|
|
3-prime FGID data
|
6ceeaa86-9ceb-4582-b390-6d4dd6ff0572
|
89,849
|
a064d795-3b77-44ae-9fb5-beb57c567443
|
|
|
49 years old male - Fresh PBMCs (2 days post-intubation)
|
db59611b-42de-4035-93aa-1ed39f38b467
|
11,574
|
29f92179-ca10-4309-a32b-d383d80347c1
|
|
|
66 years old female - Fresh PBMCs (3 days post-intubation)
|
ea786a06-5855-48b7-80d7-0313a21a2044
|
4,792
|
29f92179-ca10-4309-a32b-d383d80347c1
|
|
|
A (Balanced) Bone Marrow Reference Map of Hematopoietic Development
|
cd2f23c1-aef1-48ae-8eb4-0bcf124e567d
|
263,159
|
f6c50495-3361-40ed-a819-fb9644396ed9
|
|
|
A Single-Cell Atlas of Human White Adipose Tissue
|
ca46ffe6-0a26-4d8d-82fa-81722daf1102
|
166,149
|
fe0e718d-2ee9-42cc-894b-0b490f437dfd
|
|
|
A Unique Cellular Organization of Human Distal Airways and Its Disarray in Chronic Obstructive Pulmonary Disease
|
b61a921b-7fa3-4b42-b455-aaaf32447920
|
115,788
|
4f30b962-d49b-4624-a233-64f048cf8632
|
|
|
A molecular cell atlas of endocrine signalling in human neural organoids
|
64267fb5-7b70-4705-a13b-cc38966c22a8
|
163,714
|
2bebc4ae-69a2-4001-9d2f-091ec9b4020c
|
|
|
A molecular single-cell lung atlas of lethal COVID-19
|
d8da613f-e681-4c69-b463-e94f5e66847f
|
116,313
|
e4c9ed14-e560-4900-a3bf-b0f8d2ce6a10
|
|
|
A multi-tissue single-cell tumor microenvironment atlas
|
b617ee1b-f8c8-4de9-b82b-e803ab93550d
|
391,963
|
3f7c572c-cd73-4b51-a313-207c7f20f188
|
|
|
A single-cell and spatially-resolved atlas of human breast cancers
|
9fddb063-056d-4202-8b8a-4b0ee531d3ce
|
100,064
|
dea97145-f712-431c-a223-6b5f565f362a
|
|
|
A single-cell atlas of the healthy breast tissues reveals clinically relevant clusters of breast epithelial cells
|
de985818-285f-4f59-9dbd-d74968fddba3
|
31,696
|
c9706a92-0e5f-46c1-96d8-20e42467f287
|
|
|
A total of 38,217 droplet-based single-nucleus transcriptomes profiled across 14 cell types in the frontal cortex
|
2f05ab20-a092-4bab-9276-3e0eb24e3fee
|
38,217
|
59c9ecfe-c47d-4a6a-bab0-895cc0c1942b
|
|
|
AIDA Phase 1 Data Freeze v2: Chinese, Indian, Japanese, Korean, Malay, and Thai donors in Japan, Singapore, South Korea, Thailand, and India
|
c838aec3-03ef-4398-b882-0e3912abfff0
|
1,265,624
|
ced320a1-29f3-47c1-a735-513c7084d508
|
|
|
Adult bladder immune subset
|
601c7454-17ff-432c-8e0d-902bfddb8013
|
2,094
|
0e54d4de-44f0-4d50-8649-b5c2bbe8f5d1
|
|
|
Airway
|
edc8d3fe-153c-4e3d-8be0-2108d30f8d70
|
236,977
|
03f821b4-87be-4ff4-b65a-b5fc00061da7
|
|
|
All
|
13149914-ea03-4f01-8bf6-b793b667127b
|
1,665,937
|
4d8fed08-2d6d-4692-b5ea-464f1d072077
|
|
|
All Cells
|
16023185-de21-4c0d-a9c8-73abdd52d142
|
370,115
|
4d82bd8e-8827-410b-8fc7-685b7dd92585
|
|
|
All Cells - snRNA-seq
|
ac0c6561-7a48-4185-af6f-af799f699172
|
432,555
|
c53573b2-eff4-4c5e-9ad0-b24d422dfd9b
|
|
|
All annotated cells from infection 1
|
2ac76f1b-43ef-4271-8686-2f165570989f
|
48,226
|
2a9a17c9-1f61-4877-b384-b8cd5ffa4085
|
|
|
All annotated cells from infection 2
|
7f7faf6b-f11d-4f07-bc1c-188a4472748d
|
134,076
|
2a9a17c9-1f61-4877-b384-b8cd5ffa4085
|
|
|
All annotated cells from infection 3
|
7b55fe5c-d5c8-48e0-a1a3-54c5b9074f3f
|
125,530
|
2a9a17c9-1f61-4877-b384-b8cd5ffa4085
|
|
|
All annotated cells from infection 4
|
7c497c66-c2e2-4291-8b96-339e5e65f314
|
76,298
|
2a9a17c9-1f61-4877-b384-b8cd5ffa4085
|
|
|
All cell types of human eye
|
e6dad530-418b-47f9-af6e-472e56a7b314
|
100,055
|
939769a8-d8d2-4d01-abfc-55699893fd49
|
|
|
All cells
|
3dc61ca1-ce40-46b6-8337-f27260fd9a03
|
71,752
|
2d2e2acd-dade-489f-a2da-6c11aa654028
|
|
|
All cells and nuclei
|
093d3bfe-6f0f-4ac0-a7a1-829f94d0a49f
|
193,108
|
c1241244-b22d-483d-875b-75699efb9f3c
|
|
|
All cells from human liver dataset
|
e84f2780-51e8-4cfa-8aa0-13bbfef677c7
|
167,598
|
74e10dc4-cbb2-4605-a189-8a1cd8e44d8c
|
|
|
All cells type from five healthy donors
|
8f3e7fcf-0b16-4a29-a5f1-a7a8b267d689
|
50,992
|
ab6823e0-506e-461b-b1f9-d30e69a01687
|
|
|
All cells types from scRNA-seq of human primary sclerosing cholangitis patients and healthy controls
|
02792605-4760-4023-82ad-40fc4458a5db
|
89,637
|
0c8a364b-97b5-4cc8-a593-23c38c6f0ac5
|
|
|
All cells types from snRNA-seq of human primary sclerosing cholangitis patients and healthy controls
|
1873a18a-66fd-4a4d-8277-a872c93f5b59
|
105,780
|
0c8a364b-97b5-4cc8-a593-23c38c6f0ac5
|
|
|
All donors all cell states (in vivo)
|
74cff64f-9da9-4b2a-9b3b-8a04a1598040
