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1.
Indian J Cancer ; 52(4): 646-52, 2015.
Article in English | MEDLINE | ID: mdl-26960506

ABSTRACT

CONTEXT: Recently, there has been considerable interest in the role of radical prostatectomy (RP) in men with high-risk prostate cancer. AIMS: The objective of our study is to report the outcome of upfront RP in our patients with high-risk prostate cancer (Stage ≥ cT2c, a pre-operative serum prostate specific antigen >20 ng/ml or a biopsy Gleason score [GS] 8-10). SUBJECTS AND METHODS: From 1996 to 2010, 208 patients of prostate cancer (high risk category D'Amico's criteria) underwent open RP with bilateral pelvic lymphadenectomy. STATISTICAL ANALYSIS USED: The data was statistically analyzed using Kaplan Meier method and log rank test to calculate progression free, metastasis free survival (MFS) and cancer specific survival (CSS). Furthermore multivariate analysis (MVA) was carried out using SPSS 14 software. (IBM company). RESULTS: At 7 and 10 years, prostate cancer-specific survival (PCSS) was found to be 79.7% and 65%, respectively, biochemical recurrence free survival (BRFS) was 42.4% and 36.7%, respectively and the MFS was 71.1% and 64.4% respectively. High GS was highly predictable of PCSS, BRFS and MFS. Node positivity was the single poor risk factor on MVA whereas biopsy GS, pStage (P = 0.016) and seminal vesicle invasion (P = 0.045) had statistical significance in predicting the MFS. CONCLUSIONS: RP provides accurate pathologic staging of patients with high risk prostate cancer, allows better stratification of patients for further adjuvant therapy and either as an initial approach or part of a multimodal regimen, can provide durable local control and provides excellent CSS.


Subject(s)
Prostatectomy/methods , Prostatic Neoplasms/surgery , Adult , Aged , Humans , Male , Middle Aged , Risk Factors , Treatment Outcome
2.
Water Res ; 35(9): 2300-6, 2001 Jun.
Article in English | MEDLINE | ID: mdl-11358311

ABSTRACT

Subcritical mineralization of sodium salt of dodecyl benzene sulfonate via hybrid process-sonication followed by wet oxidation (SONIWO) has been investigated. Sonication of the compound enhanced the rates and % COD reduction during wet oxidation. In this process, homogenous CuSO4 catalyst was found to be effective. In wet oxidation studies, phenol, hydroquinone, maleic acid, oxalic acid, propionic acid, and acetic acid were identified as intermediates. The global rate equations for wet oxidation in terms of COD reduction were developed.


Subject(s)
Benzenesulfonates/isolation & purification , Surface-Active Agents/isolation & purification , Water Pollutants, Chemical/isolation & purification , Catalysis , Copper Sulfate , Industrial Waste , Oxidation-Reduction , Oxygen , Textile Industry , Waste Disposal, Fluid/methods
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