Viewing Study NCT00897351


Ignite Creation Date: 2025-12-24 @ 11:39 PM
Ignite Modification Date: 2025-12-25 @ 9:29 PM
Study NCT ID: NCT00897351
Status: COMPLETED
Last Update Posted: 2017-05-17
First Post: 2009-05-09
Is NOT Gene Therapy: False
Has Adverse Events: False

Brief Title: Study of Tissue and Blood Samples From Patients With Recurrent Prostate Cancer Who Received Lapatinib on Clinical Trial ECOG-E5803
Sponsor: ECOG-ACRIN Cancer Research Group
Organization:

Study Overview

Official Title: Evaluation of Polymorphisms, Mutations, and Protein Expression by Automated Quantitative Immunohistochemistry (AQUA) in the LapatinibTargets and Metabolic Pathway in Samples From E5803
Status: COMPLETED
Status Verified Date: 2017-05
Last Known Status: None
Delayed Posting: No
If Stopped, Why?: Not Stopped
Has Expanded Access: False
If Expanded Access, NCT#: N/A
Has Expanded Access, NCT# Status: N/A
Acronym: None
Brief Summary: RATIONALE: Studying samples of tumor tissue and blood in the laboratory from patients with cancer may help doctors learn more about changes that occur in DNA and identify biomarkers related to cancer. It may also help doctors predict how patients will respond to treatment.

PURPOSE: This research study is looking at tissue and blood samples from patients with recurrent prostate cancer who received lapatinib on clinical trial ECOG-E5803.
Detailed Description: OBJECTIVES:

* To determine the association between polymorphisms in drug metabolizing enzymes and lapatinib ditosylate-associated toxicity in patients with hormone-sensitive recurrent prostate cancer receiving lapatinib ditosylate on clinical trial ECOG-E5803.
* To determine the association between mutations in EGFR, HER-2 and Kras; protein expression of HER2, EGFR, MAPK and AKT; polymorphism controlling androgen synthesis; and progression-free survival.

OUTLINE: Tissue and blood samples collected from patients enrolled on clinical trial ECOG-E5803 are analyzed for correlative studies. Samples are assessed for HER2, EGFR, MAPK, and Akt; EGFR mutations and polymorphisms in CYP3A4; Ras mutations; recently identified mutations in HER2-neu and Kras; and additional polymorphisms in the lapatinib ditosylate metabolic pathway by automated quantitative IHC. Predictors of efficacy and toxicity are analyzed, including markers in the EGFR pathway as predictors of progression-free survival.

Study Oversight

Has Oversight DMC:
Is a FDA Regulated Drug?:
Is a FDA Regulated Device?:
Is an Unapproved Device?:
Is a PPSD?:
Is a US Export?:
Is an FDA AA801 Violation?:

Secondary ID Infos

Secondary ID Type Domain Link View
ECOG-E5803T1 None None View