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Alan W Partin

Publications and source records attributed to Alan W Partin.

At least 109 records · Page 6Linked to original sources

Prostate specific antigen predicts the long-term risk of prostate enlargement: results from the Baltimore Longitudinal Study of Aging.

PURPOSE: Prostate specific antigen (PSA) is a predictor of prostate growth in men with lower urinary tract symptoms. The long-term risk of prostate enlargement as a function of PSA among community dwelling volunteers is unknown. MATERIALS AND METHODS: A Cox proportional hazards regression model was used to study the relationship between baseline PSA level at ages 40 to 49.9 years in 194 men, 50 to 59.9 in 191 and 60 to 69.9 in 144, and prostate enlargement, defined as a prostate volume larger than the 75th percentile for age decade, as measured by magnetic resonance imaging in a longitudinal study of aging (Baltimore Longitudinal Study of Aging, National Institute on Aging). Kaplan-Meier survival analysis was performed to estimate the probability of freedom from prostate enlargement with time as a function of baseline PSA level. RESULTS: The relative risk of prostate enlargement was 3- to 6-fold higher for men 40 to 49.9 years old with a baseline PSA of 0.31 ng./ml. or more compared to men with PSA levels of 0.30 ng./ml. or less at baseline. The relative risk was increased 5- to 9-fold in men 50 to 59.9 years old and 11-fold in those 60 to 69.9 years old when comparing men with PSA greater than 0.80 ng./ml. and greater than 1.70 ng./ml. with those with PSA 0.50 or less. The cumulative probability of freedom from prostate enlargement at 20 years was 0.89 (95% confidence interval ([CI] 0.79-0.99) and 0.63 (0.52-0.74) for men 40 to 49.9 years old with PSA levels below and above 0.30 ng./ml., respectively. For men 50 to 59.9 years old the 10-year probability of freedom from prostate enlargement was 0.90 (95% CI 0.84-0.96) and 0.59 (0.43-0.74) when PSA levels were below and above 0.80 ng./ml., respectively. At age 60 to 69.9 years the 10-year probability of freedom from prostate enlargement was 0.83 (95% CI 0.72-0.93) and 0.27 (0.09 to 0.48) when PSA levels were below and above 1.70 ng./ml., respectively. CONCLUSIONS: These data demonstrate the long-term risk of prostate enlargement by PSA level. Risk stratification based on PSA level may be useful to identify men at greatest risk for adverse events due to prostate enlargement and selection of men for future benign prostatic hyperplasia studies.

Adult↗

Comparative analysis of complexed prostate specific antigen, free prostate specific antigen and their ratio in detecting prostate cancer.

PURPOSE: We evaluate the diagnostic use of total, free and complexed serum prostate specific antigen (PSA), and their ratios for enhancing the specificity in detecting prostate cancer. MATERIALS AND METHODS: A total of 354 nonconsecutive men undergoing prostate biopsy were eligible for this retrospective and prospective study. Cancer was found in 122 of these 354 men (34%). Receiver operating characteristics curve analyses were used to calculate and compare the performance of total PSA (Hybritech, San Diego California and Bayer, Tarrytown, New York), complexed PSA (Bayer), percent complexed PSA and percent free PSA. In addition, sensitivity and specificity were calculated and compared. RESULTS: The area under the receiver operating characteristics curve was highest for percent free PSA, followed by percent complexed PSA, complexed PSA and the 2 total PSA assays (Hybritech and Bayer). The cutoff value of 3.45 ng./ml. for complexed PSA detected the same number of cancers and resulted in 1 additional false-positive case compared with a Hybritech total PSA threshold of 4.0 ng./ml. At sensitivities of 80% to 95%, there were no significant differences for detection comparing the corresponding specificities between Hybritech total PSA and complexed PSA for all 354 men. Complexed PSA alone did not enhance the overall diagnostic accuracy compared with percent free PSA in the Hybritech total PSA range between 4.01 and 6.00 ng./ml., between 6.01 and 10.00 ng./ml., and between 2.50 and 6.00 ng./ml. At sensitivities of 80% to 95% specificity of percent complexed PSA was almost identical to that of percent free PSA except for the Hybritech total PSA range less than or equal to 4.00 ng./ml. CONCLUSIONS: This study suggests complexed PSA is equivalent to total PSA for the early detection of prostate cancer. Percent free PSA outperforms complexed PSA and percent complexed PSA performed equivalently to percent free PSA in all total PSA ranges analyzed between 2.5 and 10 ng./ml.

