EP1019022B2

Method for forming a powder comprising perforated microparticles

Abstract

Stabilized dispersions are provided for the delivery of a bioactive agent to the respiratory tract of a patient. The dispersions preferably comprise a plurality of perforated microstructures dispersed in a suspension medium that typically comprises a hydrofluoroalkane propellant. As density variations between the suspended particles and suspension medium are minimized and attractive forces between microstructures are attenuated, the disclosed dispersions are particularly resistant to degradation, such as, by settling or flocculation. In particularly preferred embodiments, the stabilized dispersions may be administered to the lung of a patient using a metered dose inhaler.

EP1019022B2, drawing sheet 1
Sheet 1 of 11

Term

Term ended

Expired 29 September 2018, 8 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

8 claims: 1 independent, 7 dependent

  1. 1
    A method for forming a powder comprising perforated microstructures by spray drying, comprising the steps of:providing a liquid feed stock comprising a bioactive agent selected from the group consisting of antiallergics, bronchodilators, pulmonary lung surfactants, analgesics, antibiotics, antiinfectives, leukotriene inhibitors or antagonists, antihistamines, antiinflammatories, antineoplastics, anticholinergics, anaesthetics, antituberculars, cardiovascular agents, enzymes, steroids, genetic material, viral vectors, antisense agents, proteins, peptides and combinations thereof, surfactant, and 2-50% v/v of a blowing agent selected from fluorinated compounds having a boiling point of greater than 100°C;atomising said liquid feed stock to produce dispersed droplets;and drying said droplets to form perforated microstructures comprising said bioactive agent and surfactant, and collecting said perforated microstructures.
  2. 4
    The method of any of claims 1 to 3, wherein the mean aerodynamic diameter of said collected perforated microstructures is between 0.5 and 5.0 µm.
  3. 5
    The method of any of claims 1 to 4, wherein said perforated microstructures have a mean geometric diameter between 1-30 µm.
  4. 7
    The method of any of claims 1 to 6, wherein the perforated microstructures comprise a bulk density of less than 0.1 g/cm 3 .
  5. 8
    The method of any of claims 1 to 7, wherein said perforated microstructures comprise hollow porous microspheres.