|
325,665
|
e2c257e7-6f79-487c-b81c-39451cd4ab3c
|
|
|
All major cell types in adult human retina
|
0129dbd9-a7d3-4f6b-96b9-1da155a93748
|
244,474
|
af893e86-8e9f-41f1-a474-ef05359b1fb7
|
|
|
All — Cells of the adult human heart
|
d4e69e01-3ba2-4d6b-a15d-e7048f78f22e
|
486,134
|
b52eb423-5d0d-4645-b217-e1c6d38b2e72
|
|
|
All-snRNA-Spatial multi-omic map of human myocardial infarction
|
1c739a3e-c3f5-49d5-98e0-73975e751201
|
191,795
|
8191c283-0816-424b-9b61-c3e1d6258a77
|
|
|
All_cells
|
58f43044-cd3c-42b8-bc0b-3498eb236359
|
156,726
|
7d66d871-091f-4602-9f42-85f86d2853e0
|
|
|
An Integrated Single Cell Meta-atlas of Human Periodontitis
|
9fcb0b73-c734-40a5-be9c-ace7eea401c9
|
105,918
|
71f4bccf-53d4-4c12-9e80-e73bfb89e398
|
|
|
An integrated cell atlas of the human lung in health and disease (full)
|
9f222629-9e39-47d0-b83f-e08d610c7479
|
2,282,447
|
6f6d381a-7701-4781-935c-db10d30de293
|
|
|
Anomalous Epithelial Variations and Ectopic Inflammatory Response in Chronic Obstructive Pulmonary Disease
|
8fbed309-d3d4-441b-b3ff-e2dcbcec2d35
|
57,918
|
dc4cd1f7-667a-4c29-ae77-9401b9700d7f
|
|
|
Autoimmunity PBMCs
|
c2a461b1-0c15-4047-9fcb-1f966fe55100
|
97,499
|
eb735cc9-d0a7-48fa-b255-db726bf365af
|
|
|
B cells from human healthy donor liver samples
|
4993d61c-1d04-4630-9c61-8d9431f39adc
|
1,250
|
0c8a364b-97b5-4cc8-a593-23c38c6f0ac5
|
|
|
BCC and Normal - scRNA-seq data
|
e7c5ba7e-4be0-4696-af50-a07d0dc7aac5
|
152,189
|
34f12de7-c5e5-4813-a136-832677f98ac8
|
|
|
Bipolar cells of the human fovea and peripheral retina
|
8623d55f-d91c-41c2-ae68-ed2072fd268d
|
25,908
|
1d1c7275-476a-49e2-9022-ad1b1c793594
|
|
|
Bone marrow organoids (BMO)
|
78c62d4e-abf1-405b-bb51-368720814529
|
31,040
|
59cd85c5-3b22-4035-b628-2a20810ad54b
|
|
|
Bone_marrow
|
a20e2f2a-e171-450a-8ddc-8935c2977ad6
|
66,613
|
854c0855-23ad-4362-8b77-6b1639e7a9fc
|
|
|
Bronchopulmonary dysplasia
|
d68a8b48-abf0-4bd5-8834-155d34ec448a
|
271,381
|
3a5dbf8a-9b3e-4309-b4c5-d8a024f83734
|
|
|
CAREBANK
|
8f4f8502-9170-4ac2-9707-3b6985ebfe5f
|
221,756
|
8c782494-01ed-491b-97b9-6f0d3b76c676
|
|
|
CD34+ Fetal Bone Marrow, Fetal Liver, Cord Blood (CITE-seq)
|
471647b3-04fe-4c76-8372-3264feb950e8
|
27,998
|
793fdaec-5067-428a-a9db-ecefe135c945
|
|
|
CITEseq of JDM PBMCs
|
a199ca73-035d-44e2-9893-4c493151db21
|
105,827
|
c672834e-c3e3-49cb-81a5-4c844be4a975
|
|
|
COMBAT project: single cell gene expression data from COVID-19, sepsis and flu patient PBMCs
|
ebc2e1ff-c8f9-466a-acf4-9d291afaf8b3
|
836,148
|
8f126edf-5405-4731-8374-b5ce11f53e82
|
|
|
Cells of the human fetal kidney
|
8dc29642-be06-46dc-a289-8075915745d4
|
17,962
|
981b0c87-76d0-4edf-b201-58c52b5cd2f0
|
|
|
Cellular and transcriptional diversity over the course of human lactation
|
0920bcb8-4b3a-4e9d-a353-56f529fd3b32
|
48,478
|
e77163ca-8214-4e86-8b37-4f65a2ddae13
|
|
|
Circulating Immune cells -- CV19 infection, vaccination and HC
|
242c6e7f-9016-4048-af70-d631f5eea188
|
189,902
|
ecb739c5-fe0d-4b48-81c6-217c4d64eec4
|
|
|
Colon
|
2872f4b0-b171-46e2-abc6-befcf6de6306
|
41,650
|
7681c7d7-0168-4892-a547-6f02a6430ace
|
|
|
Combined human neural dataset
|
b62f728b-a7eb-4889-8162-b3d457de93b9
|
43,485
|
847fafc3-41a1-4a0d-9461-0328c88e9b13
|
|
|
Combined samples
|
576f193c-75d0-4a11-bd25-8676587e6dc2
|
147,137
|
62e8f058-9c37-48bc-9200-e767f318a8ec
|
|
|
Combined single cell and single nuclei RNA-Seq data - Heart Global
|
d567b692-c374-4628-a508-8008f6778f22
|
704,296
|
3116d060-0a8e-4767-99bb-e866badea1ed
|
|
|
CortexCultures4Days11DaysInVitro
|
4b83f213-b96b-4c87-a884-9b81faddb194
|
22,370
|
644927a3-456b-4e64-b7cd-76547bfc694d
|
|
|
Cross-sectional
|
3241c34f-581a-4de3-81fe-28e3de182680
|
17,308
|
126afc71-47fb-4e9d-8aaf-9d9f61e0ac77
|
|
|
DCM/ACM heart cell atlas: All cells
|
65badd7a-9262-4fd1-9ce2-eb5dc0ca8039
|
881,081
|
e75342a8-0f3b-4ec5-8ee1-245a23e0f7cb
|
|
|
Developing Human Atlas
|
9968be68-ab65-4a38-9e1a-c9b6abece194
|
155,232
|
dfc09a93-bce0-4c77-893d-e153d1b7f9fa
|
|
|
Dissection: Amygdaloid complex (AMY) - Basolateral nuclear group (BLN) - lateral nucleus - La
|
7d3ab174-e433-40fc-a352-6fe71b1a19f9
|
28,984
|
283d65eb-dd53-496d-adb7-7570c7caa443
|
|
|
Dissection: Body of hippocampus (HiB) - Rostral DG-CA4
|
715327a6-7978-4896-ba91-69d6b04dbbfb
|
40,191
|
283d65eb-dd53-496d-adb7-7570c7caa443
|
|
|
