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Susan Bolton

Publications and source records attributed to Susan Bolton.

4 recordsLinked to original sources

Intermittent androgen deprivation for patients with recurrent/metastatic prostate cancer.

This study was designed to assess the duration of response to intermittent androgen deprivation therapy (IAD) in patients with recurrent and/or metastatic prostate cancer. Between January 1993 and March 2000, 74 patients with recurrent and/or metastatic prostate cancer had IAD with either luteinizing hormone-releasing hormone agonist (LHRH) or an LHRH with an oral antiandrogen. Forty-one patients were treated for an increasing prostate-specific antigen (PSA) level after primary local treatment. Of the remaining 33 patients, 17 patients were treated for metastases (9 for bone metastases, 8 for lymph nodes metastases, and 16 for local recurrence). Patients who had undergone IAD completed between 1 and 6 cycles. A cycle was defined as the period during which the patient was actively taking the hormone medication. Seventy-four patients completed the first cycle, 49 completed the second cycle, and 23 completed the third cycle. The pattern of PSA changes with each cycle, the length of each cycle, and the time interval between successive cycles were studied. The time to progression (defined as an increasing PSA level on two consecutive measurements or radiologic evidence of progression of disease while the patient was on androgen deprivation) was also studied. The median PSA before the IAD was 11.4 ng/mL (range 0.12-378). The median PSA nadir at the end of each cycle increased progressively (0.1 ng/mL after the first cycle to 3.3 ng/mL after the fifth cycle). The time interval between the cycles progressively decreased from 9.5 months between the first and second cycles to 6 months between the third and fourth cycles. The 4-year actuarial androgen-independent free survival was 71%. For the subgroups of patients treated for biochemical failure, locoregional recurrence, and bone metastases, the 4-year actuarial progression-free survival rates were 80%, 67%, and 45% respectively (P = 0.018). The median time of 18 months to progression in patients with bone metastases is similar to that reported with continuous hormonal therapy. In patients with biochemical failure, the median time to progression (more than 5 years) suggests that the IAD approach may be a viable option for this group of patients.

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Fast neutron irradiation for prostate cancer.

The purpose of this study was to summarize the progress made using fast neutron irradiation in the treatment of prostate cancer at Wayne State University between 1991 and the year 2001. The results of three Phase II studies and one Phase III st udy involving nearly 700 patients is summarized in this paper. The Phase II studies weredose finding studies looking at doses of 15, 9, 10, and 11 nGy, respectively. The randomized protocol was a study of sequence looking at the results of treating patients with neutron first versus neutron radiation last. The results demonstrated that the best combination of tumor control probabilities and normal tissue complications was found in a mix of approximately 50% neutrons and 50% photons. Thus, the standard doses become 10 nGy and 40 Gy of photons. The randomized trial demonstrated that the sequence has significant importance and the disease-free survival was 93% for patients treated with neutrons first versus 73% for patients treated with neutrons last. There was no difference in the rate of acute or chronic complications. Finally, an analysis was performed demonstrating which patients may best benefit from the use of neutron irradiation. It was shown that patients with one, two, or three adverse risk factors had a significant improvement in disease-free survival when part of the treatment included neutron radiation versus standard photon radiation alone. Neutron radiation can be delivered safely with effort to see that it is superior to that which can be achieved by conformal photon irradiation by itself. Future work will be done to expand the role of neutron radiation in other clinical disease sites.

Fast Neutrons↗

Therapeutic postprostatectomy irradiation.

