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Novel compositions and methods for the identification, assessment, prevention, and therapy of human cancers

a composition and cancer technology, applied in the field of human cancer compositions and methods, can solve the problems of ineffective or less effective therapeutic agents for some patients, over time, and therapeutic agents that are effective for a given patient can be completely ineffective or harmful for other patients, so as to reduce the growth rate of tumors, eliminate ineffective or inappropriate therapeutic agents, and reduce tumor growth rate

Inactive Publication Date: 2007-08-16
BOARD OF RGT THE UNIV OF TEXAS SYST +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

Enables the determination of appropriate therapeutic agents for individual patients, predicts treatment effectiveness, and identifies potential resistance, thereby optimizing cancer treatment strategies.

Problems solved by technology

In the realm of cancer therapy it often happens that a therapeutic agent that is initially effective for a given patient becomes, over time, ineffective or less effective for that patient.
Further, a therapeutic agent that is effective, at least initially, for some patients can be completely ineffective or even harmful for other patients.

Method used

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  • Novel compositions and methods for the identification, assessment, prevention, and therapy of human cancers
  • Novel compositions and methods for the identification, assessment, prevention, and therapy of human cancers
  • Novel compositions and methods for the identification, assessment, prevention, and therapy of human cancers

Examples

Experimental program
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specific embodiments

1. Identification Of Sensitivity And Resistance Genes

[0031] The present invention provides genes that are expressed in tumors that are sensitive to a given therapeutic agent and whose expression correlates with sensitivity to that therapeutic agent (Tables 1 and 3). The present invention also provides genes that are expressed in tumors that are resistant to a given therapeutic agent and whose expression correlates with resistance to that therapeutic agent (Tables 2 and 4). The present invention further provides novel genes (Tables 1 and 2, SEQ ID NOS: 1-88). Accordingly, one or more of the genes of the present invention can be used as markers (or surrogate markers) to identify tumors, including tumor cells, that are likely to be successfully treated by that agent. In addition, the markers of the present invention can be used to identify cancers that have become or are at risk of becoming refractory to treatment with the agent.

[0032] Tables 1 and 3 show markers whose expression co...

specific examples

A. Identification Of Sensitivity And Resistant Markers

[0235] Tumor tissue from patients that were deemed sensitive to combination TAXOL and cisplatin therapy (i.e., the patient was alive for 5.5 years after treatment), and tumor tissue from patients that were deemed resistant to combination TAXOL and cisplatin therapy (i.e., the patient lived for either 10 or 15 months after treatment) were used to create subtracted libraries. Subtracted libraries were generated using a PCR based method that allows the isolation of clones expressed at higher levels in one population of mRNA (tester) compared to another population (driver). Both tester and driver mRNA populations are converted into cDNA by reverse transcription, and then PCR amplified using the SMART PCR kit from Clontech. Tester and driver cDNAs are then hybridized using the PCR-Select cDNA subtraction kit from Clontech. This technique results in both subtraction and normalization, which is an equalization of copy number of low-ab...

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Abstract

The present invention is directed to the identification of markers that can be used to determine whether tumors are sensitive or resistant to a therapeutic agent. The present invention is also directed to the identification of therapeutic targets. The invention features a number of “sensitivity markers.” These are markers that are expressed in most or all cell lines that are sensitive to treatment with an agent and which are not expressed (or are expressed at a rather low level) in cells that are resistant to treatment with that agent. The invention also features a number of “resistance markers.” These are markers that are expressed in most or all cell lines that are resistant to treatment with an agent and which are not expressed (or are expressed at a rather low level) in cells that are sensitive to treatment with that agent.

Description

RELATED APPLICATIONS [0001] The present application is a continuation application of U.S. patent application Ser. No. 10 / 125,159, filed on Apr. 18, 2002, which claims the benefit of U.S. provisional patent application Ser. No. 60 / 295,031 filed on May 31, 2001 and from U.S. provisional patent application Ser. No. 60 / 284, 773, filed on Apr. 18, 2001, and U.S. provisional patent application Ser. No. 60 / 284,764, filed on Apr. 18, 2001, which was abandoned on May 30, 2001. The entire contents of each of the above-identified applications are expressly incorporated herein by reference.BACKGROUND OF THE INVENTION [0002] Cancers can be viewed as a breakdown in the communication between tumor cells and their environment, including their normal neighboring cells. Growth-stimulatory and growth-inhibitory signals are routinely exchanged between cells within a tissue. Normally, cells do not divide in the absence of stimulatory signals or in the presence of inhibitory signals. In a cancerous or n...

Claims

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Application Information

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Patent Type & Authority Applications(United States)
IPC IPC(8): C12Q1/68G01N33/574C12N5/06C07K16/30A61K31/337
CPCA61K31/337G01N2800/52G01N33/57449C12Q1/6886C12Q2600/106C12Q2600/158
Inventor IARTCHOUK, NATALIAAYERS, MARK D.BROWN, JEFFREY L.BAST, ROBERT C. JR.LU, KARENMILLS, GORDON B.
Owner BOARD OF RGT THE UNIV OF TEXAS SYST