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Fernando Santana

@lfsantana68.bsky.social
130 followers 130 following 29 posts

🔬Physiologist & Biophysicist | Vice Dean for Basic Sciences and Chair of Physiology & Membrane Biology 🧠 Champion of thematic breadth in science & medical research 📢 Exploring how structure fuels innovation ☕ Fueling ideas with coffee & conversation

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Reposted by Fernando Santana
Manuel F. Navedo @mfnavedo.bsky.social · 21/09/2026
🎙️ Episode 5 of the M&M Lab Podcast is LIVE! 🎉 Our new J Physiol paper, led by Miguel Martín-Aragón Baudel: calcium channels ride microtubules into clusters that drive excessive artery constriction in diabetes & hypertension 🚚⚡ 🎧 navedolab.faculty.ucdavis.edu/podcasts/
navedolab.faculty.ucdavis.edu
Podcasts – Welcome to the M&M Lab
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Manuel F. Navedo @mfnavedo.bsky.social · 18/09/2026
New pre-print from the M&M Lab! 🫀🔬 Uncovering a Sex-Specific cAMP Landscape in Vascular Smooth Muscle Check it out!!! www.biorxiv.org/content/10.6...
biorxiv.org
Uncovering a Sex-Specific cAMP Landscape in Vascular Smooth Muscle
The second messenger, cyclic adenosine monophosphate (cAMP), plays a crucial role in regulating cellular function, including in vascular smooth muscle (VSM). While extensive research has focused on th...
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Colleen E. Clancy PhD @clancyatheart.bsky.social · 03/09/2026
Colleagues, Since the launch of The Journal of Precision Medicine: Health and Disease, papers are flowing in and we're ready to expand the editorial board! Nominate a colleague or self-nominate! An exciting opportunity to shape precision medicine, get editorial experience and host special issues!
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The Journal of Physiology @jphysiol.bsky.social · 18/08/2026
🎓️ EDITOR'S CHOICE🎓️ Christoph Sandmann from @uniheidelberg.bsky.social and colleagues reveal how the endoplasmic reticulum (ER) and sarcoplasmic reticulum (SR) evolve during heart muscle development. Read the study👇️ physoc.onlinelibrary.wiley.com/doi/10.1113/...
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The Journal of Physiology @jphysiol.bsky.social · 05/08/2026
#Research by Miguel Martin-Aragon Baudel of @pharmacologyucc.bsky.social and colleagues investigates CaV1.2 dynamics in native male arterial myocytes 🫀 🔬 Read the study here👇️ physoc.onlinelibrary.wiley.com/doi/10.1113/...
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eLife @elife.bsky.social · 23/07/2026
Looking for a home for your Physiolgy preprint? We welcome research that reveals the mechanisms driving physiological processes across all levels of organisation See what we publish... buff.ly/rytcQXb ...or learn how we're championing preprints: buff.ly/55KVQ8P
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Tom Longden @talongden.bsky.social · 22/07/2026
Thrilled to be co-organizing the 2027 FASEB Science Research Conference on Vasoregulation: Signaling & Multicellular Inputs, with Scott Earley and Madeline Nieves-Cintrón. Save the date for Washington DC, Aug 29–Sep 1. Registration details to follow very soon. Please circulate widely!
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eLife @elife.bsky.social · 13/07/2026
This study shows a fundamental methodological advance enabling measurements of single-channel gating behavior of CRAC channels whose unitary currents are too small to be resolved electrically. The work is convincing and findings have biological relevance.
buff.ly
Optical single-channel recording of CRAC channels with HaloTag and a Ca2+-sensitive ligand
Altmetric provides a collated score for online attention across various platforms and media.See more details
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Tom Longden @talongden.bsky.social · 09/06/2026
Very happy to share our latest work out in PNAS this week, led by Amy Xiang. We show that capillary thin-strand pericytes express TMEM16A calcium-activated chloride channels, which set the operating point for capillary control of cerebral blood flow in vivo. www.pnas.org/doi/10.1073/...
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UC Davis Physiology @ucd-physiology.bsky.social · 03/06/2026
Tomorrow! June 4—Kafui Dzirasa, MD, PhD from Duke University Medical Center will be our distinguished speaker at the 2026 Carlson Lecture.🎙️🧠 Join us at 12pm in the Genome Auditorium, room 1005. Description: Portrait photo of the lecture speaker
Portrait photo of the lecture speaker with these words "2026 Carlson Lecture
12pm-Thursday, June 4th, 2026
Genome Auditorium, room 1005
Dr. Kafui Dzirasa, MD. PhD.
