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Single-dose intrapulmonary pharmacokinetics of azithromycin, clarithromycin, ciprofloxacin, and cefuroxime in volunteer subjects.

The intrapulmonary pharmacokinetics of azithromycin, clarithromycin, ciprofloxacin, and cefuroxime were studied in 68 volunteers who received single, oral doses of azithromycin (0.5 g), clarithormycin (0.5 g), ciprofloxacin (0.5 g), or cefuroxime (0.5 g). In subgroups of four subjects each, the subjects underwent bronchoscopy and bronchoalveolar lavage at timed intervals following drug administration. Drug concentrations, including those of 14-hydroxyclarithromycin (14H), were determined in serum, bronchoalveolar lavage fluid, and alveolar cells (ACs) by high-pressure liquid chromatography. Concentrations in epithelial lining fluid (ELF) were calculated by the urea diffusion method. The maximum observed concentrations (mean +/- standard deviation) of azithromycin, clarithromycin, 14H, ciprofloxacin, and cefuroxime in serum were 0.13 +/- 0.07, 1.0 +/- 0.6, 0.60 +/- 0.41, 0.95 +/- 0.32, and 1.1 +/- 0.3 microgram/ml, respectively (all at 6 h). None of the antibiotics except clarithromycin (39.6 +/- 41.1 micrograms/ml) was detectable in ELF at the 6-h bronchoscopy. The movement into and persistence in cells was different for azithromycin and clarithromycin. In ACs azithromycin was not detectable at 6 h, reached its highest concentration at 120 h, and exhibited the greatest area under the curve (7,403 micrograms.hr ml-1). The peak concentration of clarithromycin (181 +/- 94.1 micrograms/ml) was greater and occurred earlier (6 h), but the area under the curve (2,006 micrograms.hr ml-1) was less than that observed for azithromycin. 14H was detectable in ACs at 6 h (40.3 +/- 5.2 micrograms/ml) and 12 h (32.8 +/- 57.2 micrograms/ml). The peak concentration of ciprofloxacin occurred at 6 h (4.3 +/- 5.2 micrograms/ml), and the area under the curve was 35.0 micrograms.hr ml-1. The data indicate that after the administration of a single dose, azithromycin, clarithromycin, and ciprofloxacin penetrated into ACs in therapeutic concentrations and that only clarithromycin was present in ELF. The correlation of these kinetic observations with clinical efficacy or toxicity was not investigated and is unclear, but the data provide a basis for further kinetic and clinical studies.

Administration, Oral↗

Intrapulmonary pharmacokinetics of telithromycin, a new ketolide, in healthy Japanese volunteers.

The concentrations of telithromycin, a new ketolide antimicrobial agent, in alveolar macrophages (AMs) and bronchoalveolar epithelial lining fluid (ELF) were determined in order to investigate the transfer of the drug into target tissue, relative to plasma, following multiple oral doses of telithromycin. Twenty-four healthy male Japanese volunteers were randomly allocated to four groups. Each subject was given 600 or 800 mg of telithromycin once daily for 5 days, followed by bronchoalveolar lavage (BAL) 2 or 8 h after the last dose (group A and B: 600 mg, 2 and 8 h BAL time point; group C and D: 800 mg, 2 and 8 h BAL time point). The mean concentrations of the drug in AMs and ELF were 34.54 and 4.92 mg/liter in group A, 50.97 and 2.26 mg/liter in group B, 25.47 and 4.24 mg/liter in group C, and 108.22 and 4.31 mg/liter in group D, respectively, which markedly exceeded concentrations in plasma. These results demonstrated good transfer of telithromycin into AMs and ELF, suggesting good efficacy against common respiratory pathogens, including intracellular pathogens and atypical microorganisms.

Adult↗

Steady-state plasma and intrapulmonary pharmacokinetics and pharmacodynamics of cethromycin.

