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J Extracell Vesicles
JSON
ISSN
2001-3078
ISSN-L
2001-3078
IUID
bbedc9b060714dc8ae6f76579db84137
Modified
2020-11-27T13:14:08.602Z
Created
2019-12-02T17:20:34.887Z
Year 2022
PubMed
DOI
Crossref
Characterizing single extracellular vesicles by droplet barcode sequencing for protein analysis.
Banijamali M, Höjer P, Nagy A, ..., Viktorsson K, Ahmadian A
J Extracell Vesicles
11
(11) e12277 [2022-11-00; online 2022-11-05]
NGI Short read [Service]
NGI Stockholm (Genomics Applications) [Service]
NGI Stockholm (Genomics Production) [Service]
National Genomics Infrastructure [Service]
PubMed
DOI
Crossref
The dark side of foetal bovine serum in extracellular vesicle studies.
Urzì O, Bagge RO,
Crescitelli R
J Extracell Vesicles
11
(10) e12271 [2022-10-00; online 2022-10-11]
Glycoproteomics [Service]
PubMed
DOI
Crossref
Tetraspanins distinguish separate extracellular vesicle subpopulations in human serum and plasma - Contributions of platelet extracellular vesicles in plasma samples.
Karimi N
, Dalirfardouei R, Dias T, Lötvall J,
Lässer C
J Extracell Vesicles
11
(5) e12213 [2022-05-00; online 2022-05-08]
Glycoproteomics [Service]
Year 2021
PubMed
DOI
Crossref
Molecular evaluation of five different isolation methods for extracellular vesicles reveals different clinical applicability and subcellular origin.
Veerman RE, Teeuwen L,
Czarnewski P
, ...,
Gabrielsson S
,
Eldh M
J Extracell Vesicles
10
(9) e12128 [2021-07-00; online 2021-07-22]
Bioinformatics Compute and Storage [Service]
Bioinformatics Long-term Support WABI [Collaborative]
Bioinformatics Support, Infrastructure and Training [Collaborative]
Global Proteomics and Proteogenomics [Technology development]
PubMed
DOI
Crossref
Synthetic bacterial vesicles combined with tumour extracellular vesicles as cancer immunotherapy.
Park KS, Svennerholm K, Crescitelli R, ..., Gribonika I, Lötvall J
J Extracell Vesicles
10
(9) e12120 [2021-07-00; online 2021-07-03]
Glycoproteomics [Service]
Integrated Microscopy Technologies Gothenburg [Service]
Year 2020
PubMed
DOI
Crossref
Subpopulations of extracellular vesicles from human metastatic melanoma tissue identified by quantitative proteomics after optimized isolation.
Crescitelli R
,
Lässer C
,
Jang SC
, ...,
Olofsson Bagge R
,
Lötvall J
J Extracell Vesicles
9
(1) 1722433 [2020-02-11; online 2020-02-11]
Integrated Microscopy Technologies Gothenburg [Service]
Year 2019
PubMed
DOI
Crossref
Endosomal signalling via exosome surface TGFβ-1
Shelke GV, Yin Y, Jang SC, ..., Nilsson JA, Lötvall J
J Extracell Vesicles
8
(1) 1650458 [2019-12-01; online 2019-09-20]
Glycoproteomics [Service]
Integrated Microscopy Technologies Gothenburg [Service]
Integrated Microscopy Technologies Stockholm
PubMed
DOI
Crossref
Mitochondrial protein enriched extracellular vesicles discovered in human melanoma tissues can be detected in patient plasma
Jang SC, Crescitelli R, Cvjetkovic A, ..., Kalluri R, Lötvall J
J Extracell Vesicles
8
(1) 1635420 [2019-12-01; online 2019-08-27]
Glycoproteomics [Service]
Integrated Microscopy Technologies Gothenburg [Service]
PubMed
DOI
Crossref
DNA analysis of low- and high-density fractions defines heterogeneous subpopulations of small extracellular vesicles based on their DNA cargo and topology.
Lázaro-Ibáñez E, Lässer C, Shelke GV, ..., García-Rodríguez A, Lötvall J
J Extracell Vesicles
8
(1) 1656993 [2019-08-27; online 2019-08-27]
Integrated Microscopy Technologies Gothenburg [Service]
NGI Stockholm (Genomics Applications) [Service]
NGI Stockholm (Genomics Production) [Service]
National Genomics Infrastructure [Service]
SciLifeLab Data Centre
Publications
9.5.0