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临床试验/NCT00615459
NCT00615459已完成3 期

A Phase III, Randomized, Double-blind, Double-dummy, Placebo-controlled, Multicenter, 3-period Incomplete Block, Multidose Crossover Study to Determine the Effect on Lung Function of Indacaterol (150 and 300 μg o.d.) in Patients With Moderate to Severe COPD, Using Tiotropium (18 μg o.d.) as an Active Control

Novartis4 个研究点 分布在 2 个国家目标入组 169 人开始时间: 2008年2月最近更新:
适应症
干预措施
相关药物

试验速览

阶段
3 期
状态
已完成
发起方
Novartis
入组人数
169
试验地点
4
主要终点
24-hour Post-dose Trough Forced Expiratory Volume in 1 Second (FEV1) After 14 Days of Treatment

研究概览

简要总结

The study compared the 24-hour spirometry profile of indacaterol with that of placebo and with tiotropium as an active control in patients with chronic obstructive pulmonary disease.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Crossover
主要目的
Treatment
盲法
Double (Participant, Investigator)

入排标准

年龄范围
40 Years 至 —(Adult, Older Adult)
性别
All
接受健康志愿者
否

入选标准

  • •Male and female adults aged ≥ 40 years, who have signed an Informed Consent Form prior to initiation of any study-related procedure
  • •Co-operative out patients with a diagnosis of chronic obstructive pulmonary disease (COPD) (moderate to severe as classified by the Global initiative for chronic obstructive lung disease (GOLD) Guidelines, 2006) and:
  • •Smoking history of at least 10 pack years (current or previous smokers)
  • •Post-bronchodilator forced expiratory volume in 1 second (FEV1) < 80% and ≥30% of the predicted normal value.
  • •Post-bronchodilator FEV1/Forced vital capacity (FVC) < 70%

排除标准

  • •Patients who have been hospitalized for a COPD exacerbation in the 6 weeks prior to Visit 1 or during the run-in period
  • •Patients requiring long-term oxygen therapy for chronic hypoxemia
  • •Patients who have had a respiratory tract infection within 6 weeks prior to Visit
  • •Patients with concomitant pulmonary disease
  • •Patients with a history of asthma
  • •Patients with diabetes Type I or uncontrolled diabetes Type II
  • •Any patient with lung cancer or a history of lung cancer
  • •Any patient with active cancer or a history of cancer with less than 5 years disease free survival time
  • •Patients with a history of long QT syndrome or whose QTc interval (Bazett's) measured at Visit 1 or randomization is prolonged
  • •Patients who have been vaccinated with live attenuated vaccines within 30 days prior to screening or during the run-in period.
  • •Patients unable to successfully use a dry powder inhaler device, MDI or perform spirometry measurements
  • •Other protocol-defined inclusion/exclusion criteria may apply.

研究组 & 干预措施

Sequence 1: Placebo,Tiotropium, Indacaterol 150 μg

Experimental

In period I, placebo to indacaterol (150 or 300 μg) delivered via SDDPI. The placebo for blinding tiotropium was delivered via the tiotropium inhalation device. In period II, tiotropium (18 μg) once daily delivered via inhalation device and matching placebo to indacaterol delivered once daily via single dose dry powder inhaler (SDDPI). In period III, indacaterol 150 μg once daily delivered via SDDPI and placebo to tiotropium was delivered once daily via the tiotropium inhalation device. Daily inhaled corticosteroid (ICS) monotherapy (where applicable) was provided to remain stable throughout study. The Short acting (beta) β2-agonist (SABA) was available for rescue use throughout the study.

干预措施: Placebo (Drug)

Sequence 3: Indacaterol 150 μg, Indacaterol 300 μg, Placebo

Experimental

In period I, indacaterol 150 μg once daily delivered via SDDPI and matching placebo to tiotropium delivered once daily via tiotropium inhalation device. In period II, indacaterol 300 μg once daily delivered via SDDPI and matching placebo to tiotropium delivered once daily via tiotropium inhalation device. In period III, placebo to indacaterol (150 or 300 μg) delivered via SDDPI. The placebo for blinding tiotropium was delivered via the tiotropium inhalation device. Daily ICS monotherapy (where applicable) was provided to remain stable throughout study. The SABA was available for rescue use throughout the study.

干预措施: Placebo (Drug)

Sequence 4: Tiotropium, Placebo, Indacaterol 300 μg

Experimental

In period I, tiotropium (18 μg) once daily delivered via inhalation device and matching placebo to indacaterol delivered once daily via SDDPI. In period II, placebo to indacaterol (150 or 300 μg) delivered via SDDPI. The placebo for blinding tiotropium was delivered via the tiotropium inhalation device. In period III, indacaterol 300 μg once daily delivered via SDDPI and matching placebo to tiotropium delivered once daily via tiotropium inhalation device. Daily ICS monotherapy (where applicable) was provided to remain stable throughout study. The SABA was available for rescue use throughout the study.

干预措施: Placebo (Drug)

Sequence 1: Placebo,Tiotropium, Indacaterol 150 μg

Experimental

In period I, placebo to indacaterol (150 or 300 μg) delivered via SDDPI. The placebo for blinding tiotropium was delivered via the tiotropium inhalation device. In period II, tiotropium (18 μg) once daily delivered via inhalation device and matching placebo to indacaterol delivered once daily via single dose dry powder inhaler (SDDPI). In period III, indacaterol 150 μg once daily delivered via SDDPI and placebo to tiotropium was delivered once daily via the tiotropium inhalation device. Daily inhaled corticosteroid (ICS) monotherapy (where applicable) was provided to remain stable throughout study. The Short acting (beta) β2-agonist (SABA) was available for rescue use throughout the study.

