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11 result(s) for "Siegmann, Alessandra"
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Impact of Dose Escalation on the Efficacy of Salvage Radiotherapy for Recurrent Prostate Cancer—A Risk-Adjusted, Matched-Pair Analysis
Previous randomized trials have not provided conclusive evidence about dose escalations and associated toxicities for salvage radiotherapy (SRT) in prostate cancer. Here, we retrospectively analyzed whether dose escalations influenced progression-free survival in 554 patients that received salvage radiotherapy for relapses or persistently elevated prostate cancer antigen (PSA) after a radical prostatectomy. Patients received SRT between 1997 and 2017 at two University Hospitals in Germany. We compared patient groups that received radiation doses <7000 cGy (n = 225) or ≥7000 cGy (n = 329) to analyze the influence of radiation dose on progression-free survival. In a second matched-pair analysis of 216 pairs, we evaluated prognostic factors (pT2 vs. pT3–4, Gleason score [GS] ≤ 7 vs. GS ≥ 8, R0 vs. R1, and pre-SRT PSA <0.5 vs. ≥0.5 ng/mL). After a median follow-up of 6.8 (4.2–9.2) years, we found that escalated doses significantly improved progression-free survival (p = 0.0042). A multivariate analysis indicated that an escalated dose, lower tumor stages (pT2 vs. pT3/4), and lower GSs (≤7 vs. 8–10) were associated with improved progression-free survival. There was no significant effect on overall survival. Our data suggested that escalating the radiation dose to ≥7000 cGy for SRT after a prostatectomy significantly improved progression-free survival. Longer follow-ups are needed for a comprehensive recommendation.
Effect of early salvage radiotherapy at PSA < 0.5 ng/ml and impact of post-SRT PSA nadir in post-prostatectomy recurrent prostate cancer
BackgroundFor patients with recurrent prostate cancer after radical prostatectomy (RP), salvage radiotherapy (SRT) offers a second chance of cure. European guidelines (EAU) recommend SRT at a PSA < 0.5 ng/ml. We analyze the efficacy of SRT given according to this recommendation and investigate the predictive power of the post-SRT PSA nadir.MethodsBetween 1998 and 2013, 301 patients of two university hospitals received SRT at a PSA < 0.5 ng/ml (median 0.192 ng/ml, IQR 0.110–0.300). Patients, who previously received androgen deprivation therapy, were excluded. All patients had 3D-conformal RT or intensity-modulated radiotherapy (IMRT, n = 59) (median 66.6 Gy). The median follow-up was 5.9 years. Progression and overall survival were the endpoints.ResultsAfter SRT, 252 patients re-achieved an undetectable PSA. In univariate analysis, pre-RP PSA ≥ 10 ng/ml, pT3-4, Gleason score (GS) 7–10 or 8–10, negative surgical margins, post-RP PSA ≥ 0.1 ng/ml, pre-SRT PSA ≥ 0.2 ng/ml and post-SRT PSA nadir ≥ 0.1 ng/ml correlated unfavorably with post-SRT progression. In a multivariable Cox model, pT3-4, GS 7–10, negative margins and a pre-SRT PSA ≥ 0.2 ng/ml were significant risk factors. If the post-SRT PSA was added to the analysis, it dominated the outcome (HR = 9.00). Of the patients with a pre-SRT PSA < 0.2 ng/ml, only 9% failed re-achieving an undetectable PSA. Overall survival in these patients was 98% after 5.9 years compared to 91% in patients with higher pre-SRT PSA (Logrank p = 0.004).ConclusionsSRT at a PSA < 0.2 ng/ml correlates significantly with achieving a post-SRT undetectable PSA (<0.1 ng/ml) and subsequently with improved freedom from progression. Given these overall favorable outcomes, whether additional androgen deprivation therapy is required for these men requires further study.
