Gene description for TSG101 |
Gene name |
tumor susceptibility 101 |
Gene symbol |
TSG101 |
Other names/aliases |
TSG10 VPS23 |
Species |
Homo sapiens |
Experiment description of studies that identified TSG101 in Plasma |
1
|
Experiment ID | 1533 |
Identified molecule | protein
|
Extracellular vesicle type | Exosomes |
MISEV | Small EVs |
Identification method | Western blotting
|
PubMed ID |
33589572
|
Organism | Homo sapiens |
Experiment description | Exosomal long non-coding RNA LINC00662 promotes non-small cell lung cancer progression by miR-320d/E2F1 axis |
Authors | Lv X, Lian Y, Liu Z, Xiao J, Zhang D, Yin X. |
Journal name |
Aging
|
Publication year | 2021 |
Sample | Plasma |
Sample name | Non-small cell lung cancer |
Isolation/purification methods | Centrifugation ExoQuick Kit |
Flotation density | - |
Molecules identified in the study | Protein lncRNA |
Methods used in the study | qRT-PCR Western blotting |
EV-TRACK |
-
|
|
|
2
|
Experiment ID | 1534 |
Identified molecule | protein
|
Extracellular vesicle type | Exosomes |
MISEV | Small EVs |
Identification method | Western blotting
|
PubMed ID |
33589572
|
Organism | Homo sapiens |
Experiment description | Exosomal long non-coding RNA LINC00662 promotes non-small cell lung cancer progression by miR-320d/E2F1 axis |
Authors | Lv X, Lian Y, Liu Z, Xiao J, Zhang D, Yin X. |
Journal name |
Aging
|
Publication year | 2021 |
Sample | Plasma |
Sample name | Healthy |
Isolation/purification methods | Centrifugation ExoQuick Kit |
Flotation density | - |
Molecules identified in the study | Protein lncRNA |
Methods used in the study | qRT-PCR Western blotting |
EV-TRACK |
-
|
|
|
3
|
Experiment ID | 1961 |
Identified molecule | protein
|
Extracellular vesicle type | Exomeres |
MISEV | EV-like nanoparticles |
Identification method | Western blotting
|
PubMed ID |
36417505
|
Organism | Homo sapiens |
Experiment description | A solution to the biophysical fractionation of extracellular vesicles: Acoustic Nanoscale Separation via Wave-pillar Excitation Resonance (ANSWER) |
Authors | Zhang J, Chen C, Becker R, Rufo J, Yang S, Mai J, Zhang P, Gu Y, Wang Z, Ma Z, Xia J, Hao N, Tian Z, Wong DTW, Sadovsky Y, Lee LP, Huang TJ. |
Journal name |
Sci Adv
|
Publication year | 2022 |
Sample | Plasma |
Sample name | Plasma |
Isolation/purification methods | Acoustic nanoscale separation via wave-pillar excitation resonance (ANSWER) |
Flotation density | - |
Molecules identified in the study | Protein |
Methods used in the study | Western blotting |
EV-TRACK |
-
|
|
|
4
|
Experiment ID | 1962 |
Identified molecule | protein
|
Extracellular vesicle type | Exosomes |
MISEV | Small EVs |
Identification method | Western blotting
|
PubMed ID |
36417505
|
Organism | Homo sapiens |
Experiment description | A solution to the biophysical fractionation of extracellular vesicles: Acoustic Nanoscale Separation via Wave-pillar Excitation Resonance (ANSWER) |
Authors | Zhang J, Chen C, Becker R, Rufo J, Yang S, Mai J, Zhang P, Gu Y, Wang Z, Ma Z, Xia J, Hao N, Tian Z, Wong DTW, Sadovsky Y, Lee LP, Huang TJ. |
Journal name |
Sci Adv
|
Publication year | 2022 |
Sample | Plasma |
Sample name | Plasma |
Isolation/purification methods | Acoustic nanoscale separation via wave-pillar excitation resonance (ANSWER) |
Flotation density | - |
Molecules identified in the study | Protein |
Methods used in the study | Western blotting |
EV-TRACK |
-
|
|
|
5
|
Experiment ID | 1974 |
Identified molecule | protein
|
Extracellular vesicle type | Extracellular vesicles |
MISEV | Small EVs |
Identification method | Western blotting
|
PubMed ID |
35915084
|
Organism | Homo sapiens |
Experiment description | Breast cancer cell-derived extracellular vesicles promote CD8+ T cell exhaustion via TGF-β type II receptor signaling |
Authors | Xie F, Zhou X, Su P, Li H, Tu Y, Du J, Pan C, Wei X, Zheng M, Jin K, Miao L, Wang C, Meng X, van Dam H, Ten Dijke P, Zhang L, Zhou F. |
Journal name |
Nat Commun
|
Publication year | 2022 |
Sample | Plasma |
Sample name | Healthy donor |
Isolation/purification methods | Differential centrifugation Ultracentrifugation |
Flotation density | - |
Molecules identified in the study | Protein |
Methods used in the study | Flow cytometry ELISA Western bloting |
EV-TRACK |
-
|
|
|
6
|
Experiment ID | 1978 |
Identified molecule | protein
|
Extracellular vesicle type | Extracellular vesicles |
MISEV | Small EVs |
Identification method | Western blotting
|
PubMed ID |
35915084
|