Dissection: Cerebellum (CB) - Cerebellar Vermis - CBV
|
4976b234-9028-4b4b-8a2f-8ac59d636219
|
71,874
|
283d65eb-dd53-496d-adb7-7570c7caa443
|
|
|
Dissection: Cerebral cortex (Cx) - Middle Temporal Gyrus - MTG
|
e1f595f6-ba2c-495e-9bee-7056f116b1e4
|
107,301
|
283d65eb-dd53-496d-adb7-7570c7caa443
|
|
|
Dissection: Head of hippocampus (HiH) - Tail of Hippocampus (HiT) - Subicular cortex - Sub
|
19b21f40-db42-4a71-a0d6-913e83b17784
|
41,568
|
283d65eb-dd53-496d-adb7-7570c7caa443
|
|
|
Dissection: Midbrain (M) - Inferior colliculus and nearby nuclei - IC
|
5e5ab909-f73f-4b57-98a0-6d2c5662f6a4
|
32,306
|
283d65eb-dd53-496d-adb7-7570c7caa443
|
|
|
Dissection: Myelencephalon (medulla oblongata) (Mo) - afferent nuclei of cranial nerves in medulla oblongata - MoAN
|
07b1d7c8-5c2e-42f7-9246-26f746cd6013
|
27,210
|
283d65eb-dd53-496d-adb7-7570c7caa443
|
|
|
Dissection: Pons (Pn) - Pontine reticular formation - PnRF
|
7c1c3d47-3166-43e5-9a95-65ceb2d45f78
|
49,512
|
283d65eb-dd53-496d-adb7-7570c7caa443
|
|
|
Dissection: Thalamus (THM) - lateral nuclear complex of thalamus (LNC) - ventral posterior lateral nucleus - VPL
|
f6d9f2ad-5ec7-4d53-b7f0-ceb0e7bcd181
|
6,877
|
283d65eb-dd53-496d-adb7-7570c7caa443
|
|
|
Dissection: Thalamus (THM) - posterior nuclear complex of thalamus (PoN) - lateral geniculate nucleus (LG)
|
d2514440-d747-4d8d-b2c7-b58ef8b71fbe
|
48,856
|
283d65eb-dd53-496d-adb7-7570c7caa443
|
|
|
Endothelial cells from human healthy donor liver samples
|
4ce8d8ec-b94c-4b79-afcb-b094336d8a78
|
9,422
|
0c8a364b-97b5-4cc8-a593-23c38c6f0ac5
|
|
|
Epithelial Compartment
|
ed880090-465d-4477-9d98-70838ca288e3
|
242,613
|
9432ae97-4803-4b9f-8f64-2b41e42ad3cb
|
|
|
Esophagus Epithelium
|
b07fb54c-d7ad-4995-8bb0-8f3d8611cabe
|
87,947
|
4d74781b-8186-4c9a-b659-ff4dc4601d91
|
|
|
Extended GBmap
|
56c4912d-2bae-4b64-98f2-af8a84389208
|
1,135,677
|
999f2a15-3d7e-440b-96ae-2c806799c08c
|
|
|
Extended+ - 18485 genes
|
19053a82-9c89-4fb8-bd19-d7b1800b0b7b
|
1,596,200
|
f11cb29c-b546-4738-9bd8-66ea621a7bd5
|
|
|
Fallopian tube RNA
|
90d4a63b-5c02-43eb-acde-c49345681601
|
60,574
|
d36ca85c-3e8b-444c-ba3e-a645040c6185
|
|
|
Fallopian tube samples from pre- and post-menopausal humans
|
0436a180-cb44-47ba-8ffa-807b7a468469
|
131,218
|
380ade76-e561-49a8-afb2-0f10b39c2c72
|
|
|
Fetal Bone Marrow (10x)
|
1a2e3350-28a8-4f49-b33c-5b67ceb001f6
|
103,228
|
793fdaec-5067-428a-a9db-ecefe135c945
|
|
|
Fetal Bone Marrow (10x) - Down Syndrome
|
86282760-5099-4c71-8cdd-412dcbbbd0b9
|
16,743
|
793fdaec-5067-428a-a9db-ecefe135c945
|
|
|
Fetal Human Gut (6-11 PCW)
|
b46237d1-19c6-4af2-9335-9854634bad16
|
62,849
|
17481d16-ee44-49e5-bcf0-28c0780d8c4a
|
|
|
Fetal kidney dataset: full
|
d7dcfd8f-2ee7-4385-b9ac-e074c23ed190
|
27,197
|
120e86b4-1195-48c5-845b-b98054105eec
|
|
|
Fetal lung + Pan-fetal immune
|
350237e0-9f48-4cbd-9140-3b44495549f3
|
670,749
|
ec329aed-22bc-4d6e-8935-8282dcb1acac
|
|
|
Figure 1 - A cell atlas of human thymic development defines T cell repertoire formation
|
cda2c8cd-be1c-42e5-b2cd-162caa1c4ce7
|
255,901
|
de13e3e2-23b6-40ed-a413-e9e12d7d3910
|
|
|
Fovea - Cell Types of the Human Retina and Its Organoids at Single-Cell Resolution
|
babbf9f3-f482-45a5-ba76-c41f4c2f503e
|
19,768
|
2f4c738f-e2f3-4553-9db2-0582a38ea4dc
|
|
|
Fresh samples (single cell)
|
6c87755e-a671-41a8-9c7e-4e43b850a57b
|
157,531
|
a96133de-e951-4e2d-ace6-59db8b3bfb1d
|
|
|
Frontal cortex samples from C9-ALS, C9-ALS/FTD and age matched control brains
|
98f5d518-1e60-4307-b732-ab045cd3cbc2
|
160,658
|
aee9c366-f2fb-470b-8937-577d5d87d3fc
|
|
|
Frontal cortex samples from C9-FTD and age matched control brains
|
3b8b5de4-3aa1-4ac6-8890-8d03c8219981
|
113,106
|
aee9c366-f2fb-470b-8937-577d5d87d3fc
|
|
|
Frozen samples (single nucleus)
|
34f5307e-7b4d-4a48-b68f-2ba844c6414b
|
394,534
|
a96133de-e951-4e2d-ace6-59db8b3bfb1d
|
|
|
Full dataset of single-cell RNA-seq profiles from 9 developmental tissues across gestation (4-17 pcw)
|
fd072bc3-2dfb-46f8-b4e3-467cb3223182
|
908,046
|
b1a879f6-5638-48d3-8f64-f6592c1b1561
|
|
|
Global
|
1b9d8702-5af8-4142-85ed-020eb06ec4f6
|
329,762
|
62ef75e4-cbea-454e-a0ce-998ec40223d3
|
|
|
Global Atlas
|
de5416ef-bbfa-41f3-99d4-01a3554173f5
|
621,200
|
9432ae97-4803-4b9f-8f64-2b41e42ad3cb
|
|
|
Global dataset of infant KMT2Ar B-ALL
|
cf83c98a-3791-4537-bbde-a719f6d73c13