Salvage Radiotherapy versus Observation for Biochemical Recurrence following Radical Prostatectomy for Prostate Cancer: A Matched Pair Analysis
Background: Salvage radiotherapy (SRT) improves oncologic outcomes in prostate cancer (PCa) patients who develop biochemical recurrence (BCR) after radical prostatectomy (RP). However, evidence on hard clinical endpoints is scarce. We compare long-term oncologic outcomes of SRT versus no radiotherapy (noRT) in patients with BCR after RP. Patients and methods: Within a multi-institutional database, we identified patients with BCR after RP between 1989 and 2016 for PCa. Patients with lymph node invasion, with adjuvant radiotherapy, or with additional androgen deprivation therapy at BCR were excluded. In all patients with SRT, SRT was delivered to the prostatic bed only. Propensity score matching (PSM) was performed to account for differences in pathologic tumor characteristics. Kaplan–Meier analyses and Cox regression models tested the effect of SRT versus no RT on metastasis-free (MFS) and overall survival (OS). Results: Of 1832 patients with BCR, 32.9% (n = 603) received SRT without ADT. The median follow-up was 95.9 months. Median total SRT dose was 70.2 Gy. After 1:1 PSM, at 15 years after RP, MFS and OS rates were 84.3 versus 76.9% (p < 0.001) and 85.3 versus 74.4% (p = 0.04) for SRT and noRT, respectively. In multivariable Cox regression models, SRT was an independent predictor for metastasis (HR: 0.37, p < 0.001) and OS (HR: 0.64, p = 0.03). Conclusion: This is the first matched-pair analysis investigating the impact of SRT versus observation only in post-RP recurrent PCa. After compensating for established risk factors, SRT was associated with better long-term MFS and OS. These results on clinical endpoints underline the curative potential of SRT.
Defining biochemical recurrence after radical prostatectomy and timing of early salvage radiotherapy
Background The optimal prostate-specific antigen (PSA) level after radical prostatectomy (RP) for defining biochemical recurrence and initiating salvage radiation therapy (SRT) is still debatable. Whereas adjuvant or extremely early SRT irrespective of PSA progression might be overtreatment for some patients, SRT at PSA >0.2 ng/ml might be undertreatment for others. The current study addresses the optimal timing of radiation therapy after RP. Patients and methods Cohort 1 comprised 293 men with PSA 0.1–0.19 ng/ml after RP. Cohort 2 comprised 198 men with SRT. PSA progression and metastases were assessed in cohort 1. In cohort 2, we compared freedom from progression according to pre-SRT PSA (0.03–0.19 vs. 0.2–0.499 ng/ml). Multivariable Cox regression analyses predicted progression after SRT. Results In cohort 1, 281 (95.9%) men had further PSA progression ≥0.2 ng/ml and 27 (9.2%) men developed metastases within a median follow-up of 74.3 months. In cohort 2, we recorded improved freedom from progression according to lower pre-SRT PSA (0.03–0.19 vs. 0.2–0.499 ng/ml: 69 vs. 53%; log-rank p  = 0.051). Patients with higher pre-SRT PSA ≥0.2 ng/ml were at a higher risk of progression after SRT (hazard ratio: 1.8; p  < 0.05). Conclusion The vast majority of patients with PSA ≥0.1 ng/ml after RP will progress to PSA ≥0.2 ng/ml. Additionally, early administration of SRT at post-RP PSA level <0.2 ng/ml might improve freedom from progression. Consequently, we suggest a PSA threshold of 0.1 ng/ml to define biochemical recurrence after RP.
Open-label simultaneous radio-chemotherapy of glioblastoma multiforme with topotecan in adults
Due to its radioresistance, the prognosis of glioblastoma multiforme (GBM) remains poor. Therefore, we investigated the impact of simultaneous radio-chemotherapy with topotecan (Hycamtin ®) on clinical outcome, tolerability and quality of life. In this multicenter trial, 60 patients (19 females, 41 males) with histologically proven (5× biopsy, 31× subtotal resection, 24× total resection) GBM were included. Radio-Chemotherapy was performed with daily doses of 2.0 Gy (total, 60 Gy), and 0.5 mg (absolute dose) of topotecan intravenously 1 h prior to irradiation. Toxicity was assessed using common toxicity criteria (CTC). General condition and quality of life were assessed at baseline, at the end of therapy, and 6 weeks post-therapy. Local control and length of survival were compared with an historical control group of 67 patients only treated with postoperative radiotherapy following stereotactic biopsy (15×), subtotal resection (39×), or total resection (13×). 57 patients completed the therapy. Median radiation dose was 60 Gy (range 16–76 Gy). Median cumulative topotecan dose was 15 mg (range 7.5–18.5 mg). CTC toxicity grade 3 was observed in six patients and grade 4 toxicity in two patients (three events). Two patients died of septic disease. Mean Karnofsky index was 87% at baseline, 81% at the end of therapy, and 80% at 6 weeks post-therapy. Median survival time was 15 months, significantly longer than the 11 months seen in the control group ( P < 0.002). Extent of tumour resection or patient age did not have a significant effect on survival. This multimodal approach is well tolerated, and quality of life remains preserved. The relatively long median survival time is promising but a further randomised double blind placebo controlled parallel designed clinical trial should be performed to confirm these results.
