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Biology subjects

Watts, G.

Publications and source records attributed to Watts, G..

2 recordsLinked to original sources

Detection of Pancreatic Cancer Using a Methylation-Specific PCR-Based Multi-Cancer Early Detection Test

ContextPancreatic ductal adenocarcinoma (PDAC) is an aggressive malignancy often diagnosed at advanced stages due to the lack of early clinical symptoms. DNA methylation alterations arise early in PDAC tumorigenesis and may serve as promising biomarkers for blood-based cancer detection. ObjectiveTo evaluate the performance of EPISEEK, a laboratory-developed blood-based multi-cancer early detection (MCED) assay, for detecting PDAC across disease stages. DesignA retrospective cohort study included 97 patients with stage I-IV PDAC and 201 asymptomatic healthy controls. Sensitivity, specificity, area under the curve (AUC), and stage-specific performance were assessed. EPISEEK-MCED performance was also compared with CA 19-9 alone and in combination with CA 19-9. ResultsEPISEEK-MCED classified 65 of 97 PDAC cases as positive, corresponding to an observed sensitivity of 70.1% (95% CI, 60.3% - 78.3%) at 99.5% specificity. The assay demonstrated strong discrimination between PDAC cases and healthy controls, with an AUC of 0.916 (95% CI, 0.88 - 0.952). Sensitivity increased with advancing stage while remaining substantial in early-stage disease, measuring 53.6% for stage I and 65.1% for stage II PDAC, 100% for stage III and 94.7% for stage IV. Across stages, EPISEEK-MCED outperformed CA 19-9 alone, particularly in early-stage disease. Combined analysis of EPISEEK-MCED and CA 19-9 further improved detection performance, achieving sensitivity of 57.1% and 81.4% for stage I and II, respectively. ConclusionsEPISEEK-MCED demonstrated high specificity and sensitivity for PDAC detection across disease stages, including early-stage disease. Combining EPISEEK-MCED with CA19-9 further improved performance, supporting its clinical utility for PDAC detection.

molecular biology↗

Plasma amyloid-beta homeostasis is associated with Body Mass Index and weight-loss in people with overweight and obesity

BACKGROUNDObesity is linked to a higher incidence of Alzheimers disease (AD). Studies show that plasma amyloid-{beta} (A{beta}) dyshomeostasis, particularly low 42/40 ratio indicates a heightened risk for developing AD. However, the relationship between body mass index (BMI) and circulating plasma A{beta} has not been extensively studied. OBJECTIVEWe hypothesised that people with a high BMI have altered plasma A{beta} homeostasis compared with people with a lower BMI. We also tested whether reducing BMI by calorie-restriction could normalise plasma concentrations of A{beta}. METHODSPlasma concentrations of A{beta}40, A{beta}42 and A{beta}42/40 ratio were measured in 106 participants with BMIs classified as lean, overweight, or obese. From this cohort, twelve participants with overweight or obese BMIs entered a 12-week calorie-restriction weight loss program. We then tested whether decreasing BMI affected plasma A{beta} concentrations. RESULTSPlasma A{beta}42/40 ratio was 17.54% lower in participants with an obese BMI compared to lean participants (p<0.0001), and 11.76% lower compared to participants with an overweight BMI (p<0.0001). The weight loss regimen decreased BMI by an average of 4.02% (p=0.0005) and was associated with a 6.5% decrease in plasma A{beta}40 (p=0.0425). However, weight loss showed negligible correlations with plasma A{beta}40, A{beta}42 and A{beta}42/40 ratio. CONCLUSIONObesity is associated with aberrant plasma A{beta} homeostasis which may be associated with an increased risk for AD. Weight loss appears to lower A{beta}40, but large-scale longitudinal studies in addition to molecular studies are required to elucidate the underlying mechanisms of how obesity and weight loss influence plasma A{beta} homeostasis.

physiology↗