|
128,588
|
10ec9198-584e-4a7e-8a24-4a332915a4ef
|
|
|
HBCA - global
|
0ba636a1-4754-4786-a8be-7ab3cf760fd6
|
803,283
|
48259aa8-f168-4bf5-b797-af8e88da6637
|
|
|
HNOCA Extended: The Human Neural Organoid Atlas
|
d7f5d8d0-6150-48d7-b094-c34286ad11a1
|
1,920,454
|
de379e5f-52d0-498c-9801-0f850823c847
|
|
|
Healthy and IFALD pediatric and adult human liver tissue
|
84cfa5aa-a0d1-415e-ac47-eb66c9cf8170
|
81,001
|
ff69f0ee-fef6-4895-9f48-6c64a68c8289
|
|
|
Healthy human liver: integrated
|
ddb22b3d-a75c-4dd1-9730-dff7fc8ca530
|
73,295
|
44531dd9-1388-4416-a117-af0a99de2294
|
|
|
Heart
|
364bd0c7-f7fd-48ed-99c1-ae26872b1042
|
931,012
|
854c0855-23ad-4362-8b77-6b1639e7a9fc
|
|
|
Hepatocyte-1 cells from human healthy donor liver samples
|
234c23d0-d6cd-4612-a40d-e5811727564b
|
53,015
|
0c8a364b-97b5-4cc8-a593-23c38c6f0ac5
|
|
|
Hepatocyte-2 cells from human healthy donor liver samples
|
76af615b-12fe-4ebb-b8c6-239ad29e26e3
|
13,635
|
0c8a364b-97b5-4cc8-a593-23c38c6f0ac5
|
|
|
Hippocampus
|
74014ef8-d2d0-4cbc-8ba2-037f30753ffd
|
676,845
|
854c0855-23ad-4362-8b77-6b1639e7a9fc
|
|
|
Human CellCards Multi-Study CellRef 1.0 Atlas
|
eb499fd8-7000-419f-8854-926b9b61b11f
|
347,970
|
f86d6317-7215-409e-bfda-3f4ded3dadaa
|
|
|
Human Endothelial cells 10x scRNA-seq
|
f5be4b96-f5a3-4c3d-84ac-6f69daf744d5
|
14,903
|
b0f0b447-ac37-45b0-b1bf-5c0b7d871120
|
|
|
Human Fetal Bone Marrow (CITE-seq)
|
343ff97c-85df-494b-8400-beb937618611
|
8,978
|
793fdaec-5067-428a-a9db-ecefe135c945
|
|
|
Human Fetal Retina Atlas
|
aecc2743-4ff2-4b55-ac8c-a1ff76fc4bb4
|
108,838
|
c11009b8-b113-4a99-9890-78b2f9df9d79
|
|
|
Human HYPOMAP single-nucleus data
|
a2c833f7-b7f1-4f4d-ad31-cae478b601b7
|
433,369
|
d0941303-7ce3-4422-9249-cf31eb98c480
|
|
|
Human Immune Health Atlas
|
e522d2cd-7927-4e59-a4ed-064009569279
|
1,821,725
|
77f9d7e9-5675-49c3-abed-ce02f39eef1b
|
|
|
Human Nurr-Negative Nuclei 10x scRNA-seq
|
dea1aa78-c0a2-413f-b375-f91cce49e4d0
|
104,097
|
b0f0b447-ac37-45b0-b1bf-5c0b7d871120
|
|
|
Human Nurr-Positive Nuclei 10x scRNA-seq
|
92161459-9103-4379-ae34-73a38eee1d1d
|
80,576
|
b0f0b447-ac37-45b0-b1bf-5c0b7d871120
|
|
|
Human PBMC Glaucoma Atlas
|
30c2a6fd-d547-460f-a5e7-44c62a2af7ad
|
207,952
|
de2cde16-c8d3-4a6d-80be-1be9e879aaca
|
|
|
Human abdominal subcutaneous and intraabdominal white adipose tissue - 22 integrated samples
|
9d8e5dca-03a3-457d-b7fb-844c75735c83
|
72,335
|
6b701826-37bb-4356-9792-ff41fc4c3161
|
|
|
Human adult ureter
|
3e524d45-2265-4440-b903-3c30d51a0b17
|
30,942
|
af286675-7167-4816-a907-c72d41b73d37
|
|
|
Human dermal fibroblast atlas
|
a19d1667-a7b5-4556-9e5f-f9bfa690c0f1
|
108,440
|
3c4f0970-7614-43de-beb7-6128b3cb74ed
|
|
|
Human healthy adult skin scRNA-seq data
|
f0f0d7c4-3bec-428e-9539-c99d36548d96
|
195,739
|
73f82ac8-15cc-4fcd-87f8-5683723fce7f
|
|
|
Human lymph node slices cultured with and without ex vivo stimulation by liposomal TLR4 and QS-21 adjuvant
|
e7bd68ab-df49-44df-9b1e-8486114aeeb5
|
109,297
|
69f13fde-a4e8-4a32-8b5d-c657ae2f5e9a
|
|
|
Human lymph nodes with partial T and B cell depletion
|
edbfa04a-f1dd-496a-8237-df11d70621ca
|
77,525
|
69f13fde-a4e8-4a32-8b5d-c657ae2f5e9a
|
|
|
Human muscle cells and nuclei
|
b3c9904b-2ffd-4038-8620-ee1c5b072e9c
|
183,161
|
2d40e6a7-f2fd-49ba-9db9-6b97e4c6dad5
|
|
|
Immune Compartment
|
5a9cfb44-494a-4540-8db8-7143b1bb5a6f
|
274,555
|
9432ae97-4803-4b9f-8f64-2b41e42ad3cb
|
|
|
Immune Response mechanisms in the cerebrospinal fluid in leptomeningeal disease at single cell resolution
|
0bf30b02-db97-4560-b9cd-0fe3588892af
|
72,695
|
573e2e06-8af0-4d96-bfdd-7d64a4bb9c21
|
|
|
Immune aging project - all cells
|
1b350d0a-4535-4879-beb6-1142f3f94947
|
1,281,499
|
cc431242-35ea-41e1-a100-41e0dec2665b
|
|
|
Immunophenotyping of COVID-19 and influenza highlights the role of type I interferons in development of severe COVID-19
|
de2c780c-1747-40bd-9ccf-9588ec186cee
|
59,572
|
4f889ffc-d4bc-4748-905b-8eb9db47a2ed
|
|
|
In vitro derived T cells, from Artificial Thymic Organoid protocol
|
8d73847b-33e7-48f0-837f-e3e6579bf12d
|
10,459
|
b1a879f6-5638-48d3-8f64-f6592c1b1561
|
|
|
Individual Single-Cell RNA-seq PBMC Data from Arunachalam et al.
|
59b69042-47c2-47fd-ad03-d21beb99818f
|
49,139
|
b9fc3d70-5a72-4479-a046-c2cc1ab19efc
|
|
|
Individual Single-Cell RNA-seq PBMC Data from Schulte-Schrepping et al.
