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#cryo — Public Fediverse posts

Live and recent posts from across the Fediverse tagged #cryo, aggregated by home.social.

  1. Postdoctoral Position in Membrane Protein Biology & Ion Channel Physiology
    Cold Spring Harbor Laboratory @Lab_FURUKAWA

    Join the HF_lab at CSHL for cutting-edge science and advancing your career. #cryo-EM #electrophysiology #neuroscience #cancer-immunology #antibody

    See the full job description on jobRxiv: jobrxiv.org/job/cold-spring-ha...
    jobrxiv.org/job/cold-spring-ha

  2. Postdoctoral Position in Membrane Protein Biology & Ion Channel Physiology
    Cold Spring Harbor Laboratory @Lab_FURUKAWA

    Join the HF_lab at CSHL for cutting-edge science and advancing your career. #cryo-EM #electrophysiology #neuroscience #cancer-immunology #antibody

    See the full job description on jobRxiv: jobrxiv.org/job/cold-spring-ha...
    jobrxiv.org/job/cold-spring-ha

  3. Postdoctoral Position in Membrane Protein Biology & Ion Channel Physiology
    Cold Spring Harbor Laboratory @Lab_FURUKAWA

    Join the HF_lab at CSHL for cutting-edge science and advancing your career. #cryo-EM #electrophysiology #neuroscience #cancer-immunology #antibody

    See the full job description on jobRxiv: jobrxiv.org/job/cold-spring-ha...
    jobrxiv.org/job/cold-spring-ha

  4. Postdoctoral Position in Membrane Protein Biology & Ion Channel Physiology
    Cold Spring Harbor Laboratory @Lab_FURUKAWA

    Join the HF_lab at CSHL for cutting-edge science and advancing your career. -EM -immunology

    See the full job description on jobRxiv: jobrxiv.org/job/cold-spring-ha...
    jobrxiv.org/job/cold-spring-ha

  5. Postdoctoral Position in Membrane Protein Biology & Ion Channel Physiology
    Cold Spring Harbor Laboratory @Lab_FURUKAWA

    Join the HF_lab at CSHL for cutting-edge science and advancing your career. #cryo-EM #electrophysiology #neuroscience #cancer-immunology #antibody

    See the full job description on jobRxiv: jobrxiv.org/job/cold-spring-ha...
    jobrxiv.org/job/cold-spring-ha

  6. Longer longpost rocket explanation:
    RT x.com/NASAAdmin/status/2025249
    This time, instead of hydrogen leaking, it was helium refusing to flow. #NASA #space #cryo #plumbing #ArtemisII

  7. --Postdoctoral Fellowship in Structural Neurophysiology at CSHL—
    Cold Spring Harbor Laboratory @Lab_FURUKAWA

    Join the HF_lab at CSHL to conduct cutting-edge science and advance your career. #cryo-EM #electrophysiology #cancer-neuroimmunology #neuropharmacol

    See the full job description on jobRxiv: jobrxiv.org/job/cold-spring-ha...
    jobrxiv.org/job/cold-spring-ha

  8. Mit dem #Cryo-Jet (kalter #Stickstoff) haben wir früher die Proben vor #Strahlenschaden bewahrt; dafür ist aber eine invasive Präparation notwendig, heute möchten wir hingegen in möglichst nativem Zustand messen; unsere Proben werden z.B. nach dem Nano-CT in der GINIX dann in der „gewöhnlichen“ #Histologie weitervermessen.

  9. --Postdoctoral Fellowship in Structural Neurophysiology at CSHL—
    Cold Spring Harbor Laboratory @Lab_FURUKAWA

    Join the HF_lab at CSHL to conduct cutting-edge science and advance your career. #cryo-EM #electrophysiology #cancer-neuroimmunology #neuropharmacol

    See the full job description on jobRxiv: jobrxiv.org/job/cold-spring-ha...
    jobrxiv.org/job/cold-spring-ha

  10. On a annoncé, mardi 4 février, la mort de Stéphane Picq, compositeur de musiques de jeux vidéo connu entre autres pour ses BO de jeux Cryo dans les années 1990, dont "Lost Eden" et l'album "Dune Spice Opera" (remastérisé en 2024), mais aussi "Atlantis, secrets d'un monde oublié", BO co-composée avec Pierre Estève que j'adore et que j'utilise pour mes listes de musique d'ambiance de "Kosmos". Merci à lui pour ces heures et ces heures d'écoute merveilleuses. Son nom doit trouver une place dans l'histoire de la musique des jeux vidéo.
    lemonde.fr/pixels/article/2025
    #musique #JeuxVidéo #CarnetNoir #nécrologie #Cryo #StéphanePicq #Atlantis #LostEden #Dune #DuneSpiceOpera #VideoGames #music #soundtrack

  11. For this week's piece, it's obviously a tribute to the work of Stéphane Picq, and of course it's a track from Cryo's Dune soundtrack, which was one of the biggest video-game slams of my childhood.

