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{'hasResults': False, 'derivedSection': {'miscInfoModule': {'versionHolder': '2025-12-24', 'removedCountries': ['United States']}, 'conditionBrowseModule': {'meshes': [{'id': 'D011471', 'term': 'Prostatic Neoplasms'}], 'ancestors': [{'id': 'D005834', 'term': 'Genital Neoplasms, Male'}, {'id': 'D014565', 'term': 'Urogenital Neoplasms'}, {'id': 'D009371', 'term': 'Neoplasms by Site'}, {'id': 'D009369', 'term': 'Neoplasms'}, {'id': 'D005832', 'term': 'Genital Diseases, Male'}, {'id': 'D000091662', 'term': 'Genital Diseases'}, {'id': 'D000091642', 'term': 'Urogenital Diseases'}, {'id': 'D011469', 'term': 'Prostatic Diseases'}, {'id': 'D052801', 'term': 'Male Urogenital Diseases'}]}, 'interventionBrowseModule': {'meshes': [{'id': 'C053541', 'term': 'bicalutamide'}, {'id': 'D016729', 'term': 'Leuprolide'}, {'id': 'C488568', 'term': 'squalamine lactate'}, {'id': 'D017024', 'term': 'Chemotherapy, Adjuvant'}, {'id': 'D000726', 'term': 'Androgen Antagonists'}, {'id': 'D020360', 'term': 'Neoadjuvant Therapy'}], 'ancestors': [{'id': 'D007987', 'term': 'Gonadotropin-Releasing Hormone'}, {'id': 'D010906', 'term': 'Pituitary Hormone-Releasing Hormones'}, {'id': 'D007028', 'term': 'Hypothalamic Hormones'}, {'id': 'D036361', 'term': 'Peptide Hormones'}, {'id': 'D006728', 'term': 'Hormones'}, {'id': 'D006730', 'term': 'Hormones, Hormone Substitutes, and Hormone Antagonists'}, {'id': 'D009479', 'term': 'Neuropeptides'}, {'id': 'D010455', 'term': 'Peptides'}, {'id': 'D000602', 'term': 'Amino Acids, Peptides, and Proteins'}, {'id': 'D009842', 'term': 'Oligopeptides'}, {'id': 'D009419', 'term': 'Nerve Tissue Proteins'}, {'id': 'D011506', 'term': 'Proteins'}, {'id': 'D003131', 'term': 'Combined Modality Therapy'}, {'id': 'D013812', 'term': 'Therapeutics'}, {'id': 'D004358', 'term': 'Drug Therapy'}, {'id': 'D006727', 'term': 'Hormone Antagonists'}, {'id': 'D045505', 'term': 'Physiological Effects of Drugs'}, {'id': 'D020228', 'term': 'Pharmacologic Actions'}, {'id': 'D020164', 'term': 'Chemical Actions and Uses'}]}}, 'protocolSection': {'designModule': {'phases': ['PHASE2'], 'studyType': 'INTERVENTIONAL', 'designInfo': {'allocation': 'RANDOMIZED', 'maskingInfo': {'masking': 'NONE'}, 'primaryPurpose': 'TREATMENT'}, 'enrollmentInfo': {'type': 'ACTUAL', 'count': 0}}, 'statusModule': {'whyStopped': 'Sponsor withdrew drug.', 'overallStatus': 'WITHDRAWN', 'startDateStruct': {'date': '2002-01'}, 'expandedAccessInfo': {'hasExpandedAccess': False}, 'statusVerifiedDate': '2011-05', 'completionDateStruct': {'date': '2007-06', 'type': 'ACTUAL'}, 'lastUpdateSubmitDate': '2012-05-24', 'studyFirstSubmitDate': '2005-10-25', 'studyFirstSubmitQcDate': '2005-10-25', 'lastUpdatePostDateStruct': {'date': '2012-05-28', 'type': 'ESTIMATED'}, 'studyFirstPostDateStruct': {'date': '2005-10-27', 'type': 'ESTIMATED'}, 'primaryCompletionDateStruct': {'date': '2007-06', 'type': 'ACTUAL'}}, 'outcomesModule': {'primaryOutcomes': [{'measure': 'Tumor response in terms of tumor volume as measured by transrectal ultrasound before and after neoadjuvant treatment'}, {'measure': 'Tumor response in terms of conventional histopathology as measured by prostatectomy specimens and Gleason scores in comparison to pre-treatment biopsies'}, {'measure': 'Tumor response in terms of molecular markers as measured