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Ambroxol for the prevention of chronic bronchitis exacerbations: long-term multicenter trial. Protective effect of ambroxol against winter semester exacerbations: a double-blind study versus placebo.

In a 6-month, double-blind multicenter trial conducted over the winter, the effects of daily administration of ambroxol retard (75 mg) were compared with those of placebo in preventing exacerbations and improving symptoms and clinical signs in chronic bronchitis patients. The trial was completed by 110 patients in the ambroxol group and by 104 in the placebo group. Initially, there were no significant differences between the groups. By the end of the 2nd month of treatment, 67.2% of the ambroxol group had had no exacerbations compared to 50.4% in the placebo group. At the end of the 6-month trial, 45.5% of the treatment group had had no exacerbations, compared to only 14.4% of the control group. These differences were statistically significant. Patients in the treatment group lost significantly fewer days through illness (442) and had fewer days when they needed antibiotic therapy (371) compared to the placebo group patients (837 and 781). Ambroxol also produced statistically significant symptomatic improvement, measured as difficulty in expectoration, coughing, presence of dyspnea and the auscultatory signs as compared to controls. Since ambroxol was well tolerated and compliance was good, it appears like a drug of choice for pharmacological prophylaxis of chronic bronchitis.

Adult↗

[Modification of mucociliary clearance by a combination of theophylline with ambroxol and of ambroxol in monotherapy].

Influence on Mucociliary Clearance by a Theophylline-Ambroxol Combination and by Ambroxol in Monotherapy. In a controlled randomised double-blind study the influence of theophylline + ambroxol (TA) and ambroxol (A) on lung function and mucociliary clearance was investigated. 19 patients with chronic obstructive lung disease were treated after a 5-day wash-out period for 5 days with TA (700 mg theophylline, 60 mg ambroxol/d) or A (60 mg ambroxol/d), respectively. Measurements were done on the 5th and 10th day. Under the treatment with TA a marked improvement of lung function was observed. The mucociliary clearance improved under treatment with TA and A, with TA being significantly better compared with treatment group A.

Adult↗

Inhibitory effect of theophylline, theophylline-7-acetic acid, ambroxol and ambroxol-theophylline-7-acetate on rat lung cAMP phosphodiesterase isoenzymes.

It is assumed that theophylline (THEO) and its xanthinic derivatives inhibit lung phosphodiesterase (PDE) and block adenosine receptors in the induction of bronchodilatation. Since the theophyllinic compound ambroxol-theophylline-7-acetic acid (ATA) has been shown in vivo to be a sound bronchodilator, this paper compares the action of ambroxol-theophylline-7-acetate (ATA), its two components, theophylline-7-acetic acid (TAA) and ambroxol (AMB), and theophylline (THEO) on the hydrolytic activity of three rat-lung cAMP PDE (types I, III and IV) and on striatal adenosine receptors. THEO inhibited all three isoenzymes with equal intensity, whereas ATA was as powerful but inhibited types III and IV only, on which AMB and TAA also showed lower effects. Lastly, unlike THEO, ATA and its two components were unable to antagonize adenosine receptors. Taken as a whole, these results suggest that the bronchodilating activity of ATA is the result of specific inhibition of particular forms of PDE and is thus more specific than that of THEO alone.

3',5'-Cyclic-AMP Phosphodiesterases↗

[Efficacy of intravenous or atomizing ambroxol for prevention of respiratory distress syndrome in preterm infants].

