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1.
Lancet Oncol ; 22(11): 1618-1631, 2021 11.
Artigo em Inglês | MEDLINE | ID: mdl-34678156

RESUMO

BACKGROUND: Lynch syndrome is a rare familial cancer syndrome caused by pathogenic variants in the mismatch repair genes MLH1, MSH2, MSH6, or PMS2, that cause predisposition to various cancers, predominantly colorectal and endometrial cancer. Data are emerging that pathogenic variants in mismatch repair genes increase the risk of early-onset aggressive prostate cancer. The IMPACT study is prospectively assessing prostate-specific antigen (PSA) screening in men with germline mismatch repair pathogenic variants. Here, we report the usefulness of PSA screening, prostate cancer incidence, and tumour characteristics after the first screening round in men with and without these germline pathogenic variants. METHODS: The IMPACT study is an international, prospective study. Men aged 40-69 years without a previous prostate cancer diagnosis and with a known germline pathogenic variant in the MLH1, MSH2, or MSH6 gene, and age-matched male controls who tested negative for a familial pathogenic variant in these genes were recruited from 34 genetic and urology clinics in eight countries, and underwent a baseline PSA screening. Men who had a PSA level higher than 3·0 ng/mL were offered a transrectal, ultrasound-guided, prostate biopsy and a histopathological analysis was done. All participants are undergoing a minimum of 5 years' annual screening. The primary endpoint was to determine the incidence, stage, and pathology of screening-detected prostate cancer in carriers of pathogenic variants compared with non-carrier controls. We used Fisher's exact test to compare the number of cases, cancer incidence, and positive predictive values of the PSA cutoff and biopsy between carriers and non-carriers and the differences between disease types (ie, cancer vs no cancer, clinically significant cancer vs no cancer). We assessed screening outcomes and tumour characteristics by pathogenic variant status. Here we present results from the first round of PSA screening in the IMPACT study. This study is registered with ClinicalTrials.gov, NCT00261456, and is now closed to accrual. FINDINGS: Between Sept 28, 2012, and March 1, 2020, 828 men were recruited (644 carriers of mismatch repair pathogenic variants [204 carriers of MLH1, 305 carriers of MSH2, and 135 carriers of MSH6] and 184 non-carrier controls [65 non-carriers of MLH1, 76 non-carriers of MSH2, and 43 non-carriers of MSH6]), and in order to boost the sample size for the non-carrier control groups, we randomly selected 134 non-carriers from the BRCA1 and BRCA2 cohort of the IMPACT study, who were included in all three non-carrier cohorts. Men were predominantly of European ancestry (899 [93%] of 953 with available data), with a mean age of 52·8 years (SD 8·3). Within the first screening round, 56 (6%) men had a PSA concentration of more than 3·0 ng/mL and 35 (4%) biopsies were done. The overall incidence of prostate cancer was 1·9% (18 of 962; 95% CI 1·1-2·9). The incidence among MSH2 carriers was 4·3% (13 of 305; 95% CI 2·3-7·2), MSH2 non-carrier controls was 0·5% (one of 210; 0·0-2·6), MSH6 carriers was 3·0% (four of 135; 0·8-7·4), and none were detected among the MLH1 carriers, MLH1 non-carrier controls, and MSH6 non-carrier controls. Prostate cancer incidence, using a PSA threshold of higher than 3·0 ng/mL, was higher in MSH2 carriers than in MSH2 non-carrier controls (4·3% vs 0·5%; p=0·011) and MSH6 carriers than MSH6 non-carrier controls (3·0% vs 0%; p=0·034). The overall positive predictive value of biopsy using a PSA threshold of 3·0 ng/mL was 51·4% (95% CI 34·0-68·6), and the overall positive predictive value of a PSA threshold of 3·0 ng/mL was 32·1% (20·3-46·0). INTERPRETATION: After the first screening round, carriers of MSH2 and MSH6 pathogenic variants had a higher incidence of prostate cancer compared with age-matched non-carrier controls. These findings support the use of targeted PSA screening in these men to identify those with clinically significant prostate cancer. Further annual screening rounds will need to confirm these findings. FUNDING: Cancer Research UK, The Ronald and Rita McAulay Foundation, the National Institute for Health Research support to Biomedical Research Centres (The Institute of Cancer Research and Royal Marsden NHS Foundation Trust; Oxford; Manchester and the Cambridge Clinical Research Centre), Mr and Mrs Jack Baker, the Cancer Council of Tasmania, Cancer Australia, Prostate Cancer Foundation of Australia, Cancer Council of Victoria, Cancer Council of South Australia, the Victorian Cancer Agency, Cancer Australia, Prostate Cancer Foundation of Australia, Asociación Española Contra el Cáncer (AECC), the Instituto de Salud Carlos III, Fondo Europeo de Desarrollo Regional (FEDER), the Institut Català de la Salut, Autonomous Government of Catalonia, Fundação para a Ciência e a Tecnologia, National Institutes of Health National Cancer Institute, Swedish Cancer Society, General Hospital in Malmö Foundation for Combating Cancer.