|
5e717147-0f75-4de1-8bd2-6fda01b8d75f
|
90,957
|
b9fc3d70-5a72-4479-a046-c2cc1ab19efc
|
|
|
Integrated Single-nucleus and Single-cell RNA-seq of the Adult Human Kidney
|
0b75c598-0893-4216-afe8-5414cab7739d
|
304,652
|
bcb61471-2a44-4d00-a0af-ff085512674c
|
|
|
Integrated adult and foetal hearts
|
5500c673-1610-40a0-86d9-64d987ae50e6
|
60,668
|
43b45a20-a969-49ac-a8e8-8c84b211bd01
|
|
|
Integrated cancer cell-specific single-cell RNA-seq datasets of immune checkpoint blockade-treated patients
|
7b20c613-9add-43d1-87e9-defd3d9b9f8c
|
355,941
|
61e422dd-c9cd-460e-9b91-72d9517348ef
|
|
|
Integrated transcriptomes of the 14 pancreatic islet cell types
|
e51bae9a-c747-4b64-904a-4da7cda218ab
|
245,878
|
58e85c2f-d52e-4c19-8393-b854b84d516e
|
|
|
Integration of Day 8 iPSC-Derived Embryoid Bodies with Human Embryo Published Data (10X sc-RNA-seq; Wellington et al. 2024)
|
589fe605-6d49-4abe-bff8-1675511c689a
|
41,670
|
4a2c25af-558a-45fc-bc9a-54ec44a1d63f
|
|
|
Interneuron maturation in the human entorhinal cortex
|
72822932-10f6-466f-baf3-a2c1d89364bc
|
20,470
|
cae8bad0-39e9-4771-85a7-822b0e06de9f
|
|
|
Intratumoral heterogeneity in recurrent pediatric pilocytic astrocytomas
|
be884a28-0eac-4eca-9c23-1294a93cf56e
|
35,637
|
10bf5c50-8d85-4c5f-94b4-22c1363d9f31
|
|
|
Iris
|
9a281de7-cee5-4e80-8584-1929f46f152f
|
57,422
|
63d03351-06be-478e-a0db-f7a653b6b19b
|
|
|
Krasnow Lab Human Lung Cell Atlas, 10X
|
8c42cfd0-0b0a-46d5-910c-fc833d83c45e
|
65,662
|
5d445965-6f1a-4b68-ba3a-b8f765155d3a
|
|
|
Large-scale single-cell analysis reveals critical immune characteristics of COVID-19 patients
|
9dbab10c-118d-496b-966a-67f1763a6b7d
|
1,462,702
|
0a839c4b-10d0-4d64-9272-684c49a2c8ba
|
|
|
Liver
|
1d89d081-f43d-401a-be76-bd6ef9259f4e
|
259,678
|
854c0855-23ad-4362-8b77-6b1639e7a9fc
|
|
|
Longitudinal
|
5b25a46f-f1cf-4caa-9e10-6ab81dfe9174
|
12,822
|
126afc71-47fb-4e9d-8aaf-9d9f61e0ac77
|
|
|
Lung Parenchyma
|
2672b679-8048-4f5e-9786-f1b196ccfd08
|
57,019
|
4d74781b-8186-4c9a-b659-ff4dc4601d91
|
|
|
MSK SPECTRUM – All cells
|
b252b015-b488-4d5c-b16e-968c13e48a2c
|
927,205
|
4796c91c-9d8f-4692-be43-347b1727f9d8
|
|
|
Macrophage cells from human healthy donor liver samples
|
b550fd94-97e0-42e2-90f7-7434781ea2f8
|
11,127
|
0c8a364b-97b5-4cc8-a593-23c38c6f0ac5
|
|
|
Mature kidney dataset: full
|
9ea768a2-87ab-46b6-a73d-c4e915f25af3
|
40,268
|
120e86b4-1195-48c5-845b-b98054105eec
|
|
|
Midgestational human neocortex cells
|
39ed7d98-676d-4b8d-9d0a-0f3b60914ead
|
118,647
|
e02201d7-f49f-401f-baf0-1eb1406546c0
|
|
|
Modeling Hepatoblastoma: Identification of Distinct Tumor Cell Populations and Key Genetic Mechanisms through Single Cell Sequencing
|
ec6ceff8-c8bc-488d-b6bf-30df2fa92169
|
67,110
|
a261413d-835b-4f1e-ab0c-dada55ea6afd
|
|
|
Multiomics single-cell analysis of human pancreatic islets reveals novel cellular states in health and type 1 diabetes
|
37b21763-7f0f-41ae-9001-60bad6e2841d
|
69,645
|
51544e44-293b-4c2b-8c26-560678423380
|
|
|
Nasal scRNA-Seq Dataset
|
e3cc5b85-62ec-4add-bee3-73c8fd11e59d
|
34,833
|
af500bec-a5d6-4569-9f50-4314f2e7a011
|
|
|
Natural killer T cells from human healthy donor liver samples
|
43560d7c-acd6-4ede-830d-c9ffc6cd0862
|
16,665
|
0c8a364b-97b5-4cc8-a593-23c38c6f0ac5
|
|
|
Non-neuronal cells of the human fovea and peripheral retina
|
bc7260e0-54cf-4b0b-823d-93f5b850f757
|
22,125
|
1d1c7275-476a-49e2-9022-ad1b1c793594
|
|
|
Non-pregnant Uterus (Endometrium - All)
|
9ddea8d9-cc4c-420a-90f6-880996f808d4
|
100,307
|
32f2fd23-ec74-486f-9544-e5b2f41725f5
|
|
|
Non-pregnant Uterus (Endometrium - Organoid)
|
76150f40-1989-4977-9e23-696e72d59d9e
|
118,672
|
32f2fd23-ec74-486f-9544-e5b2f41725f5
|
|
|
Occipital cortex samples from C9-ALS, C9-ALS/FTD and age matched control brains
|
0bc7235a-ae5a-479d-a487-510435377e55
|
120,807
|
aee9c366-f2fb-470b-8937-577d5d87d3fc
|
|
|
Oligodendrocytes in MS
|
dc30c3ec-46d6-4cd8-8ec1-b544a3d0f503
|
17,799
|
16c1e722-96ae-4bf6-b408-cd7f8918484f
|
|
|
Oral and Craniofacial Atlas
|
cb252df6-6e49-4553-abd1-495a00006fb1
|
246,103
|
065ad318-59fd-4f8c-b4b1-66caa7665409
|
|
|
Organoid - Cell Types of the Human Retina and Its Organoids at Single-Cell Resolution
|
7e7f63c5-d964-40be-83de-ecbcccafd233
|
43,857
|
2f4c738f-e2f3-4553-9db2-0582a38ea4dc
|
|
|
Ovarian tissue from donor 5
|
d3d4baff-d142-4f13-acc6-96a4ef6a3e95
|
6,339
|
6686ada5-43a8-40b6-9a05-6894503606db
|
|
|
PBMC
|
2a498ace-872a-4935-984b-1afa70fd9886
|
422,220
|
03f821b4-87be-4ff4-b65a-b5fc00061da7
|
|
|
PBMCs
|
fa8605cf-f27e-44af-ac2a-476bee4410d3
|
59,506
|
0434a9d4-85fd-4554-b8e3-cf6c582bb2fa
|
|
|
PERIHEART
|
f1606894-59df-4794-a37f-baa7c6fb6de1
|
392,819
|
8c782494-01ed-491b-97b9-6f0d3b76c676
|
|
|
Paediatric Human Gut (4-14y)
|
8e47ed12-c658-4252-b126-381df8d52a3d
|
22,502
|
17481d16-ee44-49e5-bcf0-28c0780d8c4a
|
|
|
Pancreas
|
31f657dc-1875-4c4b-a5ca-ce63b3ef3a82
|
121,916
|
854c0855-23ad-4362-8b77-6b1639e7a9fc
|
|
|
Periphery - Cell Types of the Human Retina and Its Organoids at Single-Cell Resolution
|
ccfdcad0-7104-46b9-addf-fd66a2a15907
|
34,723
|
2f4c738f-e2f3-4553-9db2-0582a38ea4dc
|
|
|
Photoreceptor cells of the human fovea and peripheral retina
|
7b75b2c4-6d99-40be-9a61-391455d859e6
|
9,070
|
1d1c7275-476a-49e2-9022-ad1b1c793594
|
|
|
Placenta Infection
|
3966ba97-beb8-4d0b-9954-d3775cd2cd61
|
158,978
|
5f80428b-222d-450b-a7de-a408186ceb86
|
|
|
Retina
|
af8b241a-c72c-4470-b1a4-80e7336c6ab6
|
4,335
|
f8057c47-fcd8-4fcf-88b0-e2f930080f6e
|
|
|
Retina
|
d5c67a4e-a8d9-456d-a273-fa01adb1b308
|
19,694
|
3472f32d-4a33-48e2-aad5-666d4631bf4c
|
|
|
SL057
|
145dcf6a-2461-4fa3-a0af-7fc56db0bd33
|
123,236
|
113a558a-e96e-4643-81db-140e95c58578
|
|
|
Second Trimester Human Developing Brain Regions and Cortical Areas
|
ae4f8ddd-cac9-4172-9681-2175da462f2e
|
457,965
|
c8565c6a-01a1-435b-a549-f11b452a83a8
|
|
|
Sex-Specific Control of Human Heart Maturation by the Progesterone Receptor.
