EP1550464A1

Stabilized microbubble composition for ultrasound

Abstract

A microbubble preparation formed of a plurality of microbubbles comprising a first gas and a second gas surrounded by a membrane such as a surfactant, wherein the first gas and the second gas are present in a molar ratio of from about 1:100 to about 1000:1, and wherein the first gas has a vapor pressure of at least about (760 - x) mm Hg at 37 °C, where x is the vapor pressure of the second gas at 37 ° C, and wherein the vapor pressure of each of the first and second gases is greater than about 75 mm Hg at 37 °C; also disclosed are methods for preparing microbubble compositions, including compositions that rapidly shrink from a first average diameter to a second average diameter less than about 75 % of the first average diameter and are stabilized at the second average diameter; methods and kits for preparing microbubbles; and methods for using such microbubbles as contrast agents.

EP1550464A1, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Projected expiry passed 1 August 2014, 12.1 years ago.

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20 claims: 2 independent, 18 dependent

  1. 1
    A stabilized gas filled microbubble preparation in a liquid medium, comprising:a mixture of gases comprising a first gas comprising a gas selected from the group consisting of N2, CO 2 , O 2 or mixtures thereof and a second gas which is a perfluorocarbon, wherein said first gas and said second gas are present in a molar ratio of about 1:100 to 1000:1, and wherein said first gas has a vapor pressure of at least about (760 - x) mm Hg at 37 C, wherein x is the vapor pressure of the second gas at 37 C, and wherein said vapor pressure of each of said first and second gases is greater than about 75 mm Hg at 37 C, with the proviso that said first gas and said second gas are not water vapor, and said mixture of gases are surrounded by a membrane forming material.
  2. 6
    The stabilized gas filled microbuble preparation wherein the first gas and the second gas are present in a molar ratio of about 1:10 to 100:1.