Professor, Duke University Medical Center Investigator, Howard Hughes Medical Institute
Discovering and regulating brain dynamics relevant for emotions"
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UC Davis Physiology @ucd-physiology.bsky.social · 02/06/2026
Join us for the 2026 Carlson Lecture, with speaker Kafui Dzirasa, MD, PhD from Duke U. Medical Center. Learn how engineered neural circuits may restore healthy brain function and help prevent psychiatric disorders. Thursday, June 4th, 12pm, Genome Auditorium Description: Photo, scientist smiling
Photo, scientist smiling
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The Journal of Physiology @jphysiol.bsky.social · 11/05/2026
In this #TopicalReview, Nathan Grainger of @unevadareno.bsky.social discusses the role of resident #pacemaker cells in the #renal pelvis and argues that a greater understanding of pacemaker and peristaltic mechanisms is warranted 🔬 🔎 Read it here: 📜 physoc.onlinelibrary.wiley.com/doi/10.1113/...
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Manuel F. Navedo @mfnavedo.bsky.social · 11/05/2026
Happy Monday everyone!!! Happy to share this book chapter by my awesome partner Made Nieves-Cintron and #MnMLab members on "Experimental Models for Studying Cardiovascular Dysfunction in Metabolic Syndrome" Highly relevant topic these days!!! link.springer.com/chapter/10.1...
link.springer.com
Experimental Models for Studying Cardiovascular Dysfunction in Metabolic Syndrome
Metabolic syndrome (MetS) encompasses an interconnected set of risk factors, including abdominal obesity, insulin resistance, hypertension, dyslipidemia, and systemic inflammation, all of which signif...
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Journal of General Physiology @jgp.org · 05/05/2026
Our May issue is here! rupress.org/jgp/issue/15... The cover represents beat-locked mitochondrial ATP consumption in a sinoatrial node pacemaker myocyte. From Muñoz, @lfsantana68.bsky.social and colleagues: doi.org/10.1085/jgp....
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Manuel F. Navedo @mfnavedo.bsky.social · 30/04/2026
🚨Not all channels are created equal🚨 New work from our lab shows that PKA regulates vascular CaV1.2 via S1928 — NOT Rad — phosphorylation, overturning the assumption that cardiac and vascular channels are regulated the same way. www.ahajournals.org/doi/10.1161/...
ahajournals.org
Context-Dependent Control: PKA Regulation of Vascular CaV1.2 Requires S1928 not Rad Phosphorylation | Arteriosclerosis, Thrombosis, and Vascular Biology
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Anna La Torre @latorrelab.bsky.social · 21/04/2026
Our new paper is out! 🎉 Let-7 doesn’t act through a single pathway: it controls neocortical neuron fate and migration via distinct downstream mechanisms, with RBX2 dedicated to migration. A new layer of post-transcriptional control shaping cortical development www.pnas.org/doi/10.1073/...
pnas.org
PNAS
Proceedings of the National Academy of Sciences (PNAS), a peer reviewed journal of the National Academy of Sciences (NAS) - an authoritative source of high-impact, original research that broadly spans...
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UC Davis Physiology @ucd-physiology.bsky.social · 14/04/2026
Compelling new study by @maartjewesthoff.bsky.social, Taylor Voelker, @roseedixon.bsky.social et al. This latest work in Circulation Research explores what happens when angiotensin II signaling becomes chronic. www.ahajournals.org/doi/10.1161/...
ahajournals.org
Phosphoinositide Depletion and Compensatory Phospho-Signaling in Angiotensin II-Induced Heart Disease: Protection Through PTEN Inhibition | Circulation Research
BACKGROUND: Contractile dysfunction, hypertrophy, and cell death during heart failure are linked to altered Ca2+ handling and elevated levels of the hormone AngII (angiotensin II), which signals throu...
