• Guess….

    What’s May Gank! It’s Big Herta 🫣
    Tell me you like my Big Herta🫣 每次夸我的都是好宝宝爱你们

    Your support is my biggest motivation Thank you for always supporting me, Love you guys

    #herta #bighertacosplay #ooc #honkaistarrailcosplay #inkol #inkolmedia
    Guess…. What’s May Gank! It’s Big Herta 🫣💕 Tell me you like my Big Herta🫣❤️ 每次夸我的都是好宝宝🤫爱你们✨ Your support is my biggest motivation💕👀 Thank you for always supporting me, Love you guys ❤️ #herta #bighertacosplay #ooc #honkaistarrailcosplay #inkol #inkolmedia
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  • Hi Trailblazers!
    Do you know that as a Memokeeper, collecting and preserving precious memories is
    extremely meaningful.
    Naturally, when boarding the Express, one must send regards to their colleague permanently
    stationed here.
    She seems like she‘s been without company for quite some time, and is at ease when it
    comes to getting her photo taken. How fascinating~
    Version 2.0 is out now!

    Play Honkai: Star Rail now : https://hoyo.link/9ShgFUAL
    Redemption Code : 6B976L2STURF (50 Stellar Jade from today until Feb 29)

    #HonkaiStarRail #Penacony #BlackSwan #Sparkle #Misha #Cosplay
    Hi Trailblazers! Do you know that as a Memokeeper, collecting and preserving precious memories is extremely meaningful. Naturally, when boarding the Express, one must send regards to their colleague permanently stationed here. She seems like she‘s been without company for quite some time, and is at ease when it comes to getting her photo taken. How fascinating~ Version 2.0 is out now! Play Honkai: Star Rail now : https://hoyo.link/9ShgFUAL Redemption Code : 6B976L2STURF (50 Stellar Jade from today until Feb 29) #HonkaiStarRail #Penacony #BlackSwan #Sparkle #Misha #Cosplay
    0 Commenti 0 condivisioni 13K Views
  • South Korean researchers at KAIST have unveiled a breakthrough approach that could transform cancer treatment—by turning colon cancer cells back into healthy ones.
    Leveraging digital twin technology, the team mapped a virtual gene network to identify “master regulator genes” responsible for the cancerous transformation. Unlike conventional treatments that aim to destroy cancer cells, this novel method reprograms them—restoring normal function rather than causing cell death.

    This technique not only holds potential for colon cancer but could also be applied to other cancer types, reducing the toxic side effects of chemotherapy and offering a universal, targeted strategy. It marks a major step toward treating cancer as a reversible condition rather than a terminal disease.

    #CancerBreakthrough #DigitalTwinMedicine #KAIST #KoreanScience #MedicalInnovation
    South Korean researchers at KAIST have unveiled a breakthrough approach that could transform cancer treatment—by turning colon cancer cells back into healthy ones. Leveraging digital twin technology, the team mapped a virtual gene network to identify “master regulator genes” responsible for the cancerous transformation. Unlike conventional treatments that aim to destroy cancer cells, this novel method reprograms them—restoring normal function rather than causing cell death. This technique not only holds potential for colon cancer but could also be applied to other cancer types, reducing the toxic side effects of chemotherapy and offering a universal, targeted strategy. It marks a major step toward treating cancer as a reversible condition rather than a terminal disease. #CancerBreakthrough #DigitalTwinMedicine #KAIST #KoreanScience #MedicalInnovation
    0 Commenti 0 condivisioni 20K Views
  • Researchers at the Korea Advanced Institute of Science and Technology (KAIST) have developed a novel method called “cancer reversion therapy”.

    Unlike traditional therapies that destroy cancer cells, this method reprograms cancerous cells into normal-like cells.

    They identified three key molecules—MYB, HDAC2, and FOXA2—as master regulators of cancer cell behavior.

    Using digital twin modeling (a simulation technique that mimics real biological systems), scientists validated their approach before confirming its effectiveness through lab experiments in mice.

    This strategy shows promise in reducing side effects and may be applicable beyond colon cancer, potentially transforming treatments for multiple cancer types.
    Researchers at the Korea Advanced Institute of Science and Technology (KAIST) have developed a novel method called “cancer reversion therapy”. Unlike traditional therapies that destroy cancer cells, this method reprograms cancerous cells into normal-like cells. They identified three key molecules—MYB, HDAC2, and FOXA2—as master regulators of cancer cell behavior. Using digital twin modeling (a simulation technique that mimics real biological systems), scientists validated their approach before confirming its effectiveness through lab experiments in mice. This strategy shows promise in reducing side effects and may be applicable beyond colon cancer, potentially transforming treatments for multiple cancer types.
    0 Commenti 0 condivisioni 19K Views