    I had the CD-ROM version, and I still remember the big box with its incredible design, with its full-size manual that could be read horizontally, and this game with its crazy visuals and music, one of the first I played with 3D CGI animations.

    #VGMWednesday #Retrogaming #Cryo #Dune #FrenchTouch

    www.youtube.com/watch?v=51HNiCb1Dq8

  12. #ShowerThoughts about something I'm writing for #Modders...

    I imagined Herbert (the guy who was cryo'd in the 1980s) asking Nuki (the author-insert who was born in the 1990s) if functional #immortality is a slippery slope to paranoia or megalomania, and she responds with "Some people do, that's why the technology keeps advancing, but it actually makes me a lot more concerned for people who don't have a recent backup: if a plane goes down with me on it, my forks go on, but everyone else? I don't know if they even have a backup, let alone a recent one. I'd rather deal with the inconvenience of my body being destroyed than see someone die for real."

    What if living indefinitely in a high-freedom state actually makes you MORE empathetic, because other people's #mortality is more real to you?

    I should go somewhere with this...

    #scifi #futurism #speculation #LifeExtension #cryo

  13. New Title Alert: EMRNA is a deep learning based automated RNA modeling from cryo-EM maps.

    More here: huanglab.phys.hust.edu.cn/EMRN

    #SBGrid #SBGridsoftware #cryo-EM #RNA

  14. CW: Semi-NSFW: non-erotic snippet from a Sci-Fi erotica where a cryopatient wakes up in the free love 2120s

    #microfiction from a #furry #Scifi #erotica with #futurism / #cryo / #transformation / #futureshock themes...

    #Modders

    "Herbert!" Nuki smiled as the middle aged man stepped off the elevator and into the lobby, "glad to see those new clothes are doing well for you."

    Herbert, for his part, was wearing a sleeveless Hawaiian shirt and what looked like a pair of beach shorts. "Thanks, I have an outfit like this back in... well, I used to have another outfit like this. I see you're, um... Wearing clothes."

    Nuki nodded, glancing down at the frilly halter-top and mini skirt she was wearing, which left little to the imagination, aside from the colors and piercings of her nipples and vulva, but seeing as that was the point... "Yeah, I figure I'm here to check up on you, not add to your future-shock. You have been leaving the apartment though right?"

  15. New Title Alert: doubleHelix is a tool for nucleic acid sequence identification, assignment and validation for cryo-EM and crystal structure models.

    More here: gitlab.com/gchojnowski/doubleh

    #SBGrid #SBGridsoftware #cryo-EM

  16. New Title Alert: checkMySequence is a sequence assignment validation tool for in cryo-EM models.

    More here: gitlab.com/gchojnowski/checkmy

    #SBGrid #SBGridsoftware #cryo-EM

  17. Cryo-EM: Freezing Time to Take Snapshots of Myosin and Other Molecular Systems - Using technologies like electron microscopy (EM) it is possible to capture molecul... - hackaday.com/2024/04/11/cryo-e #electronmicroscopy #cryomicroscopy #science #cryo-em

  18. Kaum eine Spielumsetzung hat damals so polarisiert wie Dune von Cryo. Die Audiovisuellen Qualitäten sind allerdings unumstritten - mal sehen ob sich dem Game auch sowas wie Spielspaß entlocken lässt 🙂 #retro #retrogaming #retrogamer #retrogames #twitchde #twitch #twitchstream #streamer #twitchstreamer #pc #dune #cryo #madtv #commandandconquer #

  19. Postdoctoral Associate for mitochondrial disturbances in neurons

    University of Pittsburgh

    Come join us for an exciting funded opportunity to explore the cell biology of #bipolar disorder and push the boundaries of imaging!

