2025³â 07¿ù 21ÀÏ ¿ù¿äÀÏ
 
 
  ÇöÀçÀ§Ä¡ > ´º½ºÁö´åÄÄ > Science & Technology

·£¼¶¿þ¾îºÎÅÍ µÅÁöµµ»ì±îÁö... ³ë·ÃÇØÁø »ç±âÇà°¢

 

Á¤Ä¡

 

°æÁ¦

 

»çȸ

 

»ýȰ

 

¹®È­

 

±¹Á¦

 

°úÇбâ¼ú

 

¿¬¿¹

 

½ºÆ÷Ã÷

 

ÀÚµ¿Â÷

 

ºÎµ¿»ê

 

°æ¿µ

 

¿µ¾÷

 

¹Ìµð¾î

 

½Å»óǰ

 

±³À°

 

ÇÐȸ

 

½Å°£

 

°øÁö»çÇ×

 

Ä®·³

 

Ä·ÆäÀÎ
Çѻ츲 ¡®¿ì¸®´Â ÇѽҸ²¡¯ ½Ò ¼Òºñ Ä·ÆäÀÎ ½Ã...
1000¸¸¿øÂ¥¸® Àΰø¿Í¿ì, °Ç°­º¸Çè Áö¿ø ¡®Æò...
- - - - - - -
 

Pioneering Cancer Plasticity Atlas will Help Predict Response to Cancer Therapies

´º½ºÀÏÀÚ: 2025-06-26

CAMBRIDGE, ENGLAND & SEATTLE -- The Wellcome Sanger Institute, Parse Biosciences, and the Computational Health Center at Helmholtz Munich announced a collaboration to build the foundation of a single cell atlas, focused on understanding and elucidating cancer plasticity in response to therapies. The collaboration will catalyze an ambitious future phase to develop a cancer plasticity atlas encompassing hundreds of millions of cells.

Utilizing novel organoid perturbation and Artificial Intelligence (AI) platforms, the aim is to create a comprehensive dataset to fuel foundational drug discovery models and cancer research.

Dr. Mathew Garnett, Group Leader at the Sanger Institute, and Prof. Fabian Theis, Director of the Computational Health Center at Helmholtz Munich and Associate Faculty at the Sanger Institute, will be the principal investigators in the collaboration.

Garnett’s research team has generated novel 3D organoid cultures that serve as highly scalable and functional cancer models with the ability to capture hallmarks of patient tumors. The team will use vast numbers of these tumor organoids — mini tumors in a dish — as a model to better understand cancer mechanisms of plasticity and adaptability in response to treatments.

Theis’ research team has been widely recognized for pioneering computational algorithms to solve complex biological challenges at the intersection of Artificial Intelligence and single cell genomics, in this context for in silico modeling of drug effects on cellular systems. The initiative will be run through Parse Biosciences’ GigaLab, a state-of-the-art facility purpose built for the generation of massive scale single cell RNA sequencing datasets at unprecedented speed.

The Sanger, Helmholtz Munich, and Parse teams have developed automated methods to streamline laboratory procedures in addition to the computational methods required to analyze and discover insights within datasets of this size.

The ultimate aim of the collaboration is to build a single cell reference map that will enable virtual cell modeling and potentially help predict the effect of drugs in cancer patients - where resistance might develop, from which compounds, and where to target future treatment efforts.

Garnett, Group Leader at the Wellcome Sanger Institute and collaboration co-lead, said: “We have developed a transformational platform to enable both large-scale organoid screening and the downstream data generation and analysis which has the potential to redefine our understanding of therapeutic responses in cancer. We aim to develop a community that brings the best expertise from academia and industry to progress the project. Studies of this magnitude are critical to the development of foundational models to better help us understand cancer progression and bring much needed advancement in the field.”

Theis, Director of the Computational Health Center at Helmholtz Munich and collaboration co-lead, said: “Our vision of a virtual cell perturbation model is becoming increasingly feasible with recent advances in AI — but to scale effectively, we need large, high-quality single cell perturbation datasets. This collaboration enables that scale, and I’m excited to move toward AI-driven experimental design in drug discovery.”

Dr. Charlie Roco, Chief Technology Officer at Parse Biosciences, said: “We are incredibly excited to bring the power of GigaLab to visionary partners. Leveraging Parse’s Evercode chemistry, the GigaLab can rapidly produce large single cell datasets with exceptional quality. Combining the expertise of the Wellcome Sanger Institute and Helmholtz Munich with the speed and scale achieved by the GigaLab enable the opportunity to fundamentally change our understanding of cancer.”



