IP Library Granted Patent US 7,273,458
Granted Patent B2
US 7,273,458 · App. 09/229,226 · Granted Sep 25, 2007

Method of applying acoustic energy effective to alter transport or cell viability

Assignee: Georgia Tech Research Corporation
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Quick Facts
Patent No.
US 7,273,458
App. No.
09/229,226
Granted
Sep 25, 2007
Kind
B2
Abstract

A method for reversibly, or irreversibly, altering the permeability of cells, tissues or other biological barriers, to molecules to be transported into or through these materials, through the application of acoustic energy, is enhanced by applying the ultrasound in combination with devices for monitoring and/or implementing feedback controls. The acoustic energy is applied directly or indirectly to the cells or tissue whose permeability is to be altered, at a frequency and intensity appropriate to alter the permeability to achieve the desired effect, such as the transport of endogenous or exogenous molecules and/or fluid, for drug delivery, measurement of analyte, removal of fluid, alteration of cell or tissue viability or alteration of structure of materials such as kidney or gall bladder stones. In the preferred embodiment, the method includes measuring the strength of the acoustic field applied to the cell or tissue at the applied frequency or other frequencies, and using the acoustic measurement to modify continued or subsequent application of acoustic energy to the cell or tissue. In another preferred embodiment, the method further includes simultaneously, previously, or subsequently exposing the cell or tissue to the chemical or biological agent to be transported into or across the cell or tissue. In another preferred application, the method includes removing biological fluid or molecules from the cells or tissue simultaneously, previously or subsequently to the application of acoustic energy and, optionally, assaying the biological fluid or molecules.

Claims (9)

1. A method for altering cell viability or transport of chemical or biological agents into or through an internal organ, internal tissue or vessel in a human or other animal using acoustic energy, comprising:

administering acoustic energy at one or more frequencies by applying a transducer to a first site on the human or other animal other than where transport or cell viability is to be altered;

wherein the acoustic energy is effective to alter transport or cell viability at a second site distant from the first site at a different tissue or an internal organ or an internal vessel in a different tissue, wherein the transducer is placed inside the body using invasive or minimally invasive means.

2. A method for altering cell viability or transport of chemical or biological agents into or through an internal organ, internal tissue or vessel in a human or other animal using acoustic energy, comprising:

administering acoustic energy at one or more frequencies by applying a transducer to a first site on the human or other animal other than where transport or cell viability is to be altered;

wherein the acoustic energy is effective to alter transport or cell viability at a second site distant from the first site at a different tissue or an internal organ or an internal vessel in a different tissue, wherein the transducer is placed within a blood vessel using a catheter.

3. A method for altering cell viability or transport of chemical or biological agents into or through an internal organ, internal tissue or vessel in a human or other animal using acoustic energy, comprising:

administering acoustic energy at one or more frequencies by applying a transducer to a first site on the human or other animal other than where transport or cell viability is to be altered;

wherein the acoustic energy is effective to alter transport or cell viability at a second site distant from the first site at a different tissue or an internal organ or an internal vessel in a different tissue, wherein the transducer is placed within a surgical incision.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 16, 1999
From: LEWIS, THOMAS N.; PRAUSNITZ, MARK R.; LIU, JIN
To: GEORGIA TECH RESEARCH CORPORATION
Reel/Frame 009851/0086 →
Continuity (3)
Provisional Application 6008530400 · May 13, 1998
Provisional Application 6007124000 · Jan 12, 1998
Related Publication 20020082527A1 · Jun 27, 2002