|
99e317c0-1fab-4f73-b511-859e752fd1c3
|
51,176
|
68e7e5b7-4dc9-4609-832e-7656aa6182ba
|
|
|
Single Cell Sequencing of Human PBMCs in Clonal Hematopoeisis of Indeterminant Potential
|
19e46756-9100-4e01-8b0e-23b557558a4c
|
66,985
|
0aab20b3-c30c-4606-bd2e-d20dae739c45
|
|
|
Single cell RNA sequencing of bone marrow mononuclear cells from healthy donors and B-cell lymphoma patients following CD19 CAR T-cell therapy
|
965386e9-1e4f-466d-bf59-ebdca4b66b9b
|
92,676
|
26b5b4f6-828c-4791-b4a3-abb19e3b1952
|
|
|
Single cell RNA sequencing of follicular lymphoma
|
99950e99-2758-41d2-b2c9-643edcdf6d82
|
137,147
|
968834a0-1895-40df-8720-666029b3bbac
|
|
|
Single cell RNA-seq data from normal adult kidney tissue
|
0b4a15a7-4e9e-4555-9733-2423e5c66469
|
48,783
|
a98b828a-622a-483a-80e0-15703678befd
|
|
|
Single cell RNA-seq of human heart cells
|
2e9d2f32-4cfb-49b5-b990-cbf4c241214e
|
49,359
|
20eea6c8-9d64-42c9-9b6f-c11b5249e0e9
|
|
|
Single cell transcriptomic profiling identifies molecular phenotypes of newborn human lung cells
|
6e00ccf7-0749-46ef-a999-dba785630d52
|
5,499
|
28e9d721-6816-48a2-8d0b-43bf0b0c0ebc
|
|
|
Single nucleus transcriptomic atlas of human foetal tendon
|
f641d68a-e877-4bb8-afd7-b8fa3921d461
|
91,859
|
7b9ae565-a781-433d-98d4-430394e7802a
|
|
|
Single-Cell Transcriptome Profiling of Immature Human Thymocytes
|
11ff73e8-d3e4-4445-9309-477a2c5be6f6
|
71,732
|
83ed3be8-4cb9-43e6-9aaa-3fbbf5d1bd3a
|
|
|
Single-cell RNA-seq analysis of Interstitial Lung Disease (ILD) subtypes
|
f14bc322-1322-4184-8d16-409557525ea5
|
471,905
|
07e12576-b41b-4350-adfc-059bfc4328ea
|
|
|
Single-cell RNA-seq of the Adult Human Kidney (Version 1.5)
|
dea717d4-7bc0-4e46-950f-fd7e1cc8df7d
|
225,177
|
0f528c8a-a25c-4840-8fa3-d156fa11086f
|
|
|
Single-cell analysis of prenatal and postnatal human cortical development
|
1a38e762-2465-418f-b81c-6a4bce261c34
|
709,372
|
bacccb91-066d-4453-b70e-59de0b4598cd
|
|
|
Single-cell atlas of 24 hormone therapy naive localised prostate cancers
|
881e0e6b-a185-45f1-9b56-81606e91e7ff
|
68,322
|
bdac7a53-fe34-4f04-8c46-f9bd5297c099
|
|
|
Single-cell atlas of peripheral immune response to SARS-CoV-2 infection
|
456e8b9b-f872-488b-871d-94534090a865
|
44,721
|
a72afd53-ab92-4511-88da-252fb0e26b9a
|
|
|
Single-cell eQTL mapping identifies cell type specific genetic control of autoimmune disease
|
3faad104-2ab8-4434-816d-474d8d2641db
|
1,248,980
|
dde06e0f-ab3b-46be-96a2-a8082383c4a1
|
|
|
Single-cell multi-omics analysis of the immune response in COVID-19
|
c7775e88-49bf-4ba2-a03b-93f00447c958
|
647,366
|
ddfad306-714d-4cc0-9985-d9072820c530
|
|
|
Single-cell multiomic profiling of human lungs across age groups
|
3de0ad6d-4378-4f62-b37b-ec0b75a50d94
|
46,500
|
625f6bf4-2f33-4942-962e-35243d284837
|
|
|
Single-cell sequencing links multiregional immune landscapes and tissue-resident T cells in ccRCC to tumor topology and therapy efficacy
|
bd65a70f-b274-4133-b9dd-0d1431b6af34
|
167,283
|
3f50314f-bdc9-40c6-8e4a-b0901ebfbe4c
|
|
|
Single-cell transcriptomes of the human skin reveal age-related loss of fibroblast priming
|
124744b8-4681-474a-9894-683896122708
|
15,457
|
c353707f-09a4-4f12-92a0-cb741e57e5f0
|
|
|
Single-cell transcriptomic datasets of Renal cell carcinoma patients
|
5af90777-6760-4003-9dba-8f945fec6fdf
|
270,855
|
f7cecffa-00b4-4560-a29a-8ad626b8ee08
|
|
|
Single-cell transcriptomics of human T cells reveals tissue and activation signatures in health and disease
|
01209dce-3575-4bed-b1df-129f57fbc031
|
51,876
|
24d42e5e-ce6d-45ff-a66b-a3b3b715deaf
|
|
|
Single-nucleus RNA-seq of the Adult Human Kidney (Version 1.5)
|
a12ccb9b-4fbe-457d-8590-ac78053259ef
|
304,989
|
0f528c8a-a25c-4840-8fa3-d156fa11086f
|
|
|
Single-nucleus cross-tissue molecular reference maps to decipher disease gene function
|
4ed927e9-c099-49af-b8ce-a2652d069333
|
209,126
|
a3ffde6c-7ad2-498a-903c-d58e732f7470
|
|
|
Single-nucleus transcriptome data from the dlPFC: Human
|
3c361813-5d5e-4868-bfe5-e7591e7b5381
|
172,120
|
e1fa9900-3fc9-4b57-9dce-c95724c88716
|
|
|
Single-nucleus transcriptomic analysis of human dorsal root ganglion neurons
|
d973ea15-3722-4bc8-a0e8-1d956d26e203
|
1,837
|
741abcf7-af4b-425d-88db-7e0b0d845719
|
|
|
Single-soma transcriptomics of tangle-bearing neurons in Alzheimer’s disease - Excitatory
|
85c60876-7f35-40c5-a256-7808d84c6ba5
|
96,129
|
b953c942-f5d8-434f-9da7-e726ba7c1481
|
|
|
Skeletal_muscle
|
15d374d6-0dfd-4d8e-ade7-81f73dc921ee
|
201,575
|
854c0855-23ad-4362-8b77-6b1639e7a9fc
|
|
|
Sound Life Older Adult Females, CMV-negative
|
3cb646ab-d411-4e5b-89eb-082a786c953b
|
1,350,748
|
e9360edf-b0b7-4e01-bce8-e596814f13e7
|
|
|
Sound Life Older Adult Females, CMV-positive
|
aa32098f-f7b0-43f2-a00a-601d190aae94
|
2,596,111
|
e9360edf-b0b7-4e01-bce8-e596814f13e7
|
|
|
Sound Life Older Adult Males, CMV-negative
|
47e00f43-6176-44a5-b4d1-f88a1920fcab