by changes in VEGF, VEGF-flt-1, and integrin Alpha6Beta4, AlphaVBeta3, and AlphaVBeta5 expression in pre-treatment biopsy and post-treatment prostatectomy specimens'}], 'secondaryOutcomes': [{'measure': 'Safety, feasibility, and tolerability as measured by CTCAE v3.0'}, {'measure': 'Prostate-specific antigen (PSA) serology as measured by PSA value during and after completion of study treatment'}, {'measure': 'Survival for up to 3 years after completion of study treatment'}]}, 'oversightModule': {'oversightHasDmc': False}, 'conditionsModule': {'keywords': ['adenocarcinoma of the prostate', 'stage III prostate cancer'], 'conditions': ['Prostate Cancer']}, 'descriptionModule': {'briefSummary': 'RATIONALE: Androgens can cause the growth of prostate cancer cells. Drugs, such as leuprolide and bicalutamide, may stop the adrenal glands from making androgens. Squalamine lactate may stop the growth of prostate cancer by blocking blood flow to the tumor. Giving hormone therapy together with squalamine lactate before surgery may make the tumor smaller and reduce the amount of normal tissue that needs to be removed.\n\nPURPOSE: This randomized phase II trial is studying how well giving hormone therapy together with squalamine lactate works compared to hormone therapy alone in treating patients who are undergoing a radical prostatectomy for locally advanced prostate cancer.', 'detailedDescription': 'OBJECTIVES:\n\n* Compare the effect of neoadjuvant androgen-ablation therapy with vs without squalamine lactate on induced tumor regression and grade migration in patients with locally advanced high-risk adenocarcinoma of the prostate undergoing a radical prostatectomy.\n* Compare the duration of clinical disease-free survival of patients treated with these regimens.\n* Determine the applicability of prostate-specific antigen (PSA) serology as an endpoint determinant in patients treated with these regimens.\n* Compare the feasibility and potential safety effects on wound healing and recovery in patients treated with these regimens before and after a radical prostatectomy.\n\nOUTLINE: This is an open-label, randomized, multicenter study. Patients are randomized to 1 of 2 treatment arms.\n\n* Arm I: Patients receive leuprolide intramuscularly once a month for 3 months and oral bicalutamide once a day for 2 weeks.\n* Arm II: Patients receive leuprolide and bicalutamide as in arm I plus squalamine lactate IV over 4 hours once weekly for 6 weeks.\n\nSeven weeks after beginning treatment, patients in both arms undergo standard radical prostatectomy. Patients then continue to receive leuprolide and bicalutamide with or without squalamine lactate for up to 6 additional weeks.\n\nAfter completion of study treatment, patients are followed periodically for at least 3 years.\n\nPROJECTED ACCRUAL: A total of 132 patients (66 per treatment arm) will be accrued for this study.'