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Journal of General Physiology @jgp.org · 07/04/2026
Beat-locked ATP microdomains in the sinoatrial node map a Ca2+-timed energetic hierarchy and regional pacemaker roles. New study from Manuel F. Muñoz, Fernando Santana @lfsantana68.bsky.social and colleagues @ucd-physiology.bsky.social rupress.org/jgp/article/... #IonChannels #CardiacMuscle
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Journal of General Physiology @jgp.org · 31/03/2026
Muñoz, @lfsantana68.bsky.social et al. show that beat-locked cytosolic and mitochondrial ATP transients in sinoatrial node myocytes sort into high-gain, low-gain, or consumption-dominant modes aligned with superior–inferior vascular–mitochondrial gradients. rupress.org/jgp/article/... #CardiacMuscle
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UC Davis Physiology @ucd-physiology.bsky.social · 16/03/2026
A new #PMB paper @JPhysiol reveals beat-to-beat ATP dynamics. Imaging shows mitochondrial ATP waves synchronized with contraction and distinct energetic strategies in male vs. female heart cells. Congratulations Paula Rhana, Collin Matsumoto, @lfsantana68.bsky.social
physoc.onlinelibrary.wiley.com
Demonstration of beat‐to‐beat, on‐demand ATP synthesis in ventricular myocytes reveals sex‐specific mitochondrial and cytosolic dynamics
Abstract figure legend Beat-locked mitochondrial ATP transients reveal modular, sex-specific bioenergetic control during excitation–contraction coupling. A, each action potential activates L-type CaV...
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Journal of General Physiology @jgp.org · 06/03/2026
#CallForPapers ⏰️ Don't miss the March 15th deadline! Submit your research on topics including #IonChannel structure and biophysical properties, regulatory mechanisms, pharmacology, physiological functions, disease relevance, and drug discovery 👉 rupress.org/JGP/pages/ca...
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Journal of General Physiology @jgp.org · 10/03/2026
Commentary: Schmidt and Kopec @mpi-nat.bsky.social discuss how Lopez-Mateos et al. @vyy-sf.bsky.social (rupress.org/jgp/article/...) used AlphaFold 2 to generate structural ensembles of voltage-gated sodium channels across different conformations. rupress.org/jgp/article/... #IonChannels
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Theanne Griffith, PhD 🇧🇧👩🏽‍🔬🇭🇷 @doctheagrif.bsky.social · 22/02/2026
I had a great time talking about the importance of storytelling our science at the @biophysicalsoc.bsky.social President’s Symposium today! Always extra fun with my little fan club tags along 🩷
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UC Davis Physiology @ucd-physiology.bsky.social · 14/02/2026
Apply by Feb 23—Junior Specialist position in #PMB’s Belford Lab
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HHMI @hhmi-science.bsky.social · 10/02/2026
After 50 years in science, former #HHMIInvestigator David Clapham’s advice is simple: “You have to see problem-solving as fun.” From training with Nobel laureates to deepening our understanding of ion channels & leading at HHMI, he retires with a lasting legacy: hhmi.news/3O3kYji.
David Clapham in a lab
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The Transmitter @thetransmitter.bsky.social · 04/02/2026
A lifelong passion for writing helped rising star @doctheagrif.bsky.social land a book deal and publish 15 chapter books for early readers, covering topics ranging from what the cerebellum does to how a cake bakes. By @avaskham.bsky.social www.thetransmitter.org/craft-and-ca...
thetransmitter.org
Crafting tales of science with Theanne Griffith
A lifelong passion for writing helped the neuroscientist land a book deal and publish 15 chapter books for early readers, covering topics ranging from what the cerebellum does to how a cake bakes.
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Theanne Griffith, PhD 🇧🇧👩🏽‍🔬🇭🇷 @doctheagrif.bsky.social · 30/01/2026
Excited to be speaking at this year’s Biophysical Society Presidential Symposium on the importance of communicating science to the public 👩🏾‍🔬🧫🧬🔬🥼🧪👩🏾‍🔬
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Fernando Santana @lfsantana68.bsky.social · 29/01/2026
Excitability isn't intrinsic to ion channels alone; it's an emergent property of the CMIC Axis. @vesselman.bsky.social & I link Capillaries, Mitochondria & Channels to function. Break the link, lose the function. doi.org/10.1113/JP28... @jphysiol.bsky.social
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Cordero-Vásquez Lab @cvlab.bsky.social · 27/01/2026
Sudha (@chakrapanilab.bsky.social) and Julio (@cvlab.bsky.social) are organizing the 2026 Ion Channel Gordon Research Conference: Ion Channels Across Scales — Bridging Molecular Events to Physiological Outcomes, to be held at Mount Holyoke College, July 12–17, 2026. 1/3
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UC Davis Physiology @ucd-physiology.bsky.social · 23/01/2026
We're incredibly excited to announce that Dr. Theanne Griffith @doctheagrif.bsky.social of #PMB Griffith Lab has been promoted to Associate Professor with tenure, effective July 1, 2026! Congratulations, Theanne, on this well-earned achievement! 🎉🌟 Her lab research: www.thegriffithresearchgroup.com
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Melissa Bauman @melb-ucd.bsky.social · 18/11/2025
Congrats to my colleague Dr. Theanne Griffith @doctheagrif.bsky.social for receiving a 2025 Rising Star of Neuroscience award! ⭐️ 🧠 ⭐️ www.thetransmitter.org/early-career...
