Publications by authors named "M J Zylka"

There is a diversity of chemicals to which humans are potentially exposed. Few of these chemicals have linked human biomonitoring data, and most have very limited neurotoxicity testing. Of particular concern are environmental exposures impacting children, who constitute a population of heightened susceptibility due to rapid neural growth and plasticity, yet lack biomonitoring data compared to other age/population subgroups.

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We previously developed an adeno-associated virus (AAV) Cas9 gene therapy for Angelman syndrome that integrated into the genome and prematurely terminated Ube3a-ATS. Here, we assessed the performance of 3 additional AAV vectors containing S. aureus Cas9 in vitro and in vivo, and 25 vectors containing N.

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Article Synopsis
  • - The study investigates how gene regulation at non-coding regions associated with brain traits can vary based on specific contexts, particularly focusing on the Wnt pathway in human neural progenitors from 82 donors.
  • - Researchers found that certain genetic variants linked to brain structures and neuropsychiatric disorders were more prevalent in regions responsive to Wnt activation, indicating context-dependent regulatory effects.
  • - Activation of the Wnt pathway significantly improved the detection of genetic influences on gene regulation and revealed new regulatory elements, suggesting that these genetic variants play critical roles in shaping adult brain traits and behaviors during neurodevelopment.
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Facial grimacing is used to quantify spontaneous pain in mice and other mammals, but scoring relies on humans with different levels of proficiency. Here, we developed a cloud-based software platform called PainFace ( http://painface.net ) that uses machine learning to detect 4 facial action units of the mouse grimace scale (orbitals, nose, ears, whiskers) and score facial grimaces of black-coated C57BL/6 male and female mice on a 0 to 8 scale.

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Blood flow through the abdominal aorta and iliac arteries is a crucial area of research in hemodynamics and cardiovascular diseases. To get in to the problem, this study presents detailed analyses of blood flow through the abdominal aorta, together with left and right iliac arteries, under Earth gravity and weightless conditions, both at the rest stage, and during physical activity. The analysis were conducted using ANSYS Fluent software.

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