Automated Author Profile

Liu, Jia

John A. Paulson School of Engineering and Applied Sciences, Harvard University, Boston, MA, USA.

Current S-Index

1.9

Sum of Dataset Indices for all datasets

Average Dataset Index per Dataset

0.6

Average Dataset Index per dataset

Total Datasets

3

Total datasets for this author

Average FAIR Score

34.6%

Average FAIR Score per dataset

Total Citations

1

Total citations to the author's datasets

Total Mentions

1

Total mentions of the author's datasets

S-Index Interpretation

S-Index Over Time

Cumulative Citations Over Time

Cumulative Mentions Over Time

Datasets

Integrative in situ mapping of single-cell transcriptional states and tissue histopathology in an Alzheimer disease model (Version: 1.0.0)

Amyloid-β plaques and neurofibrillary tau tangles are the neuropathologic hallmarks of Alzheimer’s disease (AD), but the spatiotemporal cellular responses and molecular mechanisms underlying AD pathophysiology remain poorly understood. Here we introduce STARmap PLUS to simultaneously map single-cell transcriptional states and disease marker proteins in brain tissues of AD mouse models at a voxel size of 95  95  350 nm. This high-resolution spatial transcriptomics map revealed a core-shell structure where disease-associated microglia (DAM) closely contact amyloid-β plaques, whereas disease-associated astrocyte-like cells (DAA-like) and oligodendrocyte precursor cells (OPC) are enriched in the outer shells surrounding the plaque-DAM complex. Hyperphosphorylated tau emerged mainly in excitatory neurons in the CA1 region accompanied by infiltration of oligodendrocyte subtypes into the axon bundles of hippocampal alveus. The integrative STARmap PLUS method bridges single-cell gene expression profiles with tissue histopathology at subcellular resolution, providing an unprecedented roadmap to pinpoint the molecular and cellular mechanisms of AD pathology and neurodegeneration.

Authors

  • Zeng, Hu ;
  • Jiahao Huang ;
  • Haowen Zhou ;
  • Meilandt, William J. ;
  • Dejanovic, Borislav ;
  • Yiming Zhou ;
  • Bohlen, Christopher J. ;
  • Seung-Hye Lee ;
  • Jingyi Ren ;
  • Liu, Albert ;
  • Zefang Tang ;
  • Sheng, Hao ;
  • Liu, Jia ;
  • Sheng, Morgan ;
  • Wang, Xiao
1 Citation0 Mentions77% FAIR1.2 Dataset Index
10.5281/zenodo.7332091November 2022

Integrative in situ mapping of single-cell transcriptional states and tissue histopathology in an Alzheimer disease model (Version: 1.0.1)

Amyloid-β plaques and neurofibrillary tau tangles are the neuropathologic hallmarks of Alzheimer’s disease (AD), but the spatiotemporal cellular responses and molecular mechanisms underlying AD pathophysiology remain poorly understood. Here we introduce STARmap PLUS to simultaneously map single-cell transcriptional states and disease marker proteins in brain tissues of AD mouse models at a voxel size of 95  95  350 nm. This high-resolution spatial transcriptomics map revealed a core-shell structure where disease-associated microglia (DAM) closely contact amyloid-β plaques, whereas disease-associated astrocyte-like cells (DAA-like) and oligodendrocyte precursor cells (OPC) are enriched in the outer shells surrounding the plaque-DAM complex. Hyperphosphorylated tau emerged mainly in excitatory neurons in the CA1 region accompanied by infiltration of oligodendrocyte subtypes into the axon bundles of hippocampal alveus. The integrative STARmap PLUS method bridges single-cell gene expression profiles with tissue histopathology at subcellular resolution, providing an unprecedented roadmap to pinpoint the molecular and cellular mechanisms of AD pathology and neurodegeneration.

Authors

  • Zeng, Hu ;
  • Jiahao Huang ;
  • Haowen Zhou ;
  • Meilandt, William J. ;
  • Dejanovic, Borislav ;
  • Yiming Zhou ;
  • Bohlen, Christopher J. ;
  • Seung-Hye Lee ;
  • Jingyi Ren ;
  • Liu, Albert ;
  • Zefang Tang ;
  • Sheng, Hao ;
  • Liu, Jia ;
  • Sheng, Morgan ;
  • Wang, Xiao
0 Citations0 Mentions13% FAIR0.1 Dataset Index
10.5281/zenodo.7332090November 2022

Integrative in situ mapping of single-cell transcriptional states and tissue histopathology in an Alzheimer disease model (Version: 1.0.1)

Amyloid-β plaques and neurofibrillary tau tangles are the neuropathologic hallmarks of Alzheimer’s disease (AD), but the spatiotemporal cellular responses and molecular mechanisms underlying AD pathophysiology remain poorly understood. Here we introduce STARmap PLUS to simultaneously map single-cell transcriptional states and disease marker proteins in brain tissues of AD mouse models at a voxel size of 95  95  350 nm. This high-resolution spatial transcriptomics map revealed a core-shell structure where disease-associated microglia (DAM) closely contact amyloid-β plaques, whereas disease-associated astrocyte-like cells (DAA-like) and oligodendrocyte precursor cells (OPC) are enriched in the outer shells surrounding the plaque-DAM complex. Hyperphosphorylated tau emerged mainly in excitatory neurons in the CA1 region accompanied by infiltration of oligodendrocyte subtypes into the axon bundles of hippocampal alveus. The integrative STARmap PLUS method bridges single-cell gene expression profiles with tissue histopathology at subcellular resolution, providing an unprecedented roadmap to pinpoint the molecular and cellular mechanisms of AD pathology and neurodegeneration.

Authors

  • Zeng, Hu ;
  • Jiahao Huang ;
  • Haowen Zhou ;
  • Meilandt, William J. ;
  • Dejanovic, Borislav ;
  • Yiming Zhou ;
  • Bohlen, Christopher J. ;
  • Seung-Hye Lee ;
  • Jingyi Ren ;
  • Liu, Albert ;
  • Zefang Tang ;
  • Sheng, Hao ;
  • Liu, Jia ;
  • Sheng, Morgan ;
  • Wang, Xiao
0 Citations1 Mention13% FAIR0.6 Dataset Index
10.5281/zenodo.7683099November 2022