
Ayan Chatterjee
Senior Producer at MSNBC
sr producer @msnbc. prev: @cnn @nowthisnews Opinions my own.
Articles
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Nov 25, 2024 |
nature.com | Ayan Chatterjee
AbstractCellular communication at the single-cell level holds immense potential for uncovering response heterogeneity in immune cell behaviors. However, because of significant size diversity among different immune cell types, controlling the pairing of cells with substantial size differences remains a formidable challenge. We developed a microfluidic platform for size-selective pairing (SSP) to pair single cells with up to a fivefold difference in size, achieving over 40% pairing efficiency.
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Aug 29, 2024 |
biorxiv.org | Ayan Chatterjee |Babak Ravandi |Parham Haddadi |Naomi H. Philip
AbstractUnraveling the human interactome to uncover disease-specific patterns and discover drug targets hinges on accurate protein-protein interaction (PPI) predictions. However, challenges persist in machine learning (ML) models due to a scarcity of quality hard negative samples, shortcut learning, and limited generalizability to novel proteins.
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Jun 10, 2024 |
pubs.rsc.org | Biplab Mondal |Ayan Chatterjee |Nitis Saha
Thianthrenation-promoted photoinduced alkene difunctionalization and aryl allylation with Morita–Baylis–Hillman adducts† An organophotoredox-catalyzed alkoxyallylation of feed-stock olefins, through thianthrenation using a Morita–Baylis–Hillman adduct as an allylating agent, is described.
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Apr 29, 2024 |
biorxiv.org | Ayan Chatterjee |Babak Ravandi |Naomi H. Philip |Mario Abdelmessih
AbstractUnraveling the human interactome to understand biological processes and uncover disease-specific patterns hinges on accurate protein-protein interaction (PPI) predictions. However, challenges persist in machine learning (ML) models due to a scarcity of quality hard negative samples, shortcut learning, and limited generalizability to novel proteins.
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Apr 4, 2024 |
pubs.rsc.org | Sourav Pramanik |Subhadeep Hazra |Ayan Chatterjee |Jaideep Saha
Hydrogen bonding-promoted tunable approach for access to aza-bicyclo-[3.3.0]octanes and cyclopenta[b] pyrroles† A unified strategy is disclosed that builds on successfully engaging the aniline nitrogen of 1,3-amphoteric γ-aminocyclopentenone for a tandem annulation with electron-poor alkynes, solely assisted by the H-bonding network of HFIP.
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