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Biomedical subjects

Michael A Carducci

Publications and source records attributed to Michael A Carducci.

8 recordsLinked to original sources

Effect of endothelin-A receptor blockade with atrasentan on tumor progression in men with hormone-refractory prostate cancer: a randomized, phase II, placebo-controlled trial.

PURPOSE: To evaluate the efficacy and safety of atrasentan (ABT-627), an endothelin-A receptor antagonist, in the treatment of asymptomatic, hormone-refractory prostatic adenocarcinoma. PATIENTS AND METHODS: A double-blind, randomized, placebo-controlled clinical trial of hormone-refractory prostate cancer (HRPCa) patients was conducted in the United States and Europe. Two hundred eighty-eight asymptomatic patients with HRPCa and evidence of metastatic disease were randomly assigned to one of three study groups receiving a once-daily oral dose of placebo, 2.5 mg atrasentan, or 10 mg atrasentan, respectively. Primary end point was time to progression; secondary end points included time to prostate-specific antigen (PSA) progression, bone scan changes, and changes in bone and tumor markers. RESULTS: The three treatment groups were similar in all baseline characteristics. Median time to progression in intent-to-treat (ITT) patients (n = 288) was longer in the 10-mg atrasentan group compared with the placebo group: 183 v 137 days, respectively; (P =.13). Median time to progression in evaluable patients (n = 244) was significantly prolonged, from 129 days (placebo group) to 196 days (10-mg atrasentan group; P =.021). For both ITT and evaluable populations in the 10-mg atrasentan group, median time to PSA progression was twice that of the placebo group (155 v 71 days; P =.002). Patients who received placebo continued to have significant increases from baseline in serum (lactate dehydrogenase [LDH]), a marker of disease burden; elevations in LDH were uniformly attenuated by atrasentan in the ITT population. Headache, peripheral edema, and rhinitis were primary side effects, typically of mild to moderate severity. Quality of life was not adversely affected by atrasentan. CONCLUSION: Atrasentan is an oral, targeted therapy with favorable tolerability and the potential to delay progression of HRPCa.

Acid Phosphatase↗

Differentiation therapy.

Differentiation therapy is an area of oncology that is in its infancy. Theoretically, the concept of differentiation therapy involves turning a cancer cell "off" biologically and reverting to a more "benign" phenotype. Many agents have been studied over the past few years, with many already either in use clinically or showing future promise.

Antineoplastic Agents↗

Suppression of prostate cancer induced bone remodeling by the endothelin receptor A antagonist atrasentan.

PURPOSE: We examined the effects of atrasentan (endothelin-A receptor antagonist) on bone deposition and resorption markers and on bone scan index. MATERIALS AND METHODS: This double-blind, randomized, placebo controlled clinical trial of hormone refractory prostate cancer patients was done at 74 medical centers in the United States and Europe. A total of 288 asymptomatic patients with hormone refractory prostate adenocarcinoma and evidence of metastatic disease were randomized to 1 of 3 treatment groups, namely 2.5 mg. atrasentan, 10 mg. atrasentan or placebo administered orally daily until disease progression. The main outcomes measures were changes in bone deposition markers (total alkaline phosphatase and bone alkaline phosphatase) and bone resorption (N-telopeptides, C-telopeptides and deoxypyridinoline), and in the bone scan index. RESULTS: At baseline markers of bone deposition and resorption were elevated 1.4 to 2.7-fold above respective upper limits of normal. Subjects receiving placebo experienced a 58% elevation in mean total alkaline phosphatase and a 99% elevation in mean bone alkaline phosphatase (p < 0.001), whereas subjects receiving 10 mg. atrasentan maintained stable mean total alkaline phosphatase and bone alkaline phosphatase values compared with baseline. N-telopeptides, C-telopeptides and deoxypyridinoline elevation from baseline were consistently less in patients receiving 10 mg. atrasentan compared with placebo. Similar trends were observed in subjects who received 2.5 mg. atrasentan. Changes in clinical bone scan studies paralleled bone marker changes. CONCLUSIONS: Atrasentan suppressed markers of biochemical and clinical prostate cancer progression in bone and demonstrates clinical activity for hormone refractory prostate cancer.