|
1,750,565
|
e9360edf-b0b7-4e01-bce8-e596814f13e7
|
|
|
Sound Life Older Adult Males, CMV-positive
|
0c0c49a2-b96b-432f-98a4-1decf9929149
|
1,322,061
|
e9360edf-b0b7-4e01-bce8-e596814f13e7
|
|
|
Sound Life Young Adult Females, CMV-negative
|
46104f0b-9af5-466a-ae0f-56b8dc1969a2
|
2,616,824
|
e9360edf-b0b7-4e01-bce8-e596814f13e7
|
|
|
Sound Life Young Adult Females, CMV-positive
|
0a8e3443-c3e2-4918-84db-0495657d9175
|
1,234,234
|
e9360edf-b0b7-4e01-bce8-e596814f13e7
|
|
|
Sound Life Young Adult Males, CMV-negative
|
420d0f5d-b7ba-4b1e-88d0-44e9f733febd
|
1,712,244
|
e9360edf-b0b7-4e01-bce8-e596814f13e7
|
|
|
Sound Life Young Adult Males, CMV-positive
|
5fde5c9c-5b1e-4df5-982a-3f8e7635161f
|
1,206,761
|
e9360edf-b0b7-4e01-bce8-e596814f13e7
|
|
|
Spatiotemporal analysis of human intestinal development at single-cell resolution: All cells
|
9d5df009-eb76-43a3-b6cd-22017cc53700
|
76,592
|
60358420-6055-411d-ba4f-e8ac80682a2e
|
|
|
Spleen
|
644a578d-ffdc-446b-9679-e7ab4c919c13
|
94,256
|
4d74781b-8186-4c9a-b659-ff4dc4601d91
|
|
|
Stromal Compartment
|
75011e96-ba37-4977-a539-fbf9f66a5e37
|
104,032
|
9432ae97-4803-4b9f-8f64-2b41e42ad3cb
|
|
|
Stromal cell diversity associated with immune evasion in human triple‐negative breast cancer
|
68b6114f-e990-4033-bfb3-c35536633aaa
|
24,271
|
16a4f6bc-2457-4e21-9b7a-9ba17c7b66c4
|
|
|
Subpallial germinal zones and the developing human entorhinal cortex
|
ecce9688-66ea-4600-98f7-84aed7421c01
|
124,917
|
cae8bad0-39e9-4771-85a7-822b0e06de9f
|
|
|
TI epithelial
|
fe4b89d5-461e-440c-a5a8-621b37b122c0
|
154,136
|
5c868b6f-62c5-4532-9d7f-a346ad4b50a7
|
|
|
TI immune
|
a37f857c-779f-464e-9310-3db43a1811e7
|
201,072
|
5c868b6f-62c5-4532-9d7f-a346ad4b50a7
|
|
|
TI stromal
|
0f4865d5-8000-4f68-8ac7-f5efea9e5e70
|
75,695
|
5c868b6f-62c5-4532-9d7f-a346ad4b50a7
|
|
|
Tabula Sapiens - All Cells
|
53d208b0-2cfd-4366-9866-c3c6114081bc
|
1,136,218
|
e5f58829-1a66-40b5-a624-9046778e74f5
|
|
|
The regulatory landscapes of the human ovarian aging(snRNA-seq)
|
3a702020-cf66-4ef5-9d11-4a5e835b7efb
|
42,568
|
ce781ec4-393a-4902-94a0-5a1ca0b600ca
|
|
|
The single-cell lung cancer atlas (LuCA) -- extended atlas
|
1e6a6ef9-7ec9-4c90-bbfb-2ad3c3165fd1
|
1,283,972
|
edb893ee-4066-4128-9aec-5eb2b03f8287
|
|
|
Time-resolved Systems Immunology Reveals a Late Juncture Linked to Fatal COVID-19: Adaptive Cells
|
21d3e683-80a4-4d9b-bc89-ebb2df513dde
|
246,964
|
ed9185e3-5b82-40c7-9824-b2141590c7f0
|
|
|
Time-resolved Systems Immunology Reveals a Late Juncture Linked to Fatal COVID-19: Innate Cells
|
30cd5311-6c09-46c9-94f1-71fe4b91813c
|
125,117
|
ed9185e3-5b82-40c7-9824-b2141590c7f0
|
|
|
Total - Cells of the human intestinal tract mapped across space and time
|
80a2c5b6-02e7-4fc0-9f12-179f5247c1bc
|
428,469
|
e33ffcd3-7cbf-4b8c-b0f4-85587ad5019a
|
|
|
Trabecular Meshwork and Corneal Scleral wedge
|
d967b47c-a9e6-4337-b2f4-977f690cb67f
|
52,309
|
63d03351-06be-478e-a0db-f7a653b6b19b
|
|
|
Transcriptional connectivity of regulatory T cells in the tumor microenvironment informs novel combination cancer therapy strategies
|
d41f45c1-1b7b-4573-a998-ac5c5acb1647
|
82,991
|
efd94500-1fdc-4e28-9e9f-a309d0154e21
|
|
|
Transcriptional responses of the human dorsal striatum in opioid use disorder implicates cell type-specifc programs
|
c893ddc3-f25b-45e2-8c9e-155918b4261c
|
98,848
|
cec4ef8e-1e70-49a2-ae43-1e6bf1fd5978
|
|
|
Transcriptome of human posterior ocular segment
|
9f1a899f-05a0-44c5-8aa9-39df61ae4324
|
139,978
|
7855daa4-3f34-4aae-b65a-87720c02e7cd
|
|
|
Type I interferon autoantibodies are associated with systemic immune alterations in patients with COVID-19
|
01ad3cd7-3929-4654-84c0-6db05bd5fd59
|
600,929
|
7d7cabfd-1d1f-40af-96b7-26a0825a306d
|
|
|
UMAP of Cancer Data integration
|
7bb64315-9e5a-41b9-9235-59acf9642a3e
|
293,823
|
a18474f4-ff1e-4864-af69-270b956cee5b
|
|
|
Whole Taxonomy - DLPFC: Seattle Alzheimer's Disease Atlas (SEA-AD)
|
6f7fd0f1-a2ed-4ff1-80d3-33dde731cbc3
|
1,395,601
|
1ca90a2d-2943-483d-b678-b809bf464c30
|
|
|
Whole Taxonomy - MTG: Seattle Alzheimer's Disease Atlas (SEA-AD)
|
c2876b1b-06d8-4d96-a56b-5304f815b99a
|
1,378,211
|
1ca90a2d-2943-483d-b678-b809bf464c30
|
|
|
all cells
|
cff99df2-4904-44f7-9173-ff837f95606e
|
424,528
|
0d35c0fd-ef0b-4b70-bce6-645a4660e5fa
|
|
|
ccRCC - Single-cell analyses of renal cell cancers reveal insights into tumor microenvironment, cell of origin, and therapy response
|
be39785b-67cb-4177-be19-a40ee3747e45
|
20,509
|
1df8c90d-d299-4b2e-a54d-a5a80f36e780
|
|
|
colon immune
|
518d9049-2a76-44f8-8abc-1e2b59ab5ba1
|
152,509
|
5c868b6f-62c5-4532-9d7f-a346ad4b50a7
|
|
|
fetal and neonatal human small intestine cells
|
3f32121d-126b-4e8d-9f69-d86502d2a1b1
|
36,359
|
7651ac1a-f947-463a-9223-a9e408a41989
|
|
|
human cHSPCs - Illumina
|
d9f3a82c-24bb-4277-b715-8ec92a33dd32
|
495,763
|
5542eeb0-96ef-4ab9-95ea-eb6abc178461
