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Biology subjects

Bateman, N.

Publications and source records attributed to Bateman, N..

2 recordsLinked to original sources

Indirect Deuterium Displacement Exchange Imaging for Non-invasive High-Resolution CSF Production Mapping

Cerebrospinal fluid (CSF) production is central to brain homeostasis, yet existing measurement techniques are invasive, technically demanding, and confounded by intracranial perturbations. Here, we introduce indirect deuterium displacement exchange imaging (CSF-iDDxI), a noninvasive MRI approach for mapping CSF production in vivo. The method leverages intravenously infused deuterium oxide (D2O), which crosses the blood-CSF barrier, replaces existing H2O in CSF, producing concentration-dependent attenuation of proton (1H) signal within CSF spaces. Using high-resolution 3D balanced steady-state free precession MRI in rats, we demonstrate robust and spatially widespread D2O-induced CSF signal loss that is selectively suppressed by acetazolamide, a carbonic anhydrase inhibitor known to suppress CSF production by the choroid plexus. Dynamic imaging during intravenous D2O infusion further revealed that cortical parenchymal signal changes were unaffected by acetazolamide, confirming specificity to CSF production. Exploratory kinetic modeling estimated rapid CSF water turnover (k {approx} 0.09 min-1) under physiological conditions, reduced to k {approx} 0.031 min-1 with acetazolamide suppression, consistent with prior isotope tracer studies. Together, these findings establish CSF-iDDxI as a sensitive, pharmacologically validated tool for quantifying CSF production and turnover.

neuroscience↗

The relationships between genetic ancestry, somatic mutation frequency, and histologic subtypes in high-grade endometrial cancer

High-grade endometrial cancer, like numerous other cancer types, exhibits clear racial disparities in the United States for both the incidence and outcomes of the disease. While institutional factors are likely the primary contributor to these disparities, other underlying causes cannot be ignored (i.e., molecular, genetic, and histopathologic factors). This study seeks to interrogate the role that germline genetic influences, specifically genetic ancestry, may play in contributing to characteristics of high-grade endometrial cancer. This is mainly accomplished by examining the relationship between local ancestry inferences and somatic mutation frequency as well as histologic subtypes. An association between clinical characteristics and patient survival was also interrogated, and while global ancestry was seen to have no significant effect, tumor mutation burden (TMB) did impact patient survival. Here, we identify associations between local ancestry segments on chromosomes 1 and 14 and an increased TMB in self-described (SD) Black patients. We also highlight a complex relationship between heterozygous ancestry combinations within genomic regions (i.e., [European/African] vs. [African/African]) and an increase in local somatic mutation frequency. Furthermore, we explore the relationship between local ancestry and histologic subtype. We identify one region (chr9q32) wherein the African/European local ancestry diplotype was associated with a higher incidence of serous carcinoma. We also underline a difference in somatic mutation frequency between endometrioid and serous carcinoma. While highly exploratory, these findings begin to characterize the complex relationship between genetic ancestry and characteristics of high-grade endometrial cancer, which may impact patient survival.

genomics↗