Adenocarcinoma↗

Pharmacotherapy of hormone refractory prostate cancer: new developments and challenges.

Hormone refractory prostate cancer (HRPC) remains a challenge in the management of prostate cancer patients. With the widespread use of PSA (prostate specific antigen), recurrent disease after local treatment for localised prostate cancer is usually diagnosed long before evidence of metastatic disease. In many cases, hormonal manipulations are started at the time of biochemical relapse and therefore, patients become 'hormone refractory' earlier in the course of their disease, frequently with a good performance status, often with no evidence of metastatic disease, and they still face a considerably long life expectancy. Despite these changes, the need for more options in the treatment of HRPC is obvious. The pharmacological treatments that are in use and those that are under investigation for this group of patients will be discussed and include: cytotoxic agents including the microtubule inhibitors, alone and in combination with other conventional or experimental therapies such as calcitriol or thalidomide; treatment with epothilone analogues; endothelin receptor antagonists; palliative therapy with bisphosphonates, bone-targeted radiopharmaceuticals and other developing treatments such as vaccines, gene therapies and monoclonal antibodies.

Antineoplastic Agents↗

Atrasentan, an endothelin-receptor antagonist for refractory adenocarcinomas: safety and pharmacokinetics.

PURPOSE: Endothelin receptors, particularly the ET(A) receptor, have been shown to participate in the pathophysiology of prostate and other cancers. Atrasentan, an endothelin antagonist, binds selectively to the ET(A) receptor. This study evaluated the safety, pharmacokinetics, and maximum-tolerated dose of atrasentan in cancer patients. PATIENTS AND METHODS: Patients who were 18 years or older and had histologically confirmed adenocarcinoma refractory to therapy enrolled in this 28-day, open-label, phase I study. Enrollment was planned for cohorts of three patients at doses escalating from 10 to 140 mg/d. When any patient had dose-limiting toxicity, that cohort was expanded. The primary outcome variable was safety; secondary outcome variables were pharmacokinetics, tumor response, and pain relief. RESULTS: Thirty-one cancer patients (14 prostate) were treated at daily atrasentan doses of 10, 20, 30, 45, 60, and 75 mg (n = 3 to 8 per cohort). The most common adverse events, such as rhinitis, headache, asthenia, and peripheral edema, were reversible on drug discontinuation and responded to symptom-specific treatment. Reversible hemodilution was apparent in laboratory findings and weight gain. Clinically significant headache was the dose-limiting adverse event; the maximum-tolerated dose was 60 mg/d. Pharmacokinetics were dose-proportional across the 10- to 75-mg dose range. Atrasentan was rapidly absorbed; the time to maximum observed concentration was approximately 1.5 hours. The terminal elimination half-life was approximately 24 hours, and steady-state plasma concentrations were achieved within 7 days. Decreases in prostate-specific antigen and pain relief were noted in a patient subset. CONCLUSION: Adverse events were consistent with atrasentan's pharmacologic vasodilatory effect. Linear, dose-proportional pharmacokinetics suggest that atrasentan can be easily and consistently dosed.

Adenocarcinoma↗

Phase II evaluation of docetaxel plus one-day oral estramustine phosphate in the treatment of patients with androgen independent prostate carcinoma.