OBJECTIVE: Ambroxol induces the synthesis of surfactant in lung alveolar type II cells. Some studies have shown its effectiveness for the prevention of respiratory distress syndrome (RDS) in preterm infants. This study aimed to compare the efficacy of two different ways of ambroxol administration, ie, intravenous injection and atomizing inhalation, for the prevention of RDS in preterm infants. METHODS: A total of 125 preterm infants born between 28-37 weeks of gestation were randomly assigned into three groups: Intravenous and Atomizing ambroxol treatment groups (n=40 each) or Control group (n=45). The Intravenous group was injected with 15 mg/kg of ambroxol through the umbilical vein immediately after birth and then received 30 mg/kg of ambroxol daily for 2 days by intravenous drip. The Atomizing group was administered with 30 mg/kg of ambroxol daily for 2 days by atomizing inhalation immediately after birth. The Control group received no ambroxol treatment. The incidences of RDS and complications as well as the blood gas results 6 hrs after birth were compared among the three groups. RESULTS: The incidence of RDS was 7.5%, 5.0% and 24.4% in the Intravenous, Atomizing and Control groups respectively. There were no significant differences in the incidence of RDS between the two ambroxol treatment groups. However, the incidence of RDS in the two treatment groups were noticeably lower than in the Control group (P < 0.05). The blood gas results did not show significant differences between the two ambroxol treatment groups but both groups demonstrated improved blood gas results compared with the Control group at 6 hrs after birth (P < 0.05). The incidence of complications, such as pulmonary hemorrhage, respiratory failure, intraranial hemorrhage, in the two ambroxol treatment groups was reduced compared with the Control group (P < 0.05), but there were no differences between the two ambroxol groups. CONCLUSIONS: Early administration of either intravenous or atomizing ambroxol can produce a positive efficacy for the prevention of RDS in preterm infants. The two different ways of administration seem to result in a similar efficacy in the prevention of RDS.

Administration, Inhalation↗

Local anaesthetic properties of ambroxol hydrochloride lozenges in view of sore throat. Clinical proof of concept.

UNLABELLED: Acute oro-pharyngeal catarrh is characterised by mild to severe sore throat, such as pain on swallowing, feeling of scratchiness, burning and urge to cough. The present study was conducted to explore whether the test compound is going to show clinical relevance and is a suitable medication for the relief of these symptoms. OBJECTIVE: Description and comparison of the efficacy and tolerability of lozenges containing 20 mg ambroxol hydrochloride (trans-4-[(2-amino-3,5-dibrombenzyl)amino]cyclohexano hydrochloride, CAS 18683-91-5) in relieving acute sore throat, in comparison to placebo. DESIGN: Multi-centre, prospective, placebo-controlled, randomised, double-blind trial involving two days of treatment with up to 6 lozenges containing 20 mg ambroxol hydrochloride per day. SUBJECTS: Two-hundred-eighteen (218) patients were enrolled (97 males, 121 females, average age: 39.4 +/- 15 years, range: 17-81 years); 215 were treated: 107 with 20 mg ambroxol and 108 with placebo; 26 discontinued prematurely (13 in each treatment group). 208 patients constituted the intent-to-treat (ITT) dataset (105 and 103 for treatment with ambroxol and placebo, respectively); 196 patients constituted the perprotocol (PP) dataset (97 and 99, respectively); all treated patients were part of the dataset for safety analysis. TREATMENTS: Double-blind treatment with up to 6 lozenges per day containing 20 mg ambroxol hydrochloride or placebo (a lozenge with a distinct minty flavour). MAIN OUTCOME MEASURES: The time-weighted average pain relief over the first 3 h after the first lozenge as a ratio of the baseline pain intensity of sore throat (SPIDnorm) and the patients' evaluation of efficacy and tolerability at the end of each day of treatment. RESULTS: Both treatments led to a reduction of pain intensity; the mean (+/- SD) SPIDnorm after the 1st lozenge were 0.39 +/- 0.27 and 0.28 +/- 0.25 for 20 mg ambroxol hydrochloride and placebo, respectively; the treatment effect of ambroxol was statistically significantly superior compared to placebo (p: 0.0029; 95% confidence interval estimate of the mean treatment difference for ambroxol minus placebo: 0.04 to 0.18). At the end of each subsequent ambulatory treatment day with up to 6 lozenges per day, a statistically significantly higher proportion of patients scored a higher level of efficacy for the active treatments with ambroxol hydrochloride compared to placebo. The investigational treatments were equally well tolerated. CONCLUSIONS: Sucking lozenges containing 20 mg ambroxol hydrochloride has a beneficial pain relieving effect in patients with acute sore throat, superior to that which otherwise can be achieved by sucking a placebo lozenge. This finding confirms that the preclinical local anaesthetic properties of ambroxol hydrochloride may have beneficial clinical implications.

Administration, Oral↗

Efficacy and tolerability of ambroxol hydrochloride lozenges in sore throat. Randomised, double-blind, placebo-controlled trials regarding the local anaesthetic properties.