Organism | Homo sapiens |
Experiment description | Breast cancer cell-derived extracellular vesicles promote CD8+ T cell exhaustion via TGF-β type II receptor signaling |
Authors | Xie F, Zhou X, Su P, Li H, Tu Y, Du J, Pan C, Wei X, Zheng M, Jin K, Miao L, Wang C, Meng X, van Dam H, Ten Dijke P, Zhang L, Zhou F. |
Journal name |
Nat Commun
|
Publication year | 2022 |
Sample | Plasma |
Sample name | Breast cancer patients |
Isolation/purification methods | Differential centrifugation Ultracentrifugation |
Flotation density | - |
Molecules identified in the study | Protein |
Methods used in the study | Flow cytometry ELISA Western bloting |
EV-TRACK |
-
|
|
|
7
|
Experiment ID | 2027 |
Identified molecule | protein
|
Extracellular vesicle type | Exosomes |
MISEV | Small EVs |
Identification method | Western blotting
|
PubMed ID |
36455873
|
Organism | Homo sapiens |
Experiment description | Sevoflurane-induced POCD-associated exosomes delivered miR-584-5p regulates the growth of human microglia HMC3 cells through targeting BDNF |
Authors | Zhao J, Zhang W, Wang S, Li Z, Huang Y, Li L. |
Journal name |
Aging
|
Publication year | 2022 |
Sample | Plasma |
Sample name | Patients with post-operative cognitive dysfunction (POCD) |
Isolation/purification methods | Differential centrifugation Filtration Ultracentrifugation |
Flotation density | - |
Molecules identified in the study | Protein miRNA |
Methods used in the study | Western blotting Small RNA sequencing RT-qPCR |
EV-TRACK |
-
|
|
|
8
|
Experiment ID | 2028 |
Identified molecule | protein
|
Extracellular vesicle type | Exosomes |
MISEV | Small EVs |
Identification method | Western blotting
|
PubMed ID |
36455873
|
Organism | Homo sapiens |
Experiment description | Sevoflurane-induced POCD-associated exosomes delivered miR-584-5p regulates the growth of human microglia HMC3 cells through targeting BDNF |
Authors | Zhao J, Zhang W, Wang S, Li Z, Huang Y, Li L. |
Journal name |
Aging
|
Publication year | 2022 |
Sample | Plasma |
Sample name | Patients without post-operative cognitive dysfunction (non-POCD) |
Isolation/purification methods | Differential centrifugation Filtration Ultracentrifugation |
Flotation density | - |
Molecules identified in the study | Protein miRNA |
Methods used in the study | Western blotting Small RNA sequencing RT-qPCR |
EV-TRACK |
-
|
|
|
9
|
Experiment ID | 2259 |
Identified molecule | Protein
|
Extracellular vesicle type | Small extracellular vesicles |
MISEV | Small EVs |
Identification method | Western blotting
|
PubMed ID |
35661560
|
Organism | Homo sapiens |
Experiment description | Exercise increases the release of NAMPT in extracellular vesicles and alters NAD+ activity in recipient cells |
Authors | Chong MC, Silva A, James PF, Wu SSX, Howitt J. |
Journal name |
Aging Cell
|
Publication year | 2022 |
Sample | Plasma |
Sample name | Plamsa - Young and unfit |
Isolation/purification methods | Differential centrifugation Ultracentrifugation |
Flotation density | - |
Molecules identified in the study | Protein |
Methods used in the study | Western blotting |
EV-TRACK |
-
|
|
|
10
|
Experiment ID | 2260 |
Identified molecule | Protein
|
Extracellular vesicle type | Small extracellular vesicles |
MISEV | Small EVs |
Identification method | Western blotting
|
PubMed ID |
35661560
|
Organism | Homo sapiens |
Experiment description | Exercise increases the release of NAMPT in extracellular vesicles and alters NAD+ activity in recipient cells |
Authors | Chong MC, Silva A, James PF, Wu SSX, Howitt J. |
Journal name |
Aging Cell
|
Publication year | 2022 |
Sample | Plasma |
Sample name | Plamsa - Young and unfit |
Isolation/purification methods | Differential centrifugation Ultracentrifugation |
Flotation density | - |
Molecules identified in the study | Protein |
Methods used in the study | Western blotting |
EV-TRACK |
-
|
|
|
11
|
Experiment ID | 2261 |
Identified molecule | Protein
|
Extracellular vesicle type | Small extracellular vesicles |
MISEV | Small EVs |
Identification method | Western blotting
|
PubMed ID |
35661560
|
Organism | Homo sapiens |
Experiment description | Exercise increases the release of NAMPT in extracellular vesicles and alters NAD+ activity in recipient cells |
Authors | Chong MC, Silva A, James PF, Wu SSX, Howitt J. |
Journal name |
Aging Cell
|
Publication year | 2022 |
Sample | Plasma |
Sample name | Plamsa - Young and fit |
Isolation/purification methods | Differential centrifugation Ultracentrifugation |