Aged↗

Influence of biopsy perineural invasion on long-term biochemical disease-free survival after radical prostatectomy.

OBJECTIVES: To investigate the influence of biopsy perineural invasion (PNI) on long-term prostate-specific antigen recurrence rates, final pathologic stage, and surgical margin status of men treated with radical prostatectomy. Radical prostatectomy offers the best chance for surgical cure when performed for organ-confined disease. However, the histologic identification of PNI on prostate biopsy has been associated with a decreased likelihood of pathologically organ-confined disease. METHODS: Seventy-eight men with histologic evidence of PNI on biopsy underwent radical prostatectomy by a single surgeon between April 1984 and February 1995 and were compared with 78 contemporary matched (biopsy Gleason score, prostate-specific antigen level, clinical stage, age) controls without PNI. Biochemical disease-free survival and pathologic findings were compared. RESULTS: After a mean follow-up of 7.05 +/- 2.2 years and 7.88 +/- 2.7 years (P = 0.04) for patients with biopsy PNI and controls, respectively, no significant difference in the long-term prostate-specific antigen recurrence rates was observed (P = 0.13). The final Gleason score and pathologic staging were also similar in this matched cohort. Although the numbers of neurovascular bundles resected were comparable between the groups, no difference was found in the rate of positive surgical margins identified (13% versus 10%, P = 0.62). CONCLUSIONS: We were unable to show that PNI on needle biopsy influences long-term tumor-free survival.

Analysis of Variance↗

Complexed prostate-specific antigen as a staging tool for prostate cancer: a prospective study in 420 men.

Over time, the parameters commonly used to predict pathological stage in men with localized prostate cancer have changed, and there is now little stratification in pretreatment prostate-specific antigen (PSA) concentrations, clinical stages, and biopsy Gleason scores. This prospective study evaluated the utility of complexed PSA (cPSA ) for predicting organ-confined disease in a contemporary series of subjects. The age range of the 420 men was 39 to 72 years (58.2 +/- 6 years). Specimens were collected before radical prostatectomy, and total and free PSA (Hybritech Tandem assays, Beckman Access; Beckman Coulter, Inc., Brea, CA) and total and cPSA (Bayer Immuno 1; Bayer Corporation, Tarrytown, NY) were measured. Pathologic stage was determined from the prostatectomy specimen. Of the 420 men, 316 (75%) had organ-confined disease, and 104 (25%) had non-organ-confined disease (20.7% had extraprostatic extension, 2.6% had seminal vesicle involvement, and 1.4% had positive lymph nodes). Prebiopsy Gleason score distribution was as follows: organ-confined organ-confined, 6 (87%) and 7 (10%); non-organ-confined, 6 (66%) and 7 (30%). Of patients with organ-confined disease, 75% had clinical stage T1c disease compared with 56% for non-organ-confined disease. Using univariate logistic regression, the following variables predicted organ-confined disease: biopsy Gleason score, clinical stage, total PSA, percent free PSA, cPSA, percent cPSA (P <0.05). A multivariate model with biopsy Gleason score, clinical stage, and cPSA had a receiver operator characteristic area under the curve of 0.69. Replacing cPSA with total PSA in this model provided similar information. cPSA and total PSA were highly correlated (r = 0.985). In summary, cPSA was equivalent to total PSA in predicting organ-confined disease. Present and future models and nomograms using PSA as an indicator of pathological stage could consider use of cPSA.

Adult↗

Complexed prostate-specific antigen for early detection of prostate cancer in men with serum prostate-specific antigen levels of 2 to 4 nanograms per milliliter.