UNLABELLED: Two confirmatory clinical trials were performed to investigate the efficacy and tolerability of ambroxol lozenges at doses of 20 mg and 30 mg relative to placebo in relieving the symptoms of sore throat of at least moderately severe intensity in patients suffering from oro-pharyngeal catarrh accompanied by pain on swallowing, feeling of scratchiness, burning and urge to cough. OBJECTIVE: Description and comparison of the efficacy and tolerability of lozenges containing 20 mg or 30 mg ambroxol hydrochloride (trans-4-[(2-amino-3,5-dibrom-benzyl)amino]cyclohexano hydrochloride, CAS 18683-91-5) in relieving acute sore throat, in comparison to placebo. DESIGN: Two similar, multi-centre, prospective, placebo-controlled, randomised, double-blind trials involving three days of treatment with up to 6 lozenges containing 20 or 30 mg ambroxol hydrochloride per day. SUBJECTS: There were enrolled three-hundred-thirty-one (331, study I) and three-hundred-eighty-three (383, study II) outpatients with acute uncomplicated sore throat of at least moderately severe intensity which is not suspected to be due to bacterial pharyngitis. TREATMENTS: Double-blind treatment with up to six lozenges per day containing either 20 mg or 30 mg ambroxol hydrochloride or placebo (a lozenge with a distinct minty flavour). MAIN OUTCOME MEASURES: The time-weighted average pain relief over the first 3 h after the first lozenge as a ratio of the baseline pain intensity of sore throat (SPIDnorm) and the patients' evaluation of efficacy and tolerability at the end of each day of the three days treatment. RESULTS: All treatments led to a reduction of pain intensity; the means (+/- SD) SPIDnorm after the 1st lozenge were 0.53 +/- 0.28 or 0.50 +/- 0.30 or 0.38 +/- 0.28 with 20 mg or 30 mg ambroxol hydrochloride or placebo respectively in study I, and 0.53 +/- 0.30 or 0.60 +/- 0.28 or 0.39 +/- 0.31 in study II; the effect of treatment was statistically significant (p: 0.0002 or p: 0.0033 in study I and p: 0.0005 or p: 0.0001 in study II, respectively, for the comparison of 20 mg or 30 mg ambroxol hydrochloride vs. placebo). The improvement with the active treatments was greater than with placebo (95% confidence interval (CI) estimates of the mean treatment differences vs. placebo were 0.08 to 0.23 or 0.05 to 0.20 for lozenges with 20 mg or 30 mg ambroxol hydrochloride, respectively, in study I, and 0.06 to 0.21 or 0.13 to 0.28 in study II). At the end of each subsequent ambulatory treatment day with up to six lozenges per day, a statistically significantly higher proportion of patients scored a higher level of efficacy for the active treatments with ambroxol hydrochloride compared to placebo. The treatments investigated were equally well tolerated. CONCLUSIONS: Sucking lozenges containing 20 mg or 30 mg ambroxol hydrochloride has a beneficial pain-relieving effect in patients with acute sore throat, superior to that achieved by sucking a placebo lozenge. While both strengths were equally well tolerated, the higher strength of 30 mg ambroxol hydrochloride did not prove more effective. The findings confirm that the previously discovered local anaesthetic properties of ambroxol hydrochloride do have beneficial clinical implications.

Acute Disease↗

[Ambroxol and protective reflexes of the respiratory tract].

