Joined December 2011
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Pinned Tweet
23 Oct 2024
Hot preprint alert!!! Please check out our study led by the amazing @piasglia on how mitochondrial fission regulates astrocyte morphogenesis! Unexpected findings linking astrocyte mitochondria to tiling and gap junction coupling!!! biorxiv.org/content/10.1101/…
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Cagla Eroglu retweeted
Rodriguez Salazar, @c_eroglu et al. @DukeHealth show that Drp1-mediated mitochondrial fission is necessary for peripheral #astrocyte process formation. Loss of Drp1 induces astrocyte reactivity & disrupts cortical astrocyte organization hubs.la/Q03GK6WH0
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29 May 2025
Cool paper alert!
I am very excited about our new paper just published in PNAS. Dense Associative Memory is a versatile family of models that allows to store large amounts of information, have strong error-correcting capabilities, and other desirable properties. But is it possible to build it in biological “hardware”? This is a tricky question since DenseAMs have many-neuron couplings (more than 2 neuron couplings). This, at face value, may seem contradictory to pairwise neuron connectivity: pre-synaptic neuron and post-synaptic neuron couple at the synapse. Our paper describes an interesting way of building DenseAMs using astrocytes, which is a prominent cell type in the glia family. The unique anatomical connectivity of astrocytes, which couple to neurons through tri-partite synapses (pre-, post-synaptic neurons, and the astrocyte’s process) create an elegant theoretical possibility of coupling more than two neurons and mediating the information transmission between those neurons. Key takeaways: 🔷 Astrocytes compute. 🔷 Dense Associative Memories (and other AI architectures) can be built using astrocytes. 🔷 From the computational perspective astrocyte is not just a single entity, rather it is a network of processes. 🔷 Memories can be stored, at least partially, in the biochemical machinery inside the astrocyte, as opposed to just synapses. It was a pleasure to work on this idea together with Leo Kozachkov @Leokoz8 and Jean-Jacques Slotine. Paper: pnas.org/doi/abs/10.1073/pna… The image below summarizes the main message of our paper: astrocyte = network of processes that engage in information exchange and computation. The image shows a 3D reconstruction of an astrocyte from the visual cortex using Imaris Bitplane 9.9. A custom Imaris extension, 3D Sholl Analysis, was used to quantify the number of process intersections at 5 μm intervals from the cell soma, marked by the sphere, thereby visualizing the highly complex network of processes of the astrocyte. The raw image was captured in October 2023 using an Olympus FV 3000 confocal microscope with a 60x objective lens and a z-step size of 0.5 μm across a 50–60 μm z-stack for high magnification and resolution. The overlaid network illustrates a mathematical model, which represents the astrocyte as a network of processes that enables heterosynaptic communication and supports high information storage associative memory function. Experimental data credit: Leyka Nagendren @LNagendren , Cagla Eroglu @c_eroglu, Duke University. Artist Credit: Annette Hui, IBM Research, annettehui.com
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Cagla Eroglu retweeted
Delighted to see not one, not two, but three papers about astrocytes in Science today! Here's our contribution to that collection. Come follow us on bluesky! Papouin lab twitter/X: over & out... science.org/doi/10.1126/scie…
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23 Oct 2024
Hot preprint alert!!! Please check out our study led by the amazing @piasglia on how mitochondrial fission regulates astrocyte morphogenesis! Unexpected findings linking astrocyte mitochondria to tiling and gap junction coupling!!! biorxiv.org/content/10.1101/…
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23 Oct 2024
This preprint also features a new computational method, Seg_Astro, developed by our collaborators Boyu Lyu and @yu_guoqiang to analyze astrocyte branching.
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Cagla Eroglu retweeted
Congratulations, Salk Associate Professor Nicola Allen! 🎊 Allen has received a 2024 @NIH_CommonFund Director's Pioneer Award for her exceptional creativity and innovative research. She will use the $3.5 million prize to study whether plasticity can be enhanced in adult brains 🧠 #NIHHighRisk salk.edu/news-release/salk-i…
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I am sad to miss #sfn2024 this year. Please stop by Eroglu lab posters by Daniel Quintero - October 5, 6:30—8:30 p.m. Hall A - Early Career Poster Session - Poster A45 and @ShiyiWang10 - Oct. 6th, 1-5pm, MCP Hall A - Poster LBA003.072 / LBA70.
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Check out this review by fantastic @gmsej1 ! Astrocyte-neuron crosstalk in neurodevelopmental disorders sciencedirect.com/science/ar…
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Cagla Eroglu retweeted
Do you like glia? Are you going to SFN? Come hang out on Monday night in the (reserved!) back room at Easy Bar!
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25 Sep 2024
Congratulations!
Excited to share our work on data science in large neuroscience collaboration published in Neuron. We found some challenges but also opportunities on data integration, sharing and research training. Hope it paves the way for further advancing the field. kwnsfk27.r.eu-west-1.awstrac…
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Cagla Eroglu retweeted
scRNA-seq explores cellular/tissue heterogeneity but struggles with noise and dropout effects. Guoqiang Yu & Yue Wang’s groups from the U19 Astrocyte-Team have developed a GO-term activity model to transform scRNA-seq data into a GO-term activity score matrix, making downstream analysis more robust. More here: a-team.salk.edu/news/ @animmerj @c_eroglu @yu_guoqiang @LinTianPhD @Tsinghua_Uni @virginia_tec
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20 Aug 2024
The new and improved version of GEARBOCS, an AAV tool for in vivo genome editing in astrocytes, is here, and the plasmids will be available in @addgene soon! Check out the preprint by amazing @danineura and co! biorxiv.org/content/10.1101/…
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Cagla Eroglu retweeted
Pls RT📢We are hiring! Join the @HHMINEWS Science Department as a Scientific Officer. This is perfect for you if you have been running a lab for 7 years and would like to broaden your impact in science. Help us administer the #HHMIInvestigators #FHScholars #HannaGrayFellows programs and move science forward -Remote work eligible -Keep your lab - HHMI provides research support hhmi.wd1.myworkdayjobs.com/E…

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Cagla Eroglu retweeted
The U19 Astrocyte-Team has released CAM3.0, an algorithm for performing fully unsupervised deconvolution of complex tissues. Developed by Yu and Wang’s groups, CAM3.0 more accurately identifies known or novel cell markers, determines cell proportions, and estimates cell-specific expressions from bulk tissue data. Learn more: a-team.salk.edu/news/ @animmerj @c_eroglu @yu_guoqiang @LinTianPhD @Tsinghua_Uni @virginia_tech
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AQuA2 is here. Check it out on this preprint by our collaborators @yu_guoqiang !
AQuA2 is released. A fast, accurate, and versatile data analysis platform. Try it if you have imaging activity data. Designed for various biosensors, cell types, and imaging modalities. Powerful to extract the dynamic features in both space and time. biorxiv.org/content/10.1101/…
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25 Apr 2024
Congrats to 2024 Schmidt Fellows including our own @jessmoorephd 👏👏👏
We’re so excited to announce our 2024 Schmidt Science Fellows.  32 exceptional early career scientists will join our global community to pursue interdisciplinary research and help change how science is done. schmidtsciencefellows.org/ne…
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24 Apr 2024
I am incredibly honored and grateful to be elected to the @americanacad. This could not have happened without the amazing creativity and hard work of past and present lab members and the support and mentorship of many colleagues within and outside @DukeU medschool.duke.edu/news/erog…
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Cagla Eroglu retweeted
24 Apr 2024
Today is the day #gliacamp2024
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