Alex Serafini, PhD/MHA (@ra_serafini) 's Twitter Profile
Alex Serafini, PhD/MHA

@ra_serafini

MD/PhD/MHA candidate at Mount Sinai focused on sensory neuroscience. Caterina Lab to Zachariou Lab. Loves biz, beer, cars, & coffee! 🇺🇲🇲🇽

ID: 1199355582479839232

linkhttps://scholar.google.com/citations?user=XhJxZi0AAAAJ&hl=en&oi=sra calendar_today26-11-2019 15:53:53

619 Tweet

938 Followers

1,1K Following

IASP (@iasppain) 's Twitter Profile Photo

@vannazachariou Alex Serafini, PhD/MHA et al. identified nucleus accumbens myocyte enhancer factor 2C as a targetable regulator of maladaptive behaviors and physiological changes after prolonged nerve injury. Learn more in #PAIN bit.ly/3UOxIe2

@vannazachariou <a href="/ra_serafini/">Alex Serafini, PhD/MHA</a> et al. identified nucleus accumbens myocyte enhancer factor 2C as a targetable regulator of maladaptive behaviors and physiological changes after prolonged nerve injury. Learn more in #PAIN bit.ly/3UOxIe2
PAIN Journal (@painthejournal) 's Twitter Profile Photo

Now in #PAIN: “Nucleus accumbens myocyte enhancer factor 2C mediates the maintenance of peripheral nerve injury–induced physiological and behavioral maladaptations” by Vanna Zachariou Alex Serafini, PhD/MHA et al. bit.ly/3UOxIe2

Now in #PAIN: “Nucleus accumbens myocyte enhancer factor 2C mediates the maintenance of peripheral nerve injury–induced physiological and behavioral maladaptations” by <a href="/vannazachariou/">Vanna Zachariou</a> <a href="/ra_serafini/">Alex Serafini, PhD/MHA</a> et al. bit.ly/3UOxIe2
PAIN Journal (@painthejournal) 's Twitter Profile Photo

Vanna Zachariou Alex Serafini, PhD/MHA et al. identified nucleus accumbens myocyte enhancer factor 2C as a targetable regulator of maladaptive behaviors and physiological changes after prolonged nerve injury. Learn more in #PAIN bit.ly/3UOxIe2

<a href="/vannazachariou/">Vanna Zachariou</a> <a href="/ra_serafini/">Alex Serafini, PhD/MHA</a> et al. identified nucleus accumbens myocyte enhancer factor 2C as a targetable regulator of maladaptive behaviors and physiological changes after prolonged nerve injury. Learn more in #PAIN bit.ly/3UOxIe2
IASP (@iasppain) 's Twitter Profile Photo

Now in #PAIN: “Nucleus accumbens myocyte enhancer factor 2C mediates the maintenance of peripheral nerve injury–induced physiological and behavioral maladaptations” by Vanna Zachariou Alex Serafini, PhD/MHA et al. bit.ly/3UOxIe2

Now in #PAIN: “Nucleus accumbens myocyte enhancer factor 2C mediates the maintenance of peripheral nerve injury–induced physiological and behavioral maladaptations” by <a href="/vannazachariou/">Vanna Zachariou</a> <a href="/ra_serafini/">Alex Serafini, PhD/MHA</a> et al. bit.ly/3UOxIe2
Nisha Patel, MD MS, Dipl of ABOM, CCMS (@drplantel) 's Twitter Profile Photo

The amount of hate doctors are getting right now is off the charts, and people just don’t seem to get the consequences of it. Let’s get something straight: doctors didn’t go into this field to watch patients suffer or get rich quick. The fact that people think that is honestly

Ilinca Giosan (@ilincagiosan) 's Twitter Profile Photo

Thrilled to announce our pre-print on how epigenetic biomarker proxies (EBPs) can offer valuable insights into chronic diseases and mortality! #epigenetics TruDiagnostic medrxiv.org/content/10.110…

Alex Serafini, PhD/MHA (@ra_serafini) 's Twitter Profile Photo

Is there room to rethink the role of academics in formulating IP? We think so! Please check out our new commentary in Nature Biotechnology on how education can improve IP output and #techtransfer opportunities. nature.com/articles/s4158…

Nature Biotechnology (@naturebiotech) 's Twitter Profile Photo

Implementation of intellectual property education in academic institutions can result in increased opportunities for protecting IP and limit costs, but to be successful technology transfer offices must also adapt go.nature.com/4iCtdhc rdcu.be/d3sq8

Implementation of intellectual property education in academic institutions can result in increased opportunities for protecting IP and limit costs, but to be successful technology transfer offices must also adapt go.nature.com/4iCtdhc
rdcu.be/d3sq8
Chino Nwakama (@chinonwakama) 's Twitter Profile Photo

Although NYC will be my home for the near future, I'll never forget my roots in rural Southwest Minnesota. Take a look at the short letter to the editor that I wrote for my hometown paper, outlining the real-life motivation behind NIH research. marshallindependent.com/opinion/letter…

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

A HUGE CONGRATULATIONS to Dr. Eric J. Nestler, MD, PhD on being named Interim Dean Icahn School of Medicine at Mount Sinai! As we express great enthusiasm for Dr. Nestler becoming Dean & the exciting time ahead, please join us in thanking Dean Charney for his extraordinary service & commitment to Mount Sinai Health System.