BACKGROUND: Ambroxol, trans-4-/(2-amino-3,5-dibromobenzyl) amino/cyclohexanol hydrochloride, a drug used to increase surfactant secretion in the lungs, has been reported to be effective in reducing exacerbation of chronic bronchitis and in the protection from inflammatory reactions (Bianchi et al., 1990). The effect of this drug on the defence reflexes of airways remains unknown. AIM: The aim of this study was to follow the changes in the cough reflex after administration of ambroxol in the dose of 10 mg/kg body weight. Ambroxol was administered i.p. and perorally. Further, we investigated the bronchodilatory activity of ambroxol. METHODS: In the present study, the effects of ambroxol on the cough reflex in the cats were investigated. The drug was administered intraperitoneally and perorally in the dose of 10 mg/kg body weight. Cough was induced by mechanical stimulation of airways. The effect of ambroxol on the smooth muscles of guinea pig (weight 300-400 g) airways was investigated in vitro. The contractions were induced by carbachol in the concentration of 10(-5) mol/l and by histamine in the same concentration. RESULTS: The results indicate that ambroxol, when administered intraperitoneally attained a total fall in cough parameters by about 51.6%. Ambroxol, when administered perorally suppressed all cough parameters by about 37.04%. Further, ambroxol has no effect on carbachol-induced contraction of smooth muscles of airways. The histamine-induced contraction of tracheal smooth muscles was significantly reduced after administration of ambroxol in the concentration of 10(-4) mol/l. The lung smooth muscles of guinea pig became relaxed after administration of the drug in the concentrations of 10(-5)-10(-4) mol/l. CONCLUSION: The study suggests, that ambroxol has a cough-suppressive effect. More expressive effect of the drug on smooth muscles of airways was found out in case of histamine-induced contraction. (Fig. 6, Ref. 13.)

Ambroxol↗

Ambroxol-induced modification of ion transport in human airway Calu-3 epithelia.

Ambroxol is often used as a mucolytic agent in various lung diseases. However, it is unclear how ambroxol acts on bronchial epithelial cells. To clarify the action of ambroxol, we studied the effects of ambroxol on the ion transport in human Calu-3 cells, a human submucosal serous cell line, measuring the transepithelial short-circuit current and conductance across monolayers of Calu-3 cells. Ambroxol of 100 microM diminished the terbutaline (a beta2-adrenergic agonist)-stimulated Cl-/HCO3(-)-dependent secretion without any decreases in the conductance of cystic fibrosis transmembrane conductance regulator (CFTR) channel locating on the apical membrane. On the other hand, under the basal (unstimulated) condition ambroxol increased the Cl(-)-dependent secretion with no significant change in the apical CFTR channel conductance and decreased the HCO3- secretion associated with a decrease in the apical CFTR channel conductance. Ambroxol had no major action on the epithelial Na+ channel (ENaC) or the ENaC-mediated Na+ absorption. These results indicate that in Calu-3 cells: (1) under the basal (unstimulated) condition ambroxol increases Cl- secretion by stimulating the entry step of Cl- and decreases HCO3- secretion by diminishing the activity of the CFTR channel and/or the Na+/HCO3(-)-dependent cotransporter, (2) under the adrenergic agonist-stimulated condition, ambroxol decreases Cl- secretion by acting on the Cl-/HCO3- exchanger, and (3) ambroxol has a more powerful action than the adrenergic agonist on the Cl-/HCO3- exchanger, leading fluid secretion to a moderately stimulated level from a hyper-stimulated level.

Ambroxol↗

N-acetylcysteine and ambroxol inhibit endotoxin-induced phagocyte accumulation in rat lungs.

UNLABELLED: We have investigated whether pretreatment with N-acetylcysteine (NAC) and/or ambroxol (Amb), drugs known as reactive oxygen species (ROS) scavengers, would minimize lipopolysaccharide (LPS)-induced leucocyte accumulation in rat lung microvasculature and protect lungs from damage and the effect of these drugs on chemotactic peptide (fMLP)-induced chemiluminescence of human polymorphonuclear leukocytes (PMNs). Animals were injected ip with NAC (27.6 mg/kg, n=8), ambroxol (70 mg/kg, n=8), combination NAC+ambroxol (n=8), or 1 ml buffer alone (n=8), once a day for 3 consecutive days. Then animals were injected with LPS (17 mg/kg), and killed 3 h later. In each of another four groups eight rats were used as a control, and received the same drug treatment but LPS was replaced with 0.9% NaCl. PMNs and macrophages (Ms) were counted in histologic slides of lung tissue. Using computer image analysis we measured the area of alveolar profiles. Luminol-enhanced chemiluminescence was measured in PMNs suspensions obtained from healthy volunteers. Chemiluminescence intensity was measured in resting and fMLP-stimulated cells, and compared between cells incubated with Amb, NAC or distilled water. We observed significant differences in the number of PMNs and Ms, alveolar profile area between control and LPS-treated animals (P<0.01). PMNs and Ms were numerous in lungs of LPS-administered animals (PMNs: Median (M)=137.5 per 6 high power fields range (r)=54.0; Ms: M=123.0 r=11.0), less numerous in ambroxol-treated group (PMNs: M=101.5 r=32.0 and Ms:53.5 r=36.0), not abundant in NAC (PMNs:M=56.0 r=28.0 and Ms:M=20.5 r=13.0) and in NAC+ambroxol treated rats (PMNs:M=53.5 r=21.0 and Ms:M=29.0 r=9.0), and rare in LPS+drugs-untreated control group (PMNs:M=40.5 r=19.0 and Ms:M=18.5 r=15.0). Chemiluminescence assay revealed that 100 micro;M ambroxol stimulated fMLP-induced PMNs chemiluminescence and NAC of the same concentration had no significant effect. CONCLUSION: In our experiment we showed that pretreatment with NAC and ambroxol may inhibit phagocyte influx to rat lung and may protect it from damage. We also revealed that NAC at dose 27.6 mg/kg has stronger protective properties than ambroxol at dose 70 mg/kg and this may result from enhancing effect of ambroxol on fMLP-provoked PMNs chemiluminescence.