Assuntos
Reparo de Erro de Pareamento de DNA/genética , Detecção Precoce de Câncer , Neoplasias da Próstata/diagnóstico , Adulto , Idoso , Biomarcadores Tumorais/sangue , Proteínas de Ligação a DNA/genética , Mutação em Linhagem Germinativa , Heterozigoto , Humanos , Incidência , Masculino , Pessoa de Meia-Idade , Proteína 2 Homóloga a MutS/genética , Estudos Prospectivos , Antígeno Prostático Específico/sangue , Neoplasias da Próstata/epidemiologia , Neoplasias da Próstata/genética
2.
Eur Urol ; 76(6): 831-842, 2019 12.
Artigo em Inglês | MEDLINE | ID: mdl-31537406

RESUMO

BACKGROUND: Mutations in BRCA2 cause a higher risk of early-onset aggressive prostate cancer (PrCa). The IMPACT study is evaluating targeted PrCa screening using prostate-specific-antigen (PSA) in men with germline BRCA1/2 mutations. OBJECTIVE: To report the utility of PSA screening, PrCa incidence, positive predictive value of PSA, biopsy, and tumour characteristics after 3 yr of screening, by BRCA status. DESIGN, SETTING, AND PARTICIPANTS: Men aged 40-69 yr with a germline pathogenic BRCA1/2 mutation and male controls testing negative for a familial BRCA1/2 mutation were recruited. Participants underwent PSA screening for 3 yr, and if PSA > 3.0 ng/ml, men were offered prostate biopsy. OUTCOME MEASUREMENTS AND STATISTICAL ANALYSIS: PSA levels, PrCa incidence, and tumour characteristics were evaluated. Statistical analyses included Poisson regression offset by person-year follow-up, chi-square tests for proportion t tests for means, and Kruskal-Wallis for medians. RESULTS AND LIMITATIONS: A total of 3027 patients (2932 unique individuals) were recruited (919 BRCA1 carriers, 709 BRCA1 noncarriers, 902 BRCA2 carriers, and 497 BRCA2 noncarriers). After 3 yr of screening, 527 men had PSA > 3.0 ng/ml, 357 biopsies were performed, and 112 PrCa cases were diagnosed (31 BRCA1 carriers, 19 BRCA1 noncarriers, 47 BRCA2 carriers, and 15 BRCA2 noncarriers). Higher compliance with biopsy was observed in BRCA2 carriers compared with noncarriers (73% vs 60%). Cancer incidence rate per 1000 person years was higher in BRCA2 carriers than in noncarriers (19.4 vs 12.0; p = 0.03); BRCA2 carriers were diagnosed at a younger age (61 vs 64 yr; p = 0.04) and were more likely to have clinically significant disease than BRCA2 noncarriers (77% vs 40%; p = 0.01). No differences in age or tumour characteristics were detected between BRCA1 carriers and BRCA1 noncarriers. The 4 kallikrein marker model discriminated better (area under the curve [AUC] = 0.73) for clinically significant cancer at biopsy than PSA alone (AUC = 0.65). CONCLUSIONS: After 3 yr of screening, compared with noncarriers, BRCA2 mutation carriers were associated with a higher incidence of PrCa, younger age of diagnosis, and clinically significant tumours. Therefore, systematic PSA screening is indicated for men with a BRCA2 mutation. Further follow-up is required to assess the role of screening in BRCA1 mutation carriers. PATIENT SUMMARY: We demonstrate that after 3 yr of prostate-specific antigen (PSA) testing, we detect more serious prostate cancers in men with BRCA2 mutations than in those without these mutations. We recommend that male BRCA2 carriers are offered systematic PSA screening.