Flotation density | - |
Molecules identified in the study | Protein |
Methods used in the study | Western blotting |
EV-TRACK |
-
|
|
|
12
|
Experiment ID | 2262 |
Identified molecule | Protein
|
Extracellular vesicle type | Small extracellular vesicles |
MISEV | Small EVs |
Identification method | Western blotting
|
PubMed ID |
35661560
|
Organism | Homo sapiens |
Experiment description | Exercise increases the release of NAMPT in extracellular vesicles and alters NAD+ activity in recipient cells |
Authors | Chong MC, Silva A, James PF, Wu SSX, Howitt J. |
Journal name |
Aging Cell
|
Publication year | 2022 |
Sample | Plasma |
Sample name | Plamsa - Young and fit |
Isolation/purification methods | Differential centrifugation Ultracentrifugation |
Flotation density | - |
Molecules identified in the study | Protein |
Methods used in the study | Western blotting |
EV-TRACK |
-
|
|
|
13
|
Experiment ID | 2263 |
Identified molecule | Protein
|
Extracellular vesicle type | Small extracellular vesicles |
MISEV | Small EVs |
Identification method | Western blotting
|
PubMed ID |
35661560
|
Organism | Homo sapiens |
Experiment description | Exercise increases the release of NAMPT in extracellular vesicles and alters NAD+ activity in recipient cells |
Authors | Chong MC, Silva A, James PF, Wu SSX, Howitt J. |
Journal name |
Aging Cell
|
Publication year | 2022 |
Sample | Plasma |
Sample name | Plamsa - Mature and unfit |
Isolation/purification methods | Differential centrifugation Ultracentrifugation |
Flotation density | - |
Molecules identified in the study | Protein |
Methods used in the study | Western blotting |
EV-TRACK |
-
|
|
|
14
|
Experiment ID | 2264 |
Identified molecule | Protein
|
Extracellular vesicle type | Small extracellular vesicles |
MISEV | Small EVs |
Identification method | Western blotting
|
PubMed ID |
35661560
|
Organism | Homo sapiens |
Experiment description | Exercise increases the release of NAMPT in extracellular vesicles and alters NAD+ activity in recipient cells |
Authors | Chong MC, Silva A, James PF, Wu SSX, Howitt J. |
Journal name |
Aging Cell
|
Publication year | 2022 |
Sample | Plasma |
Sample name | Plamsa - Mature and unfit |
Isolation/purification methods | Differential centrifugation Ultracentrifugation |
Flotation density | - |
Molecules identified in the study | Protein |
Methods used in the study | Western blotting |
EV-TRACK |
-
|
|
|
15
|
Experiment ID | 2265 |
Identified molecule | Protein
|
Extracellular vesicle type | Small extracellular vesicles |
MISEV | Small EVs |
Identification method | Western blotting
|
PubMed ID |
35661560
|
Organism | Homo sapiens |
Experiment description | Exercise increases the release of NAMPT in extracellular vesicles and alters NAD+ activity in recipient cells |
Authors | Chong MC, Silva A, James PF, Wu SSX, Howitt J. |
Journal name |
Aging Cell
|
Publication year | 2022 |
Sample | Plasma |
Sample name | Plamsa - Mature and fit |
Isolation/purification methods | Differential centrifugation Ultracentrifugation |
Flotation density | - |
Molecules identified in the study | Protein |
Methods used in the study | Western blotting |
EV-TRACK |
-
|
|
|
16
|
Experiment ID | 2266 |
Identified molecule | Protein
|
Extracellular vesicle type | Small extracellular vesicles |
MISEV | Small EVs |
Identification method | Western blotting
|
PubMed ID |
35661560
|
Organism | Homo sapiens |
Experiment description | Exercise increases the release of NAMPT in extracellular vesicles and alters NAD+ activity in recipient cells |
Authors | Chong MC, Silva A, James PF, Wu SSX, Howitt J. |
Journal name |
Aging Cell
|
Publication year | 2022 |
Sample | Plasma |
Sample name | Plamsa - Mature and fit |
Isolation/purification methods | Differential centrifugation Ultracentrifugation |
Flotation density | - |
Molecules identified in the study | Protein |
Methods used in the study | Western blotting |
EV-TRACK |
-
|
|
|
17
|
Experiment ID | 2267 |
Identified molecule | Protein
|
Extracellular vesicle type | Extracellular vesicles |
MISEV | Small EVs |
Identification method | Western blotting
|
PubMed ID |
36624553
|
Organism | Homo sapiens |
Experiment description | Combination of size-exclusion chromatography and ion exchange adsorption for improving the proteomic analysis of plasma-derived extracellular vesicles |
Authors | Wang Y, Zhang Y, Li Z, Wei S, Chi X, Yan X, Lv H, Zhao L, Zhao L. |
Journal name |
Proteomics
|
Publication year | 2023 |