BACKGROUND: Recent clinical trials have shown antitumor activity with the combination of docetaxel plus estramustine phosphate (EMP) in the treatment of patients with androgen independent prostate carcinoma (AIPC). However, the most commonly employed treatment schedules with EMP have been associated with significant gastrointestinal, cardiovascular, and thromboembolic toxicity. The authors hypothesized that the therapeutic index of the combination of docetaxel plus EMP for patients with prostate carcinoma could be enhanced by reducing the incidence and severity of EMP-associated toxicity, which could be accomplished by shortening the duration of exposure to EMP. To preserve the therapeutic synergism between docetaxel and EMP, they designed a regimen employing higher doses of oral EMP administered on the day of the docetaxel infusion. METHODS: From June 1, 1998 through September 28, 2000, 42 patients with AIPC were registered to receive docetaxel (70 mg/m2 intravenously over 1 hour) and EMP (280 mg orally every 6 hours x 5 doses) every 21 days, up to a maximum of 6 cycles. Dexamethasone was administered prior to docetaxel and coumadin 2 mg orally every day was taken during the study treatment period. Patient characteristics included a median age of 68 years, a median Eastern Cooperative Oncology Group performance status of 1, a median prostate specific antigen (PSA) level at study entry of 110.5 ng/mL, and a median of 2 prior hormonal manipulations. Ten patients (25%) had received prior chemotherapy, and 14 patients (33%) had received prior palliative radiation therapy. RESULTS: Forty patients were evaluable for response and toxicity. Eighteen patients (45%; 95% confidence interval, 29-62%) had a decline > 50% in PSA level that lasted > 4 weeks with a median time to PSA progression and a median duration of PSA response of approximately 4.0 months. Four of 20 patients (20%) had partial soft tissue responses. Ten of 17 symptomatic patients (59%) had improvement in pain. The median survival for all patients was 13.5 months. The most prominent Grade 3 and 4 toxicities were reversible myelosuppression and fatigue. Nausea, emesis, diarrhea, and peripheral edema were minimal. No thromboembolic or hepatic complications were seen. CONCLUSIONS: Docetaxel plus 1 multidose day of oral EMP was active in patients with AIPC and was associated with an acceptable toxicity profile. Overall, the therapeutic index of this regimen compared favorably with regimens that employed a longer administration of EMP.

Adenocarcinoma↗

Endothelin-1 as a target for therapeutic intervention in prostate cancer.

The endothelins, a family of potent vasoconstricting peptides, have been implicated in the pathophysiology of advanced prostate cancer. Two endothelin receptors, ET-A and ET-B are found in normal prostate tissue. Malignant prostate cells are notable for the loss of ET-B receptors and increased levels of endothelin-1 [ET-1]; this distortion of the endothelin system may be a significant factor in the progression of prostate cancer. Proposed roles for endothelin in prostate cancer include growth promotion, apoptosis inhibition, bone formation, and stimulation of nociceptive receptors. ET-1 can act alone as a mitogen, but its effects are greatest as a comitogen with a variety of growth factors, including basic fibroblast growth factor, insulin-like growth factors, and platelet derived growth factor. Although their exact functions are unclear, ET-1, in conjunction with vascular endothelial growth factor, appears to play a major role in tumor angiogenesis. By a variety of methods, ET-1 alters the balance of osteoblast and osteoclasts to the favor new bone formation that is characteristic of metastatic disease. Several studies indicate that the refractory pain of metastatic cancer is related to the direct nociceptive effects ET-1. These findings suggest that ET receptors are promising therapeutic targets for pharmacologic intervention. Early clinical trials indicate that the ET-A receptor antagonist used in prostate cancer is reasonably well tolerated with mild but pervasive symptoms related to ET-1's vasoconstrictive effects. Results of ongoing clinical trials are eagerly awaited in order to see if the hypothetical promise of ET antagonism will result in clinical success.

Apoptosis↗

Pharmacological treatments for prostate cancer.

Recently, chemotherapy for prostate cancer has been primarily reserved for the palliation of symptoms secondary to prostate cancer. Chemotherapy regimens and new approaches are being developed that offer new hope of response and improved survival to men with prostate cancer. This paper discusses pharmacological strategies that are under investigation: cytotoxic agents and biological or targeted therapies, including the microtubule inhibitors (taxane/taxoids, vinorelbine) alone and in novel combinations with other experimental agents such calcitriol, thalidomide or flavopiridol (cell-cycle inhibitor) and treatment with epothilone analogues; endothelin receptor antagonists; other novel strategies such as vaccine therapy (GVAX; Cell Genesys) and prostate-specific membrane antibodies; and bisphosphonates.

Antibodies, Monoclonal↗