vx-770 and Cough

vx-770 has been researched along with Cough* in 3 studies

Reviews

1 review(s) available for vx-770 and Cough

ArticleYear
Clinical papers of the year 2018 - Cystic fibrosis.
    Paediatric respiratory reviews, 2020, Volume: 33

    This paper reviews the most important clinical papers in cystic fibrosis published in 2018, having searched all the literature on Pubmed. Focus is on CFTR modulator therapy, randomised controlled trials, and infection/microbiology issues.

    Topics: Administration, Inhalation; Aminophenols; Aminopyridines; Anti-Bacterial Agents; Azithromycin; Benzodioxoles; Bronchoalveolar Lavage; Bronchoalveolar Lavage Fluid; Chloride Channel Agonists; Cough; Cross Infection; Cystic Fibrosis; Disease Progression; Drug Combinations; Drug Therapy, Combination; Humans; Indoles; Lung Transplantation; Microbiological Techniques; Mycobacterium abscessus; Mycobacterium Infections, Nontuberculous; Nebulizers and Vaporizers; Proton Pump Inhibitors; Pseudomonas aeruginosa; Pseudomonas Infections; Pyrazoles; Pyridines; Pyrrolidines; Quinolones; Randomized Controlled Trials as Topic; Saline Solution, Hypertonic; Specimen Handling; Sputum; Treatment Outcome; Tuberculosis, Pulmonary

2020

Trials

2 trial(s) available for vx-770 and Cough

ArticleYear
Safety, pharmacokinetics, and pharmacodynamics of ivacaftor in patients aged 2-5 years with cystic fibrosis and a CFTR gating mutation (KIWI): an open-label, single-arm study.
    The Lancet. Respiratory medicine, 2016, Volume: 4, Issue:2

    Ivacaftor has been shown to be a safe, effective treatment for cystic fibrosis in patients aged 6 years or older with a CFTR gating mutation. We aimed to assess the safety, pharmacokinetics, and pharmacodynamics of ivacaftor in children aged 2-5 years.. In the two-part KIWI study, we enrolled children aged 2-5 years weighing 8 kg or more with a confirmed diagnosis of cystic fibrosis and a CFTR gating mutation on at least one allele from 15 hospitals in the USA, UK, and Canada. Participants received oral ivacaftor 50 mg (if bodyweight <14 kg) or 75 mg (if bodyweight ≥14 kg) every 12 h for 4 days in part A (to establish the short-term safety of doses for subsequent assessment in part B), and then for 24 weeks in part B (to assess safety and longer-term pharmacodynamics). Children could participate in both or just one part of the study. Primary outcomes were pharmacokinetics and safety, analysed in all patients who received at least one dose of ivacaftor. Secondary outcomes were absolute change from baseline in sweat chloride concentrations and bodyweight, body-mass index (BMI), and height Z scores, and pharmacokinetic parameter estimation of ivacaftor. This study is registered with ClinicalTrials.gov, number NCT01705145.. Between Jan 8, 2013, and March 1, 2013, nine patients were enrolled onto part A of the study, all of whom completed the 4 day treatment period, and eight of whom took part in part B. Between June 28, 2013, and Sept 26, 2013, 34 patients were enrolled in part B, 33 of whom completed the 24 week treatment period. All patients received at least one dose of ivacaftor. Results of ivacaftor pharmacokinetics suggested that exposure was similar to that reported in adults (median Cmin were 536 ng/mL for the 50 mg dose; 580 ng/mL for the 75 mg dose; median ivacaftor AUC values were 9840 ng × h/mL and 10 200 ng × h/mL, respectively). Common adverse events in part B included cough (in 19 [56%] of 34 patients) and vomiting (in ten [29%]). Five (15%) patients had liver function test (LFT) results that were more than eight times higher than the upper limit of normal, four of whom had study drug interrupted, and one of whom had study drug discontinued. Six (18%) of 34 patients had seven serious adverse events; a raised concentration of transaminases was the only serious adverse event regarded as related to ivacaftor and the only adverse event that resulted in study treatment discontinuation. At week 24, in patients for whom we had data, sweat chloride had changed from baseline by a mean of -46·9 mmol/L (SD 26·2, p<0·0001), weight Z score by 0·2 (0·3; p<0·0001), BMI Z score by 0·4 (0·4, p<0·0001), and height Z score by -0·01 (0·3; p=0·84).. Ivacaftor at doses of 50 mg and 75 mg seems to be safe in children aged 2-5 years with cystic fibrosis with a gating mutation followed up for 24 weeks, although the frequency of elevated LFTs suggests that monitoring should be frequent in young children, particularly those with a history of elevated LFTs. Results of an ongoing extension study assessing durability of these effects and longer-term safety are warranted.. Vertex Pharmaceuticals Incorporated.

