IP Library Granted Patent US 8,119,165
Granted Patent B2
US 8,119,165 · App. 13/189,606 · Granted Feb 21, 2012

Method and composition for hyperthermally treating cells

View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 8,119,165
App. No.
13/189,606
Granted
Feb 21, 2012
Kind
B2
Abstract

A method and composition for hyperthermally diagnosing and monitoring treatment of cells in an animal with photoacoustic sound and nanoparticles. The heat (temperature) and photoacoustic sound wave production inside the target tissue is measured. The desired temperature is achieved using a laser and photoacoustic imaging technique. Hyperthermia treatment of tissue in a target site applies a heat source to kill cells without protein denaturation. The method introduces an encapsulated dye that is released at a selected temperature in the target site to indicate that a threshold temperature has been reached to hyperthermally treat the tissue. In one embodiment, the composition releases the dye at a temperature of 42° C. to 56° C., and preferably about 45° C. to 49° C. The composition which can be a liposome composition encapsulating the dye can be introduced to the bloodstream of the patient to flow through the target site.

Claims (18)

1. A method of diagnosing and hyperthermally treating malignant cells in a patient, the method comprising

injecting a ferromagnetic-antitumor antibody labeled nanoparticle and a temperature indicating substance to form an ferromagnetic-antibody labeled nanoparticle-cell complex at a target site,

exposing the target site to a magnetic field energy source under conditions sufficient to heat the ferromagnetic particles in the nanoparticle-cell complex to a temperature between 42° C. to 55° C.,

measuring the acoustic response produced by the nanopaticles, and

determining the presence or absence of malignant cells at the target site based on the nanoparticle acoustic response,

the ferromagnetic nanoparticles comprising iron oxide.

2. A method of diagnosing and hyperthermally treating malignant cells in a patient, the method comprising

injecting a ferromagnetic-antitumor antibody labeled nanoparticle and a temperature indicating substance to form an ferromagnetic-antibody labeled nanoparticle-cell complex at a target site,

exposing the target site to a magnetic field energy source under conditions sufficient to heat the ferromagnetic particles in the nanoparticle-cell complex to a temperature between 42° C. to 55° C.,

measuring the acoustic response produced by the nanopaticles, and

determining the presence or absence of malignant cells at the target site based on the nanoparticle acoustic response;

wherein the magnetic field energy source is a magnetic resonance imaging instrument.

3. A method of diagnosing and hyperthermally treating malignant cells in a patient, the method comprising

injecting a ferromagnetic-antitumor antibody labeled nanoparticle and a temperature indicating substance to form an ferromagnetic-antibody labeled nanoparticle-cell complex at a target site,

exposing the target site to a magnetic field energy source under conditions sufficient to heat the ferromagnetic particles in the nanoparticle-cell complex to a temperature between 42° C. to 55° C.,

measuring the acoustic response produced by the nanopaticles, and

determining the presence or absence of malignant cells at the target site based on the nanoparticle acoustic response;

where the magnetic field ranges from 0.0001 Tesla (T) to 3 T.

Continuity (5)
Continuation In Part 13149209 · May 31, 2011
Continuation In Part 12478029 · Jun 4, 2009
Continuation In Part 11485352 · Jul 13, 2006
Division 10073863 · Feb 14, 2002
Related Publication 20110287035A1 · Nov 24, 2011