The objective of this study was to determine the steady-state plasma and intrapulmonary pharmacokinetic parameters of orally administered cethromycin in healthy volunteers. The study design included administering 150 or 300 mg of cethromycin once daily to 25 or 35 healthy adult subjects, respectively, for a total of five doses. Standardized and timed bronchoalveolar lavage (BAL) was performed after the last dose. Blood was obtained for drug assay prior to the first and last dose, at multiple time points following the last dose, and at the time of BAL. Cethromycin was measured in plasma, BAL, and alveolar cell (AC) by using a combined high-performance liquid chromatography-mass spectrometric technique. Plasma, epithelial lining fluid (ELF), and AC pharmacokinetics were derived by noncompartmental methods. C(max)/90% minimum inhibitory concentration (MIC(90)) ratios, area under the concentration-time curve (AUC)/MIC(90) ratios, intrapulmonary drug exposure ratios, and percent time above MIC(90) during the dosing interval (%T > MIC(90)) were calculated for recently reported respiratory pathogens. The kinetics were nonlinear, i.e., not proportional to dose. In the 150-mg-dose group, the C(max) (mean +/- standard deviations), AUC(0-24), and half-life for plasma were 0.181 +/- 0.084 microg/ml, 0.902 +/- 0.469 microg. h/ml, and 4.85 +/- 1.10 h, respectively; for ELF the values were 0.9 +/- 0.2 microg/ml, 11.4 microg. h/ml, and 6.43 h, respectively; for AC the values were 12.7 +/- 6.4 microg/ml, 160.8 microg. h/ml, and 10.0 h, respectively. In the 300-mg-dose group, the C(max) (mean +/- standard deviations), AUC(0-24), and half-life for plasma were 0.500 +/- 0.168 microg/ml, 3.067 +/- 1.205 microg. h/ml, and 4.94 +/- 0.66 h, respectively; for ELF the values were 2.7 +/- 2.0 microg/ml, 24.15 microg. h/ml, and 5.26 h, respectively; for AC the values were 55.4 +/- 38.7 microg/ml, 636.2 microg. h/ml, and 11.6 h, respectively. We concluded that the C(max)/MIC(90) ratios, AUC/MIC(90) ratios, %T > MIC(90) values, and extended plasma and intrapulmonary half-lives provide a pharmacokinetic rationale for once-daily administration and are favorable for the treatment of cethromycin-susceptible pulmonary infections.

Adult↗

Binding of HMG-I(Y) imparts architectural specificity to a positioned nucleosome on the promoter of the human interleukin-2 receptor alpha gene.

Transcriptional induction of the interleukin-2 receptor alpha-chain (IL-2Ralpha) gene is a key event regulating T-cell-mediated immunity in mammals. In vivo, the T-cell-restricted protein Elf-1 and the general architectural transcription factor HMG-I(Y) cooperate in transcriptional regulation of the human IL-2Ralpha gene by binding to a specific positive regulatory region (PRRII) in its proximal promoter. Employing chromatin reconstitution analyses, we demonstrate that the binding sites for both HMG-I(Y) and Elf-1 in the PRRII element are incorporated into a strongly positioned nucleosome in vitro. A variety of analytical techniques was used to determine that a stable core particle is positioned over most of the PRRII element and that this nucleosome exhibits only a limited amount of lateral translational mobility. Regardless of its translational setting, the in vitro position of the nucleosome is such that DNA recognition sequences for both HMG-I(Y) and Elf-1 are located on the surface of the core particle. Restriction nuclease accessibility analyses indicate that a similarly positioned nucleosome also exists on the PRRII element in unstimulated lymphocytes when the IL-2Ralpha gene is silent and suggest that this core particle is remodeled following transcriptional activation of the gene in vivo. In vitro experiments employing the chemical cleavage reagent 1,10-phenanthroline copper (II) covalently attached to its C-terminal end demonstrate that HMG-I(Y) protein binds to the positioned PRRII nucleosome in a direction-specific manner, thus imparting a distinct architectural configuration to the core particle. Together, these findings suggest a role for the HMG-I(Y) protein in assisting the remodeling of a critically positioned nucleosome on the PRRII promoter element during IL-2Ralpha transcriptional activation in lymphocytes in vivo.

