Matt Caporizzo
@MCaporizzo
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Biophysicist, prof @UVMLarnerMed, cyclist, climber, vegan, mechanic. Forever curious. - Views my own.
Joined December 2020
Excited that our Airyscan is up and running! Resolving collagen fibers to about 150 nm resolution.
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Happy Halloween! Join us for our Slicers working group today at 4pm CET, 11am EST! Costumes welcome!
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Please join us for the next CMS-ECC Online Seminar on Friday, November 7, 2025, 1:00 PM Eastern Time (US & Canada). Register here: https://t.co/OU9BuhKWcJ After registering, you will receive a confirmation email with information to join the meeting.
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We are excited to hear from Matthew Caporizzo, PhD @MCaporizzo for our upcoming IBP seminar series tomorrow at noon. “Assessing diastolic performance in working myocardial slices from HFpEF rats”
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EHJ issue 46 - 16 is online: https://t.co/w2wUjVbk83 Focus on heart failure: sex-related differences, new light shed on SGLT2i mechanism of action, heart failure after myocardial infarction. @escardio @ESC_Journals #EHJ #cardiotwitter
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We have a research technician position now available in my lab. The details can be found at
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📅 Save the Date: May 23–26, 2026! The Myofilament Meeting comes to @uarizona @uazmedTucson for the first time 🌵 🔬 Research 🧬 Posters 🤝 ECI Day ✨ Community Follow @UAZheart for updates—registration opens soon! #MyofilamentMeeting2026 #SaveTheDate
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Happy to share our latest manuscript in @TheJHLT evaluating echocardiographic parameters of right atrial size/function in PAH. https://t.co/JMZZoy8Eqv. Fun collaboration with friends from Stanford! @3CPRCouncil @ATS_PC @PVRI @StanfordCVI @LilleheiHrt
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The Sweat lab will be opening at UTSW, the Moss heart Center, in September! Research topics include AFIB and cellular identity programs. I'm grateful for this opportunity, made possible by support from my family, amazing academic mentors, and the wonderful Moss Cntr. Faculty!
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T-minus 10 days until applications for Loyola Cardio-SURPh are due! Don't miss out!
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UVM achieves Carnegie R1 status as a top-tier research institution! “We are proud to contribute to that designation based on the work we do at the Larner College of Medicine.” - Dean Richard L. Page https://t.co/osdLrAYJtY
@UVMResearch @uvmvermont @uvmcmb
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The @LoyolaChicago announcement that we obtained R1 status (the highest research university classification) used a picture from my lab. You can tell it's from my lab because the microscope is named after a Star Wars character.
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Demographic-Based Personalized Left Ventricular Hypertrophy Thresholds for Hypertrophic Cardiomyopathy Diagnosis | Journal of the American College of Cardiology
jacc.org
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Register today for the 65th Annual Cardiac Muscle Society Meeting and Reception during the 2025 Biophysical Society Meeting. https://t.co/juFytDHVcx
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Wondering if it could be any colder outside? Yes! Come to Chicago! Accepting applications now for summer 2025 research experience in cardiovascular physiology for undergrads! Email applications to surph@luc.edu. https://t.co/Qt4Oc1aolD
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Prof. Benjamin L. Prosser and his team at the @Prosser_Lab at @PennMedicine are researching the heart on a molecular level. Learn more about how his personal story motivated him to work on transformative cardiac and gene research. Visit https://t.co/IeOEPY0z95
#Health
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5/5 Chronic Activation of Tubulin Tyrosination in HCM Mice and in Human iPSC-Engineered Heart Tissues Improves Heart Function by Pietsch et al https://t.co/R6jMnJqh8O
@Prosser_Lab @mcaporizzo @CyxChristina @dirkwestermann @LucasBacmeister
ahajournals.org
BACKGROUND: Hypertrophic cardiomyopathy (HCM) is the most common cardiac genetic disorder caused by sarcomeric gene variants and associated with left ventricular hypertrophy and diastolic dysfuncti...
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#ICYMI: ASO therapy for calmodulinopathy @MasonSweatPhD
#OriginalResearch Calmodulinopathy (rare inherited arrhythmias caused by variants in a calmodulin gene) may be treatable with antisense oligonucleotide targeting of calmodulin genes @MasonSweatPhD
https://t.co/wNDkgsvmJr
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@LucieCarrier84 lab provide evidence that targeting #tubulin #tyrosination could be a novel approach for improving heart function in patients with #HCM. Learn more at https://t.co/6FzAYF4rXO
@Prosser_Lab @mcaporizzo @CyxChristina @dirkwestermann @LucasBacmeister
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In this Journal of Molecular and Cellular Cardiology Plus publication from researchers at UVM, Hancock et al. demonstrate a novel method utilizing living myocardial slices to model early and late stage diastole using their IonOptix Cardiac Slice System. https://t.co/L0kZxaaGLR
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