Acetylcysteine↗

Antioxidant function of ambroxol in mononuclear and polymorphonuclear cells in vitro.

This study quantifies the antioxidant function of ambroxol (2-amino-3,5-dibromo-N-[trans-4-hydroxycyclohexyl]benzylamine) in vitro. Polymorphonuclear cells (PMN) and mononuclear cells were isolated from the blood of healthy volunteers (n = 46) to determine reactive oxygen species (ROS) by luminol-enhanced chemiluminescence. Ambroxol or the controls N-acetylcysteine (NAC), nacystelyn (NAL), glutathione (GSH), superoxide dismutase (SOD), catalase, and the combination of SOD/catalase were incubated for 1 or 2 h with zymosan-activated cells in vitro using concentrations ranging from 10(-6) to 10(-3) mol/liter. Reduction of ROS-mediated luminescence was similar within the cell types. Ambroxol (10(-4) mol/liter) reduced ROS about 75% (1-h incubation) and 98% (2-h incubation), respectively (p < 0.001). SOD and SOD/catalase, but not the H2O2-catalyzing substances (NAC, NAL, GSH, and catalase), reduced cellular ROS. This indicates that inflammatory cells predominantly generate O2-, which can be scavenged by ambroxol. The antioxidant function of ambroxol with increasing incubation time suggests additional cellular antiinflammatory properties of this substance. Our results indicate that good antioxidant function of ambroxol is related mainly to direct scavenger function of reactive oxygen metabolites such as O2-. However, an antioxidative effect of ambroxol may also be associated with the reduction of prooxidative metabolism in inflammatory cells. Concluding from this observation, and because of the well known high affinity of ambroxol for lung tissue, ambroxol may be an alternative in antioxidant augmentation therapy, particularly in pulmonary diseases characterized by an overburden of toxic oxygen metabolites.

Acetylcysteine↗

Changes in pulmonary function in preterm infants recovering from RDS following early treatment with ambroxol: results of a randomized trial.

Several studies have demonstrated that ambroxol stimulates surfactant synthesis and has antioxidative and antiinflammatory effects. We investigated the effect of ambroxol on lung function in newborns with respiratory distress syndrome (RDS) weighing <1,500 g. In all, 102 newborns were enrolled (52 received ambroxol and 50 placebo). After extubation, lung function tests were performed weekly using a face mask for ventilatory measurements and a catheter tip pressure transducer (diameter 1.7 mm) for esophageal pressure measurements (Pes) The flow-through technique was used to eliminate apparatus dead space and to allow long-term measurements during quiet sleep. Percentile curves of pulmonary function parameters from healthy newborns were used for comparison. During the first 28 days, 42 newborns were extubated in the ambroxol group and 36 in the placebo group. The ventilatory parameters of both treatment groups were in the normal range and there were no significant differences between the two groups at any time. After extubation, the ratio of tidal volume to maximal esophageal pressure changes (V(T)/P(es,max)) was below the 10th percentile in the ambroxol and placebo-treated groups. In the ambroxol group the 10th percentile was reached on day 10, whereas in the placebo group the 10th percentile was reached significantly later (P < 0.05) on day 23. Modeling of power expenditures was used to identify the optimal breathing pattern so that small differences in ventilatory parameters between the two groups could be analyzed. We conclude that early ambroxol treatment has only a modest effect on lung function in newborns with established RDS. The sensitivity of tidal breathing parameters is not sufficient to detect these small changes in lung mechanics, but small improvements could be demonstrated in lung mechanics 10 days after extubation in the ambroxol-treated group.