Dose Escalation for Patients with Decreasing PSA during Radiotherapy for Elevated PSA after Radical Prostatectomy Improves Biochemical Progression-Free Survival
Purpose: The optimal dose for salvage radiotherapy (SRT) after radical prostatectomy (RP) is still not defined. It should be at least 66 Gy. In the present study, the suitability of PSA regression as a selection criterion for an SRT dose escalation to 70.2 Gy was examined. Patients and Methods: Between 1997 and 2007, 301 prostate cancer patients received SRT after RP at the Charité – University Medicine Berlin, Campus Benjamin Franklin. None of the patients had antihormone therapy prior to SRT. A total of 234 patients received 66.6 Gy. From 2002 on, 67 patients with a PSA decrease during SRT were irradiated with 70.2 Gy. The influence of this selection and dose escalation on freedom from biochemical progression (bNED) was analyzed. Results: The median follow-up of the whole group was 30 months, the median pre-SRT PSA was 0.28 ng/ml. Of the patients, 27% (82/301) developed biochemical progression, 31% from the 66.6 Gy cohort (73/292) and 13% from the 70.2 Gy cohort (9/67) (p = 0.01). The calculated 2-years bNED was 74% for the whole group, 88% vs. 71% after 70.2 Gy and 66.6 Gy, respectively (p = 0.01). In a multivariate analysis, the total dose (p = 0.017), the re-achievement of an undetectable PSA after SRT (p = 0.005), and the infiltration of the seminal vesicles (p = 0.049) were independent parameters of bNED. Conclusion: Our analysis suggests that patient selection during SRT for a dose escalation to 70.2 Gy can improve the freedom from biochemical progression in patients with SRT after RP.
Acute Toxicity and Changes in Quality of Life during a Combined Radio-Chemotherapy of Glioblastomas with Topotecan (Hycamtin®)
Because of the pronounced radioresistance of glioblastoma multiforme the prognosis of this disease remains poor. Therefore, we investigated the impact of an additional simultaneous chemotherapy with the topoisomerase-I inhibitor topotecan (Hycamtin) on the quality of life and toxicity of radiotherapy. In this multicenter trial patients with histologically proven glioblastoma multiforme underwent a simultaneous radio-chemotherapy. Including pilot phase 60 patients, 41 male and 19 female, were treated. Age ranged from 26 to 76 years, the mean was 57 years. Conventional fractionated conformal radiotherapy was performed with daily doses of 2.0 Gy to a total dose of 60 Gy. 1 hour prior to irradiation 0.5 mg (absolute dose) of topotecan were administered intravenously resulting in a cumulative dose of 15 mg. Besides hematologic and non-hematologic toxicity, quality of life was assessed by Karnofsky index and Spitzer index. Additionally local control and survival time were recorded. 57 patients completed the combined therapy. Median administered dose of radiation was 60 Gy (16-76 Gy). Median cumulative topotecan dose was 15 mg (7.5-18.5 mg). Grade-III toxicity was found in six cases (two hematologic, two motoric disorder, one infection, one nausea) and grade-IV toxicity in three cases (one esophagitis, one motoric disorder, one mental disorder). Two patients died of septic disease most likely caused by steroid induced immunosuppression. Mean Karnofsky index and Spitzer index initially, at the end of therapy and 6 weeks after therapy showed values of 87%, 81% and 80% and 19 points, 18 points and 19 points, respectively. Median survival time was 15 months. This multimodal approach for patients with glioblastoma multiforme is well tolerated. Quality of life remains preserved and outpatient treatment is possible. The relatively long median survival time even for patients bearing macroscopic tumors is promising.