Complexed PSA (cPSA) has been shown to improve specificity in the detection of prostate cancer over that of total PSA (tPSA) testing in men with tPSA values greater than the cutoff value of 4.0 ng/mL. However, recent studies have reported a 25% incidence of prostate cancer in men with tPSA values in the 2.5- to 4.0-ng/mL range. We performed a multicenter study of cPSA in a population of men who underwent prostate biopsies because of elevated PSA levels or abnormal digital rectal examination (DRE). As part of this study, we sought to assess the clinical value of cPSA in comparison to tPSA, the free/tPSA ratio (f/tPSA) and the complexed/tPSA ratio (c/tPSA) in early detection of prostate cancer in men with tPSA values in the range of 2 to 4 ng/mL. The study was performed at 7 centers. Sera were drawn from men who underwent biopsy procedures consisting of >10 prostate tissue cores. Receiver operating characteristic (ROC) analysis was performed from the results of patients with tPSA values in the range of 2 to 4 ng/mL, including men with suspicious as well as unremarkable findings on DRE. Sera were collected and tested with the Bayer tPSA and cPSA assay and the Beckman free PSA and tPSA assays. ROC analysis was performed for all samples in the 2- to 4-ng/mL PSA range. At biopsy, 158 men had no evidence of malignancy and 57 (26.5%) were diagnosed with prostate cancer. ROC analysis indicated that the area under the curve (AUC) for cPSA was 0.64, which was statistically significantly greater than that achieved for tPSA (AUC, 0.57; P <0.0001). The AUC for f/tPSA and c/tPSA were 0.60 and 0.63, respectively, which was not statistically significantly different from that of tPSA or cPSA (P >or=0.252). A cutpoint of 2.5 ng/mL for tPSA and 2.1 ng/mL for cPSA provided a specificity of 20.3% and 34.2%, respectively, and sensitivity levels of 86%. Using cutpoints of 25% for f/tPSA and 74% for c/tPSA provided a specificity of 11.0% and 21.5%, respectively, and sensitivity levels of 97%. In all, >92% of the cancers treated with radical prostatectomy were organ confined, and the histologic grading of the tumors ranged from moderately to poorly differentiated with Gleason scores from 5 to 9. These data confirm that there is a high incidence of clinically significant prostate cancer in men with tPSA levels <4.0 ng/mL. Measurement of cPSA proved useful in stratifying men with tPSA values in the 2- to 4-ng/mL range into high- and low-risk groups for prostate cancer. The use of cPSA as a single test was found to enhance detection of prostate cancer over that of testing with tPSA and PSA ratios in men with tPSA values in the range of 2 to 4 ng/mL.

Adult↗

Cost-benefit analysis of total, free/total, and complexed prostate-specific antigen for prostate cancer screening.

Refinements in prostate-specific antigen (PSA) through the use of its derivatives have augmented early detection rates of prostate cancer. However, these improvements are coupled with relatively large increases in unit cost per detected cancer. We used decision-analytic modeling to determine the most appropriate PSA derivative for population-based screening. We constructed a decision-analytic model to determine the PSA derivative with the highest cost-benefit ratio for prostate cancer screening. We defined 5 screening strategies: total PSA (tPSA) 4.0 ng/mL; free PSA/tPSA (f/tPSA) in conjunction with tPSA; and complexed PSA (cPSA) 3.8, 3.4, and 3.0 ng/mL. Prostate cancer prevalence, false-positive rates, and false-negative rates for each test strategy were calculated from a database of 2138 men. The direct costs were obtained from literature review and our department of clinical chemistry. The derivative cPSA with a positive threshold of 3.8 ng/mL was the dominant strategy. The average cost of screening was 138.93 dollars. The strategy of tPSA became dominant when the cost of cPSA was >35.00 dollars or the cost of a prostate biopsy was <67.30 dollars. To match the false-negative rate of tPSA 4.0 ng/mL, a cPSA threshold of 3.0 ng/mL is necessary (sensitivity 92.5%). At this level, the marginal cost increase over tPSA is 9.40 dollars. The dominant strategy for population-based prostate cancer screening is use of cPSA with a positive threshold of 3.8 ng/mL. The use of cPSA with a threshold of 3.0 ng/mL identifies a similar number of cancers with fewer biopsies than tPSA at 4.0 ng/mL.