Ambroxol↗

Dose-dependent uricosuric effect of ambroxol.

Ambroxol is known to promote bronchial secretion and is used as an expectorant. Previous studies had suggested that high doses of ambroxol could reduce the plasma uric acid concentration. The present study was undertaken to confirm this finding, to determine its dose-response relationship and to identify the underlying mechanism of action. Using a placebo-controlled, double-blind parallel group design, 48 healthy male volunteers were randomly allocated to receive placebo b.d. and ambroxol 125 mg b.d., 250 mg b.d. or 500 mg b.d. (12 subjects per group). The subjects were hospitalised during a dietary run-in period of 3 days (Days -3 to -1) and a treatment period of 5 days (Days 1 to 5). On Day -1 (baseline) and Days 1 to 5, all urine was collected and blood samples were taken for the analysis of uric acid, creatinine, xanthine and ambroxol. The measurements were repeated four days after treatment had closed. Steady state plasma concentrations of ambroxol (trough levels) were reached after 2 or 3 days and were linearly related to dose. Ambroxol induced a significant, dose-dependent, reduction in plasma uric acid (250 mg b.d. about 20%; and at 500 mg b.d. about 30%). The diurnally fluctuating uric acid clearance was dose dependently increased and there was no notable effect on creatinine clearance. Plasma hypoxanthine levels were not affected by ambroxol. No severe adverse events were reported and no drug induced changes in the clinical laboratory values were observed. It is concluded that ambroxol has an uricosuric action following oral administration of higher doses (250 mg-500 mg b.d.) and it is well tolerated.

Adult↗

Ambroxol inhibits the release of histamine, leukotrienes and cytokines from human leukocytes and mast cells.

OBJECTIVES AND DESIGN: The effects of the mucolytic agents ambroxol and N-acetylcystein (NAC) were studied on the release of histamine, leukotrienes, cytokines and superoxide anions from a variety of cells involved in the pathogenesis of allergic inflammation. SUBJECTS: Mast cells were isolated from human adenoids and skin (n = 5-6). Basophils, monocytes and granulocytes were obtained from Buffy-coat blood obtained from healthy blood donors (n = 4-7) and enriched by density centrifugation. TREATMENT AND METHODS: Ambroxol or NAC were added to the cells for different periods before stimulation with various immunological and non-immunological secretagogues. Histamine release from mast cells, basophils and monocytes was assayed either by radioimmunoassay or spectrofluorometrically. LTC4 (basophils), LTB4 (neutrophil/eosinophil granulocytes or monocytes), IL-4 and IL-13 (basophils) were measured by ELISA. RESULTS: Ambroxol inhibited histamine release by more than 50% from human adenoidal mast cells (1000 microM ambroxol) and skin mast cells (100 microM ambroxol) stimulated by Con A and compound 48/80, respectively. Ambroxol (100 microM) strikingly inhibited anti-IgE induced release of both histamine, LTC4, IL-4 and IL-13 from basophils and reduced both histamine and LTB4 release induced by C5a or Zymosan in monocytes. The drug also reduced LTB4 and superoxide anion production in granulocytes stimulated by zymosan or fMLP. In all cell types studied, ambroxol was more efficacious following a short preincubation (5-15 min) of the drug with the cells before stimulation. In contrast, NAC produced no clear effects on any of the different cell types studied, regardless of the preincubation period, the concentration or the stimulus employed. CONCLUSIONS: Unlike NAC, ambroxol is able to not only inhibit acute mediator release from mast cells and leukocytes but also reduce immunomodulatory cytokine generation from basophils and may have beneficial effects in the treatment of allergic respiratory diseases.

Ambroxol↗

Inhibition of inflammatory responses by ambroxol, a mucolytic agent, in a murine model of acute lung injury induced by lipopolysaccharide.