|
|
|
human cHSPCs - Ultima
|
4a5b00e0-1ba3-4fd4-af89-d3512eb20720
|
516,121
|
5542eeb0-96ef-4ab9-95ea-eb6abc178461
|
|
|
human endoderm organoid cell atlas
|
6725ee8e-ef5b-4e68-8901-61bd14a1fe73
|
806,646
|
6282a908-f162-44a2-99a3-8a942e4271b2
|
|
|
human_limb_scRNAseq
|
e595c979-c2de-4dad-8c02-8334a8e56de6
|
125,955
|
4fefa187-5d14-4f1e-915b-c892ed320aab
|
|
|
immune cells
|
1e5bd3b8-6a0e-4959-8d69-cafed30fe814
|
35,699
|
03cdc7f4-bd08-49d0-a395-4487c0e5a168
|
|
|
multiplexed scRNA-seq of 1.2 million PBMCs from adult lupus samples
|
218acb0f-9f2f-4f76-b90b-15a4b7c7f629
|
1,263,676
|
436154da-bcf1-4130-9c8b-120ff9a888f2
|
|
|
normal - Single-cell analyses of renal cell cancers reveal insights into tumor microenvironment, cell of origin, and therapy response
|
f801b7a9-80a6-4d09-9161-71474deb58ae
|
6,044
|
1df8c90d-d299-4b2e-a54d-a5a80f36e780
|
|
|
nygc multimodal pbmc
|
ed5d841d-6346-47d4-ab2f-7119ad7e3a35
|
161,764
|
b0cf0afa-ec40-4d65-b570-ed4ceacc6813
|
|
|
plaque atlas
|
72955cdb-bd92-4135-aa52-21f33f9640db
|
259,116
|
db70986c-7d91-49fe-a399-a4730be394ac
|
|
|
progressive_plasticity_during_crc_metastasis_epithelial
|
829a3cd1-a466-49f1-b2e9-d3f6b7f392e2
|
47,107
|
1cbfb478-2c7f-4d15-b522-9f74e9fe52a8
|
|
|
scRNA-seq analysis of human fallopian tubes in healthy Vs. hydrosalphinx states
|
b693123e-95e6-4331-8b50-f367489a767e
|
77,536
|
fc77d2ae-247d-44d7-aa24-3f4859254c2c
|
|
|
scRNA-seq data - all cells
|
842c6f5d-4a94-4eef-8510-8c792d1124bc
|
714,331
|
4195ab4c-20bd-4cd3-8b3d-65601277e731
|
|
|
scRNA-seq data analysis of endothelium-enriched mesenteric arterial tissues from human donors
|
42b6a476-c51d-4f8b-b68b-44941b3a11bf
|
11,243
|
db468083-041c-41ca-8f6f-bf991a070adf
|
|
|
scRNA-seq for GZMK+CD8+ T cells Target A Specific Acinar Cell Type in Sjögren’s Disease
|
df1edb87-e512-43ae-b5f4-cb179cfc2bb4
|
94,227
|
21bbfaec-6958-46bc-b1cd-1535752f6304
|
|
|
scRNA-seq of foveal and parafoveal retina
|
f5be9ed2-5d41-4a52-91e4-4ff24ff84900
|
34,323
|
e9c73b68-e980-49c2-8d0d-1c9cab21507e
|
|
|
scRNA-seq of human ocular anterior segment: trabecular meshwork and ciliary body
|
8560f809-5794-484e-9152-b63efa91d134
|
332,995
|
0cbf8ef8-87bd-4b51-8521-ec3f68183e11
|
|
|
scRNA-seq of human ocular surface: cornea, limbus, sclera – fetal data included
|
8ef06ea4-8d0f-4303-a652-7d4604402b1f
|
815,769
|
0f7d022a-46c7-4e64-be4c-e34adbb78089
|
|
|
scRNA-seq of human of the human retinal pigment epithelium and the choroid
|
5ed90bc0-12f3-4354-b314-0ce0dbb96458
|
182,151
|
48c15b0c-6039-4e0f-9668-b6b3c0b830ad
|
|
|
scRNA-seq of lung biopsies from six human lung transplant cases
|
429d21fd-bb9a-4abf-922b-c15138524bdd
|
108,613
|
9f29fcd0-7075-4420-bd61-e2ec1aebad89
|
|
|
scRNA-seq of vascular tissue
|
43245158-5ae1-4e71-a9a6-67eef49c26bc
|
113,304
|
8f17ac63-aaba-44b5-9b78-60f121da4c2f
|
|
|
snRNA-seq data - all cells
|
7f08cbcc-5790-4576-8478-10e9a999b316
|
117,346
|
4195ab4c-20bd-4cd3-8b3d-65601277e731
|
|
|
snRNA-seq data for human cerebella from 9-12 developmental stages
|
bab7432a-5cfe-45ea-928c-422d03c45cdd
|
180,956
|
72d37bc9-76cc-442d-9131-da0e273862db
|
|
|
snRNA-seq of all cells in high-risk Neuroblastoma before and after chemotherapy
|
afae4675-434d-4e89-b5ce-2854c9dc38a3
|
372,619
|
cee845e3-ec04-4781-9e2a-28734bb4f7ba
|
|
|
snRNA-seq of human ocular anterior segment: trabecular meshwork and ciliary body
|
978a566a-dc27-478d-b306-26daba116c1f
|
1,102,250
|
0cbf8ef8-87bd-4b51-8521-ec3f68183e11
|
|
|
snRNA-seq of human ocular surface: cornea, limbus, sclera
|
8058d760-09e6-4bdd-86a1-36917ffca3ef
|
147,484
|
0f7d022a-46c7-4e64-be4c-e34adbb78089
|
|
|
snRNA-seq of human of the human retinal pigment epithelium and the choroid - fetal data included
|
1a9f3b38-b86d-416d-bbdc-9058ad3ff42d
|
851,993
|
48c15b0c-6039-4e0f-9668-b6b3c0b830ad
|
|
|
snRNA-seq of human optic nerve and optic nerve head - all cells
|
3c364ffe-d599-44d5-a77f-6c5fd7038cf6
|
959,629
|
05e3d0fc-c9dd-4f14-9163-2b242b3bb5c2
|
|
|
snRNA-seq of human retina - all cells
|
d6505c89-c43d-4c28-8c4f-7351a5fd5528
|
3,177,310
|
4c6eaf5c-6d57-4c76-b1e9-60df8c655f1e
|
|
|
snRNA-seq of human subcutaneous adipose tissue - all cells
|
821a8e3e-87ec-41ee-bd69-cd4377057d38
|
37,879
|
ba84c7ba-8d8c-4720-a76e-3ee37dc89f0b
|
|
|
snRNA-seq of human visceral adipose tissue - all cells
|
96baf2e0-60c5-48cf-b1d1-cba657851507
|
83,731
|
ba84c7ba-8d8c-4720-a76e-3ee37dc89f0b
|
|
|
snRNA-seq of the human quadriceps tendon
|
acd544d0-4d8b-46c7-98b3-fc48f7e6fdb7
|
12,808
|
579203e2-182f-47bc-8230-7aa47247e2a4
|
|
|
thymus scRNA-seq atlas
|
29244e1d-02e6-4133-b411-516ef7474638
|
482,651
|
fc19ae6c-d7c1-4dce-b703-62c5d52061b4
|
|
|
white matter - all cells
|
c05e6940-729c-47bd-a2a6-6ce3730c4919
|
45,528
|
9d63fcf1-5ca0-4006-8d8f-872f3327dbe9
|
|
|
wilms
|
ea01c125-67a7-4bd3-a8b0-e1b53a011b7e
|
4,636
|
13d1c580-4b17-4b2e-85c4-75b36917413f
|