Aged↗

Impact of age on total and complexed prostate-specific antigen cutoffs in a contemporary referral series of men with prostate cancer.

Age-specific prostate-specific antigen (PSA) cutoffs were previously suggested and were found to miss significant cancers in older men. We assessed the influence of an age-adjusted PSA cutoff to optimize the diagnostic performance (sensitivity and specificity) of complexed PSA (cPSA) and total PSA (tPSA) in the differentiation of benign disease from prostate cancer using a contemporary referral patient cohort. The cPSA and tPSA values were determined using the Bayer Immuno 1 system. The diagnostic utility of tPSA and cPSA was assessed using a diverse contemporary test population consisting of sera prospectively collected between June 1999 and October 2000 from 3597 men who recently underwent a systematic biopsy by urologists in clinical practices throughout the United States. This contemporary patient sample had biopsy diagnoses of either no evidence of malignancy (NEM; N = 2189) or prostate cancer (n = 1408). All serum samples had tPSA values between 2.0 and 20.0 ng/mL. The mean tPSAs (ng/mL) for the NEM and prostate cancer groups were 7.1 +/- 3.2 and 7.3 +/- 3.3, respectively (P = 0.026). The mean cPSAs (ng/mL) for the NEM and prostate cancer groups were 5.6 +/- 2.7 and 6.0 +/- 2.9, respectively (P <0.001). As the tPSA increased from 2.0 to 10.0 ng/mL, the cancer detection rate remained relatively constant at approximately 39% when evaluated using increments of 2.0 ng/mL for tPSA. For fixed sensitivities of 80%, 85%, 90%, and 95%, as the age range increased (45 to 59, 60 to 69, 70 to 79, >or=80), the tPSA and cPSA assay cutoffs required to sustain the specified sensitivity level markedly increased, with the exception of the 95% sensitivity level, where the cutoffs only slightly increased between the age ranges of 45 to 69 and >or=70. Overall, cPSA showed a marginal improvement in specificity versus tPSA across all age groups at all sensitivity levels. In this community referral population, the cancer detection rate remained fairly constant over the tPSA range of 2.0 to 20.0 ng/mL. This study demonstrated that to maintain a given sensitivity level for cPSA and tPSA in the age ranges studied, continuous upward adjustment of the cutoffs was required as age increased.

Age Factors↗

Can volume measurement of the prostate enhance the performance of complexed prostate-specific antigen?

We assessed whether volume-based complexed prostate-specific antigen (cPSA) indices could enhance prostate cancer detection in men with serum total PSA (tPSA) between 2.5 and 10.0 ng/mL. Between December 1998 and April 2000, cPSA assay was measured in 480 men who underwent transrectal ultrasound-guided prostate biopsies at 7 institutions. We compared the usefulness of cPSA and its indices with the ratio of free PSA (fPSA) to tPSA (percent fPSA) for early detection of prostate cancer. Overall, 168 men (35%) had cancer. In the 341 men with tPSA between 4.01 and 10.0 ng/mL at approximately 90% sensitivity and areas under the receiver operating characteristics curve, the performances of volume-based parameters were significantly better (P <0.05) than those of tPSA and cPSA. In the 139 men with tPSA between 2.5 and 4.0 ng/mL, at 90% sensitivity, the specificity of the ratio of cPSA to tPSA (percent cPSA) was best, followed by cPSA density (cPSAD). In the 101 men with the history of a previous prostate biopsy, at approximately 90% sensitivity, the specificity of cPSAD was significantly better than those of tPSA and percent fPSA (P <0.05). In the 371 men with a total prostate volume of >or=30 cm(3) at approximately 90% sensitivity, the specificity of the cPSAD was significantly better than that of tPSA, percent fPSA, and cPSA (P <0.05). In the 109 men with a total prostate volume of <30 cm(3), at 90% sensitivity the specificity of cPSA and cPSAD was better than that of percent fPSA. In conclusion, volume-based cPSA can modestly enhance the performance of cPSA.

Humans↗

Complexed prostate-specific antigen as a staging tool: results based on a multicenter prospective evaluation of complexed prostate-specific antigen in cancer diagnosis.