thetransmitter.org
The Transmitter’s Rising Stars of Neuroscience 2025
We recognize the outstanding achievements of 25 neuroscientists who stand to shape the field for years to come.
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Elisa Zhang, Ph.D. @elisazhang.bsky.social · 24/10/2025
🚨 We are recruiting postdocs! If you're interested in reproductive, stem cell/developmental biology, and/or women's health, please apply! 📝 Please repost! 🚩 More info here: hhmi.wd1.myworkdayjobs.com/en-US/Extern...
hhmi.wd1.myworkdayjobs.com
Postdoctoral Scientist - Zhang Lab
Primary Work Address: One Shields Avenue, Davis, CA, 95616 Current HHMI Employees, click here to apply via your Workday account. The Howard Hughes Medical Institute (HHMI) advances the discovery and s...
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Manuel F. Navedo @mfnavedo.bsky.social · 23/10/2025
The third episode of our podcast series just dropped: navedolab.faculty.ucdavis.edu/podcasts/ This one focuses on our recent study examining vascular Panx1 channels and their role in vascular complications during diabetic hyperglycemia. Get the paper here: pubmed.ncbi.nlm.nih.gov/40636957/
pubmed.ncbi.nlm.nih.gov
Arterial Myocyte Pannexin 1 Channel Controls Vascular Reactivity in Diabetic Hyperglycemia - PubMed
These results suggest a key role for Panx1 in controlling ATP signaling through the P2Y<sub>11L</sub>/AC5/AKAP5/PKA/Ca<sub>V</sub>1.2 axis in arterial myocytes. This Panx1-led complex modulates cAMP levels, Ca<sub>V</sub>1.2 activity, and vascular reactivity in response to diabetic hyperglycemia. Th …
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Cordero-Vásquez Lab @cvlab.bsky.social · 21/10/2025
The Department of Biochemistry and Molecular Biology at UTHealth Houston has an open search for a tenure-track faculty position. If you are ready (or know someone that is) to start looking for positions, this will be a great opportunity to join the Texas Medical Center. See flyer below. 1/2
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Elisa Zhang, Ph.D. @elisazhang.bsky.social · 09/10/2025
Happy to have started as an @hhmi.org Freeman Hrabowski Scholar! Incredibly grateful for this opportunity and am excited for some very cool new directions! We are *HIRING*, especially postdocs! Please reach out if you’re interested in uterine and pregnancy biology. Please repost!
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Cordero-Vásquez Lab @cvlab.bsky.social · 03/10/2025
Our new PNAS paper "Enhanced PIEZO1 function contributes to the pathogenesis of sickle cell disease" is out: www.pnas.org/doi/10.1073/... 1/3
pnas.org
Enhanced PIEZO1 function contributes to the pathogenesis of sickle cell disease | PNAS
Sickle cell disease (SCD), an inherited blood disorder caused by a mutation in the &beta;-globin gene, is characterized by sickle erythrocytes that are ...
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Fernando Santana @lfsantana68.bsky.social · 15/09/2025
Editorial on our JACC-EP paper (doi.org/10.1016/j.ja...) is out: Ed Lakatta’s “Mind Your ‘A Game’” (doi.org/10.1016/j.ja...) spotlights SAN capillary rarefaction → slower rate + more beat-to-beat variability, and lays out next tests (hypoxia vs demand; aging/sex). @jaccjournals.bsky.social
doi.org
Redirecting
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Theanne Griffith, PhD 🇧🇧👩🏽‍🔬🇭🇷 @doctheagrif.bsky.social · 29/08/2025
Major milestone achieved Wednesday: my very first grad student delivered his exit seminar. Dr. Cyrrus Espino is a science rock star and I’m lucky to have had the opportunity to contribute to his development. Very excited to see what’s to come in what will surely be a successful career. Cheers Doc!