Sample | Plasma |
Sample name | Plasma |
Isolation/purification methods | Filtration Size exclusion chromatography Centrifugal ultrafiltration |
Flotation density | - |
Molecules identified in the study | Protein |
Methods used in the study | Western blotting Mass spectrometry |
EV-TRACK |
-
|
|
|
18
|
Experiment ID | 2268 |
Identified molecule | Protein
|
Extracellular vesicle type | Small extracellular vesicles |
MISEV | Small EVs |
Identification method | Western blotting
|
PubMed ID |
36624553
|
Organism | Homo sapiens |
Experiment description | Combination of size-exclusion chromatography and ion exchange adsorption for improving the proteomic analysis of plasma-derived extracellular vesicles |
Authors | Wang Y, Zhang Y, Li Z, Wei S, Chi X, Yan X, Lv H, Zhao L, Zhao L. |
Journal name |
Proteomics
|
Publication year | 2023 |
Sample | Plasma |
Sample name | Plasma - Ion exchange adsorption 12.5 mg |
Isolation/purification methods | Filtration Size exclusion chromatography Ion exchange adsorption Centrifugation Centrifugal ultrafiltration |
Flotation density | - |
Molecules identified in the study | Protein |
Methods used in the study | Western blotting Mass spectrometry |
EV-TRACK |
-
|
|
|
19
|
Experiment ID | 2269 |
Identified molecule | Protein
|
Extracellular vesicle type | Small extracellular vesicles |
MISEV | Small EVs |
Identification method | Western blotting
|
PubMed ID |
36624553
|
Organism | Homo sapiens |
Experiment description | Combination of size-exclusion chromatography and ion exchange adsorption for improving the proteomic analysis of plasma-derived extracellular vesicles |
Authors | Wang Y, Zhang Y, Li Z, Wei S, Chi X, Yan X, Lv H, Zhao L, Zhao L. |
Journal name |
Proteomics
|
Publication year | 2023 |
Sample | Plasma |
Sample name | Plasma - Ion exchange adsorption 25 mg |
Isolation/purification methods | Filtration Size exclusion chromatography Ion exchange adsorption Centrifugation Centrifugal ultrafiltration |
Flotation density | - |
Molecules identified in the study | Protein |
Methods used in the study | Western blotting Mass spectrometry |
EV-TRACK |
-
|
|
|
20
|
Experiment ID | 2317 |
Identified molecule | Protein
|
Extracellular vesicle type | Extracellular vesicles/Exosomes |
MISEV | EVs |
Identification method | Western blotting
|
PubMed ID |
31762962
|
Organism | Homo sapiens |
Experiment description | Small RNA-sequence analysis of plasma-derived extracellular vesicle miRNAs in smokers and patients with chronic obstructive pulmonary disease as circulating biomarkers |
Authors | Sundar IK, Li D, Rahman I. |
Journal name |
J Extracell Vesicles
|
Publication year | 2019 |
Sample | Plasma |
Sample name | Non-smokers |
Isolation/purification methods | ExoQuick Kit |
Flotation density | - |
Molecules identified in the study | Protein small RNA |
Methods used in the study | Western blotting Small RNA sequencing |
EV-TRACK |
-
|
|
|
21
|
Experiment ID | 2318 |
Identified molecule | Protein
|
Extracellular vesicle type | Extracellular vesicles/Exosomes |
MISEV | EVs |
Identification method | Western blotting
|
PubMed ID |
31762962
|
Organism | Homo sapiens |
Experiment description | Small RNA-sequence analysis of plasma-derived extracellular vesicle miRNAs in smokers and patients with chronic obstructive pulmonary disease as circulating biomarkers |
Authors | Sundar IK, Li D, Rahman I. |
Journal name |
J Extracell Vesicles
|
Publication year | 2019 |
Sample | Plasma |
Sample name | Smokers |
Isolation/purification methods | ExoQuick Kit |
Flotation density | - |
Molecules identified in the study | Protein small RNA |
Methods used in the study | Western blotting Small RNA sequencing |
EV-TRACK |
-
|
|
|
22
|
Experiment ID | 2319 |
Identified molecule | Protein
|
Extracellular vesicle type | Extracellular vesicles/Exosomes |
MISEV | EVs |
Identification method | Western blotting
|
PubMed ID |
31762962
|
Organism | Homo sapiens |
Experiment description | Small RNA-sequence analysis of plasma-derived extracellular vesicle miRNAs in smokers and patients with chronic obstructive pulmonary disease as circulating biomarkers |
Authors | Sundar IK, Li D, Rahman I. |
Journal name |
J Extracell Vesicles
|
Publication year | 2019 |
Sample | Plasma |
Sample name | COPD patients |
Isolation/purification methods | ExoQuick Kit |
Flotation density | - |
Molecules identified in the study | Protein small RNA |
Methods used in the study | Western blotting Small RNA sequencing |
EV-TRACK |
-
|
|
|
23
|