Base Sequence↗

Arc and resistance welding and tumours of the endocrine glands: a Swedish case-control study with focus on extremely low frequency magnetic fields.

BACKGROUND: Mechanisms for potential effects of extremely low frequency (ELF) magnetic fields on carcinogenesis have not been identified. A potential pathway could be an interaction with the endocrine system. AIMS: To analyse occupational exposure to ELF magnetic fields from welding, and tumours of the endocrine glands. METHODS: This case-control study was based on a cohort with an increased prevalence of high exposed individuals. A total of 174 incident cases of tumours of the endocrine glands, 1985-94, were identified and data were obtained from 140 (80%) of these cases; 1692 controls frequency matched on sex and age were selected, and information on 1306 (77%) individuals was obtained. A short questionnaire was sent to a work administrator at the workplaces of the cases and controls. The exposure assessment was based on questions about job tasks, exposure to different types of welding, and exposure to solvents. RESULTS: There was an overall increased risk for all tumours of the endocrine glands for individuals who had been welding sometime during the follow up. The increased risk was attributable to arc welding; for resistance welding there was no clear evidence of an association. We found an increased risk for the adrenal glands in relation to arc welding, and for the parathyroid glands in relation to both arc welding and resistance welding. An imprecise increase in risk was also noted for tumours of the pituitary gland for arc welding. No confounding effect was found for solvent exposure, and there was no sign of biological interaction. CONCLUSION: The increased risks of endocrine gland tumours related to welding might be explained by exposure to high levels of ELF magnetic fields.

Adrenal Gland Neoplasms↗

Extremely low frequency magnetic fields and fertility: a follow up study of couples planning first pregnancies. The Danish First Pregnancy Planner Study Team.

OBJECTIVES: To evaluate the impact of extremely low frequency (ELF) magnetic fields on markers of human fertility. METHODS: A follow up study of time to pregnancy, semen quality, and reproductive hormones was conducted among couples planning first pregnancies (36 males were welders and 21 were non-welders). The male and the female partner were monitored for exposure to ELF magnetic field by personal exposure meters. As summary measures of exposure the median value was calculated together with the 75 percentile value and the proportion of measurements exceeding 0.2 and 1.0 microT, respectively. Each summary measure was divided in three categories: low, medium, and high. RESULTS: Couples in which the man had a medium or a high proportion of measurements > 1.0 microT had a reduced probability of conception per menstrual cycle compared with the men with low exposure, but the result was only significant for the men with medium exposure. This finding was partly attributable to a high probability of conception per menstrual cycle among the men with low exposure compared with non-welders in the original cohort of 430 couples. Other summary measures were not related to probability of conception or other markers of fertility. A possible negative association was found between high probability of conception and female exposure measures based on the median, the 75 percentile, and the proportion of measurements > 0.2 microT, but no association was found with the proportion of measurements > 1.0 microT. CONCLUSIONS: The findings provide no consistent support for a hypothesis of a deleterious effect of low level ELF magnetic fields on markers of human fertility. However, due to the relatively small size of the studied population only large associations would be detected.

Adult↗

Cancer incidence and magnetic field exposure in industries using resistance welding in Sweden.

AIMS: To investigate cancer incidence in workers exposed to high levels of extremely low frequency magnetic fields (ELF-MF). METHODS: A cohort based on the engineering industry was established. Industries assumed to use resistance welding in production were chosen in order to increase the prevalence of high exposed subjects and to reduce the influence of confounding factors. All men and women employed in these branches during 1985-94 were selected, 537 692 men and 180 529 women. Occupation, based on census information from 1980, 1985, and 1990, was linked to a job exposure matrix on ELF-MF. Four exposure groups were used by stratifying on mean workday ELF-MF exposure, using the lowest exposure group as reference. Cancer incidence was obtained by linkage to the Swedish Cancer Registry. RESULTS: Men in the very high exposure group showed an increased incidence of tumours of the kidney, pituitary gland, and biliary passages and liver; for these cancer sites an exposure-response relation was indicated. Women in the very high exposure group showed an increased incidence of astrocytoma I-IV, with a clear exposure-response pattern. An association was suggested in the high exposure group only, for cancer of the corpus uteri and multiple myeloma. Decreased risks in the very high exposure group among men were found for cancer of the colon and connective tissue/muscle. CONCLUSIONS: The results on cancer of the liver, kidney, and pituitary gland among men are in accordance with previous observations. Regarding brain tumours and leukaemia, the outcome for women provided further support of an association. The hypothesis of a biological mechanism involving the endocrine system was partly supported.