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Theanne Griffith, PhD 🇧🇧👩🏽‍🔬🇭🇷 @doctheagrif.bsky.social · 25/08/2025
Happy to share the my lab's latest preprint, where we investigated sensorimotor circuit formation in the developing spinal cord. We show that proprioceptive axons target motor neurons in neighboring spinal segments to give rise to intersegmental reflex responses. www.biorxiv.org/content/10.1...
biorxiv.org
Activity-driven proprioceptive synaptic refinement in the developing spinal cord by complement signaling mechanisms
Proprioceptive group Ia afferents detect muscle stretch to guide effortless and purposeful movement and make monosynaptic connections with spinal α–motor neurons to mediate reflexes, such as the stret...
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Fernando Santana @lfsantana68.bsky.social · 23/08/2025
New preprint: Beat-locked ATP imaging in mouse SA node reveals an energetic hierarchy—high-Ca-ATP gain cells set rate; low Ca-ATP gain cells expand bandwidth & stabilize under load. Pacemaking is a beat-to-beat division of labor @ucd-physiology.bsky.social. www.biorxiv.org/content/10.1...
biorxiv.org
Beat–locked ATP microdomains in the sinoatrial node map a calcium–timed energetic hierarchy and regional pacemaker roles
Pacemaker myocytes of the sinoatrial (SA) node initiate each heartbeat through coupled voltage and Ca2+ oscillators, but whether ATP supply is regulated on a beat–by–beat schedule in these cells has been unclear. Using genetically encoded sensors targeted to the cytosol and mitochondria, we tracked beat–resolved ATP dynamics in intact mouse SA node and isolated myocytes. Cytosolic ATP rose transiently with each Ca2+ transient and segregated into high– and low–gain phenotypes defined by the Ca2+–ATP coupling slope. Mitochondrial ATP flux adopted two stereotyped waveforms—Mode–1 ″gains″ and Mode–2 ″dips″. Within Mode–1 cells, ATP gains mirrored the cytosolic high/low–gain dichotomy; Mode–2 dips scaled linearly with Ca2+ load and predominated in slower-firing cells. In the intact node, high–gain/Mode–1 phenotypes localized to superior regions and low–gain/Mode–2 to inferior regions, paralleling gradients in rate, mitochondrial volume, and capillary density. Pharmacology placed the Ca2+ clock upstream of ATP production: the HCN channel blocker ivabradine slowed the ATP cycle without changing amplitude, whereas the SERCA pump inhibitor thapsigargin or the mitochondrial uncoupler FCCP abolished transients. Mode–2 recovery kinetics indicate slower ATP replenishment that would favor low–frequency, fluctuation–rich firing in a subset of cells. Together, these findings reveal beat-locked metabolic microdomains in which the Ca2+ clock times oxidative phosphorylation under a local O2 ceiling, unifying vascular architecture, mitochondrial organization, and Ca2+ signaling to coordinate energy supply with excitability. This energetic hierarchy helps explain why some SA node myocytes are more likely to set rate whereas others may widen bandwidth. ### Competing Interest Statement The authors have declared no competing interest. National Heart Lung and Blood Institute, https://ror.org/012pb6c26, HL168874 American Heart Association, https://doi.org/10.58275/AHA.25POST1378853.pc.gr.227467
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Manuel F. Navedo @mfnavedo.bsky.social · 15/08/2025
The official release of our manuscript examining arterial myocyte Panx1 role in diabetic vascular dysfunction is out! Massive effort to uncover new mechanisms underlying vascular disease. Power of science! @ucdavis.bsky.social, @ucdavispharm.bsky.social www.ahajournals.org/doi/10.1161/...
ahajournals.org
Arterial Myocyte Pannexin 1 Channel Controls Vascular Reactivity in Diabetic Hyperglycemia | Circulation Research
BACKGROUND: Diabetic hyperglycemia promotes vasoconstriction by activating an ATP-dependent P2Y11L (P2Y11-like receptor)/AC5 (adenylyl cyclase 5)/AKAP5 (A-kinase anchoring protein 5)/PKA (protein kina...
