Treprostinil administration using a metered dose inhaler

a technology of treprostinil and inhaler, which is applied in the direction of aerosol delivery, drug composition, and active ingredients of elcosanoid, can solve the problems of pulmonary hypertension, inability to control the dose, so as to achieve a high degree of autonomy

Inactive Publication Date: 2008-08-21
UNITED THERAPEUTICS CORP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

[0013]Administration of treprostinil using a metered dose inhaler can provide pa

Problems solved by technology

In addition, certain infectious diseases, such as HIV and liver diseases with portal hypertension may cause pulmonary hypertension.
Generally, however, disease progress is inexorable via syncope and right heart failure and death is quite often sudden.
Fluid buildup in the lung (pulmonary edema) can result, with an associated decrease in l

Method used

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  • Treprostinil administration using a metered dose inhaler
  • Treprostinil administration using a metered dose inhaler
  • Treprostinil administration using a metered dose inhaler

Examples

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example 1

Open Label Study upon Acute Safety, Tolerability and Hemodynamic Effects of Inhaled Treprostinil Delivered in Seconds

[0053]A study was conducted of acute vasodilator challenge during right heart catheter investigation to determine the safety, tolerability and pulmonary vasodilatory potency of inhaled treprostinil applied in seconds by a soft mist inhaler (SMI-TRE). The study produced evidence for a long lasting favourable effect of SMI-TRE on pulmonary hemodynamics in absence of systemic side effects and gas exchange disruptions.

Summary:

[0054]Inhaled nitric oxide (20 ppm; n=45) and inhaled treprostinil sodium (TRE; n=41) or placebo (n=4) were applied once during right heart catheter investigation. TRE was delivered in 2 breaths (1000 μg / ml aerosol concentration; 30 μg dose; n=12), 3 breaths (1000 μg / ml; 45 μg; n=9) or 2 breaths (2000 μg / ml; 60 μg; n=20) from a Respimat® SMI. Pulmonary hemodynamics and blood gases were measured at defined time points, observation time following TRE...

example 2

Investigation of the Effects of Inhaled Treprostinil on Pulmonary Hemodynamics and Gas Exchanged in Severe Pulmonary Hypertension

[0066]This study investigated the effects of inhaled treprostinil on pulmonary vascular resistance in severe pulmonary hypertension and addressed systemic effects and gas exchange as well as tolerability and efficacy of high doses of treprostinil given in short time. A total of 123 patients with a mean pulmonary artery pressure of about 50 mmHg were investigated in three separate randomized studies. Inhaled treprostinil exerted potent sustained pulmonary vasodilation with excellent tolerability and could be safely applied in a few breaths or even one breath.

Summary:

[0067]Three different studies were conducted on a total of 123 patients by means of right heart catheterization: i) a randomized crossover-design study (44 patients), ii) a dose escalation study (31 patients) and iii) a study of reduction of inhalation time while keeping the dose fixed (48 pa...

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Abstract

Treprostinil can be administered using a metered dose inhaler. Such administration provides a greater degree of autonomy to patients. Also disclosed are kits that include a metered dose inhaler containing a pharmaceutical formulation containing treprostinil.

Description

CROSS REFERENCE TO RELATED APPLICATIONS[0001]The present application claims priority to U.S. provisional application No. 60 / 800,016 filed May 15, 2006, which is incorporated herein by reference in its entirety.FIELD OF THE INVENTION[0002]The present application relates to methods and kits for therapeutic treatment and, more particularly, to therapeutic methods involving administering treprostinil using a metered dose inhaler and related kits.BACKGROUND OF THE INVENTION[0003]All blood is driven through the lungs via the pulmonary circulation in order, among other things, to replenish the oxygen which it dispenses in its passage around the rest of the body via the systemic circulation. The flow through both circulations is in normal circumstances equal, but the resistance offered to it in the pulmonary circulation is generally much less than that of the systemic circulation. When the resistance to pulmonary blood flow increases, the pressure in the circulation is greater for any parti...

Claims

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Application Information

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IPC IPC(8): A61K31/554A61K31/192A61K31/44A61K31/498A61K31/53A61K31/505A61K31/42A61K31/343A61P11/00
CPCA61K31/557A61K9/008A61K31/192A61P11/00A61P43/00A61P9/00A61P9/12A61K9/12A61K9/00A61K9/0078
Inventor OLSCHEWSKI, HORSTROSCIGNO, ROBERTRUBIN, LEWIS J.SCHMEHL, THOMASSEEGER, WERNERSTERRITT, CARLVOSWINCKEL, ROBERT
Owner UNITED THERAPEUTICS CORP
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