Anthony M. Masingale
4 Papers
Anthony M. Masingale is an academic researcher. The author has contributed to research in topics: Medicine & Mitochondrion. The author has an hindex of 2, co-authored 3 publications.
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Papers
Selective Ablation of Sod2 in Astrocytes Induces Sex-Specific Effects on Cognitive Function, d-Serine Availability, and Astrogliosis
Matthew P Baier,Raghavendra Y. Nagaraja,Hannah P. Yarbrough,Daniel Owen,Anthony M. Masingale,Rojina Ranjit,Megan Stiles,Ashley Murphy,Martin-Paul Agbaga,Mohiuddin Ahmad,David M. Sherry,Michael Kinter,Holly Van Remmen,Sreemathi Logan +13 more
TL;DR: Astrocytic ablation of SOD2 impairs hippocampal-dependent plasticity in spatial working memory, reduces long-term potentiation of hippocampal neurons and levels of the neuromodulator d-serine, and increases astrogliosis, consistent with defects in advanced aging and Alzheimer's disease.
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A Genetically Heterogeneous Rat Model with Divergent Mitochondrial Genomes
Roshini Sathiaseelan,Bumsoo Ahn,Michael B. Stout,Sreemathi Logan,Jonathan Wanagat,Norman G. Hord,Amy R. Vandiver,Ramasamy Selvarani,Rojina Ranjit,Hannah P. Yarbrough,Anthony M. Masingale,Benjamin F Miller,Roman F. Wolf,Steven N. Austad,Arlan Richardson +14 more
TL;DR: In this paper , a 4-way cross strategy using 4 inbred strains (Brown Norway [BN], Fischer 344 [F344], Lewis [LEW], and Wistar Kyoto [KY]) was used to generate a highly genetically diverse rat model from commercially available inbred rats.
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Mitochondrial calcium uniporter deficiency in dentate granule cells remodels neuronal metabolism and impairs reversal learning.
Rojina Ranjit,Anthony M. Masingale,Daniel Owen,Stacy A. Hussong,Michael Kinter,V. Galvan,Sreemathi Logan,Carlos Manlio Diaz-Garcia +7 more
TL;DR: In this article , the authors genetically down-regulated the MCU gene in dentate granule cells (DGCs) of the hippocampus and found that this manipulation increased the overall respiratory activity of mitochondria, augmenting the generation of reactive oxygen species in the context of impaired electron transport chain.
Cellular Senescence Is a Central Driver of Cognitive Disparities in Aging.
Matthew P Baier,Rojina Ranjit,Daniel B Owen,Jenna L Wilson,Megan A. Stiles,Anthony M. Masingale,Zachary Thomas,Anne Bredegaard,David M. Sherry,Sreemathi Logan +9 more