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P Fireman

Publications and source records attributed to P Fireman.

At least 19 recordsLinked to original sources

Otitis media and eustachian tube dysfunction: connection to allergic rhinitis.

Otitis media and otitis media with effusion are among the most common childhood illnesses and contribute a great deal to health care costs. The cause of otitis media is multifactorial. Eustachian tube dysfunction, bacterial or viral infection of the middle ear, and nasal inflammation resulting from allergic rhinitis or upper respiratory infection are acknowledged contributing factors. Data from epidemiology studies indicate that 25% to 40% of upper respiratory infections in children younger than 3 years are accompanied by an episode of otitis media, 40% to 50% of children older than 3 years with chronic otitis media have confirmed allergic rhinitis. Studies of the pathogenesis of otitis media have identified interactions among infection, allergic reactions, and eustachian tube dysfunction. Nasal inflammation due to allergen challenge results in classic signs and symptoms of allergic rhinitis and eustachian tube dysfunction. Eustachian tube dysfunction leads to increased negative pressure in the middle ear and improper ventilation. Both viral upper respiratory infection and nasal allergic reaction provoke nasal inflammation, eustachian tube dysfunction, and enhanced nasal protein transudation and secretion, which is likely to be sustained and modulated by inflammatory mediators and cytokines. In a study of experimental infection with influenza A virus, histamine release increased from peripheral blood basophils of patients with allergic rhinitis. These data support an interaction between viral infection and nasal allergy in enhancing certain pathophysiologic responses. Viral upper respiratory infections may promote secondary bacterial infections by altering bacterial adherence, modulating host immune and inflammatory responses, and impairing eustachian tube function. In acute otitis media, bacteria are cultured front approximately 70% of middle ear effusions with Streptococcus pneumoniae being the most common organism. Initial management of otitis media consists of appropriate antimicrobial therapy. In the presence of allergic rhinitis, antiallergic therapies may be used to augment symptom resolution and therapeutic response. Surgical insertion of tympanostomy or ventilation tubes to promote drainage of unresolved effusions has become common. Further delineation of the pathogenesis of otitis media and otitis media with effusion will guide appropriate medical management and may decrease the need and frequency of surgical procedures.

Bacterial Infections

Sinusitis: bench to bedside. Current findings, future directions.

Sinusitis, an inflammatory disease of the sinus, is one of the most commonly reported diseases in the United States, affecting an estimated 14% of the population. The prevalence of sinusitis is rising. Between 1990 and 1992, persons with sinusitis reported approximately 73 million restricted activity days-an increase from the 50 million restricted activity days reported between 1986 and 1988. Because critical questions remain unanswered about its cause, pathophysiology, and optimal treatment, sinusitis continues to generate significant health care costs and affects the quality of life of a large segment of the U.S. population. To identify critical directions for research on sinus disease, the American Academy of Allergy, Asthma and Immunology and the American Academy of Otolaryngology-Head and Neck Surgery Foundation, Inc., convened a meeting in January 1996 in collaboration with the National Institutes of Allergy and Infectious Disease. This document summarizes the proceedings of that meeting and presents what is intended to be the background for future investigation of the many unanswered questions related to sinusitis.

Acute Disease

Sinusitis: bench to bedside. Current findings, future directions.

Sinusitis, an inflammatory disease of the sinus, is one of the most commonly reported diseases in the United States, affecting an estimated 14% of the population. The prevalence of sinusitis is rising. Between 1990 and 1992, persons with sinusitis reported approximately 73 million restricted activity days--an increase from the 50 million restricted activity days reported between 1986 and 1988. Because critical questions remain unanswered about its cause, pathophysiology, and optimal treatment, sinusitis continues to generate significant health care costs and affects the quality of life of a large segment of the U.S. population. To identify critical directions for research on sinus disease, the American Academy of Allergy, Asthma and Immunology and the American Academy of Otolaryngology-Head and Neck Surgery Foundation, Inc., convened a meeting in January 1996 in collaboration with the National Institutes of Allergy and Infectious Disease. This document summarizes the proceedings of that meeting and presents what is intended to be the background for future investigation of the many unanswered questions related to sinusitis.

Acute Disease

Suppression of in vivo cell-mediated immunity during experimental influenza A virus infection of adults.