Within a 7-site prospective evaluation of the Bayer complexed prostate-specific antigen PSA (cPSA) assay, we analyzed the ability of cPSA to predict extracapsular extension (ECE) before radical prostatectomy. Included in this analysis were 152 men diagnosed with cancer, who subsequently underwent radical prostatectomy. Sera were tested with the Bayer total PSA (tPSA) and cPSA assays, and the Beckman free PSA (fPSA) and tPSA assays. Treating surgical pathology result as a binary variable (organ confined vs ECE), mean tPSA, cPSA, fPSA/tPSA (f/tPSA) ratios, tPSA density (tPSAD), and cPSA density (cPSAD) were compared by receiver operating characteristic (ROC) curves and univariate analysis. In all, 28 men (18.4%) had pathologically identified ECE. Between those with and without ECE, significant differences were observed for tPSA (P = 0.0127), cPSA (P = 0.0120), tPSAD (P = 0.0001), and cPSAD (P = 0.0002), but not f/tPSA (P = 0.3774) or c/tPSA (P = 0.2882). All tested parameters except f/tPSA (P = 0.376) and c/tPSA (P = 0.288) predicted ECE (P <0.05) by logistic regression. The ROC area under the curve (AUC) was identical for tPSA and cPSA (0.621) and for tPSAD (0.692) and cPSAD (0.691). Kendall-tau correlation coefficients also demonstrated the strongest correlation with ECE for cPSAD and tPSAD. Either alone or as a tPSAD calculation, cPSA carries equivalent staging ability to tPSA. The use of f/tPSA appears to be less effective in staging than either cPSA or tPSA, whereas the use of either cPSAD or tPSAD provides maximal staging accuracy. Therefore, cPSA could be applied as an accurate predictor of ECE independently or in a nomogram along with other predictive variables.

Aged↗

Short-term stability of the molecular forms of prostate-specific antigen and effect on percent complexed prostate-specific antigen and percent free prostate-specific antigen.

Differences in stability of the free and complexed molecular forms of prostate-specific antigen (PSA) may influence the clinical utility of assays for these forms, as well as the calculated ratios to total PSA (tPSA), such as percent free PSA (fPSA) and percent complexed PSA (cPSA). The objective of this study was to directly compare the short-term stability of fPSA and cPSA under different storage conditions. Specimens (3 with prostate cancer, 3 biopsy-negative without cancer, 2 normal) from 8 men were analyzed at baseline within 2 hours of collection, and at 4 hours, 8 hours, 24 hours, 48 hours, and 1 week after storage at room temperature, 4 degrees C, or -20 degrees C. Serum specimens were analyzed in duplicate on the Bayer Immuno 1 analyzer (tPSA, cPSA) and on the Beckman Coulter Access analyzer (tPSA, fPSA Tandem assays). Baseline tPSA values ranged from 0.7 to 62.0 ng/mL, with a median of 7.9 ng/mL (Immuno 1). Overall, all forms of PSA were stable up to 24 hours at the 3 temperatures, with the exception of fPSA and percent fPSA, which decreased when stored at 4 degrees C. After 1 week, tPSA levels decreased when stored at room temperature and at 4 degrees C, as did cPSA stored at room temperature. Over the 7 days, percent cPSA was stable at room temperature, but increased at 4 degrees C. There were no significant changes in any PSA form or calculated ratio with storage at -20 degrees C for up to 1 week. In summary, in the short term (<1 week), fPSA is less stable with storage than tPSA or cPSA in a time- and temperature-dependent fashion. Thus, specimen handling should be considered when interpreting PSA results. It is recommended that specimens not analyzed the same day (within 8 hours of collection) be stored frozen at -20 degrees C.

Cryopreservation↗

Saw palmetto alters nuclear measurements reflecting DNA content in men with symptomatic BPH: evidence for a possible molecular mechanism.