A HUGE CONGRATULATIONS to Dr. <a href="/EricJNestler/">Eric J. Nestler, MD, PhD</a> on being named Interim Dean <a href="/IcahnMountSinai/">Icahn School of Medicine at Mount Sinai</a>! As we express great enthusiasm for Dr. Nestler becoming Dean &amp; the exciting time ahead, please join us in thanking Dean Charney for his extraordinary service &amp; commitment to <a href="/MountSinaiNYC/">Mount Sinai Health System</a>.
Mount Sinai Dermatology (@mshsderm) 's Twitter Profile Photo

Great recent publication by Dr. Shruti Naik and colleagues! One-time YAP inhibition with verteporfin promotes scarless skin healing 🧬In porcine & human models, verteporfin reprogrammed fibroblasts and boosted IL-33–driven regeneration. 🔬💉 🧵bit.ly/4j5JdHP Emma Guttman-Yassky

Great recent publication by <a href="/DrShrutiNaik/">Dr. Shruti Naik</a> and colleagues! One-time YAP inhibition with verteporfin promotes scarless skin healing 🧬In porcine &amp; human models, verteporfin reprogrammed fibroblasts and boosted IL-33–driven regeneration. 🔬💉
🧵bit.ly/4j5JdHP
<a href="/EmmaGuttman/">Emma Guttman-Yassky</a>
Hanjie Li (@li_hanjie) 's Twitter Profile Photo

Proud to share our latest Cell paper. We present a novel immune population termed PNS microglia that regulate neuronal soma size throughout evolution. cell.com/cell/abstract/… #Microglia#PNS#NeuronalSomaSize#Macrophage#BodySize#Neuroimmunology#Evolution (1/8)

Proud to share our latest <a href="/CellCellPress/">Cell</a> paper. We present a novel immune population termed PNS microglia that regulate neuronal soma size throughout evolution. cell.com/cell/abstract/… #Microglia#PNS#NeuronalSomaSize#Macrophage#BodySize#Neuroimmunology#Evolution (1/8)
Sergiu P. Pasca (@sergiu_p_pasca) 's Twitter Profile Photo

Today in nature, we report human sensory #assembloids—the most complex 3D assembloids to date—comprising four integrated parts to recapitulate aspects of the spinothalamic pathway that processes pain stimuli. We use this model to investigate cellular/early circuit level

Today in <a href="/Nature/">nature</a>, we report human sensory #assembloids—the most complex 3D assembloids to date—comprising four integrated parts to recapitulate aspects of the spinothalamic  pathway that processes pain stimuli. We use this model to investigate cellular/early circuit level
Alex Serafini, PhD/MHA (@ra_serafini) 's Twitter Profile Photo

Congratulations to the APSA advocacy team on this new piece highlighting mental health challenges and solutions in medical scientist trainee populations. SinaiMSTP nature.com/articles/s4385…

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

Please see this new publication by Arthur Godino, Marine Salery, and others now online in nature. We show opposite roles for D1 vs D2 dopamine receptor- expressing neurons in ventral hippocampus in controlling approach-avoidance behavior. Friedman Brain Institute rdcu.be/ek2DS

Please see this new publication by Arthur Godino, Marine Salery, and others now online in <a href="/Nature/">nature</a>. We show opposite roles for D1 vs D2 dopamine receptor- expressing neurons in ventral hippocampus in controlling approach-avoidance behavior. <a href="/SinaiBrain/">Friedman Brain Institute</a>
rdcu.be/ek2DS
Waggoner Lab (@labwaggoner) 's Twitter Profile Photo

Nociceptor-derived CGRP strengthens cDC1-CD8+ T cell interactions, leading to melanocyte destruction and white patches in vitiligo Immunity cell.com/immunity/fullt…

Nociceptor-derived CGRP strengthens cDC1-CD8+ T cell interactions, leading to melanocyte destruction and white patches in vitiligo <a href="/ImmunityCP/">Immunity</a> 
cell.com/immunity/fullt…