COST-EFFECTIVENESS OF ZOLEDRONIC ACID FOR THE PREVENTION OF SKELETAL COMPLICATIONS IN PATIENTS WITH PROSTATE CANCER

2004 ◽  
Vol 171 (4) ◽  
pp. 1537-1542 ◽  
Author(s):  
SHELBY D. REED ◽  
JASMINA I. RADEVA ◽  
G. ALASTAIR GLENDENNING ◽  
FRED SAAD ◽  
KEVIN A. SCHULMAN
2004 ◽  
Vol 172 (5) ◽  
pp. 2082-2082
Author(s):  
S.D. Reed ◽  
J.I. Radeva ◽  
G.A. Glendenning ◽  
F. Saad ◽  
K.A. Schulman

2011 ◽  
Vol 14 (7) ◽  
pp. A447
Author(s):  
J.A. Carter ◽  
M. Bains ◽  
D. Chandiwana ◽  
S. Kaura ◽  
M.F. Botteman

2005 ◽  
Vol 23 (32) ◽  
pp. 8219-8224 ◽  
Author(s):  
M. Dror Michaelson ◽  
Matthew R. Smith

Bone metastases are a major cause of morbidity for men with prostate cancer. Complications of bone metastases include pain, fractures, and spinal cord compression. Although they appear osteoblastic by radiographic imaging, most bone metastases are characterized by excess osteoclast number and activity. In addition, pathologic osteoclast activation is associated with increased risk of skeletal complications. Zoledronic acid, a potent inhibitor of osteoclast activity, differentiation, and survival, decreases the risk of skeletal complications in men with androgen-independent prostate cancer and bone metastases. Other bisphosphonates, including pamidronate and clodronate, seem to be ineffective in this setting. The reduction in risk of skeletal complications with zoledronic acid must be weighed against potential adverse effects. Additional studies are needed to determine the optimal timing, schedule, and duration of treatment in men with bone metastases as well as the potential role of bisphosphonates in other settings including the prevention of bone metastases.


2016 ◽  
Vol 20 (53) ◽  
pp. 1-288 ◽  
Author(s):  
Nicholas James ◽  
Sarah Pirrie ◽  
Ann Pope ◽  
Darren Barton ◽  
Lazaros Andronis ◽  
...  

BackgroundBony metastatic castration-refractory prostate cancer is associated with a poor prognosis and high morbidity. TRAPEZE was a two-by-two factorial randomised controlled trial of zoledronic acid (ZA) and strontium-89 (Sr-89), each combined with docetaxel. All have palliative benefits, are used to control bone symptoms and are used with docetaxel to prolong survival. ZA, approved on the basis of reducing skeletal-related events (SREs), is commonly combined with docetaxel in practice, although evidence of efficacy and cost-effectiveness is lacking. Sr-89, approved for controlling metastatic pain and reducing need for subsequent bone treatments, is generally palliatively used in patients unfit for chemotherapy. Phase II analysis confirmed the safety and feasibility of combining these agents. TRAPEZE aimed to determine the clinical effectiveness and cost-effectiveness of each agent.MethodsPatients were randomised to receive six cycles of docetaxel plus prednisolone: alone, with ZA, with a single Sr-89 dose after cycle 6, or with both. Primary outcomes were clinical progression-free survival (CPFS: time to pain progression, SRE or death) and cost-effectiveness. Secondary outcomes were SRE-free interval (SREFI), total SREs, overall survival (OS) and quality of life (QoL). Log-rank test and Cox regression modelling were used to determine clinical effectiveness. Cost-effectiveness was assessed from the NHS perspective and expressed as cost per additional quality-adjusted life-year (QALY). An additional analysis was carried out for ZA to reflect the availability of generic ZA.ResultsPatients: 757 randomised (median age 68.7 years; Eastern Cooperative Oncology Group scale score 0, 40%; 1, 52%; 2, 8%; prior radiotherapy, 45%); median prostate-specific antigen 143.78 ng/ml (interquartile range 50.8–353.9 ng/ml). Stratified log-rank analysis of CPFS was statistically non-significant for either agent (Sr-89,p = 0.11; ZA,p = 0.45). Cox regression analysis adjusted for stratification variables showed CPFS benefit for Sr-89 [hazard ratio (HR) 0.845, 95% confidence interval (CI) 0.72 to 0.99;p = 0.036] and confirmed no effect of ZA (p = 0.46). ZA showed a significant SREFI effect (HR 0.76; 95% CI 0.63 to 0.93;p = 0.008). Neither agent affected OS (Sr-89,p = 0.74; ZA,p = 0.91), but both increased total cost (vs. no ZA and no Sr-89, respectively); decreased post-trial therapies partly offset costs [net difference: Sr-89 £1341; proprietary ZA (Zometa®, East Hanover, NJ, USA) £1319; generic ZA £251]. QoL was maintained in all trial arms; Sr-89 (0.08 additional QALYs) and ZA (0.03 additional QALYs) showed slight improvements. The resulting incremental cost-effectiveness ratio (ICER) for Sr-89 was £16,590, with £42,047 per QALY for Zometa and £8005 per QALY for generic ZA.ConclusionStrontium-89 improved CPFS, but not OS. ZA did not improve CPFS or OS but significantly improved SREFI, mostly post progression, suggesting a role as post-chemotherapy maintenance therapy. QoL was well maintained in all treatment arms, with differing patterns of care resulting from the effects of Sr-89 on time to progression and ZA on SREFI and total SREs. The addition of Sr-89 resulted in additional cost and a small positive increase in QALYs, with an ICER below the £20,000 ceiling per QALY. The additional costs and small positive QALY changes in favour of ZA resulted in ICERs of £42,047 (Zometa) and £8005 for the generic alternative; thus, generic ZA represents a cost-effective option. Additional analyses on the basis of data from the Hospital Episode Statistics data set would allow corroborating the findings of this study. Further research into the use of ZA (and other bone-targeting therapies) with newer prostate cancer therapies would be desirable.Study registrationCurrent Controlled Trials ISRCTN12808747.FundingThis project was funded by the NIHR Health Technology Assessment programme and will be published in full inHealth Technology Assessment; Vol. 20, No. 53. See the NIHR Journals Library website for further project information.


The Prostate ◽  
2009 ◽  
Vol 69 (6) ◽  
pp. 624-632 ◽  
Author(s):  
Michael Lein ◽  
Kurt Miller ◽  
Manfred Wirth ◽  
Lothar Weißbach ◽  
Christoph May ◽  
...  

2012 ◽  
Vol 08 (02) ◽  
pp. 94 ◽  
Author(s):  
Neal Shore ◽  
Carsten Goessl ◽  
◽  

Progression of castration-resistant prostate cancer often leads to bone metastases, increasing the risk of skeletal-related events (SREs). The use of antiresorptive therapies such as denosumab, a human monoclonal antibody and zoledronic acid (ZA), a bisphosphonate, reduces bone destruction by inhibiting osteoclast function and survival. In 2002, ZA was approved for the prevention of skeletal complications in patients with bone disease from myeloma or bone metastases from solid tumors including prostate cancer. Recently, efficacy analysis demonstrated superiority of denosumab to ZA for the prevention or delay of SREs in 1,901 patients with prostate cancer and bone metastases, significantly delaying the time to first SRE and time to first and subsequent SRE compared to ZA. Decreases in bone turnover markers were greater with denosumab, mirroring the reduction in SREs. The reported incidence of adverse events were similar between denosumab and ZA. Advanced prostate cancer patients require long-term disease management where maintenance of overall bone health is an essential component of a comprehensive treatment program.


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