Cohort Studies↗

Insulin and hyperaminoacidemia regulate by a different mechanism leucine turnover and oxidation in obesity.

Seven normal glucose-tolerant obese subjects [ideal body weight (IBW) = 161%] and 18 controls (IBW = 102%) were studied with the euglycemic insulin clamp (10 and 40 mU.m-2.min-1) technique, [14C]leucine infusion, and indirect calorimetry to examine if the insulin resistance with respect to glucose metabolism extends to amino acid/protein metabolism. In the basal state, total plasma amino acid and leucine concentrations, endogenous leucine flux (ELF), leucine oxidation (LO), and nonoxidative leucine disposal (NOLD) were similar in obese and control subjects. During both low (10 mU.m-2.min-1)- and higher (40 mU.m-2.min-1)-dose insulin clamp studies, insulin-mediated glucose uptake was reduced in obese vs. control subjects (P < 0.01). During the last hour of the higher-dose insulin clamp step, the decrease in total plasma amino acids, branched-chain amino acids, and leucine concentration was impaired in obese vs. control subjects (P < 0.01). However, suppression of ELF and NOLD was similar in both groups. During the low-dose insulin clamp, the decrease in plasma leucine concentration, LO, and ELF all were impaired (P < 0.01). A second study was performed in which the total plasma amino acid concentration was increased two- to threefold in both groups. Under these conditions of low plasma insulin/high amino acid levels, LO and NOLD increased similarly in obese and control subjects. In conclusion, insulin resistance is a common feature of both glucose and protein metabolism in obesity. The defect in protein metabolism is characterized by an impairment of the ability of insulin to inhibit proteolysis; the stimulatory effect of hyperaminoacidemia on protein synthesis is intact in obesity.

Adult↗

Kinetics of urea exchange in air-filled and fluid-filled rat lungs.

Urea has been used as an indicator for estimating 1) the dilution of epithelial lining fluid (ELF) that occurs during bronchoalveolar lavage (BAL) and 2) the permeability-surface area product (PS) of the pulmonary endothelium to this solute. Because relatively little is known about how urea equilibrates with fluid in the lung tissues and airspaces, we have undertaken a study of the kinetics of movement from the vasculature into the tissues of isolated, perfused rat lungs. Although instillation of 5 ml of 154 mM saline into the airspaces of this preparation increased the calculated extravascular volume of 3HOH from 0.64 +/- 0.23 to 2.10 +/- 0.58 ml (SE, n = 6) during a single transit through the pulmonary circulation, it did not have a detectable effect on the distribution of [14C]urea in the lung tissues. However, leakage of [14C]urea into saline within the airspaces was detected during constant infusions: concentrations in the airspace fluid reached 1.1 +/- 0.2% of those in the perfusate by 90 s and 1.90 +/- 0.2% at 120 s, levels that would significantly reduce estimates of the dilution of ELF by BAL. In contrast, concentrations of 99mTc-diethylenetriaminepentaacetic acetic acid (DTPA) in the airspaces remained < 0.2% of those in the perfusate, suggesting that 99mTc-DTPA may be a superior indicator for estimating dilution of ELF by BAL.(ABSTRACT TRUNCATED AT 250 WORDS)

Air↗

Extracellular glutathione peroxidase in human lung epithelial lining fluid and in lung cells.