Experiment ID | 2848 |
Identified molecule | protein
|
Extracellular vesicle type | Extracellular vesicles |
MISEV | Small EVs |
Identification method | Western blotting
|
PubMed ID |
35058437
|
Organism | Homo sapiens |
Experiment description | Circulating ACE2-expressing extracellular vesicles block broad strains of SARS-CoV-2 |
Authors | El-Shennawy L, Hoffmann AD, Dashzeveg NK, McAndrews KM, Mehl PJ, Cornish D, Yu Z, Tokars VL, Nicolaescu V, Tomatsidou A, Mao C, Felicelli CJ, Tsai CF, Ostiguin C, Jia Y, Li L, Furlong K, Wysocki J, Luo X, Ruivo CF, Batlle D, Hope TJ, Shen Y, Chae YK, Zhang H, LeBleu VS, Shi T, Swaminathan S, Luo Y, Missiakas D, Randall GC, Demonbreun AR, Ison MG, Kalluri R, Fang D, Liu H. |
Journal name |
Nat Commun
|
Publication year | 2022 |
Sample | Plasma |
Sample name | NWL-001 - Lung cancer patient |
Isolation/purification methods | Differential centrifugation Ultracentrifugation |
Flotation density | - |
Molecules identified in the study | Protein |
Methods used in the study | Western blotting Mass spectrometry |
EV-TRACK |
-
|
|
|
24
|
Experiment ID | 2850 |
Identified molecule | protein
|
Extracellular vesicle type | Extracellular vesicles |
MISEV | Small EVs |
Identification method | Western blotting
|
PubMed ID |
35058437
|
Organism | Homo sapiens |
Experiment description | Circulating ACE2-expressing extracellular vesicles block broad strains of SARS-CoV-2 |
Authors | El-Shennawy L, Hoffmann AD, Dashzeveg NK, McAndrews KM, Mehl PJ, Cornish D, Yu Z, Tokars VL, Nicolaescu V, Tomatsidou A, Mao C, Felicelli CJ, Tsai CF, Ostiguin C, Jia Y, Li L, Furlong K, Wysocki J, Luo X, Ruivo CF, Batlle D, Hope TJ, Shen Y, Chae YK, Zhang H, LeBleu VS, Shi T, Swaminathan S, Luo Y, Missiakas D, Randall GC, Demonbreun AR, Ison MG, Kalluri R, Fang D, Liu H. |
Journal name |
Nat Commun
|
Publication year | 2022 |
Sample | Plasma |
Sample name | CSB-012 - COVID-19 patient - convalescent phase |
Isolation/purification methods | Differential centrifugation Ultracentrifugation |
Flotation density | - |
Molecules identified in the study | Protein |
Methods used in the study | Western blotting Mass spectrometry |
EV-TRACK |
-
|
|
|
25
|
Experiment ID | 2912 |
Identified molecule | protein
|
Extracellular vesicle type | Exosomes |
MISEV | EVs |
Identification method | Western blotting
|
PubMed ID |
26061593
|
Organism | Homo sapiens |
Experiment description | Pathogenesis of pancreatic cancer exosome-induced lipolysis in adipose tissue |
Authors | Sagar G, Sah RP, Javeed N, Dutta SK, Smyrk TC, Lau JS, Giorgadze N, Tchkonia T, Kirkland JL, Chari ST, Mukhopadhyay D. |
Journal name |
Gut
|
Publication year | 2017 |
Sample | Plasma |
Sample name | Non-pancreatic cancer control |
Isolation/purification methods | Differential centrifugation Ultracentrifugation |
Flotation density | - |
Molecules identified in the study | Protein |
Methods used in the study | Western blotting |
EV-TRACK |
-
|
|
|
26
|
Experiment ID | 2913 |
Identified molecule | protein
|
Extracellular vesicle type | Exosomes |
MISEV | EVs |
Identification method | Western blotting
|
PubMed ID |
26061593
|
Organism | Homo sapiens |
Experiment description | Pathogenesis of pancreatic cancer exosome-induced lipolysis in adipose tissue |
Authors | Sagar G, Sah RP, Javeed N, Dutta SK, Smyrk TC, Lau JS, Giorgadze N, Tchkonia T, Kirkland JL, Chari ST, Mukhopadhyay D. |
Journal name |
Gut
|
Publication year | 2017 |
Sample | Plasma |
Sample name | Pancreatic cancer patients |
Isolation/purification methods | Differential centrifugation Ultracentrifugation |
Flotation density | - |
Molecules identified in the study | Protein |
Methods used in the study | Western blotting |
EV-TRACK |
-
|
|
|
27
|
Experiment ID | 2991 |
Identified molecule | protein
|
Extracellular vesicle type | Exosomes |
MISEV | Small EVs |
Identification method | Western blotting
|
PubMed ID |
30089911
|
Organism | Homo sapiens |
Experiment description | Exosomal PD-L1 contributes to immunosuppression and is associated with anti-PD-1 response |
Authors | Chen G, Huang AC, Zhang W, Zhang G, Wu M, Xu W, Yu Z, Yang J, Wang B, Sun H, Xia H, Man Q, Zhong W, Antelo LF, Wu B, Xiong X, Liu X, Guan L, Li T, Liu S, Yang R, Lu Y, Dong L, McGettigan S, Somasundaram R, Radhakrishnan R, Mills G, Lu Y, Kim J, Chen YH, Dong H, Zhao Y, Karakousis GC, Mitchell TC, Schuchter LM, Herlyn M, Wherry EJ, Xu X, Guo W. |
Journal name |
Nature
|
Publication year | 2018 |
Sample | Plasma |
Sample name | Healthy donors |
