Spring Science

@SpringScience
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Giving scientists AI superpowers

❗❗❗ Beware of 'AI-washed' products in drug discovery and data analysis!❗❗❗

True innovation isn't about slapping an AI label on old tech. The Spring Engine represents genuine AI advancement, accelerating drug discovery like never before. We'll be digging deeper into this in the coming weeks, so stay tuned!

#AI #drugdiscovery #phenotypicprofiling

🔍 Spring’s AI tools surface these pathways, making it easier than ever for scientists to understand the mysteries of cell fate — no magic required! 🧙‍♀️

So this Halloween, let’s get spooky with science. May your assays be as haunting as they are illuminating! 🌙💀 (3/4)

🧪 From the fiery chaos of necrosis to the precise shutdown of apoptosis, each type of cell death has a signature lurking in the shadows… 👻 And we’re here to bring them to light! (2/4)
🎃 Not all cells go quietly… ☠️ Some die with a bang, others with a whimper, and Spring’s AI tools capture every haunting detail. Let’s dive into the eerie world of cell death mechanisms. (1/4)

We love cute animal pictures as much as the next person, but they won’t help us discover new therapies. We use real cell imaging data for that! 🧬🐱🐶

#BioEmbeddings #AI #NotYourAverageAI

At Spring Science, we're using specialized AI to revolutionize drug discovery—accelerating the development of life-changing treatments by compressing years of progress into a fraction of the time.

Our AI platform analyzes vast biological data, uncovering insights that could take traditional methods decades to find. The future of medicine is here, driven by AI. Stay tuned! #AI #DrugDiscovery #TechBio

Explore this dataset on Spring Science to drive new discoveries!

Read the publication in Cell: https://buff.ly/4eWrtwk

Visit https://buff.ly/486on6P to access the data.

#ProteinMislocalization #SpringScience #LifeSciences #DataSharing

Building on our previous post about the Taipale lab’s work, 16% of pathogenic variants are linked to protein mislocalization, disrupting stability, especially in the secretory pathway. 🧬 Variants with distinct localization patterns are tied to different disease outcomes. 🧵

🚨 New research from the Taipale Lab (U of Toronto) reveals that protein mislocalization impacts 1/6 of all pathogenic missense variants! 🧬 This study offers new insights into the molecular roots of genetic disorders.

📊 Data now available on the Spring Science platform! 🔍 Explore the dataset to drive your own discoveries.

🔗 Explore the data: https://buff.ly/4gTE7y5
🔗 View the paper: https://buff.ly/4eWrtwk
🔗 Read more in our blog post: https://buff.ly/4ePLsxn

Spring Science