The epithelial cells of the lower respiratory tract are exposed to high levels of inhaled oxygen and other oxidants. We hypothesized that lung cells would secrete the antioxidant enzyme, extracellular glutathione peroxidase (eGPx), into epithelial lining fluid (ELF). To investigate this hypothesis, we used specific immunoprecipitations of GPx enzymes from ELF, specific immunoprecipitations of 75Se metabolically labeled proteins from lung cells in culture, and in situ hybridization, Northern blot, and reverse transcription-polymerase chain reaction (RT-PCR) analyses. Fifty-seven percent of ELF GPx activity was due to eGPx and 40% was due to cellular GPx (cGPx). Primary bronchial epithelial cells (BEC), primary alveolar macrophages (AM), and two human bronchial epithelial cell lines, BEP2D and A549, synthesized both eGPx and cGPx and secreted eGPx into the medium. Freshly isolated human AM and BEC expressed eGPx mRNA, while freshly isolated rabbit type 2 pneumocytes did not. In lung tissue, eGPx mRNA was found mainly in interstitial cells of tissue surrounding airways. It is concluded that more than half of GPx activity in BAL is due to eGPx, and that BEC, AM, and interstitial cells are potential sources of pulmonary eGPx.

Adolescent↗

Glucose transport and equilibrium across alveolar-airway barrier of rat.

The glucose concentration in the epithelial lining fluid (ELF) results from a balance between cellular uptake and paracellular leakage. The present study examines whether the ELF glucose concentration can be predicted from the kinetics of glucose transport obtained in fluid-filled lungs. Isolated rat lungs were filled via the trachea with instillate containing 0-10 mM glucose; the perfusate glucose concentration was 10 mM. The rate of glucose removal from airspaces depended on luminal glucose concentration and was saturable [maximum uptake rate = 101 +/- 8.6 mumol.h-1.g dry lung wt-1; apparent Michaelis constant K(m) = 1.5 +/- 0.43 mM; R2 = 0.79]. Glucose removal was inhibited by phloridzin but not by phloretin or by inhibiting glycolysis. The steady-state concentration in fluid-filled lungs was estimated to be 0.15 +/- 0.034 mM. It agreed with that (< 1/20 plasma) calculated using glucose transport kinetics and paracellular permeability. The ELF glucose concentration obtained by bronchoalveolar lavage was 0.39 +/- 0.012 plasma in vivo and 0.39 +/- 0.021 perfusate in air-filled isolated lungs. The equilibrium ELF/perfusate distribution ratio of alpha-methyl-glucose was similar to that of glucose. Thus there is a major difference between the alveolar steady-state glucose concentration in air- and fluid-filled lungs despite similar mechanisms of airspace glucose removal. This suggests that glucose kinetics or access to uptake sites differ in air- and fluid-filled lungs.

Air↗

Solute concentrations of the pulmonary epithelial lining fluid of anesthetized rats.

Uncertainty persists concerning the best method of estimating the volume and solute concentrations of the pulmonary epithelial lining fluid (ELF) recovered during bronchoalveolar lavage (BAL). In the present study, measurements were made of the BAL-to-plasma concentration ratios of a variety of solutes in an anesthetized rat model. One minute after an intravenous injection of labeled Na+ and urea, 5 ml of isotonic mannitol, saline, or glucose were injected into the trachea and an initial aliquot of the BAL was immediately removed. Initial BAL-to-plasma concentration ratios of urea, Na+, Cl-, Ca2+, and total protein were similar (ranging from 0.013 to 0.017) after BAL with mannitol, but albumin and transferrin ratios were approximately 60% lower and K+ ratios were five times greater. Lavage with saline yielded BAL-to-plasma urea concentration ratios similar to those obtained with mannitol lavage. The BAL-to-plasma specific activity of urea was about twice that of Na+, indicating that urea diffused into the ELF more rapidly than Na+ during the 70 s that elapsed between the time the radioactive urea and Na+ were injected into the circulation and the time when lavage was complete. Subsequent lavage samples also indicated that urea rapidly diffuses into the fluid-filled lungs. These experiments suggest that isotonic mannitol may be a useful solution for lavage, because it allows use of Na+ and perhaps Cl- as additional indicators of ELF dilution by BAL.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Aerosolization of recombinant SLPI to augment antineutrophil elastase protection of pulmonary epithelium.