The purpose of this study was to determine the outcome of patients receiving external beam radiation for an elevated postprostatectomy prostate-specific antigen (PSA) level. Between December 1991 and September 1998, 108 patients received definitive radiation therapy for elevated postprostatectomy PSA levels. The median dose of irradiation was 68 Gy (range, 48-74 Gy). During treatment, the PSA levels were checked an average of 5 times (range, 3-7 times). Prostate-specific antigen values were judged to decline or increase during treatment if they changed by more than 0.2 ng/mL. After treatment, biochemical failure was defined as a measurable or rising PSA > 0.2 ng/mL. Median follow-up was 51 months (range, 3-112 months). Fifty-eight patients (54%) had evidence of biochemical failure. The 3- and 5-year actuarial biochemical relapse-free (bNED) survivals for all patients were 55% and 39%, respectively. Upon univariate analysis, intratreatment PSA and preradiation PSA were significant predictors of bNED survival. Patients with a PSA level that decreased during treatment had a 5-year bNED survival of 43% compared to 10% in patients with an increasing PSA level (P = 0.0002). Using the preradiation therapy PSA value as a continuous variable, higher preradiation therapy PSA levels were associated with an increased risk of failure (P = 0.004). Cut points of pretreatment PSA were derived at 0.9 ng/mL and 4.2 ng/mL using the Michael Leblanc recursive partitioning algorithm. The 5-year bNED rate for patients with a preradiation therapy PSA < 0.9 ng/mL was 45% versus 42% for patients with preradiation therapy PSA between 0.9 and 4.2 ng/mL and 21% for patients > or = 4.2 ng/mL (P = 0.0003). Patients with a Gleason score of < or = 7 had a 5-year bNED rate of 38% compared to 37% for patients with a Gleason score > 7 (P = 0.27). Other factors examined individually that did not reach statistical significance included time from surgery to radiation therapy, race, seminal vesicle involvement, pathological stage, surgical margin, and perineural invasion. Upon multivariate analysis, only preradiation therapy PSA (P < 0.001) and the PSA trend during radiation therapy (P < 0.001) were significant factors. The results of therapeutic radiation for patients with elevated postprostatectomy PSA levels are sufficiently poor; other strategies should be explored as alternatives, including early adjuvant postprostatectomy irradiation or the use of combined hormonal and radiation therapy in the salvage situation.

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Salvage radiation for a rising PSA following radical prostatectomy.

The purpose of this study was to evaluate the efficacy and complications of postprostatectomy therapeutic irradiation (RT) in patients with known residual disease. Between 1991 and 2003, 170 patients received therapeutic irradiation for a rising PSA following radical prostatectomy. No patients had clinical or radiological evidence of metastatic disease. The median pre-RT PSA level was 1.2 ng/mL (range, 0.2-43 ng/mL). During irradiation, the PSA level was checked weekly (median PSA determinations: 5, range, 2-7). A patient was considered to have a rise/fall of PSA if the level changed by > or = 0.2 ng/mL. There were 149 patients who received photon irradiation (median dose, 6800 cGy) and 21 patients received a combination of photon and neutron irradiation to a median photon dose equivalent of 7800 cGy. A patient was considered to have biochemical failure if his PSA level postnadir was measured at >0.2 ng/mL. Complications were graded according to the RTOG toxicity scale. The median follow-up time was 49 months (range, 1-137 months). Sixty-four patients (38%) had evidence of biochemical failure. The 7 year overall survival was 84%. At 7 years, the actuarial biochemical relapse free survival (bRFS) was 44%. Of the 59 patients with a preradiation PSA <1 ng/mL, the 5 year bRFS was 81%. This compares with 45% for both the PSA 1-4 and PSA >4 ng/mL group (P = 0.00008). The 3-year bRFS rates for patients whose PSA levels increased, decreased, and remained the same during radiation were 20%, 65%, and 76%, respectively (P = 0.0005). Overall survival at 7 years in the decreased PSA group was 88% compared to 67% for those whose PSA level increased (P = 0.43). Thirty-three percent and 19% of the patients experienced Grade 2 genitourinary (GU) and gastrointestinal (GI) complications, respectively. Six percent and 3% of the patients had Grade 3 GU and GI complications, respectively. On univariate and multivariate analysis, the factors significantly associated with a favorable outcome were a declining PSA during RT and a pre-RT PSA <1 ng/mL (P < 0.001). Radiation therapy is an effective treatment modality for select patients with a biochemical recurrence following radical prostatectomy. Patients with a low preradiation PSA level (<1.0 ng/mL) had a significantly better outcome, which supports the early use of therapeutic radiation. The observation that patients with a rising PSA level during treatment do poorly supports the routine practice of monitoring these levels during radiotherapy.

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