5,106 Matching Annotations
  1. Jan 2021
    1. cell states
    2. airway epithelial
    3. lungs
    4. asthmatic
    5. lower airways
    6. lungs
    7. healthy
    8. lung parenchyma
    9. upper

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    10. lower airways
    11. cellular landscape
    12. single-cell transcriptomics
    13. lung
    14. homeostasis
    15. immune cells
    16. structural
    17. infectious agents
    18. protection
    19. mucosal immunity
    20. environment
    21. interface
    22. gas exchange
    23. Human lungs
    1. tissue
    2. gene expression
    3. data
    4. human bone marrow
    5. cell lineages
    6. plasticity
    7. transcription factors
    8. cells
    9. differentiating
    10. differentiation
    11. hematopoietic
    12. differentiation
    13. algorithms
    14. algorithm
    15. differentiating
    16. probability
    17. terminal state
    18. cell state
    19. cells
    20. ordering
    21. pseudo-time
    22. Palantir
    23. Palantir's
    24. Palantir
    25. trajectory
    26. treating cell fate as a probabilistic process
    27. entropy
    28. cell plasticity
    29. cell fate
    30. differentiating cells
    31. models trajectories
    32. algorithm
    33. Palantir
    34. cell fate
    35. differentiation
    36. continuous
    37. discrete
    38. questions
    39. Single-cell RNA sequencing
    40. single-cell RNA sequencing
    41. differentiating
    1. infection
    2. cellular
    3. cell
    4. kidney damage
    5. therapeutic
    6. strategies
    7. risk
    8. receptor
    9. COVID-19
    10. COVID-19
    11. hospitalized
    12. urine samples
    13. SARS-CoV-2-infected cells
    14. RNA processing
    15. endomembrane
    16. immune
    17. viral entry
    18. proximal tubular epithelial cells
    19. datasets
    20. renin-angiotensin-aldosterone system inhibitors
    21. module
    22. proximal tubular epithelial cell
    23. proximal tubular epithelial cell
    24. proximal tubular epithelial cells
    25. expressing
    26. network modules
    27. compendium
    28. omics
    29. Bayesian
    30. donors
    31. expression
    32. expression
    33. expression
    34. expression
    35. expression
    36. in situ hybridization.
    37. proximal tubular epithelial cells.
    38. The diabetic kidney disease
    39. diabetic kidney disease
    40. diabetic kidney disease
    41. diabetic kidney disease
    42. patients
    43. patients
    44. living
    45. kidney biopsies
    46. Single cell RNA profiling
    47. kidneys
    48. infection
    49. susceptibility factor
    50. entry
    51. host cells
    52. SARS-CoV-2
    53. SARS-CoV-2
    54. ACE2
    55. ACE2
    56. ACE2
    57. ACE2
    58. ACE2
    59. ACE2
    60. ACE2 receptor
    61. ACE2
    62. ACE2
    63. angiotensin-converting enzyme 2
    64. SARS-CoV-2
    65. kidney disease
    66. diabetes
    67. patients
    68. mortality
    69. COVID-19
    70. morbidity
    1. infection
    2. tissue
    3. protective
    4. lung injury
    5. ACE2
    6. interferon
    7. upregulation
    8. data
    9. viral infections
    10. in vivo
    11. airway epithelial cells
    12. vitro
    13. human
    14. ISG
    15. interferon-stimulated gene
    16. nasal goblet secretory cells
    17. ileal absorptive enterocytes
    18. lung type II pneumocytes
    19. ACE2 and TMPRSS2 co-expressing cell
    20. co-expressing
    21. TMPRSS2
    22. ACE2
    23. tissue-resident
    24. cell subsets.
    25. tissues
    26. host
    27. ACE2
    28. expression
    29. human
    30. non-human primate
    31. scRNA-seq
    32. single-cell RNA-sequencing
    33. SARS-CoV-2
    34. SARS-CoV-2
    35. SARS-CoV-2
    36. cell subsets
    37. cellular entry
    38. transmembrane serine protease 2
    39. TMPRSS2
    40. host
    41. proteases
    42. ACE2
    43. angiotensin-converting enzyme 2
    44. SARS-CoV-2 spike (S) protein
    45. COVID-19
    46. pathogenesis
    47. SARS-CoV-2)
    48. severe acute respiratory syndrome coronavirus clade 2
  2. Dec 2020
    1. time frames
    2. sample processing
    3. clinical studies
    4. Human Cell Atlas
    5. sample collection
    6. logistics
    7. scRNA-seq analysis
    8. tissue preservation
    9. protocols
    10. conclusion
    11. CONCLUSIONS
    12. cell type
    13. spleen
    14. ambient RNA
    15. contamination
    16. mitochondrial
    17. reads
    18. reads