Jang Lab
@JangLabGT
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Integrating biology and stem cell engineering for skeletal muscle aging and pathophysiologies.
Atlanta, GA
Joined April 2017
π§ and π¦΅πΌ relationship? @chris_riehm discusses his research using MRI guided EEG revealing a relationship between electrocortical activity and knee stability today @EmorySportsMed 2024 Conference
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Dr Zuleger presenting on an ankle movement task during brain fmri to differentiate neural mechanims associated with #concussion @EmorySportsMed 2024 Conference
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Our latest paper has been chosen as the cover article in @ScienceAdvances. This is a tremendous achievement for our team, and I am proud of my postdoctoral researchers, Drs. Jimin Lee and Hojoong Kim. I am also deeply grateful to our esteemed collaborator, @JangLabGT.
To meet emerging demands of personalized medicine, #StemCells must be made at a large scale while maintaining high quality and low cost. New research in Science Advances shows an all-in-one sensor system that can continuously monitor stem cell cultures. https://t.co/EcCs9VjROX
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We had a great time hosting @lieber_rick yesterday. A fantastic seminar and many thoughtful discussions, thank you for visiting!
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Quadriceps VML mouse models inform the immune cell dynamics that influence the regeneration capability of critical volumetric musle loss (VML) injury @BotchweyLab @WillettLabs @JangLabGT
https://t.co/uOB6tAVEhb
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We had an amazing time hosting Dr. Amy Wagers today! Her work is beyond impactful, and inspired us all!
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The Emory MSK Research Center is excited to host its 4th annual Symposium on September 23rd! We look forward to welcoming experts from the field and hearing from local investigators, with this year's focus on inflammatory joint disease. Registration π https://t.co/Hg9N0MlmBo
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We have moved to Duke U, where weβll continue to study neuromuscular development, regeneration, and aging. Looking to fill various positions including graduate and postdoctoral. Please contact me/please share. @DukeOrtho @Duke_CMB @DukeDscb @DukeRegenerate @DukeGradSchool
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Check out this neat review including our very own @IllienJungerLab !
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Yesterday, one of our newest faculty members, Yunki Lee, gave a fantastic overview of his biomaterials research!
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A new report by Jin-Soo Kim's lab combines DdCBEs, which we developed with Joseph Mougous's lab to enable cytosine base editing of mitochondrial DNA, with the deaminase we evolved in adenine base editor ABE8e to enable adenine base editing of mtDNA.ππ https://t.co/aftMGzVZI8
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Mitochondrial dynamics in budding yeast. A picture was taken every 3 minutes for 5 hours. #microscopymonday
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Very excited to share our latest work in #PNAS! We deconstructed volumetric muscle loss by comparing injuries that heal to fibrotic injury. This was led by @UMBME student @JLarouche13 and several collaborators! 1/n https://t.co/PUO2xRQGCo
pnas.org
Volumetric muscle loss (VML) overwhelms the innate regenerative capacity of mammalian skeletal muscle (SkM), leading to numerous disabilities and r...
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For the next three weeks, we will take you through the mitochondria to show you how it works. Let's start by zooming in to this awesome organelle. #3D #biology #mitochondria #ATP #animations
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Looking for an excellent new Bioengineering grad school program in a gorgeous setting? Come work with us @UOKnightCampus! @WillettLabs is looking for students to work on #RegenRehab projects within the @WuTsaiAlliance. DM or email w/ questions. Apply now https://t.co/V9CBAqd61Z
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Very excited to share our new manuscript in @eLife! We observed satellite cells are sensitive to innervation but in aging and neurodegeneration this behavior is lost! Led by @UMBME student @JLarouche13 and several collaborators! 1/n https://t.co/hD2QQUdfbR
elifesciences.org
Muscle stem cells locally respond to perturbations of motor neurons and the neuromuscular junction.
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@eLife @UMBME @JLarouche13 Special thanks to @UMBiointerfaces students @paula_fraczek, Kaitlyn & Jesus and our collaborators @JangLabGT, @joechakkal, Susan Brooks, Greg Valdez, @Levi_Lab, @sofiamerajver and others!
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Excited to share our new work describing immune dysfunction after volumetric muscle loss. We found natural killer cells play an immunomodulatory role on neutrophils which impair muscle stem cells. Led by @JLarouche13 from @UMBME! https://t.co/bB9yOO38qX
biorxiv.org
Volumetric muscle loss (VML) overwhelms the innate regenerative capacity of mammalian skeletal muscle (SkM), leading to numerous disabilities and reduced quality of life. Immune cells are critical...
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And one of the manuscripts from @shannandersonnβco-first author with @laurenhymelβis now posted as a preprint. Great collab with @BotchweyLab @JangLabGT
Identifying dysregulated immune cell subsets following critical volumetric muscle loss with pseudo-time trajectories https://t.co/H5VUKbZimL
#bioRxiv
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