin and to the glycopeptide fraction of the same. We conclude that fimbriated strains of nontypable H. influenzae have increased adherence to sol phase of mucus and purified human respiratory tract mucin. The interactions of fimbriae with mucus are likely to be complex, and may involve both nonspecific and specific interactions.

Bacterial Adhesion↗

Fertility in men with primary ciliary dyskinesia presenting with respiratory infection.

BACKGROUND: Primary ciliary dyskinesia is characterised by chronic rhinosinusitis, chronic bronchial sepsis (usually with bronchiectasis), dextrocardia in approximately 50% of cases, and male infertility. The latter, described in patients attending infertility clinics, results from immotile but viable spermatozoa. Experience in a respiratory clinic suggests that infertility in men is not invariable. METHODS: The seminal fluid of 12 men with primary ciliary dyskinesia, six with dextrocardia, who presented consecutively with upper and lower respiratory tract sepsis was examined. Nasal ciliary beating was dyskinetic or absent in all cases, and nasal ciliary ultrastructure was abnormal in those 11 patients examined. RESULTS: Viable but immotile spermatozoa with abnormal tail ultrastructure were found in the ejaculate of only two patients. Two other patients had apparently fathered children; seminology in both these cases showed a normal spermatozoa count, one with normal spermatozoal motility and normal ultrastructure, the other with moderately reduced spermatozoal motility and abnormal ultrastructure (dynein arm deficiency on the peripheral microtubule doublets). A further two patients had normal spermatozoa counts, normal spermatozoa tail ultrastructure, and normal or only moderately reduced motility of spermatozoa. The spermatozoa of one patient were normally motile but there was severe oligozoospermia, and five patients were azoospermic. CONCLUSIONS: Not all men with primary ciliary dyskinesia have immotile spermatozoa. Seminal analysis is recommended in men with primary ciliary dyskinesia so that accurate counselling about reproductive capability may be given.

Adolescent↗