In a variety of lung diseases the respiratory epithelial surface must contend with an increased burden of neutrophil elastase (NE). One candidate for augmenting epithelial anti-NE protection is the secretory leukoprotease inhibitor (SLPI). In vitro evaluation demonstrated that 96 +/- 1% of the recombinant SLPI (rSLPI) molecules were capable of inhibiting NE, with an association rate constant of 7.1 +/- 0.1 X 10(6) M-1.s-1. Evaluation of rSLPI after in vitro and in vivo aerosolization showed that aerosolization did not alter rSLPI. Aerosolization of a single dose of 50 mg rSLPI to sheep resulted in a fourfold increase of the anti-NE capacity in epithelial lining fluid (ELF) at 3 h, with a half-life in ELF of 12 h. After aerosolization some rSLPI appeared in lung lymph. Simultaneous aerosolization of rSLPI and recombinant alpha 1-antitrypsin (rAAT) demonstrated a molar ratio of the concentration in lymph to the concentration in ELF 3 h after the aerosol eightfold higher for rAAT than for rSLPI. Overall, these observations demonstrate that it is feasible to use aerosolized rSLPI to directly augment the anti-NE capacity of the lung, particularly on the pulmonary epithelial surface.

Aerosols↗

Kinetics of NO2 air space absorption in isolated rat lungs.

We previously showed, during quasi-steady-state exposures, that the rate of inhaled NO2 uptake displays reaction-mediated characteristics (J. Appl. Physiol. 68: 594-603, 1990). In vitro kinetic studies of pulmonary epithelial lining fluid (ELF) demonstrated that NO2 interfacial transfer into ELF exhibits first-order kinetics with respect to NO2, attains [NO2]-dependent rate saturation, and is aqueous substrate dependent (J. Appl. Physiol. 71: 1502-1510, 1991). We have extended these observations by evaluating the kinetics of NO2 gas phase disappearance in isolated ventilating rat lungs. Transient exposures (2-3/lung at 25 degrees C) employed rebreathing (NO2-air) from a non-compliant continuously stirred closed chamber. We observed that 1) NO2 uptake rate is independent of exposure period, 2) NO2 gas phase disappearance exhibited first-order kinetics [initial rate (r*) saturation occurred when [NO2] > 11 ppm], 3) the mean effective rate constant (k*) for NO2 gas phase disappearance ([NO2] < or = 11 ppm, tidal volume = 2.3 ml, functional residual capacity = 4 ml, ventilation frequency = 50/min) was 83 +/- 5 ml/min, 4) with [NO2] < or = 11 ppm, k* and r* were proportional to tidal volume, and 5) NO2 fractional uptakes were constant across [NO2] (< or = 11 ppm) and tidal volumes but exceeded quasi-steady-state observations. Preliminary data indicate that this divergence may be related to the inspired PCO2. These results suggest that NO2 reactive uptake within rebreathing isolated lungs follows first-order kinetics and displays initial rate saturation, similar to isolated ELF.(ABSTRACT TRUNCATED AT 250 WORDS)

Absorption↗

Serial pentamidine levels in bronchial epithelial lining fluid after aerosol administration.

BACKGROUND: There is no information on serial pharmacokinetic assessment in the lungs after administration of aerosolized pentamidine. OBJECTIVE: The present study was performed to evaluate the elimination of aerosolized pentamidine from bronchial airways following inhalation. METHODS: We used 4 sheep with tracheotomies in the present study. Pentamidine (300 mg) was administered by inhalation to each animal. Serial bronchial washing to obtain epithelial lining fluid (ELF) was performed 1, 7, 10, 14, 21 and 28 days after administration of aerosolized pentamidine in each animal. The pentamidine concentration in the supernatant of ELF was measured by high-performance liquid chromatography. RESULTS: The maximal pentamidine level on the first day (12 h after inhalation) was 616.5 +/- 238.2 ng/ml (mean +/- SE) in ELF. The pentamidine levels rapidly decreased within 2 weeks (8.9 +/- 1.2 ng/ml at 14 days), followed by slow elimination (8.9 +/- 0.8 ng/ml at 28 days). Thus, inhaled pentamidine showed a rapid clearance from the bronchial wall within the first 2 weeks. CONCLUSIONS: These findings may be useful in designing and interpreting future studies of aerosolized pentamidine in patients who are receiving inhaled pentamidine, especially for those with failure of prophylaxis for Pneumocystis carinii pneumonia.

