Pharmacogenomics IND EXEMPT SNP Clinical Study - Crizotinib and Single Nucleotide Polymorphisms

Sponsor: Han Xu, M.D., Ph.D., FAPCR, Sponsor-Investigator, IRB Chair

Sponsor score: 0

ClinicalTrials ID:NCT06062810

This study examines the link between ALK and CYP4503A gene SNPs and Crizotinib's efficacy and safety in 600 NSCLC patients. Participants undergo lung biopsies and are divided into two groups, receiving either high (250 mg) or low (200 mg) doses of Crizotinib. Eligibility includes NSCLC diagnosis, measurable disease, adequate organ function, and informed consent. The study is double-blind and random.

Patient Parameters

Program Overview

Explore the relationship between drug target ALK gene single nucleotide polymorphisms and XALKORI - Crizotinib therapeutic-effects in patients with non-small cell lung cancer, based on Oxford precisely sequencing drug targets' genes.

Explore the relationship between drug target CYP4503A gene single nucleotide polymorphisms and XALKORI - Crizotinib side-effects in patients with non-small cell lung cancer, based on Oxford precisely sequencing drug targets' genes.

Description

The usual approach group, after lung tissue biopsy, 300 double blind random group separated NSCLC patients currently used the Combined Chemotherapy on XALKORI - crizotinib capsule, film coated, it will try to look for the relationship between the Crizotinib therapeutic efficacy and the ALK SNP Genotyping, and the relationship between the Crizotinib therapeutic safety and the CYP4503A SNP Genotyping, based on Oxford precisely sequencing drug targets' genes.

The study approach group, after lung tissue biopsy, 300 double blind random group separated NSCLC patients currently used the Combined Chemotherapy on XALKORI - crizotinib capsule, film coated, it will try to look for the relationship between the Crizotinib therapeutic efficacy and the ALK SNP Genotyping, and the relationship between the Crizotinib therapeutic safety and the CYP4503A SNP Genotyping, based on Oxford precisely sequencing drug targets' genes.

  1. Detect drug target whole gene precision sequence of everyone patient for all 600 recruited double blind NSCLC patients.
  2. Mutually compare everyone patient drug target whole gene precision sequence for a total of 600 recruited double blind NSCLC patients.
  3. Calculate drug target gene SNPs in all 600 recruited double blind NSCLC patients.
  4. Correlate everyone patient drug target gene SNP to everyone patient drug efficacy.
  5. Correlate everyone patient drug target gene SNP to everyone patient drug safety.
  6. Mutually compare the usual approach group SNPs (300 double blind random group separated NSCLC patients) with the study approach group SNPs (300 double blind random group separated NSCLC patients).
  7. Confirm the relationship between drug target gene SNPs and drug efficacy.
  8. Confirm the relationship between drug target gene SNPs and drug safety.

Eligibility Criteria

Inclusion Criteria

  1. Clinical diagnosis of Non-Small Cell Lung Cancer (NSCLC)
  2. Clinical lung tissue biopsy diagnosis of NSCLC
  3. Suitable for enough lung tissue biopsy of NSCLC
  4. Random and double blind
  5. Measurable disease
  6. Adequate organ functions
  7. Adequate performance status
  8. Age 22 years old and over
  9. Sign an informed consent form
  10. Receive blood-drawing

Exclusion Criteria

  1. Pneumonectomy
  2. Treatment with other anti-cancer therapies and cannot be stopped currently
  3. Pregnancy
  4. Breast-feeding
  5. The patients with other serious intercurrent illness or infectious diseases
  6. Have more than one different kind of cancer at the same time
  7. Serious Allergy to Drugs
  8. Serious Bleed Tendency
  9. Serious Risks or Serious Adverse Events of the drug product
  10. The prohibition of drug products
  11. Have no therapeutic effects
  12. Follow up to the most current label

Locations

FACILITYZIPCITYSTATE
Medicine Invention Design, Inc. - IORG000784920853RockvilleMaryland

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