Isolation/purification methods | Differential centrifugation Ultracentrifugation |
Flotation density | - |
Molecules identified in the study | Protein |
Methods used in the study | Western blotting ELISA |
EV-TRACK |
-
|
|
|
28
|
Experiment ID | 2992 |
Identified molecule | protein
|
Extracellular vesicle type | Exosomes |
MISEV | Small EVs |
Identification method | Western blotting
|
PubMed ID |
30089911
|
Organism | Homo sapiens |
Experiment description | Exosomal PD-L1 contributes to immunosuppression and is associated with anti-PD-1 response |
Authors | Chen G, Huang AC, Zhang W, Zhang G, Wu M, Xu W, Yu Z, Yang J, Wang B, Sun H, Xia H, Man Q, Zhong W, Antelo LF, Wu B, Xiong X, Liu X, Guan L, Li T, Liu S, Yang R, Lu Y, Dong L, McGettigan S, Somasundaram R, Radhakrishnan R, Mills G, Lu Y, Kim J, Chen YH, Dong H, Zhao Y, Karakousis GC, Mitchell TC, Schuchter LM, Herlyn M, Wherry EJ, Xu X, Guo W. |
Journal name |
Nature
|
Publication year | 2018 |
Sample | Plasma |
Sample name | Melanoma stage IV patients |
Isolation/purification methods | Differential centrifugation Ultracentrifugation |
Flotation density | - |
Molecules identified in the study | Protein |
Methods used in the study | Western blotting ELISA |
EV-TRACK |
-
|
|
|
29
|
Experiment ID | 2995 |
Identified molecule | protein
|
Extracellular vesicle type | Exosomes |
MISEV | Small EVs |
Identification method | Western blotting
|
PubMed ID |
30089911
|
Organism | Homo sapiens |
Experiment description | Exosomal PD-L1 contributes to immunosuppression and is associated with anti-PD-1 response |
Authors | Chen G, Huang AC, Zhang W, Zhang G, Wu M, Xu W, Yu Z, Yang J, Wang B, Sun H, Xia H, Man Q, Zhong W, Antelo LF, Wu B, Xiong X, Liu X, Guan L, Li T, Liu S, Yang R, Lu Y, Dong L, McGettigan S, Somasundaram R, Radhakrishnan R, Mills G, Lu Y, Kim J, Chen YH, Dong H, Zhao Y, Karakousis GC, Mitchell TC, Schuchter LM, Herlyn M, Wherry EJ, Xu X, Guo W. |
Journal name |
Nature
|
Publication year | 2018 |
Sample | Plasma |
Sample name | Melanoma stage IV patients - Fraction 7 |
Isolation/purification methods | Differential centrifugation Ultracentrifugation |
Flotation density | 1.44 g/mL |
Molecules identified in the study | Protein |
Methods used in the study | Western blotting |
EV-TRACK |
-
|
|
|
30
|
Experiment ID | 2996 |
Identified molecule | protein
|
Extracellular vesicle type | Exosomes |
MISEV | Small EVs |
Identification method | Western blotting
|
PubMed ID |
30089911
|
Organism | Homo sapiens |
Experiment description | Exosomal PD-L1 contributes to immunosuppression and is associated with anti-PD-1 response |
Authors | Chen G, Huang AC, Zhang W, Zhang G, Wu M, Xu W, Yu Z, Yang J, Wang B, Sun H, Xia H, Man Q, Zhong W, Antelo LF, Wu B, Xiong X, Liu X, Guan L, Li T, Liu S, Yang R, Lu Y, Dong L, McGettigan S, Somasundaram R, Radhakrishnan R, Mills G, Lu Y, Kim J, Chen YH, Dong H, Zhao Y, Karakousis GC, Mitchell TC, Schuchter LM, Herlyn M, Wherry EJ, Xu X, Guo W. |
Journal name |
Nature
|
Publication year | 2018 |
Sample | Plasma |
Sample name | Melanoma stage IV patients - Fraction 8 |
Isolation/purification methods | Differential centrifugation Ultracentrifugation |
Flotation density | 1.56 g/mL |
Molecules identified in the study | Protein |
Methods used in the study | Western blotting |
EV-TRACK |
-
|
|
|
31
|
Experiment ID | 2997 |
Identified molecule | protein
|
Extracellular vesicle type | Exosomes |
MISEV | Small EVs |
Identification method | Western blotting
|
PubMed ID |
30089911
|
Organism | Homo sapiens |
Experiment description | Exosomal PD-L1 contributes to immunosuppression and is associated with anti-PD-1 response |
Authors | Chen G, Huang AC, Zhang W, Zhang G, Wu M, Xu W, Yu Z, Yang J, Wang B, Sun H, Xia H, Man Q, Zhong W, Antelo LF, Wu B, Xiong X, Liu X, Guan L, Li T, Liu S, Yang R, Lu Y, Dong L, McGettigan S, Somasundaram R, Radhakrishnan R, Mills G, Lu Y, Kim J, Chen YH, Dong H, Zhao Y, Karakousis GC, Mitchell TC, Schuchter LM, Herlyn M, Wherry EJ, Xu X, Guo W. |
Journal name |
Nature
|
Publication year | 2018 |
Sample | Plasma |
Sample name | Melanoma stage IV patients - Fraction 9 |
Isolation/purification methods | Differential centrifugation Ultracentrifugation |
Flotation density | 1.178 g/mL |
Molecules identified in the study | Protein |
Methods used in the study | Western blotting |
EV-TRACK |
-
|
|
|
32
|
Experiment ID | 2998 |
Identified molecule | protein
|
Extracellular vesicle type | Exosomes |
MISEV | Small EVs |