OBJECTIVES: To examine the nuclear chromatin characteristics of epithelial cells, looking for an SPHB-mediated effect on nuclear DNA structure and organization. Saw palmetto herbal blend (SPHB) causes contraction of prostate epithelial cells and suppression of tissue dihydrotestosterone levels in men with symptomatic benign prostatic hyperplasia, but a fundamental mechanism remains unknown. METHODS: A 6-month randomized trial, comparing prostatic tissue of men treated with SPHB (n = 20) or placebo (n = 20), was performed. At baseline, the two groups were similar in age (65 versus 64 years), symptoms (International Prostate Symptom Score 18 versus 17), uroflow (maximal urinary flow rate 10 versus 11 mL/s), prostate volume (59 versus 58 cm(3)), prostate-specific antigen (4.2 versus 2.7 ng/mL), and percentage of epithelium (17% versus 16%). Prostatic tissue was obtained by sextant biopsy before and after treatment. Five-micron sections were Feulgen stained and quantitatively analyzed using the AutoCyte QUIC-DNA imaging system. Images were captured from 200 randomly selected epithelial cell nuclei, and 60 nuclear morphometric descriptors (NMDs) (eg, size, shape, DNA content, and textural features) were determined for each nucleus. Logistic regression analysis was used to assess the differences in the variances of the NMDs between the treated and untreated prostate epithelial cells. RESULTS: At baseline, the SPHB and placebo groups had similar NMD values. After 6 months of placebo, no significant change from baseline was found in the NMDs. However, after 6 months of SPHB, 25 of the 60 NMDs were significantly different compared with baseline, and a multivariate model for predicting treatment effect using 4 of the 25 was created (P <0.001). The multivariate model had an area under the receiver operating characteristic curve of 94% and an accuracy of 85%. CONCLUSIONS: Six months of SPHB treatment appears to alter the DNA chromatin structure and organization in prostate epithelial cells. Thus, a possible molecular basis for tissue changes and therapeutic effect of the compound is suggested.

Aged↗

Substratification of stage T1C prostate cancer based on the probability of biochemical recurrence.

OBJECTIVES: To evaluate the influence of preoperative prostate-specific antigen (PSA), biopsy Gleason sum, and prostate biopsy quantitative histologic findings on the probability of biochemical failure in an attempt to identify criteria to substratify Stage T1c prostate cancer more accurately. METHODS: We reviewed the records of 1149 patients who underwent prostatectomy for T1c disease between 1988 and 2000. Biochemical recurrence (PSA 0.2 ng/mL or greater) defined the endpoint in this study. Recursive partitioning analysis was used to establish cutpoints for preoperative PSA level, biopsy Gleason sum, number of positive biopsy cores, and maximal percentage of any single biopsy core involved with cancer. These cutoff values were then evaluated using Kaplan-Meier estimations to determine the probability of remaining biochemically recurrence free. RESULTS: Using a PSA cutpoint of 10 ng/mL or a biopsy Gleason sum of 7, two groups of patients were identified (T1cI and T1cII). The rate of freedom from PSA recurrence at 3, 5, and 10 years after surgery for T1cI was 98%, 96%, and 96%, respectively, and for T1cII was 86%, 83%, and 73%, respectively (P <0.001). For T1cII patients, the greatest percentage of cancer in a single biopsy core was found to be a predictor of biochemical failure on multivariate analysis and, using a cutoff value of 50%, further stratified the PSA recurrence-free rates for the men in group T1cII (90% and 85% versus 75% and 56% at 5 and 10 years after surgery, respectively, P = 0.03). CONCLUSIONS: The results of this study demonstrate that within Stage T1c there are two populations of patients with significantly different recurrence probabilities: T1cI (Gleason sum less than 7 and PSA 10 ng/mL or less) and T1cII (Gleason sum 7 or greater or PSA greater than 10 ng/mL). Furthermore, using a cutpoint of 50% of cancer in a single core of biopsy tissue, additional risk stratification is afforded to men with higher risk "T1cII" cancer.

Aged↗

Should the diagnosis of benign prostatic hyperplasia be made on prostate needle biopsy?

