| URL: | http://47.98.139.124:8799 |
| Full name: | Spatiotemporal Cloud Atlas for Neural cells |
| Description: | SCAN is the first neural database that combines single cell transcriptome and spatial transcriptome data, covering 10,679,684 cells from 960 species and 880 data sets generated by 26 single cell sequencing techniques. In addition, SCAN also covers 477 spatial transcriptome datasets including brain, retina, spinal cord, and embryos, and over 100 neurological diseases. |
| Year founded: | 2023 |
| Last update: | 2023 |
| Version: | v1.0 |
| Accessibility: |
Accessible
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| Country/Region: | China |
| Data type: | |
| Data object: | |
| Database category: | |
| Major species: |
NA
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| Keywords: |
| University/Institution: | Chinese Academy of Medical Sciences and Peking Union Medical College |
| Address: | |
| City: | |
| Province/State: | Suzhou |
| Country/Region: | China |
| Contact name (PI/Team): | Dongsheng Chen |
| Contact email (PI/Helpdesk): | cds@ism.pumc.edu.cn |
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SCAN: Spatiotemporal Cloud Atlas for Neural cells. [PMID: 37930842]
The nervous system is one of the most complicated and enigmatic systems within the animal kingdom. Recently, the emergence and development of spatial transcriptomics (ST) and single-cell RNA sequencing (scRNA-seq) technologies have provided an unprecedented ability to systematically decipher the cellular heterogeneity and spatial locations of the nervous system from multiple unbiased aspects. However, efficiently integrating, presenting and analyzing massive multiomic data remains a huge challenge. Here, we manually collected and comprehensively analyzed high-quality scRNA-seq and ST data from the nervous system, covering 10 679 684 cells. In addition, multi-omic datasets from more than 900 species were included for extensive data mining from an evolutionary perspective. Furthermore, over 100 neurological diseases (e.g. Alzheimer's disease, Parkinson's disease, Down syndrome) were systematically analyzed for high-throughput screening of putative biomarkers. Differential expression patterns across developmental time points, cell types and ST spots were discerned and subsequently subjected to extensive interpretation. To provide researchers with efficient data exploration, we created a new database with interactive interfaces and integrated functions called the Spatiotemporal Cloud Atlas for Neural cells (SCAN), freely accessible at http://47.98.139.124:8799 or http://scanatlas.net. SCAN will benefit the neuroscience research community to better exploit the spatiotemporal atlas of the neural system and promote the development of diagnostic strategies for various neurological disorders. |