Identification method | Western blotting
|
PubMed ID |
30089911
|
Organism | Homo sapiens |
Experiment description | Exosomal PD-L1 contributes to immunosuppression and is associated with anti-PD-1 response |
Authors | Chen G, Huang AC, Zhang W, Zhang G, Wu M, Xu W, Yu Z, Yang J, Wang B, Sun H, Xia H, Man Q, Zhong W, Antelo LF, Wu B, Xiong X, Liu X, Guan L, Li T, Liu S, Yang R, Lu Y, Dong L, McGettigan S, Somasundaram R, Radhakrishnan R, Mills G, Lu Y, Kim J, Chen YH, Dong H, Zhao Y, Karakousis GC, Mitchell TC, Schuchter LM, Herlyn M, Wherry EJ, Xu X, Guo W. |
Journal name |
Nature
|
Publication year | 2018 |
Sample | Plasma |
Sample name | Melanoma stage IV patients - Fraction 10 |
Isolation/purification methods | Differential centrifugation Ultracentrifugation |
Flotation density | 1.193 g/mL |
Molecules identified in the study | Protein |
Methods used in the study | Western blotting |
EV-TRACK |
-
|
|
|
33
|
Experiment ID | 3086 |
Identified molecule | protein
|
Extracellular vesicle type | Extracellular vesicles |
MISEV | Small EVs |
Identification method | Western blotting
|
PubMed ID |
36631249
|
Organism | Homo sapiens |
Experiment description | S100A10 promotes HCC development and progression via transfer in extracellular vesicles and regulating their protein cargos |
Authors | Wang X, Huang H, Sze KM, Wang J, Tian L, Lu J, Tsui YM, Ma HT, Lee E, Chen A, Lee J, Wang Y, Yam JWP, Cheung TT, Guan X, Ng IO. |
Journal name |
Gut
|
Publication year | 2023 |
Sample | Plasma |
Sample name | Healthy donors |
Isolation/purification methods | Differential centrifugation Ultracentrifugation |
Flotation density | - |
Molecules identified in the study | Protein |
Methods used in the study | Western blotting |
EV-TRACK |
-
|
|
|
34
|
Experiment ID | 3087 |
Identified molecule | protein
|
Extracellular vesicle type | Extracellular vesicles |
MISEV | Small EVs |
Identification method | Western blotting
|
PubMed ID |
36631249
|
Organism | Homo sapiens |
Experiment description | S100A10 promotes HCC development and progression via transfer in extracellular vesicles and regulating their protein cargos |
Authors | Wang X, Huang H, Sze KM, Wang J, Tian L, Lu J, Tsui YM, Ma HT, Lee E, Chen A, Lee J, Wang Y, Yam JWP, Cheung TT, Guan X, Ng IO. |
Journal name |
Gut
|
Publication year | 2023 |
Sample | Plasma |
Sample name | Hepatocellular carcinoma patients |
Isolation/purification methods | Differential centrifugation Ultracentrifugation |
Flotation density | - |
Molecules identified in the study | Protein |
Methods used in the study | Western blotting Immuno-EM |
EV-TRACK |
-
|
|
|
35
|
Experiment ID | 3139 |
Identified molecule | protein
|
Extracellular vesicle type | Exosomes |
MISEV | EVs |
Identification method | Western blotting
|
PubMed ID |
34497265
|
Organism | Homo sapiens |
Experiment description | Tumor-derived exosomal miR-3157-3p promotes angiogenesis, vascular permeability and metastasis by targeting TIMP/KLF2 in non-small cell lung cancer |
Authors | Ma Z, Wei K, Yang F, Guo Z, Pan C, He Y, Wang J, Li Z, Chen L, Chen Y, Xia Y. |
Journal name |
Cell Death Dis
|
Publication year | 2021 |
Sample | Plasma |
Sample name | Non-small cell lung carcinoma patients |
Isolation/purification methods | ExoQuick Kit |
Flotation density | - |
Molecules identified in the study | Protein miRNA |
Methods used in the study | Western blotting Microarray |
EV-TRACK |
-
|
|
|
36
|
Experiment ID | 3140 |
Identified molecule | protein
|
Extracellular vesicle type | Exosomes |
MISEV | EVs |
Identification method | Western blotting
|
PubMed ID |
34497265
|
Organism | Homo sapiens |
Experiment description | Tumor-derived exosomal miR-3157-3p promotes angiogenesis, vascular permeability and metastasis by targeting TIMP/KLF2 in non-small cell lung cancer |
Authors | Ma Z, Wei K, Yang F, Guo Z, Pan C, He Y, Wang J, Li Z, Chen L, Chen Y, Xia Y. |
Journal name |
Cell Death Dis
|
Publication year | 2021 |
Sample | Plasma |
Sample name | Healthy controls |
Isolation/purification methods | ExoQuick Kit |
Flotation density | - |
Molecules identified in the study | Protein miRNA |
Methods used in the study | Western blotting Microarray |
EV-TRACK |
-
|
|
|
37
|
Experiment ID | 3197 |
Identified molecule | protein
|
Extracellular vesicle type | Exosomes |
MISEV | EVs |
Identification method | Western blotting
|
PubMed ID |
34690112
|
Organism | Homo sapiens |
Experiment description | Exosome long non-coding RNA SOX2-OT contributes to ovarian cancer malignant progression by miR-181b-5p/SCD1 signaling |
