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MechanismBacterial DNA gyrase inhibitors [+1] |
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Drug Highest PhaseApproved |
First Approval Ctry. / Loc.United States |
First Approval Date13 Dec 2002 |
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MechanismBacterial DNA gyrase modulators [+1] |
Active Org.- |
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Active Indication- |
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Drug Highest PhasePending |
First Approval Ctry. / Loc.- |
First Approval Date20 Jan 1800 |
Randomized, Double-blind, Cross-over Study in COPD Subjects to Investigate Safety, Tolerability, and Pharmacokinetics of Ciprofloxacin After Single Dose Inhalations of 50 mg and 75 mg Ciprofloxacin Inhalation Powder
The purpose of this study is to compare the safety and pharmacokinetics of ciprofloxacin after inhalation of single 52.5 and 48.75 mg doses in COPD patients. In this study the 48.75 mg dose will be administered for the first time using a new high dose strength (i.e. one capsule containing 75 mg powder = 48.75 mg ciprofloxacin) formulation. Safety investigations will focus on local tolerability in the lung and evaluate whether the patient can inhale the higher amount of powder compared to the lower dose strength. Pharmacokinetics is to see how the body absorbs, distributes, breaks down and gets rid of the study drug. Results from this study will be used to decide whether the new dose strength is suitable for larger clinical trials planned for the COPD patients population.
Randomized, Single-Blinded, Placebo-Controlled Study to Evaluate the Safety and Tolerability, the Pulmonary Deposition and Pharmacokinetics of Ciprofloxacin in Patients With Moderate to Severe Chronic Obstructive Pulmonary Disease (GOLD II - III), Following Inhalation of Ciprofloxacin PulmoSphere® Inhalation Powder
Objectives of the study are to investigate the safety, tolerability and levels of ciprofloxacin in the lung after single and multiple inhalative administration to patients with moderate to severe COPD (stage II-III according to GOLD Criteria)
100 Clinical Results associated with Bacterial DNA gyrase
100 Translational Medicine associated with Bacterial DNA gyrase
0 Patents (Medical) associated with Bacterial DNA gyrase