 Àüü´º½º¸ñ·ÏÀ¸·Î

LG Acquires Premium Water Heating Solutions Provider OSO to Strengthen HVAC Portfolio
Invivoscribe Expands Flow Cytometry to Accelerate CAR-T Development With Launch of CERo Therapeutics Phase 1 Clinical Trial
Tecnotree Recognized in Two 2025 Gartner¢ç Hype Cycle¢â Reports
Parse-Enabled Study Maps Neuronal Pathways with Potential Implications for Neurodegenerative Disease Research
Zycus Named a LEADER in 2025 IDC MarketScape for Source-to-Pay
Revolutionizing Healthcare: Ubitus and MacKay Memorial Hospital Present AI Robot Collaboration at GTC Taiwan
LambdaTest Enables Playwright Testing on iOS Real Devices to Enhance Mobile Test Accuracy

 

Brightcove Unveils Its New Vision for the Future of Video Engagement, ...
SiPearl: Final closing of ¢æ130m Series A with Cathay Venture (Taiwan)...
Omdia: Nintendo Switch 2 to Drive Gaming Console Display Shipments up ...
Vanderbilt Selects Parse Biosciences GigaLab to Generate Atlas of Earl...
AppLogic Networks Rolls Out Industry-First 400GE Networking Across Vir...
RAEOA and CMC Ignite a New Chapter: Oecusse to Lead Timor-Leste¡¯s Mod...
Quectel Introduces KCM0A5S Wi-SUN Module for Smart City and Smart Util...

 


°øÁö»çÇ×
´º½ºÁö ÇÑÀÚ Ç¥±â¿¡ ´ë¸¸½Ä À½Â÷ Ç¥±â '纽ÞÙó¢ ´Ï¿ì½ÃÁö' º´±â
º£³×ÇÁ·Ò º£³×ÀÎÅõ Áß¹® Ç¥±â 宝Ò¬ÜØÙÌ 宝Ò¬ì×öõ(ÜÄÒ¬ÜØÙÌ ÜÄ...
¹Ìµð¾î¾Æ¿ì¾î Mediaour ØÚ体ä²们 ØÚô÷ä²Ùú MO ¿¥¿À ØÚä² ØÚä²
¾Ë¸®¿ìºê Alliuv ä¹备: ä¹联êó备, ¾Ë¶ã Althle ä¹÷åìÌ
¾Ë¸®¾Ë Allial Áß¹® Ç¥±â ä¹××尔 ä¹××ì³
´ºÆÛ½ºÆ® New1st Áß¹® Ç¥±â 纽ììãæ(¹øÃ¼ Òïììãæ), N1 纽1
¿£ÄÚ½º¸ð½º : À̾¾ 'EnCosmos : EC' Áß¹® Ç¥±â ì¤ñµ
¾ÆÀ̵ð¾î·Ð Idearon Áß¹® Ç¥±â ì¤îè论 ì¤îèÖå
¹ÙÀÌ¿ÀÀÌ´Ï Bioini Áß¹® Ç¥±â ù±药研 ù±å·æÚ
¿À½ºÇÁ·Ò Ausfrom 奥ÞÙÜØÙÌ, À£ÇÁ·Ò Welfrom 卫ÜØÙÌ
¿¡³ÊÇÁ·Ò Enerfrom 额ÒöÜØÙÌ ¿¡³ÊÀ¯ºñ Eneruv 额Òöêó备
¾ËÇÁ·Ò Alfrom Áß¹® Ç¥±â ä¹尔ÜØÙÌ ä¹ì³ÜØÙÌ

 

ȸ»ç¼Ò°³ | ÀÎÀçä¿ë | ÀÌ¿ë¾à°ü | °³ÀÎÁ¤º¸Ãë±Þ¹æÄ§ | û¼Ò³âº¸È£Á¤Ã¥ | Ã¥ÀÓÇѰè¿Í ¹ýÀû°íÁö | À̸ÞÀÏÁÖ¼Ò¹«´Ü¼öÁý°ÅºÎ | °í°´¼¾ÅÍ

±â»çÁ¦º¸ À̸ÞÀÏ news@newsji.com, ÀüÈ­ 050 2222 0002, ÆÑ½º 050 2222 0111, ÁÖ¼Ò : ¼­¿ï ±¸·Î±¸ °¡¸¶»ê·Î 27±æ 60 1-37È£

ÀÎÅͳݴº½º¼­ºñ½º»ç¾÷µî·Ï : ¼­¿ï ÀÚ00447, µî·ÏÀÏÀÚ : 2013.12.23., ´º½º¹è¿­ ¹× û¼Ò³âº¸È£ÀÇ Ã¥ÀÓ : ´ëÇ¥ CEO

Copyright ¨Ï All rights reserved..