Assuntos
Detecção Precoce de Câncer/métodos , Genes BRCA1 , Genes BRCA2 , Triagem de Portadores Genéticos/métodos , Mutação em Linhagem Germinativa , Neoplasias da Próstata/diagnóstico , Neoplasias da Próstata/genética , Adulto , Idoso , Humanos , Calicreínas/sangue , Masculino , Pessoa de Meia-Idade , Estudos Prospectivos , Antígeno Prostático Específico/sangue , Neoplasias da Próstata/sangue
3.
Jt Comm J Qual Patient Saf ; 31(11): 614-21, 2005 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-16335062

RESUMO

BACKGROUND: As health care organizations establish patient safety agendas, attention has focused on creating less cumbersome systems for reporting errors. However, experience at Brigham and Women's Hospital (Boston) suggests that more emphasis needs to be placed on what happens after a report is submitted. FOLLOW-UP AND FEEDBACK: Follow-up includes prioritizing opportunities and actions, assigning responsibility and accountability, and implementing the action plan. Feedback entails (1) follow-up to those who report issues and (2) communication to the hospital staff and clinicians about events and actions taken. Responsibility and accountability for improvements need to be assigned by senior administration to hospital leaders who can effect the needed changes. Hospital leaders, not just the members of the patient safety team, must own these changes or improvements. Events that require follow-up action are brought to the attention of risk management and the patient safety team through several mechanisms, including voluntary reporting of adverse events through a computerized safety reporting system, root cause analyses, and Patient Safety Leadership WalkRounds. DISCUSSION: Developing and maintaining a systematic method for feedback represents more of a challenge than the completion of any single recommended action item. However, it is the feedback to the reporter that perpetuates the influx of information and closes the loop. Developing the information-tracking database has made providing feedback easier and more reliable but significant effort is required to keep the database current.


Assuntos
Eficiência Organizacional , Hospitais Urbanos , Erros Médicos/prevenção & controle , Gestão da Segurança/organização & administração , Boston , Causalidade , Humanos , Estudos de Casos Organizacionais
4.
Jt Comm J Qual Patient Saf ; 31(8): 423-37, 2005 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-16156190

RESUMO

BACKGROUND: Brigham and Women's Hospital (BWH) began Patient Safety Leadership WalkRounds in January 2001; its experience, along with that of three other Partner Healthcare hospitals, is reported. COLLECTING DATA ON WALKROUNDS: Data were obtained from interviews with patient safety personnel, WalkRounds scribes, and senior leaders. FINDINGS: A total of 233 one-hour WalkRounds during 28 months yielded 1,433 comments--30% related to equipment, 13% to communications, 7% to pharmacy, and 6% to workforce. Actions occurred quickly in small hospitals. Formal processes for managing larger issues were necessary in large organizations. Implementation feasibility featured more prominently than severity in determining actions. DISCUSSION: The study generated essential guidelines for success--for example, the supporting resources must include the maintenance of effective information databases that identify actions taken, and the discussions during WalkRounds are influenced by who in leadership is participating, their ability to quietly listen, and whether they have clinical or nonclinical backgrounds. CONCLUSIONS: WalkRounds appears to be an effective tool for engaging leadership, identifying safety issues, and supporting a culture of safety.


Assuntos
Liderança , Erros Médicos/prevenção & controle , Gestão da Segurança/métodos , Administração Hospitalar , Humanos , Entrevistas como Assunto , Massachusetts , Estudos de Casos Organizacionais , Controle de Qualidade
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