OBJECTIVE: The aim of this study is to investigate whether ambroxol inhibits inflammatory responses in a murine model of lipopolysaccharide-induced acute lung injury (ALI). METHODS: Mice (n=295) were first intratracheally instilled with lipopolysaccharide (LPS) to induce ALI and then received an intraperitoneal (i.p.) injection of either normal saline (NS), ambroxol (30 or 90 mg/kg per day) or dexamethasone (2.5 or 5 mg/kg per day) for 7 days. Metabolism (n=10, each), lung morphology (n=5, each) and wet-to-dry lung weight ratio (n=10, each) were studied. The levels of tumor necrosis factor (TNF-alpha), interleukin-6 (IL-6) and transforming growth factor (TGF-beta1) and the protein concentration (n=5 or 7, each) in bronchoalveolar lavage (BAL) were measured. RESULTS: Mice with LPS-induced ALI that were treated with ambroxol at a dosage of 90 mg/kg per day significantly gained weight compared to the control and dexamethasone-treated groups. Ambroxol and dexamethasone significantly reduced the lung hemorrhage, edema, exudation, neutrophil infiltration and total lung injury histology score at 24 and 48 h. In addition, ambroxol and dexamethasone significantly attenuated the lung wet-to-dry weight ratio at 24 and 48 h (p<0.05). Compared to the control group, TNF-alpha, IL-6 and TGF-beta1 levels in the BAL in both ambroxol- and dexamethasone-treated groups were significantly reduced at 24 and 48 h. The protein in BAL, an index of vascular permeability, was also significantly decreased in the ambroxol- and dexamethasone-treated groups (p<0.05). CONCLUSION: Ambroxol inhibited proinflammatory cytokines, reduced lung inflammation and accelerated recovery from LPS-induced ALI.

Ambroxol↗

A novel pharmacological approach for paraquat poisoning in rat and A549 cell line using ambroxol, a lung surfactant synthesis inducer.

Paraquat (PQ) is a widely used herbicide that causes acute adult respiratory distress syndrome (ARDS) and chronic lung damage (diffuse fibrosis). One of the earliest biochemical effects induced by PQ is damage to type II pneumocytes with consequent depletion of surfactant. With the aim of counteracting the toxic effects of PQ, a series of investigations were performed into the possible protective effect of the drug ambroxol, which induces the synthesis of surfactant in lung alveolar type II cells. The number of survivors and survival time of rats treated ip with 35 mg PQ/kg was significantly increased by 3 days of ambroxol pretreatment and by ambroxol treatment 30 min or 2 hr after PQ. Total phospholipid content in lung and bronchoalveolar lavage fluid (BALF) was significantly reduced 30 hr after treatment with PQ alone. The association of ambroxol with PQ significantly antagonized this reduction. In BALF the ratio between palmitic acid and stearic acid concentrations was significantly lower in animals treated with PQ alone but was returned to normal by the association with ambroxol. The cell line A549, exposed in vitro to PQ concentrations from 0.5 x 10(-4) to 2 x 10(-3) M, showed a significant dose-dependent loss of viability. Cells pretreated with ambroxol (10 mg/ml) were more resistant to PQ and their viability started to decrease significantly only from a PQ concentration of 0.8 x 10(-3) M. Membrane microviscosity was measured on the same cells. Cells treated with PQ alone showed a reduction of membrane microviscosity, which was significantly counteracted by ambroxol pretreatment. The curves of modification of membrane microviscosity of cells treated with PQ and with ambroxol plus PQ paralleled those of cell viability, indicating that the stimulation of surfactant synthesis in vitro may be a prerequisite for counteracting some of the early effects of PQ.

Adenocarcinoma↗

Characterization of bromhexine and ambroxol in equine urine: effect of furosemide on identification and confirmation.