    Topics: Aminophenols; Child, Preschool; Chloride Channel Agonists; Chlorides; Cough; Cystic Fibrosis; Cystic Fibrosis Transmembrane Conductance Regulator; Female; Forced Expiratory Volume; Genotype; Humans; Male; Mutation; Quinolones; Sweat

2016
Long-term safety and efficacy of ivacaftor in patients with cystic fibrosis who have the Gly551Asp-CFTR mutation: a phase 3, open-label extension study (PERSIST).
    The Lancet. Respiratory medicine, 2014, Volume: 2, Issue:11

    Ivacaftor, a cystic fibrosis transmembrane conductance regulator (CFTR) potentiator, is approved for the treatment of patients with cystic fibrosis aged 6 years or older with Gly551Asp-CFTR. We assessed the safety and efficacy of ivacaftor during 96 weeks of PERSIST in patients with cystic fibrosis who completed a previous 48-week, placebo-controlled trial of the drug (STRIVE or ENVISION).. In this phase 3, open-label extension study, patients received ivacaftor 150 mg every 12 h in addition to their prescribed cystic fibrosis therapies. Patients who received placebo in their previous study initiated ivacaftor in this extension study. Patients were eligible if they had a Gly551Asp-CFTR mutation on at least one allele. The primary objective was to assess the long-term safety profile of ivacaftor as assessed by adverse events, clinical laboratory assessments, electrocardiograms, vital signs, and physical examination; secondary measures included change in forced expiratory volume in one second (FEV1), weight, and pulmonary exacerbations. This study is registered with ClinicalTrials.gov, number NCT01117012 and EudraCT, number 2009-012997-11.. Between July 8, 2010, and April 8, 2013, 144 adolescents/adults (≥12 years) from STRIVE and 48 children (6-11 years) from ENVISION were enrolled. Across both trials, 38 (20%) patients had a serious adverse event during the first 48 weeks and 44 (23%) during the subsequent 48 weeks. Two adults (1%) and one child (<1%) discontinued because of adverse events. The most common adverse events were pulmonary exacerbation, cough, and upper respiratory tract infection. Patients previously treated with ivacaftor had sustained improvements in FEV1, weight, and rate of pulmonary exacerbations for up to 144 weeks of treatment. Among adolescents/adults and children who previously received ivacaftor, absolute change in FEV1 at week 96 (144 weeks ivacaftor) was 9·4 and 10·3 % points and absolute increase in weight was 4·1 kg and 14·8 kg, respectively. For adolescents/adults only, the pulmonary exacerbation rate remained suppressed compared with that of patients who received placebo in the placebo-controlled study.. At 144 weeks of treatment, ivacaftor was well tolerated, with no new safety concerns. Ivacaftor also provided durable effects for 144 weeks in patients who had received active treatment in the placebo-controlled study. Those patients who previously received placebo had improvements comparable to those of patients treated with ivacaftor in the placebo-controlled study.. Vertex Pharmaceuticals Inc.

    Topics: Adolescent; Adult; Aminophenols; Child; Cough; Cystic Fibrosis; Cystic Fibrosis Transmembrane Conductance Regulator; Disease Progression; Female; Forced Expiratory Volume; Humans; Male; Mutation; Quinolones; Respiratory Tract Infections; Time Factors; Weight Gain; Young Adult

2014