Philipp Mews (@philippmews) 's Twitter Profile
Philipp Mews

@philippmews

Asst Professor @BUMedicine exploring how metabolic signals influence the epigenome and brain function. Impact of diet/drugs on chromatin & behavior @buCSNneuro

ID: 870022302293004289

linkhttps://www.bumc.bu.edu/ppb/the-mews-lab/ calendar_today31-05-2017 21:00:55

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Quanta Magazine (@quantamagazine) 's Twitter Profile Photo

Biologists once scoffed at Jean-Baptiste Lamarck’s theory that an individual’s life experience could pass on traits to the next generation. The discovery of epigenetics proved such inheritance can occur. quantamagazine.org/the-epigenetic…

Jibran Khokhar (@drjkhokhar) 's Twitter Profile Photo

Harry⁩ and I are guest-editing a special issue of the 🔥 new journal Addiction Neuroscience on the topic of Emerging Tools to Study the Brain in Addiction Neuroscience We are looking for your original articles, reviews and commentaries. RT🙏 journals.elsevier.com/addiction-neur…

Seth Shipman (@seth_shipman) 's Twitter Profile Photo

I’m excited to introduce our Retro-Cascorder, out today in nature! This molecular device logs barcoded receipts of gene expression in a temporal genomic ledger. Sequence the ledger --> recover the history of gene expression. nature.com/articles/s4158…

Orna Issler 💔 (@isslerorna) 's Twitter Profile Photo

📢New paper! Very proud to share our paper in molecularpsychiatry about circulating microRNA as biomarkers and treatment for depression! Led by the brilliant (Twitter less) Yentl van der Zee, with the guidance of the all-mighty Eric J. Nestler, MD, PhD and me. rdcu.be/cSx9Z 🧵

The Calipari Lab (@thecaliparilab) 's Twitter Profile Photo

New paper from my group! M. Gunes Kutlu Jennifer Zachry and Patrick Melugin show that novelty effects on learning are mediated by dopamine release in ways that cannot be explained by prediction-error models, but still robustly influence predictive learning

Anacker Lab (@anacker_lab) 's Twitter Profile Photo

Check out our latest review where we discuss clinical & preclinical evidence to better understand how ELA shapes the brain during sensitive periods ⁦Lauren Malave⁩ ⁦⁦Milenna van Dijk⁩ ⁦Christoph Anacker⁩ ⁦Nature Portfolio⁩ nature.com/articles/s4139…

Eric J. Nestler, MD, PhD (@ericjnestler) 's Twitter Profile Photo

I am incredibly proud of Orna Issler 💔 and our collaborators for this new work using integrated human-mouse investigations to understand the molecular mechanisms of sex differences in depression. This exciting discovery has inspired my very first "tweetprint". Here we go…🤞🏼

Friedman Brain Institute (@sinaibrain) 's Twitter Profile Photo

PRESS RELEASE: Philipp Mews Ashley Cunningham, MSc 🧠 Eric J. Nestler, MD, PhD, et al. find #CocaineUseDisorder alters gene networks of #Neuroinflammation and #Neurotransmission in humans - analysis reveals similar changes in the #brain’s functioning in both humans & #mousemodels👉bit.ly/3xjZNxz

PRESS RELEASE: <a href="/PhilippMews/">Philipp Mews</a> <a href="/ANeurogirl/">Ashley Cunningham, MSc 🧠</a> <a href="/EricJNestler/">Eric J. Nestler, MD, PhD</a>, et al. find #CocaineUseDisorder alters gene networks of #Neuroinflammation and #Neurotransmission in humans - analysis reveals similar changes in the #brain’s functioning in both humans &amp; #mousemodels👉bit.ly/3xjZNxz
Philipp Mews (@philippmews) 's Twitter Profile Photo

Thrilled to share our latest paper in Science Signaling! Our subcellular proteomics study revealed how cocaine dynamically influences protein translocation onto and off chromatin in the nucleus accumbens. Fun project w/ Lucas Sosnick Simone Sidoli & Eric J. Nestler, MD, PhD science.org/doi/10.1126/sc…

Caleb Browne (@jdcalebbrowne) 's Twitter Profile Photo

Extremely proud to share this work with mastermind Bowen Tan and Tobias Nöbauer representing an awesome collaboration across the labs of Vaziri Lab, Jeffery Friedman, and Eric J. Nestler, MD, PhD now out in Science Magazine. science.org/doi/10.1126/sc…

Science Signaling (@scisignal) 's Twitter Profile Photo

Scientists at Friedman Brain Institute have decoded how cocaine use disorder skews the modification of proteins in the brain’s “pleasure center” in mice—providing a compendium of data that may inform future therapies for cocaine addiction. Eric J. Nestler, MD, PhD Philipp Mews scim.ag/6GQ

Scientists at <a href="/SinaiBrain/">Friedman Brain Institute</a> have decoded how cocaine use disorder skews the modification of proteins in the brain’s “pleasure center” in mice—providing a compendium of data that may inform future therapies for cocaine addiction. <a href="/EricJNestler/">Eric J. Nestler, MD, PhD</a> <a href="/PhilippMews/">Philipp Mews</a> scim.ag/6GQ