The purpose of this study was two-fold: (1) to develop a simple and sensitive screening procedure for identifying and confirming bromhexine and ambroxol and, (2) to determine the effect of furosemide on the detection of bromhexine, ambroxol, or their metabolites in urine. Female horses (450-550 kg) treated with bromhexine or ambroxol (1 g, p.o.) were used. Urine samples were collected up to 48 h post-drug administration and analysed. Blind samples were used in evaluating the sensitivity of these methods and reproducibility of the results. Bromhexine and ambroxol were extensively metabolized in the horse. These agents and their respective metabolites were identified and confirmed using thin-layer chromatography (TLC) and gas chromatography-mass spectrometry (GC-MS), respectively. Hydroxy-bromhexine and desmethyl-bromhexine were major metabolites found to be unique to bromhexine-treated horses. These metabolites selectively absent from ambroxol-treated horse urine provide a chemical means to distinguish bromhexine from ambroxol administration in horses. These specific metabolites were similarly identified and confirmed in "blind" horse urine samples. The concomitant presence of furosemide (300 mg, i.v.) with bromhexine or ambroxol did not mask the presence of these agents or alter their metabolite profile. By application of the methods described in this study, bromhexine and ambroxol metabolites in horse urine can be easily identified and confirmed.

Ambroxol↗

Effect of twelve-months therapy with oral ambroxol in preventing exacerbations in patients with COPD. Double-blind, randomized, multicenter, placebo-controlled study (the AMETHIST Trial).

The objective of this prospective, randomized, double-blind, placebo-controlled, multicenter parallel-group study was to evaluate the effect of long-term ambroxol treatment in preventing exacerbations of chronic obstructive pulmonary disease (COPD). Two hundred and forty-two outpatients with COPD defined by ATS criteria with value of FEV1 between > or =60 and 80% of predicted and history of one or more exacerbations in the previous year were recruited by 26 Respiratory Medicine Centers in Italy and treated for 1 year with one ambroxol retard capsule of 75 mg twice daily or placebo. The percentage of patients free from exacerbation at 6 months was 63% with ambroxol and 60% with placebo (p=0.366) and at 12 months 56% with ambroxol and 53% with placebo (p=0.363). In a subset of 45 patients with more severe baseline symptoms, ambroxol therapy was associated with a significant higher percentage of patients free from exacerbation compared to placebo: 63 vs. 38% (p=0.038). In conclusion, we did not find a significant difference between long-term ambroxol therapy and placebo, in preventing exacerbations in patients with COPD. In patients with more severe respiratory symptoms at baseline, however, we observed a significant difference in the cumulative exacerbation-free persistence between ambroxol and placebo, suggesting that long-term muco-regulatory therapy with ambroxol could be useful in highly symptomatic patients with COPD.

Administration, Oral↗

In vitro inhibition of human neutrophil histotoxicity by ambroxol: evidence for a multistep mechanism.

Neutrophils are major culprits for the protease/antiprotease imbalance during various lung diseases, that is, chronic obstructive pulmonary disease, cystic fibrosis, idiopathic pulmonary fibrosis and adult respiratory distress syndrome. Thus, these cells are presently considered an ideal target for the pharmacologic control of tissue injury during these diseases. This study was planned in order to investigate if ambroxol and its precursor bromhexine are actually capable of preventing alpha-1-antitrypsin (A1AT) inactivation by stimulated neutrophils and possibly to look into the mechanisms underlying this event. Ambroxol inhibited the production of superoxide anion by activated neutrophils, whereas bromhexine had no inhibitory effect. Ambroxol decreased the production of hypochlorous acid (HOCl) from activated neutrophils with high efficiency, whereas bromhexine had a modest activity. Ambroxol and bromhexine were capable of limiting the chlorination of monochlorodimedon by HOCl, displaying the capacity of directly scavenging the oxidant. Ambroxol decreased the release of elastase and myeloperoxidase from activated neutrophils, whereas bromhexine was ineffective. Ambroxol prevented the A1AT inactivation by neutrophils, whereas bromhexine was completely ineffective. Among drugs currently available for in vivo use in humans, ambroxol is unique by virtue of its ability to prevent neutrophil-mediated A1AT inactivation via inhibition of HOCl production as well as HOCl scavenging. Also taking into account its capacity for curbing elastase release, the drug displays the potential to lessen the burden of oxidants/proteases and to increase the antiprotease shield at the site of inflammation. Thus, ambroxol appears to be a good candidate for raising attempts to develop new therapeutic histoprotective approaches to inflammatory bronchopulmonary diseases.

Ambroxol↗