A variety of recent evidence documents that otitis media is a frequent complication of upper respiratory tract viral infections. This relationship has been attributed to the interaction of a number of virus-provoked host responses, including eustachian tube dysfunction, changes in nasopharyngeal bacterial flora and suppressed immune function. The present study examined the effect of experimental influenza A virus infection on immune function as assessed by delayed skin test reactivity to candida, tetanus, and diphtheria/tetanus antigens in healthy adults with (n = 12) and without (n = 15) allergic rhinitis. All subjects became infected with the challenge virus as evidenced by viral shedding into nasal secretions and/or a four-fold rise in convalescent serum antibody titers compared to baseline. Intradermal skin tests were placed at baseline and 2, 4, 17, and 24 days after intranasal influenza A inoculation, the reactions were imaged and recorded 48 h after placement, and response areas were calculated by computerized digitization. The average combined areas for the three antigens (+/- S.T.D.) on each of the 5 study days were 1.4 +/- 1.4, 0.7 +/- 0.7, 0.6 +/- 0.6, 1.4 +/- 1.4, and 1.2 +/- 1.2 cm2, respectively. The responses to candida, but not tetanus and diphtheria/tetanus, returned to baseline levels by day 17. Repeated measures ANOVA documented significant effects of study day and antigen, but not allergy status. These results show that experimental influenza A infection suppressed delayed hypersensitivity skin tests in both allergic and non-allergic subjects, and suggest that alterations in immune function may contribute to otitis media.

Adolescent

Effect of influenza A virus infection on natural and adaptive cellular immunity.

Influenza A virus (FLU) is an important pathogen in humans. Although many features of the antiviral immune response have been elucidated in murine and human models of disease, little is known about the role of NK cells, which provide natural, innate immunity. The effects of experimental intranasal FLU (H1N1) inoculation on NK cells and other immune parameters were studied in 18 healthy, adult volunteers during the acute and convalescent phases of infection. Peripheral blood mononuclear cells (PBMNC) were assayed at baseline and on Postinoculation Days 1, 3, 4, 6, 7, 23, and 44. FLU infection and pathophysiologic upper airway responses were documented in all subjects, and there was no mortality. During both the acute (Days 1-3) and the convalescent (Days 23 and 44) stages of the FLU infection, significant increases in NK activity and decreases in the number of activated NK cells were observed. Reductions in the absolute number of T lymphocytes and in PBMNC proliferation to FLU virus antigen and mitogen were also observed. The current investigation extended those findings to include reductions in the number of CD4+ and CD8+ T lymphocytes and increases in the number of activated T lymphocytes. These results document that FLU infection was accompanied by enhancement of natural immunity and, as expected, suppression of most of the other measured parameters of cellular immunity. The normal response to FLU infection in humans may involve sequential modulation of the different components of the cellular immune system.

Adult

Lower airway responses to influenza A virus in healthy allergic and nonallergic subjects.

Acute asthma is considered a complication of respiratory viral infections. This investigation assessed the effects of influenza A virus infection on both the patency and responsiveness of the lower airways. Subjects with allergic rhinitis (AR; n = 21) and without AR (non-AR; n = 25) were intranasally inoculated with influenza A virus and monitored for 8 d in a cloistered environment for changes in symptoms, signs, and airway physiology (pulmonary function, bronchial methacholine provocation). All subjects were infected after inoculation. Significant increases in nasal symptoms and secretion weights were observed, with peak effects on Days 3 and 4. Cough was a relatively minor symptom, and none of the subjects developed wheezing. Likewise, there were no significant changes in the measured functions of the lower airways. No effects on allergy status were observed. Under these experimental conditions, influenza A virus infection did not produce detectable alterations in lower airway function in health AR and non-AR subjects.

Adult

Lower airway responses to rhinovirus 39 in healthy allergic and nonallergic subjects.

Acute asthma is considered to be a complication of respiratory viral infections. This investigation assessed the effects of rhinovirus 39 (RV-39) infection both on the patency and responsiveness of the lower airways. Subjects with allergic rhinitis (AR; n = 50) and without AR (non-AR; n = 46) were intranasally inoculated with RV-39, and monitored for 8 days in an enclosed environment for changes in symptoms, signs, and airway physiology (pulmonary function, bronchial methacholine provocation). All subjects were infected postinoculation. Significant increases in nasal symptoms and secretion weights were observed, with peak effects on days 2-3. Cough was a relatively minor symptom and none of the subjects developed wheezing. Likewise, there were no significant changes in the measured functions of the lower airways. No allergy status effects were observed. Under these experimental conditions, rhinovirus 39 infection did not produce detectable alterations in lower airway function in healthy subjects with and without allergic rhinitis.

Adult

Anaphylaxis.

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Anaphylaxis

Pattern of nasal secretions during experimental influenza virus infection.