Pathologists frequently sign out benign prostate needle biopsies as "benign prostatic hyperplasia (BPH)". There are no data indicating that a diagnosis of BPH on biopsy correlates with either gland weight or with the International Prostate Symptom Score (IPSS) used to measure urinary obstructive symptoms. We examined biopsies for average percentage of glands and average percentage of glands with papillary infolding per case, maximum percentage of glands and maximum percentage of glands with papillary infolding per core per case, and presence of any stromal nodules per case. BPH was measured in 2 ways: (1) IPSS grouped into 3 categories (mild, moderate, severe) and (2) prostate weight at radical prostatectomy in men with limited cancer. IPSS was classified as follows: mild (n = 12), moderate (n = 13), and severe (n = 10). There was no correlation with IPSS and any of the histologic features measured. For the 41 radical prostatectomy specimens, the average weight was 65.3 g (median, 56.0 g, range, 22 to 117 g). There was no correlation between gland weight and the average or maximum percentage of glands, or average or maximum percentage of glands with papillary infolding. Stromal nodules on biopsy correlated with gland weight. In the 30 cases without stromal nodules on biopsy, the mean gland weight was 51.4 g. In the 11 cases with stromal nodules on biopsy, the mean gland weight was 77.4 g (P = 0.0125). However, stromal nodules were not specific for a large prostate (i.e., a 15 g prostate had stromal nodules on biopsy). With the exception of stromal nodules found on biopsy, histologic findings on biopsy are not specific for either clinical or pathologic BPH. Thus benign prostate biopsies should be signed out merely as "benign prostate tissue."

Adult↗

Nomograms for clinically localized prostate cancer. Part I: radical prostatectomy.

Many nomograms are currently available for patients' and physicians' use for prediction of pathologic stage based on preoperative parameters, such as prostate-specific antigen (PSA) level, clinical stage (tumor, node, metastasis), and Gleason score from prostate biopsy specimen. Based on the probability of final pathologic stage as well as patient comorbidity and life expectancy, patients and physicians can decide whether definitive local therapy, systemic therapy, or palliative therapy would be most appropriate. Nomograms have also been developed based on preoperative parameters for prediction of biochemical recurrence-free survival outcome following surgery. These nomograms can help patients understand the long-term cancer cure rates after radical prostatectomy.

Algorithms↗

Gleason score 7 prostate cancer on needle biopsy: is the prognostic difference in Gleason scores 4 + 3 and 3 + 4 independent of the number of involved cores?

PURPOSE: We addressed whether Gleason score 3 + 4 = 7 and 4 + 3 = 7 cancers on needle biopsy behave differently and whether this behavior is independent of the number of cores involved by cancer. If it is not an independent predictor of prognosis, one may report Gleason score 7 cancer with the number of positive cores without regard to whether the primary pattern was 3 or 4. This practice would remove a source of poor interobserver reproducibility when grading prostate cancer on needle biopsy. MATERIALS AND METHODS: We identified 537 patients with Gleason score 7 tumors on biopsy. The results of patient preoperative digital rectal examination, serum prostate specific antigen (PSA) measurement and age were used to predict 4 outcomes based on assessment of the corresponding radical prostatectomy specimens, including 1) pathological stage (organ confined, focal extraprostatic extension, nonfocal extraprostatic extension or seminal vesicle-lymph node involvement), 2) organ confinement (yes/no), 3) Gleason score and 4) surgical margin status (positive/negative) RESULTS: Multivariate regression of postoperative Gleason score groups against all 5 input variables (3 + 4 versus 4 + 3, number of positive cores, PSA, age and digital rectal examination) yielded a statistically significant positive correlation with preoperative PSA (p <0.001) and preoperative Gleason scores of 4 + 3 versus 3 + 4 on biopsy (p <0.001). Pathological stage correlated with preoperative PSA (p <0.001), Gleason score 4 + 3 disease (p = 0.016), positive digital rectal examination (p <0.001) and 3 or more positive cores (p = 0.016). Positive surgical margins were predicted only by preoperative PSA (p = 0.001). CONCLUSIONS: Because the biological behavior of biopsy Gleason score 3 + 4 or 4 + 3 of Gleason score 7 cancer differs regardless of the number of cores involved, future nomograms predicting pathological stage would benefit from examining 3 + 4 and 4 + 3 disease separately.

Adult↗