    See the full job description on jobRxiv: jobrxiv.org/job/university-of-

    #ScienceJobs #hiring #research #cryo-E...
    jobrxiv.org/job/university-of-

  20. New Title Alert: CryoREAD is a computational tool using deep learning to automatically build full DNA/RNA atomic structure from cryo-EM map.

    Read more here: kiharalab.org/emsuites/cryorea

    #atomicstructure #cryo-EM #science

  21. CW: Using Human Pluripotent Stem Cells to Create Human Skeletal Muscle Organoids for Repair and Regeneration

    Skeletal #muscle is a type of tissue that makes up a large part of the human body. It is made up of many different cells that are able to contract and move. Skeletal muscle has the ability to #repair itself when it is damaged due to #aging, exercise, or diseases like #MuscularDystrophy. A small group of cells called #SatelliteCell s help with the repair process. Scientists have been trying to create models to study how #Skeletalmuscle develops and regenerates. Recently, they have been using human pluripotent #StemCell to create 3D models of skeletal muscle tissue. However, these models have not been able to recreate the full process of muscle regeneration. In this research paper, the authors introduce a new method of using human pluripotent stem cells to create 3D models of skeletal muscle tissue that can retain the ability to repair itself.

    Over the past decades, scientists have used #animalmodel to study #muscleregeneration, which is regulated by #stemcell s. These animal models have been very helpful in understanding the mechanisms of muscle #regeneration, but they don't always accurately reflect the same range of diseases that humans experience. Therefore, researchers have suggested creating reliable in vitro models using human muscle cells. ( #hPSC s) could be used to create 3D human skeletal muscle #organoid s ( #hSkMO s) that contain sustainable #stemcell and distinct myofibers with the same proteins and structure as adult muscles. Previous approaches to skeletal muscle differentiation have been developed using 2D #culture systems, but these lack the natural environment and #StemCell niche that are necessary to model adult #myogenesis and muscle #regeneration.

    #Stemcell s ( #SC s) can be used to repair damaged muscle tissue. They explain that SCs can be activated in response to muscle injuries and that other #cell types can contribute to the process of #myogenesis. The author then goes on to explain that #cytokine s, such as IL-4, can influence the #InflammatorySystem and promote SCs differentiation, which helps with muscle regeneration. While #organoid s generated from #hPSC s have potential, they do not fully replicate the in vivo native microenvironment. To address this, treat the #hSkMO s with extrinsic #cytokine s to promote #muscle #regeneration . #hSkMO s might then be used to study aspects of human muscle #biology and to identify novel #therapeutic candidates for muscle-wasting disorders.

    To create a 3D structure of muscle tissue. They used #WNT activator and #BMP inhibitors at the beginning of the differentiation process to induce paraxial #mesodermal #cell s. They then added #FGF2 to the Matrigel to promote the 3D structure. #HGF and IGF1 were added later to accelerate the #myogenic specification and further #myofiber differentiation. They optimized the timing of the Matrigel embedding to day seven. After this, they observed #neuralcell s and withdrew FGF2 to focus on muscle tissue development. They then prolonged the HGF and IGF1 treatment to propagate #myogenic #progenitor s. They found that 62% of the #tissue was #skeletalmuscle tissue and that it contained PAX7+ #myogenic #stem / #progenitor cells, MYOD+ activated/committed #myoblast s, and MYOG+ #myocyte s. They also found that 31% of PAX7+/Ki67− and 29% of MYOD−/PAX7+ non-dividing quiescent SCs were present in the mature #hSkMO s. This indicates that the #hSkMO s were able to effectively recreate #embryo nic #myogenesis and have regenerative potential. Future studies using #singlecell #RNA sequencing may be necessary to further characterize the different types of cells in #hSkMO s.