干预措施: Indacaterol (Drug)

Sequence 2: Indacaterol 300 μg, Indacaterol 150 μg, Tiotropium

Experimental

In period I,indacaterol 300 μg once daily delivered via single dose dry powder inhaler (SDDPI)and matching placebo to tiotropium delivered once daily via tiotropium inhalation device. In period II, indacaterol 150 μg once daily delivered via SDDPI and matching placebo to tiotropium delivered once daily via tiotropium inhalation device. In period III, tiotropium (18 μg) once daily delivered via inhalation device and matching placebo to indacaterol delivered once daily via SDDPI. Daily ICS monotherapy (where applicable) was provided to remain stable throughout study. The SABA was available for rescue use throughout the study.

干预措施: Indacaterol (Drug)

Sequence 2: Indacaterol 300 μg, Indacaterol 150 μg, Tiotropium

Experimental

In period I,indacaterol 300 μg once daily delivered via single dose dry powder inhaler (SDDPI)and matching placebo to tiotropium delivered once daily via tiotropium inhalation device. In period II, indacaterol 150 μg once daily delivered via SDDPI and matching placebo to tiotropium delivered once daily via tiotropium inhalation device. In period III, tiotropium (18 μg) once daily delivered via inhalation device and matching placebo to indacaterol delivered once daily via SDDPI. Daily ICS monotherapy (where applicable) was provided to remain stable throughout study. The SABA was available for rescue use throughout the study.

干预措施: Tiotropium (Drug)

Sequence 4: Tiotropium, Placebo, Indacaterol 300 μg

Experimental

In period I, tiotropium (18 μg) once daily delivered via inhalation device and matching placebo to indacaterol delivered once daily via SDDPI. In period II, placebo to indacaterol (150 or 300 μg) delivered via SDDPI. The placebo for blinding tiotropium was delivered via the tiotropium inhalation device. In period III, indacaterol 300 μg once daily delivered via SDDPI and matching placebo to tiotropium delivered once daily via tiotropium inhalation device. Daily ICS monotherapy (where applicable) was provided to remain stable throughout study. The SABA was available for rescue use throughout the study.

干预措施: Tiotropium (Drug)

Sequence 4: Tiotropium, Placebo, Indacaterol 300 μg

Experimental

In period I, tiotropium (18 μg) once daily delivered via inhalation device and matching placebo to indacaterol delivered once daily via SDDPI. In period II, placebo to indacaterol (150 or 300 μg) delivered via SDDPI. The placebo for blinding tiotropium was delivered via the tiotropium inhalation device. In period III, indacaterol 300 μg once daily delivered via SDDPI and matching placebo to tiotropium delivered once daily via tiotropium inhalation device. Daily ICS monotherapy (where applicable) was provided to remain stable throughout study. The SABA was available for rescue use throughout the study.

干预措施: Indacaterol (Drug)

Sequence 3: Indacaterol 150 μg, Indacaterol 300 μg, Placebo

Experimental

In period I, indacaterol 150 μg once daily delivered via SDDPI and matching placebo to tiotropium delivered once daily via tiotropium inhalation device. In period II, indacaterol 300 μg once daily delivered via SDDPI and matching placebo to tiotropium delivered once daily via tiotropium inhalation device. In period III, placebo to indacaterol (150 or 300 μg) delivered via SDDPI. The placebo for blinding tiotropium was delivered via the tiotropium inhalation device. Daily ICS monotherapy (where applicable) was provided to remain stable throughout study. The SABA was available for rescue use throughout the study.

干预措施: Indacaterol (Drug)

Sequence 1: Placebo,Tiotropium, Indacaterol 150 μg

Experimental

In period I, placebo to indacaterol (150 or 300 μg) delivered via SDDPI. The placebo for blinding tiotropium was delivered via the tiotropium inhalation device. In period II, tiotropium (18 μg) once daily delivered via inhalation device and matching placebo to indacaterol delivered once daily via single dose dry powder inhaler (SDDPI). In period III, indacaterol 150 μg once daily delivered via SDDPI and placebo to tiotropium was delivered once daily via the tiotropium inhalation device. Daily inhaled corticosteroid (ICS) monotherapy (where applicable) was provided to remain stable throughout study. The Short acting (beta) β2-agonist (SABA) was available for rescue use throughout the study.

干预措施: Tiotropium (Drug)

结局指标

主要结局

24-hour Post-dose Trough Forced Expiratory Volume in 1 Second (FEV1) After 14 Days of Treatment

时间窗: 23 hours 10 minutes and 23 hours 45 minutes post-dose on Day 15 of each treatment period

FEV1 was measured with spirometry conducted according to internationally accepted standards. Trough FEV1 was defined as the mean of FEV1 measurements at 23 h 10 min and 23 h 45 min post Day 14 dose measured on the morning of Day 15 in each treatment period. The model used for analysis contained the (period) baseline FEV1 as covariate. The (period) baseline FEV1 was defined as the value measured before the study drug administration in that treatment period.

次要结局

  • Peak FEV1 During 4 Hours Post Morning Dose on Day 1(Day 1 (from 0 to 4 hours post morning dose))

研究者

发起方
Novartis
申办方类型
Industry

研究点 (4)

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