Caroline Perry
@CEPerry230
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Penn PhD Candidate in @BaurLab, Mitochondriac, Plant Enthusiast
Joined September 2020
The Baur Lab is looking for several post-docs to join our team at the University of Pennsylvania. If you like mitochondria, NAD, and heart research, or want to try something new...see our job posting here!
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Congrats to Sarmistha Murkherjee for her recent study revealing that SIRT3 is required for liver regeneration and that the benefits of boosting #NAD are independent of sirtuins. https://t.co/9GTvTyfKJ0
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What governs the inheritance of organelles during cell division? Striking microscopy work reveals how the cytoskeleton aids this process. https://t.co/kAMxidZwSe
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If you have a bioscience PhD, which year of grad school was the hardest for you?
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Cancer is aided by greasy traitors — lipid production marks Treg cells in the tumour microenvironment. A super N&V by @CEPerry230 & Ulf Beier @PennIDOM @ChildrensPhila discusses the implications https://t.co/bCW40R9LaC
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Lipid signalling enforces functional specialization of T reg cells in tumours | Nature
nature.com
Nature - Identification of a metabolic checkpoint involving lipid signalling that is specific to regulatory T cells (Treg cells) in the tumour microenvironment raises the possibility of targeting...
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Excited to share our @NatureNV article about the incredible work by the Hongbo Chi Lab at @StJudeResearch showing that lipid metabolism potentiates regulatory T cells in the tumor microenvironment. https://t.co/pqANSScYhT
#metabolism #immunology #tcell @nature
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Check out a preprint of our latest work investigating NAD metabolism in aging. This work was co-led by @dr_ohsopretty and @KarthikeyaniC. NAD+ flux is maintained in aged mice
researchsquare.com
NAD+ is an essential coenzyme found in all living cells. NAD+ concentrations decline during aging, but whether this reflects impaired production or accelerated consumption remains unclear. Here we...
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Highlighting key contributions by: @timluongo @EllerJared @MuJie_Lu @dr_ohsopretty @fraith7 @CEPerry230
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We are pleased to share our most recent work led by @timluongo and in collaboration with @LAcambronne published @nature. Thank you to all those who contributed to this exciting work.
I am excited to share our most recent work from the @baurlab published @nature revealing SLC25A51 expression regulates mitochondrial NAD+ levels and encodes the mammalian mitochondrial NAD+ transporter. #NAD #mitochondria #metabolism
https://t.co/WIoh4ClSmF
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