    The stepwise process to generate human skeletal muscle organoid s (hSkMOs) from human pluripotent stem cells (hPSCs)

    The process begins with dissociating #hPSC s into #singlecell s and allowing them to form #embryoid bodies ( #EB s) in low-attachment V-shaped 96-well plates. Then, paraxial #mesodermal differentiation is promoted with #WNT activation, BMP inhibition, and FGF2 signaling. The expression of pluripotency markers OCT4 and NANOG decreases, and the expression of #mesoderm markers Brachyury, T-Box transcription factor 6 (TBX6), and mesogenin 1 (MSGN1) increases. To further characterize paraxial #mesoderm al differentiation, TBX6 is #immunostain ed. After paraxial #mesodermal induction, the #organoid s are embedded with growth factor-reduced Matrigel and transferred to a six-well plate on an orbital shaker. Growth factors are then added to the #myogenic specification media, and #hSkMO s are cultured until the day of analysis. The orbital shaker improves the viability, survival, and differentiation of hSkMOs by increasing the penetration rate of oxygen and nutrients into the core area of hSkMOs. The #hSkMOs gradually grow to more than 1.5 mm in diameter by day 60, appearing round-shaped, uniformly sized, and having relatively homogenous morphology. PAX3 and PAX7 are #myogenic progenitor markers, and their expression is verified by qRT-PCR and #cryo sections. The #myogenic cells appear as clusters, and approximately 9% of PAX7+ cells are double-positive for Ki67 at day 30, demonstrating that proliferating cells are #myogenic #progenitor s in hSkMOs. This indicates that the in vitro #hSkMO #culturesystem is able to recapitulate the features of embryonic skeletal #muscle development.

    The different types of #SkeletalMuscle stem/progenitor cells that are involved in myogenesis, the process of muscle formation.

    The researchers used qRT-PCR analysis and #immunohistochemistry to identify and characterize the different types of cells. They found that PAX3 and PAX7 (SC markers) were the major population during the early stage of #myogenesis, and that MYOD (proliferating and activated SC marker) and MYOG (differentiated myocyte marker) increased over time. They also observed that MYOD−/PAX7+, MYOD+/PAX7+, and MYOD+/Ki67+ cells accounted for 29%, 6%, and 8% of the putative quiescent, activated, and proliferating #SC s, respectively. MYOD+/PAX7− cells constituted 39% of differentiating myoblasts, and MYOG−/PAX7+ cells constituted 23% of putative quiescent SCs. MYOG+/PAX7− cells accounted for 30% of differentiated #myocyte s, and 8% and 6% of the MYOG+ cells in #hSkMO s co-expressed PAX7 and Ki67, respectively. This data shows that the researchers were able to identify and characterize different types of skeletal muscle stem/progenitor cells during #myogenesis.

    The text is discussing the results of a research study that used hSkMOs (human skeletal muscle #organoid s) to study the development of skeletal muscle #tissue. The study found that the #hSkMO s grew exponentially in size within two months, and the growth rate then steadily decreased. The researchers then used scanning electron microscopy (SEM) imaging and confocal microscopy to examine the cytoarchitecture of the hSkMOs. They found that the hSkMOs contained a large population of terminally differentiated #myogenic cells and a small population of preserved myogenic stem/progenitor cells. They also found that the hSkMOs contained a substantial proportion of TITIN+ muscle cells and MAP2-positive #neuron s. To further characterize the presence of sustainable stem cells within the mature hSkMOs, they quantified the amount of dormant stem cells by #confocal #microscopy imaging. The results showed that approximately 56%, 31%, and 5% of PAX7+/Ki67- putative dormant stem cells existed throughout the differentiation of hSkMOs at days 30, 70, and 130, respectively. This indicates that the hSkMOs contained mature skeletal muscle properties and had the potential for #regeneration .

    The researchers wanted to see if the #hSkMO s (human #skeletal muscle #organoid s) had the ability to regenerate #muscle #tissue after damage. To test this, they treated the hSkMOs with a cardiotoxin (CTX) which is known to induce muscle inflammation and damage. They then observed a decrease in PAX7+ and MYOD+ cells in the hSkMOs. To further test the #regenerative potential of the #hSkMO s, they added interleukin-4 (IL-4) to the medium to promote #muscleregeneration. After 14 days, they observed a significant increase in MYOG+ myocytes in the CTX-injured hSkMOs with the treatment of IL-4 compared to the CTX-injured hSkMOs without the treatment. This suggests that the hSkMOs have the potential to regenerate muscle tissue after damage.

    #explainpaper

    Generation of Skeletal Muscle Organoids from Human Pluripotent Stem Cells to Model Myogenesis and Muscle Regeneration

    Authors :

    Min-Kyoung Shin , Jin Seok Bang , Jeoung Eun Lee , Hoang-Dai Tran , Genehong Park , Dong Ryul Lee and Junghyun Jo