Cancer Therapy and Research Center University of Texas Health Science Center San Antonio
San Antonio, Texas, 78229, United States
NCT Number: NCT01620593
Prostate cancer is the most common non-cutaneous cancer in men. Patients with recurrent or metastatic prostate cancer are treated with androgen-deprivation therapy, often termed castration therapy. While the short and medium term benefits of castration are clear in relation to therapeutic efficacy in patients with prostate cancer, it is now appreciated that the resulting hypogonadism associated with castration is responsible for adverse consequences or metabolic syndrome that include increase in body mass index (BMI) and fat mass, hyperinsulinemia and insulin resistance, hyperlipidemia, reduced lean body mass (LBM) and muscle strength, osteoporosis, sexual dysfunction, poor quality of life and higher cardiovascular mortality. Lower testosterone levels in men independently predict the development of metabolic syndrome. Low testosterone levels in men are associated with insulin resistance and diabetes. Metformin is commonly prescribed for the treatment of type II diabetes because it lowers both glucose and insulin levels. Studies show preliminary evidence that metformin might have both antineoplastic and chemopreventative activity. Castration therapy decreases insulin sensitivity, adversely alters lipid profiles and results in weight gain, and it may be associated with a greater incidence of diabetes and cardiovascular disease. Little is known about the optimal strategy to mitigate the adverse metabolic effects of castration in men with prostate cancer. The rationale for using metformin in castrated men with advanced prostate cancer stems from the observation that castration therapy is associated with the metabolic syndrome, hyperinsulinemia and insulin resistance. Furthermore, reports that hyperinsulinemia stimulates insulin receptor expression on prostate cancer leading to tumor growth and development of castrate resistant prostate cancer suggest metformin through its activation of the AMPK-LKBI pathway reduces liver gluconeogenesis secondarily decreasing insulin levels may circumvent tumor growth and resistance to castration therapy. More importantly, evidence that metformin inhibits the mTOR pathway implicates an added therapeutic benefit as an anti-cancer agent.
Looking for future studies?
Notify Me18 year and older
Male
Interventional
Phase 2
San Antonio, Texas, 78229, United States
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
(Eligible subjects must meet one of the inclusion criteria 1-3 and all of items 4-6)
OR
OR
Exclusion criteria
All eligible subjects will be randomized in a 1:l manner to receive a bottle containing sufficient 500mg tablets of placebo after castration, blinded to the patient and the study team.
All eligible subjects will be randomized in a 1:l manner to receive a bottle containing sufficient 500mg tablets of metformin after castration, blinded to the patient and the study team.
Time frame: Change from 0 weeks to 28 weeks
Compare both cohorts of castrated men (metformin vs. placebo) with regard to metabolic consequences of castration therapy:change in weight.
Time frame: Change from 12 to 28 weeks
Compare both cohorts of castrated men (metformin vs. placebo) with regard to metabolic consequences of castration therapy:change in waist circumference.
Time frame: 28 weeks
Complete Response for PSA measure was defined as a PSA less than or equal to 4 ng/ml or undetectable value at 7 months.
Time frame: 1 year
Progression time from randomization to the earliest disease progression defined as an increase of 20% or more as per RECIST criteria. Patients will not be removed from protocol treatment for PSA progression alone in the first 12 weeks on this study. Further rise in PSA even in the absence of deterioration of pre-existing lesions will constitute treatment failure. Adverse event leading to withdrawal related to metformin or placebo or castration treatment. Death from any cause. Patients unwillingness to continue. Patient's non-compliance with taking the study intervention - 50% or higher.
Time frame: 1 year
The safety and tolerability of metformin with castration therapy as compared to castration therapy alone as measured by the number of subjects experiencing adverse events using CTCAE (common terminology criteria for adverse events) version 4 criteria. Grades are assigned to each adverse event where:
Grade 1 is mild symptoms Grade 2 is moderate symptoms Grade 3 is severe or medically significant but not immediately life-threatening symptoms Grade 4 is life-threatening consequences, where urgent intervention is indicated Grade 5 is death related to the adverse event
The University of Texas Health Science Center at San Antonio
Other
Phase II, Randomized, Placebo Controlled, Double Blind, Prospective Study of Castration Compared to Castration Plus Metformin as First Line Treatment for Patients With Advanced Prostate Cancer.
OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.
View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
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