To define the pattern of secretion production during influenza virus infection, 28 adult subjects were inoculated with influenza-A virus (H1N1) and cloistered for a period of 8 days. On each day, symptoms associated with virus infection were scored, nasal secretions were collected and nasal lavages were performed. Recovered lavage fluids were submitted for virus culture and assayed for proteins, histamine, and bradykinin. Twenty-one subjects were infected with influenza-A virus and had significant increases in daily secretion weights and symptom scores extending from day 2 to 7, post-inoculation. Plasma-derived proteins in the nasal lavage fluids showed an early increase to peak at day 4 and then decreased. Glandular proteins showed a later increase to peak at day 5. Bradykinin but not histamine was significantly elevated and tracked the changes in the glandular proteins. In contrast, a shallow increase in symptoms confined to day 2 post-inoculation, but no increase in daily secretion weights was documented in the seven uninfected subjects. There, an increase in plasma proteins was observed on days 1 and 2, but no change in glandular proteins was obvious. These results support a biphasic secretory response during influenza-virus infection with transudation dominating the early period and glandular secretions contributing later.

Adult

Cytokines, immunoglobulins, and bacterial pathogens in middle ear effusions.

OBJECTIVE: To elucidate the role of cytokines, immunoglobulins, and bacterial pathogens in the middle ear effusions (MEEs) of children with otitis media (OM). DESIGN: Paired MEEs and serum samples collected from consecutive patients were assayed for immunoglobulins. Middle ear effusions were cultured for bacterial pathogens and assayed for interleukin-1 beta, interleukin-6, tumor necrosis factor alpha, and interferon gamma. The medical charts of the patients were retrospectively reviewed to define the history of OM. SUBJECTS: Seventy-five patients with a history of recurrent acute OM, persistent OM with effusion, or both. Exclusion criteria included the presence of a major coexisting condition, or an unclear or atypical history of OM. SETTING: A private practice at a tertiary care children's hospital. INTERVENTIONS: At the time of tympanostomy tube placement, with the patient under general anesthesia, one MEE and a serum sample were collected. RESULTS: Interleukin-1 beta was detected in 58% (44/75) MEEs; interleukin-6, 83% (60/72); tumor necrosis factor alpha, 37% (28/75) [corrected]; and interferon gamma, 61% (45/74). Concentrations of interleukin-1 beta, interleukin-6 and tumor necrosis factor alpha in MEEs were highly correlated with each other (P < .01 for each association) suggesting increased local production and the expected effects of cytokines stimulating their own production during OM. High concentrations of tumor necrosis factor alpha in MEEs were also associated with a history of multiple placements of tympanostomy tubes (r = .63). CONCLUSIONS: These data suggest a regulatory role for cytokines in inflammation during OM, and suggest that high concentrations of tumor necrosis factor alpha in MEEs may be a marker for OM chronicity.

Adolescent

Product characteristics and pharmacokinetics of intranasal ipratropium bromide.

The in vivo absorption potential of ipratropium bromide nasal spray was evaluated in studies involving healthy volunteers (0.03%, 0.06%, and 0.12% dosage strengths) and patients with perennial rhinitis (0.03% and 0.06%) and the common cold (0.06%). The dose used was two sprays per nostril, corresponding to a total dose of 84 micrograms, 168 micrograms, and 336 micrograms for the three dosage strengths. These studies indicate that 10% or less of active drug is absorbed systemically after nasal administration based on the amount of unchanged drug excreted in urine in a 24-hour interval. In most instances, the plasma drug concentrations were undetectable. In none of these studies did plasma ipratropium concentrations reach a level where systemic anticholinergic effects are known to occur.

Absorption

State and trait negative affect as predictors of objective and subjective symptoms of respiratory viral infections.

State and trait negative affect (NA) were measured in healthy people immediately before an illness was induced through exposure to a respiratory virus. State NA, disease-specific health complaints (e.g., runny nose, congestion, and sneezing), and an associated objective marker of disease severity (mucus secretion weights) were assessed daily during the illness. Baseline trait and state NA were both associated with increased numbers of subsequent complaints. Although greater numbers of complaints among people high in state NA were explicable in terms of greater disease severity, the association of trait NA and symptoms was independent of objective disease. The trait NA complaint association was also independent of state NA and hence not attributable to trait-elicited state affect. Greater trait NA was associated with biases in complaining during but not before illness. This suggested failure to discriminate between symptoms rather than increased sensitivity or hypochondriacal response.

Adolescent

Influenza A virus--induced acute otitis media.

To better understand the significance of viral upper respiratory tract infections in the pathogenesis of acute otitis media (OM), 27 adults underwent intranasal inoculation with influenza A virus. Monitoring consisted of antibody titer determination, tympanometry, and otoscopy. Microbiologic analysis consisted of cultures and polymerase chain reaction (PCR)-based detection for influenza A virus, Streptococcus pneumoniae, Haemophilus influenzae, and Moraxella catarrhalis. All subjects became infected with the challenge virus. By day 4, 16 (59%) developed middle ear pressures of -100 mm H2O or below and 4 (25%) of them developed OM. One subject (4%) developed purulent OM requiring myringotomy for pain relief. Middle ear effusion cultures were negative. PCR analysis of that subject's middle ear effusion and nasal washes were positive for influenza A virus and S. pneumoniae. These findings support a causal role for viral upper respiratory tract infections in the pathogenesis of OM, possibly mediated by middle ear underpressures and viral and bacterial middle ear infection.