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Elisa Zhang, Ph.D. @elisazhang.bsky.social · 13/08/2025
We’re happy to share that our methods paper and video on our mouse uterine injury surgical procedure is now out in JoVE! First paper of the lab! Congrats to first author Nathan Ng! review.jove.com/t/67977/mous...
review.jove.com
Mouse Model of Surgical Uterine Injury and Subsequent Pregnancy Outcomes | Protocol
Scientific Article | This protocol describes a procedure for inducing uterine injury in a mouse model, followed by downstream analyses during a subsequent...
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Osama Harraz @osamaharraz.bsky.social · 06/08/2025
📰Latest from our lab (Open Access)! Brain Capillary Ion Channels: Physiology and Channelopathies This review attempts to concisely cover a fast-evolving research field on channels in🧠capillaries @apspublications.bsky.social journals.physiology.org/doi/abs/10.1...
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Jeremy Berg @jeremymberg.bsky.social · 31/07/2025
First highlight... Senator Capito started of the discussion saying that the bill contains AN INCREASE for NIH. The details are not available, but the bill will be released ofter the hearing. This is not a done-deal, but it does show where the Senate is on a bipartisan basis.
media.tenor.com
a cartoon of snoopy on a green background with the words `` great news ! ''
ALT: a cartoon of snoopy on a green background with the words `` great news ! ''
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Jorge E. Contreras @drcontrexin.bsky.social · 29/07/2025
Large-pore channels: the Transformers of membrane proteins, versatile, dramatic, and never just selective or passive conduits. Not just simple (typical) ion channels, they’re molecular multitaskers we’re beginning to comprehend. Don’t miss the first-ever special issue dedicated to this!
physoc.onlinelibrary.wiley.com
Current advances in large‐pore channels: From structure–function to physiology and disease
Click on the article title to read more.
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Jorge E. Contreras @drcontrexin.bsky.social · 23/07/2025
Exciting news! The EPIC/SGP Symposium at UC Davis will be accompanied by a special issue in the Journal of General Physiology. Stay tuned for more details about this incredible event celebrating cutting-edge research on ion channels!
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Fernando Santana @lfsantana68.bsky.social · 23/07/2025
Manning & Rivera et al. (www.jacc.org/doi/10.1016/...) show that pruning just a few capillaries in the SA node plunges the heart’s pacemaker into metabolic overdraft—slowing the rate and jacking up beat-to-beat variability. The physiological equivalent of running on fumes. @jaccjournals.bsky.social
jacc.org
Microvascular Rarefaction in the Sinoatrial Node: A Potential Mechanism for Pacemaker Dysfunction in Early HFpEF
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Megan Dennis @mydennis.bsky.social · 21/07/2025
Check out our latest work co-led by @dcsoto.bsky.social and @jmuribescr.bsky.social identifying hundreds of human duplicated gene families using the new T2T-CHM13 assembly, with a focus on those potentially contributing to brain evolution 🧪: authors.elsevier.com/a/1lTQtL7PXu...
authors.elsevier.com
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Colleen E. Clancy PhD @clancyatheart.bsky.social · 15/07/2025
So excited to share our study just published in eLife, “Harnessing AlphaFold to reveal hERG channel conformational state secrets” doi.org/10.7554/eLif...
doi.org
Harnessing AlphaFold to reveal hERG channel conformational state secrets
Customized AlphaFold-based modeling of distinct functional states of the hERG channel, a major drug anti-target, significantly improves drug affinity predictions, enhancing cardiac safety screening fo...
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Fernando Santana @lfsantana68.bsky.social · 11/07/2025
🫀 NEW preprint: the heart lives paycheck-to-paycheck for energy. Real-time ATP imaging shows mitochondria cash out ATP every beat—no savings account. Females craft precision hotspots, males flex bigger surges. Read on: www.biorxiv.org/content/10.1...
biorxiv.org
Demonstration of Beat-to-Beat, On-Demand ATP Synthesis in Ventricular Myocytes Reveals Sex-Specific Mitochondrial and Cytosolic Dynamics.
The substantial energetic demands on ventricular myocytes imposed by the transport of ions and cross–bridge cycling associated with each heartbeat are well known, yet the spatiotemporal dynamics of AT...
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