Our new X account is live! Follow @wizwand_team for updates
WorkDL logo mark

Predicting Cellular Responses to Novel Drug Perturbations at a Single-Cell Resolution

About

Single-cell transcriptomics enabled the study of cellular heterogeneity in response to perturbations at the resolution of individual cells. However, scaling high-throughput screens (HTSs) to measure cellular responses for many drugs remains a challenge due to technical limitations and, more importantly, the cost of such multiplexed experiments. Thus, transferring information from routinely performed bulk RNA HTS is required to enrich single-cell data meaningfully. We introduce chemCPA, a new encoder-decoder architecture to study the perturbational effects of unseen drugs. We combine the model with an architecture surgery for transfer learning and demonstrate how training on existing bulk RNA HTS datasets can improve generalisation performance. Better generalisation reduces the need for extensive and costly screens at single-cell resolution. We envision that our proposed method will facilitate more efficient experiment designs through its ability to generate in-silico hypotheses, ultimately accelerating drug discovery.

Leon Hetzel, Simon B\"ohm, Niki Kilbertus, Stephan G\"unnemann, Mohammad Lotfollahi, Fabian Theis• 2022

Related benchmarks

TaskDatasetResultRank
Drug response predictionsci-Plex3 1 μM dose (test)
E[r²] (All)0.77
5
Drug response predictionsci-Plex3 10 μM dose (test)
E[R²] (all)0.76
5
Showing 2 of 2 rows

Other info

Code

Follow for update