Acute Disease

Effect of rhinovirus 39 (RV-39) infection on immune and inflammatory parameters in allergic and non-allergic subjects.

The economic impact and medical complication rate of the common cold are well documented, but many of the physiological, inflammatory, and immune responses to common cold viruses have only recently been investigated. The purpose of this study was to compare selected systemic immune and inflammatory responses to experimental rhinovirus (RV)-39 challenge in seronegative allergic rhinitis and non-allergic rhinitis subjects. Peripheral blood was obtained before (baseline), during (acute), and 23 days after (convalescent) RV-39 intranasal challenge and assayed for leucocyte histamine release, serum immunoglobulins, allergen-specific IgE antibodies, plasma histamine, and platelet aggregation. All subjects were infected, as manifested by viral shedding in nasal secretions or seroconversion. RV-39 infection induced significant acute increases in serum IgE, leucocyte histamine release, and platelet aggregation, but caused no changes in serum IgG, serum IgA, serum IgM, and plasma histamine. The first change was confined to the allergic rhinitis subjects. There was no evidence that the acute rise in total serum IgE was due to an elevation of a pre-existing, pollen-specific serum IgE antibody. The results show that intranasal challenge with RV-39 induced changes in systemic immune and inflammatory parameters with a unique response pattern in allergic rhinitis subjects.

Adolescent

Effect of experimental influenza A virus infection on isolation of Streptococcus pneumoniae and other aerobic bacteria from the oropharynges of allergic and nonallergic adult subjects.

Intranasal challenge with both influenza A virus and Streptococcus pneumoniae promotes otitis media with S. pneumoniae in chinchillas. We investigated whether influenza A virus infection promotes oropharyngeal colonization with S. pneumoniae and other middle ear pathogens by selectively inhibiting commensal bacteria. On study day 0, 12 allergic and 15 nonallergic adult subjects were intranasally inoculated with influenza A/Kawasaki (H1N1) virus. Every subject was infected with the virus as demonstrated by nasal shedding or seroconversion. Average upper respiratory symptom scores and nasal secretion weights from the entire subject group were elevated between days 2 and 6 (acute phase) and were not significantly different between allergic and nonallergic subjects. S. pneumoniae was not isolated from any subject prior to the virus challenge but was isolated in heavy density from 4 (15%) subjects on day 6 (P = 0.055). Staphylococcus aureus was isolated more frequently from the nonallergic subjects than from the allergic subjects on days 2 (80 versus 25%, respectively) 4, (67 versus 17%, respectively), and 6 (73 versus 25%, respectively) (P < 0.05). The isolation rates of other middle ear pathogens were not significantly different before virus challenge and during the acute and resolution phases (days 27 to 30) of the experimental infection for the entire subject group or either the allergic or nonallergic subgroup. Densities and isolation rates of commensal bacteria from the entire subject group were similar throughout the observational period. These results suggest that the virus infection promoted S. pneumoniae colonization of the oropharynx and that nonallergic persons may be more vulnerable to colonization with S. aureus than allergic persons. The altered colonization rates were not attributed to inhibition of commensal bacteria.

Acute Disease

Reproducibility of the effects of intranasal ragweed challenges in allergic subjects.

BACKGROUND: Intranasal allergen challenges have been used to study the pathogenesis of disease expression, to evaluate the efficacy of therapies and to make diagnosis of allergic status. Few data, however, are available regarding the reproducibility of the responses to such provocative challenges. OBJECTIVE: The purpose of this study was to evaluate the reproducibility of selected responses of allergic subjects to intranasal pollen challenge. METHODS: Eighteen adults with ragweed allergy completed three dose-response challenge sessions at a minimum interval of 1 week. Sessions were single blinded and randomized to include two intranasal ragweed challenges (doses 10, 100, and 1000 PNU) and one placebo challenge conducted out of the ragweed season. Additionally, 12 of these subjects completed a third ragweed challenge session conducted during the ragweed season. Following administration of each dose, symptoms were scored, sneezes counted, and nasal patency measured by active posterior rhinomanometry. Total nasal secretion weight for each session was measured. RESULTS: For all measures, average dose response curves were identical for the two extra-seasonal ragweed challenges and these were significantly different from those of the placebo challenge session. Intra-individual responses to the two ragweed challenges were highly correlated between sneeze count and secretion weight, and were moderately correlated for objective and subjective measures of rhinorrhea and congestion. No significant increases in these responses were observed for the intra-seasonal ragweed challenge session. CONCLUSIONS: These results document a reproducible symptomatic and physiologic response to intranasal ragweed challenge.

Adult