Authors | Lai Y, Dong L, Jin H, Li H, Sun M, Li J. |
Journal name |
Aging
|
Publication year | 2021 |
Sample | Plasma |
Sample name | Healthy donors |
Isolation/purification methods | ExoQuick Kit |
Flotation density | - |
Molecules identified in the study | Protein lncRNA |
Methods used in the study | Western blotting lncRNA profiling qPCR |
EV-TRACK |
-
|
|
|
38
|
Experiment ID | 3198 |
Identified molecule | protein
|
Extracellular vesicle type | Exosomes |
MISEV | EVs |
Identification method | Western blotting
|
PubMed ID |
34690112
|
Organism | Homo sapiens |
Experiment description | Exosome long non-coding RNA SOX2-OT contributes to ovarian cancer malignant progression by miR-181b-5p/SCD1 signaling |
Authors | Lai Y, Dong L, Jin H, Li H, Sun M, Li J. |
Journal name |
Aging
|
Publication year | 2021 |
Sample | Plasma |
Sample name | Ovarian cancer patients |
Isolation/purification methods | ExoQuick Kit |
Flotation density | - |
Molecules identified in the study | Protein lncRNA |
Methods used in the study | Western blotting lncRNA profiling qPCR |
EV-TRACK |
-
|
|
|
39
|
Experiment ID | 2399 |
Identified molecule | Protein
|
Extracellular vesicle type | Extracellular vesicles |
MISEV | Small EVs |
Identification method | Mass spectrometry
|
PubMed ID |
34355211
|
Organism | Homo sapiens |
Experiment description | A size-exclusion-based approach for purifying extracellular vesicles from human plasma |
Authors | Vanderboom PM, Dasari S, Ruegsegger GN, Pataky MW, Lucien F, Heppelmann CJ, Lanza IR, Nair KS. |
Journal name |
Cell Rep Methods
|
Publication year | 2021 |
Sample | Plasma |
Sample name | Plasma |
Isolation/purification methods | Size exclusion chromatography |
Flotation density | - |
Molecules identified in the study | Protein |
Methods used in the study | Mass spectrometry |
EV-TRACK |
-
|
|
|
40
|
Experiment ID | 2431 |
Identified molecule | Protein
|
Extracellular vesicle type | Extracellular vesicles |
MISEV | EVs |
Identification method | Mass spectrometry
|
PubMed ID |
29320704
|
Organism | Homo sapiens |
Experiment description | Extracellular Vesicles Provide a Means for Tissue Crosstalk during Exercise |
Authors | Whitham M, Parker BL, Friedrichsen M, Hingst JR, Hjorth M, Hughes WE, Egan CL, Cron L, Watt KI, Kuchel RP, Jayasooriah N, Estevez E, Petzold T, Suter CM, Gregorevic P, Kiens B, Richter EA, James DE, Wojtaszewski JFP, Febbraio MA. |
Journal name |
Cell Metab
|
Publication year | 2018 |
Sample | Plasma |
Sample name | Plasma - 20K pellet |
Isolation/purification methods | Centrifugation |
Flotation density | - |
Molecules identified in the study | Protein |
Methods used in the study | Mass spectrometry |
EV-TRACK |
-
|
|
|
41
|
Experiment ID | 2432 |
Identified molecule | Protein
|
Extracellular vesicle type | Extracellular vesicles |
MISEV | EVs |
Identification method | Mass spectrometry
|
PubMed ID |
29320704
|
Organism | Homo sapiens |
Experiment description | Extracellular Vesicles Provide a Means for Tissue Crosstalk during Exercise |
Authors | Whitham M, Parker BL, Friedrichsen M, Hingst JR, Hjorth M, Hughes WE, Egan CL, Cron L, Watt KI, Kuchel RP, Jayasooriah N, Estevez E, Petzold T, Suter CM, Gregorevic P, Kiens B, Richter EA, James DE, Wojtaszewski JFP, Febbraio MA. |
Journal name |
Cell Metab
|
Publication year | 2018 |
Sample | Plasma |
Sample name | Plasma - 100K pellet |
Isolation/purification methods | Ultracentrifugation |
Flotation density | - |
Molecules identified in the study | Protein |
Methods used in the study | Mass spectrometry |
EV-TRACK |
-
|
|
|
42
|
Experiment ID | 2436 |
Identified molecule | Protein
|
Extracellular vesicle type | Extracellular vesicles |
MISEV | EVs |
Identification method | Mass spectrometry
|
PubMed ID |
29320704
|
Organism | Homo sapiens |
Experiment description | Extracellular Vesicles Provide a Means for Tissue Crosstalk during Exercise |
Authors | Whitham M, Parker BL, Friedrichsen M, Hingst JR, Hjorth M, Hughes WE, Egan CL, Cron L, Watt KI, Kuchel RP, Jayasooriah N, Estevez E, Petzold T, Suter CM, Gregorevic P, Kiens B, Richter EA, James DE, Wojtaszewski JFP, Febbraio MA. |
Journal name |
Cell Metab
|
Publication year | 2018 |
Sample | Plasma |
Sample name | Plasma |
Isolation/purification methods | Centrifugation |
Flotation density | - |
Molecules identified in the study | Protein |
Methods used in the study | Mass spectrometry |
EV-TRACK |
-
|
|
|