Administration, Inhalation↗

Phase II study of the etoposide, leucovorin and fluorouracil combination for patients with advanced gastric cancer unsuitable for aggressive chemotherapy.

Many patients with advanced gastric cancer cannot be treated with intensive chemotherapy. In an attempt to provide a feasible regimen for such patients, the combination of etoposide, leucovorin and fluorouracil (ELF) has been developed with promising results. The present study involved 42 patients with advanced gastric cancer who where unsuitable for cisplatin- or anthracycline-containing regimens because of their age (24 patients over 65 years), poor performance status (12) or the presence of concomitant illness (6). The treatment consisted of etoposide 120 mg/m2 i.v., 1-leucovorin 150 mg/m2 i.v. and fluorouracil 500 mg/m2 i.v. for 3 consecutive days every 3 weeks. Among the 41 evaluable patients, there was a 32% objective response rate (95% confidence interval 19-48%), with 7% of complete remissions. The median response duration was 4 months, the median time to progression in all patients was 5 months and the median overall survival was 10 months. No drug-related deaths or WHO grade 4 side effects were observed. On the basis of these results, we concluded that the ELF regimen is feasible and that its activity warrants randomized studies comparing the ELF combination with fluorouracil plus folinic acid.

Adult↗

IgM in the airways of asthma patients.

In order to obtain information on the role of IgM in the pathogenesis of asthma, we assayed IgM in the broncho-alveolar lavage fluid (BALF) from 14 non-smoking patients with asthma and 9 non-smoking healthy persons, using an ELISA. The concentrations of IgM in the epithelial lining fluid (ELF) were calculated on the basis of urea in serum and BALF. The concentrations of IgM in ELF after correction for serum IgM, cQIgM, from the patients as a group were higher than those from controls (Mann-Whitney U test, p less than 0.05). The IgM in BALF and serum, analysed by sucrose density gradient centrifugation was pentameric. The transudation of IgM from blood into ELF was compared with that of alpha 2 macroglobulin (A2M), a protein with a similar molecular mass. In 6 patients the cQIgM/cQA2M value was above the upper value of the range for controls suggesting abnormal local production of IgM. The presence of the secretory component (SC) linked to IgM was determined by ELISA. The percentage of SC-IgM in BALF was increased in 5 out of 7 patients tested. The increased local IgM concentrations and its increased local production may suggest a role for local IgM-mediated reactions in the inflammatory events associated with asthma.

Adolescent↗

Protease-antiprotease imbalance in the lungs of children with cystic fibrosis.

Cystic fibrosis (CF) is characterized in the lung by chronic purulent bronchitis culminating in pulmonary insufficiency. There is evidence to suggest that neutrophil elastase (NE) released by neutrophils on the respiratory epithelial surface plays a major role in the pathogenesis of this lung disease. This study sought to determine the age of onset of the chronic neutrophil-dominated inflammation in CF and the consequences to the NE-anti-NE screen on the respiratory epithelial surface of the CF lung. NE and anti-NE defensive molecules were evaluated in respiratory epithelial lining fluid (ELF) in 27 children with stable CF (1 to 18 yr of age). Despite normal antigenic concentrations of alpha 1-antitrypsin (alpha 1AT) and secretory leukoprotease inhibitor (SLPI), 25 of 27 children with CF had neutrophil-dominated inflammation (> 500 neutrophils/microliters ELF). Active NE was found in ELF in 20 of 27 children, including two of four aged 1 yr. Western blot analysis showed the majority of alpha 1AT and SLPI molecules to be complexed and/or degraded. These observations demonstrate that a chronic imbalance of the NE-anti-NE protective screen develops early on the respiratory epithelial surface in persons with CF and is likely well established by 1 yr of age, with resultant potential for lung damage.

Adolescent↗