}, 'eligibilityModule': {'sex': 'MALE', 'stdAges': ['ADULT', 'OLDER_ADULT'], 'minimumAge': '18 Years', 'healthyVolunteers': False, 'eligibilityCriteria': 'DISEASE CHARACTERISTICS:\n\n* Histologically confirmed adenocarcinoma of the prostate\n\n * Locally advanced disease\n\n * No metastatic disease\n* High-risk characteristics, meeting ≥ 1 of the following criteria:\n\n * Large, hard tumor on digital exam\n * Aggressive-appearing cancer cells on biopsy\n* Prostate-specific antigen \\> 10 ng/mL\n\nPATIENT CHARACTERISTICS:\n\nPerformance status\n\n* 0-1\n\nLife expectancy\n\n* Not specified\n\nHematopoietic\n\n* WBC \\> 1,500/mm\\^3\n* Platelet count \\> 100,000/mm\\^3\n* Hemoglobin \\> 11.0 g/dL\n\nHepatic\n\n* Bilirubin \\< 2 times upper limit of normal (ULN)\n* SGOT and SGPT \\< 2 times ULN\n* PT and PTT normal\n\nRenal\n\n* Creatinine \\< 1.8 g/dL\n\nCardiovascular\n\n* No history of ventricular arrhythmia or dysfunction\n* No congestive heart failure\n* No symptomatic coronary artery disease\n* No prior myocardial infarction\n* No history of thromboembolic disease (e.g., deep vein thrombosis or stroke) within the past 12 months\n* No other significant cardiovascular disease\n\nPulmonary\n\n* No pulmonary embolism within the past 12 months\n* No exercise-limiting respiratory disease\n\nOther\n\n* Fertile patients must use effective barrier method contraception\n* No sexual intercourse for 6 weeks after surgery\n* No uncontrolled diabetes\n* No serious acute infection\n* No other malignancy except nonmelanoma skin cancer\n\nPRIOR CONCURRENT THERAPY:\n\nBiologic therapy\n\n* No prior squalamine lactate\n\nChemotherapy\n\n* No prior chemotherapy for prostate cancer\n* No concurrent anticancer chemotherapy\n\nEndocrine therapy\n\n* No concurrent systemic corticosteroids\n\nRadiotherapy\n\n* No prior radiotherapy for prostate cancer\n* No concurrent radiotherapy\n\nSurgery\n\n* No prior surgery for prostate cancer\n* No other concurrent surgery\n\nOther\n\n* At least 6 weeks since prior and no concurrent use of over-the-counter or herbal drugs that have estrogenic activity\n* No participation in another investigational study within the past 3 months\n* No concurrent participation in another investigational study'}, 'identificationModule': {'nctId': 'NCT00244920', 'briefTitle': 'Hormone Therapy With or Without Squalamine Lactate in Treating Patients Who Are Undergoing a Radical Prostatectomy for Locally Advanced Prostate Cancer', 'organization': {'class': 'OTHER', 'fullName': 'OHSU Knight Cancer Institute'}, 'officialTitle': 'An Open Label Randomized Phase 2 Study To Evaluate The Activity, Tolerability, And Toxicity Of Combined Neoadjuvant Anti-angiogenesis and Androgen Ablation Therapy in Men Undergoing Radical Prostatectomy', 'orgStudyIdInfo': {'id': 'CDR0000446087'}, 'secondaryIdInfos': [{'id': 'OHSU-MSI-1256F-204'}, {'id': 'OHSU-IRB-357'}]}, 'armsInterventionsModule': {'interventions': [{'name': 'bicalutamide', 'type': 'DRUG'}, {'name': 'leuprolide acetate', 'type': 'DRUG'}, {'name': 'squalamine lactate', 'type': 'DRUG'}, {'name': 'adjuvant therapy', 'type': 'PROCEDURE'}, {'name': 'antiandrogen therapy', 'type': 'PROCEDURE'}, {'name': 'antiangiogenesis therapy', 'type': 'PROCEDURE'}, {'name': 'conventional surgery', 'type': 'PROCEDURE'}, {'name': 'neoadjuvant therapy', 'type': 'PROCEDURE'}, {'name': 'releasing hormone agonist therapy', 'type': 'PROCEDURE'}]}, 'contactsLocationsModule': {'overallOfficials': [{'name': 'Mitchell Sokoloff, MD, FACS', 'role': 'STUDY_CHAIR', 'affiliation': 'OHSU Knight Cancer Institute'}]}, 'sponsorCollaboratorsModule': {'leadSponsor': {'name': 'OHSU Knight Cancer Institute', 'class': 'OTHER'}, 'collaborators': [{'name': 'National Cancer Institute (NCI)', 'class': 'NIH'}], 'responsibleParty': {'type': 'SPONSOR'}}}}