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Masakazu Nishigaki

Publications and source records attributed to Masakazu Nishigaki.

2 recordsLinked to original sources

Detection rate of pathogenic variants by postmortem genetic testing for sudden cardiac death among children and young adults: systematic review and meta-analysis.

PURPOSE: Postmortem genetic testing (PMGT) can clarify the causes of sudden cardiac death (SCD) in children and young adults and provide preventive care for relatives. We systematically reviewed studies to estimate the detection rate of pathogenic variants identified by PMGT in SCD cases aged 1-50 years and examined factors influencing detection rates. METHODS: Ovid MEDLINE and Ovid Embase were searched for observational studies on PMGT in cases of SCD, records in duplicate were screened, and study- and variant-level data were extracted. Risk of bias was assessed using the Joanna Briggs Institute checklist. The pooled detection rates were estimated using random-effects meta-analysis, and heterogeneity was explored based on subgroup and meta-regression analyses. RESULTS: Sixty-six studies (4,452 cases from 23 countries) were included. The pooled detection rate was 19% (95% confidence interval, 15% to 24%). Among the detected pathogenic variants, 76% were found in genes included on the ACMG Secondary Findings list. Higher detection rates were associated with earlier publication years, lower mean age, and lower risk of bias. Substantial between-study heterogeneity persisted (I2 = 91%) despite the subgroup and meta-regression analyses. CONCLUSION: PMGT can be used to identify pathogenic variants in young SCD cases, however, there is considerable heterogeneity in study conditions.

Forensic genetics↗

Comparison of actionable alterations in cancers with kinase fusion, mutation, and copy number alteration.

Kinase-related gene fusion and point mutations play pivotal roles as drivers in cancer, necessitating optimized, targeted therapy against these alterations. The efficacy of molecularly targeted therapeutics varies depending on the specific alteration, with great success reported for such therapeutics in the treatment of cancer with kinase fusion proteins. However, the involvement of actionable alterations in solid tumors, especially regarding kinase fusions, remains unclear. Therefore, in this study, we aimed to compare the number of actionable alterations in patients with tyrosine or serine/threonine kinase domain fusions, mutations, and copy number alterations (CNAs). We analyzed 613 patients with 40 solid cancer types who visited our division between June 2020 and April 2024. Furthermore, to detect alterations involving multiple-fusion calling, we performed comprehensive genomic sequencing using FoundationOne® companion diagnostic (F1CDx) and FoundationOne® Liquid companion diagnostic (F1LCDx). Patient characteristics and genomic profiles were analyzed to assess the frequency and distribution of actionable alterations across different cancer types. Notably, 44 of the 613 patients had fusions involving kinases, transcriptional regulators, or tumor suppressors. F1CDx and F1LCDx detected 13 cases with kinase-domain fusions. We identified 117 patients with kinase-domain mutations and 58 with kinase-domain CNAs. The number of actionable alterations in patients with kinase-domain fusion, mutation, or CNA (median [interquartile range; IQR]) was 2 (1-3), 5 (3-7), and 6 (4-8), respectively. Patients with kinase fusion had significantly fewer actionable alterations than those with kinase-domain mutations and CNAs. However, those with fusion involving tumor suppressors tended to have more actionable alterations (median [IQR]; 4 [2-9]). Cancers with kinase fusions exhibited fewer actionable alterations than those with kinase mutations and CNAs. These findings underscore the importance of detecting kinase alterations and indicate the pivotal role of kinase fusions as strong drivers of cancer development, highlighting their potential as prime targets for molecular therapeutics.

Humans↗