Dose Escalation for Patients with Decreasing PSA during Radiotherapy for Elevated PSA after Radical Prostatectomy Improves Biochemical Progression-Free Survival
The optimal dose for salvage radiotherapy (SRT) after radical prostatectomy (RP) is still not defined. It should be at least 66 Gy. In the present study, the suitability of PSA regression as a selection criterion for an SRT dose escalation to 70.2 Gy was examined. Between 1997 and 2007, 301 prostate cancer patients received SRT after RP at the Charité - University Medicine Berlin, Campus Benjamin Franklin. None of the patients had antihormone therapy prior to SRT. A total of 234 patients received 66.6 Gy. From 2002 on, 67 patients with a PSA decrease during SRT were irradiated with 70.2 Gy. The influence of this selection and dose escalation on freedom from biochemical progression (bNED) was analyzed. The median follow-up of the whole group was 30 months, the median pre-SRT PSA was 0.28 ng/ml. Of the patients, 27% (82/301) developed biochemical progression, 31% from the 66.6 Gy cohort (73/292) and 13% from the 70.2 Gy cohort (9/67) (p = 0.01). The calculated 2-years bNED was 74% for the whole group, 88% vs. 71% after 70.2 Gy and 66.6 Gy, respectively (p = 0.01). In a multivariate analysis, the total dose (p = 0.017), the re-achievement of an undetectable PSA after SRT (p = 0.005), and the infiltration of the seminal vesicles (p = 0.049) were independent parameters of bNED. Our analysis suggests that patient selection during SRT for a dose escalation to 70.2 Gy can improve the freedom from biochemical progression in patients with SRT after RP.[PUBLICATION ABSTRACT]
Pelvic sidewall involvement in recurrent rectal cancer
The lateral pelvic sidewall is an area not routinely dissected during standard operative procedures in surgery for rectal cancer in Western countries. This study analyzed data to evaluate the pattern of recurrence in rectal cancer with special emphasis on lateral tumor extension in a recently treated patient population. In a multicenter retrospective study 123 patients were evaluated by our own CT-based three-dimensional datafile system and an extensive questionnaire. Patients had histological confirmation, clear bone destruction, a positive PET scan, and at least three minor criteria: progressive soft tissue mass, invasion of adjacent organs on follow-up CT or MRI, rising tumor markers, and typical appearance in cross-sectional imaging. Clinical or serological signs of inflammation were exclusion criteria. Initially 54% of the evaluated patients were N0, and the others were distributed evenly between N1 and N2; initial T stage was T1 in 2%, T2 in 24%, T3 in 60%, and T4 in 13%. . Recurrent tumors were situated mainly in the posterior part of the bony pelvis. The pelvic side wall was a rare site of recurrence and involved in fewer than 5%. When abdominoperineal resection was compared to low anterior resection as primary operation, there was a significant difference in extension of recurrent tumors in the inferior parts of the pelvis; no significant differences were found in superior or lateral parts of the pelvis. Because most tumor recurrences arise in the central pelvis, extending surgery to include dissecting the iliac vessels would probably offer only a moderate benefit, which must be balanced against potential side effects.
Recurrent Rectal Cancer within the Pelvis
Recommendations for radiation ports in adjuvant radiation therapy for rectal cancer are mainly based on analysis of recurrence patterns. To evaluate whether changes in surgical technique have influenced this pattern of recurrence, a multicenter retrospective analysis was carried out on a patient population treated recently. 123 patients were evaluated with the help of a CT-based self-developed 3-D data file system and an extensive questionnaire. Major inclusion criteria (one sufficient) for eligibility were: histological confirmation, clear bone destruction, and a positive PET scan, or at least three minor criteria: progressive soft tissue mass, invasion of adjacent organs on follow-up CT or MRI, rising tumor markers, and typical appearance in cross-sectional imaging. Clinical or serologic signs of inflammation were exclusion criteria. Initially, 54% of the evaluated patients were N0; in the remainder, N1 and N2 were distributed evenly. Initial T-category was T1 in 2%, T2 in 24%, T3 in 60%, and T4 in 13%, the male-to-female ratio was 2:1. Recurrent tumors were mainly situated in the posterior part of the bony pelvis as displayed in the figures. When abdominoperineal resection was compared to low anterior resection as primary operation, there was a significant difference in extension of recurrent tumors in the inferior parts of the pelvis (p<0.025 in all statistical tests applied), whereas no significant difference was found in the superior parts of the pelvis. Based on these results, a modest field size reduction in adjuvant radiotherapy for rectal cancer seems feasible, offering the perspective of a reduction in acute and late side effects.