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References
First Author:
Title:
Date:
Catalog Number:
PubMed ID:
Cross Reactivity:
Journal:
Application:
First Author
Du, Y
Title
Chemokines form nanoparticles with DNA and can superinduce TLR-driven immune inflammation.
Citation
The Journal of experimental medicine; 2022 Jul 4; 219(7)
PubMed ID
35640018
Show Usages
Product Cited
Cross-Reactivity
Applications
300-22
Human
in vitro
300-14
Human
in vitro
300-12
Human
in vitro
300-09
Human
in vitro
300-08
Human
in vitro
300-06
Human
in vitro
300-22
Human
in vitro
300-26
Human
in vitro
300-28A
Human
in vitro
300-29B
Human
in vitro
300-55
Human
in vitro
300-35A
Human
in vitro
250-39
Mouse
in vitro
250-39
Mouse
in vivo
250-39
Mouse
Chemotaxis Assay
250-09
Mouse
Chemotaxis Assay
250-16
Mouse
Chemotaxis Assay
250-20A
Mouse
Chemotaxis Assay
250-07
Mouse
Chemotaxis Assay
250-07
Mouse
in vitro
250-09
Mouse
in vitro
250-16
Mouse
in vitro
250-20A
Mouse
in vitro
First Author
Bouhaddou, M
Title
The Global Phosphorylation Landscape of SARS-CoV-2 Infection.
Citation
Cell; 2020 Aug 6; 182(3) pg685-712.e19
PubMed ID
32645325
Show Usages
Product Cited
Cross-Reactivity
Applications
300-21
Human
ELISA
200-01RA
Human
ELISA
200-10
Human
ELISA
300-15
Human
ELISA
300-39
Human
ELISA
100-21
Human
ELISA
300-55
Human
ELISA
300-11
Human
ELISA
200-01A
Human
ELISA
300-29A
Human
ELISA
200-17
Human
ELISA
200-22
Human
ELISA
500-P209
Human
ELISA
500-P209BT
Human
ELISA
500-P20
Human
ELISA
500-P20BT
Human
ELISA
500-P35
Human
ELISA
500-P35BT
Human
ELISA
500-P50
Human
ELISA
500-P50BT
Human
ELISA
500-P104
Human
ELISA
500-P104BT
Human
ELISA
500-P200
Human
ELISA
500-P200BT
Human
ELISA
500-P92
Human
ELISA
500-P92BT
Human
ELISA
500-P154G
Human
ELISA
500-P154GBT
Human
ELISA
500-P211
Human
ELISA
500-P211BT
Human
ELISA
500-P93BT
Human
ELISA
First Author
Lee, A W
Title
A knottin scaffold directs the CXC-chemokine-binding specificity of tick evasins.
Citation
The Journal of Biological Chemistry;2019 7 19; 294(29) pg11199-11212
PubMed ID
31167786
Show Usages
Product Cited
Cross-Reactivity
Applications
200-02
Human
in vitro
300-37
Human
Chemotaxis Assay
300-04
Human
Chemotaxis Assay
300-08
Human
Chemotaxis Assay
300-56
Human
Chemotaxis Assay
300-09
Human
Chemotaxis Assay
300-58
Human
Chemotaxis Assay
300-06
Human
Chemotaxis Assay
300-17
Human
Chemotaxis Assay
300-15
Human
Chemotaxis Assay
300-21
Human
Chemotaxis Assay
300-24
Human
Chemotaxis Assay
300-38
Human
Chemotaxis Assay
300-43
Human
Chemotaxis Assay
300-44
Human
Chemotaxis Assay
300-30
Human
Chemotaxis Assay
300-34
Human
Chemotaxis Assay
300-29B
Human
Chemotaxis Assay
300-29A
Human
Chemotaxis Assay
300-35
Human
Chemotaxis Assay
300-36A
Human
Chemotaxis Assay
300-29
Human
Chemotaxis Assay
300-33
Human
Chemotaxis Assay
300-48
Human
Chemotaxis Assay
300-54
Human
Chemotaxis Assay
300-11
Human
Chemotaxis Assay
300-39
Human
Chemotaxis Assay
300-40
Human
Chemotaxis Assay
300-16
Human
Chemotaxis Assay
300-22
Human
Chemotaxis Assay
300-22B
Human
Chemotaxis Assay
300-41
Human
Chemotaxis Assay
300-14
Human
Chemotaxis Assay
200-08
Human
Chemotaxis Assay
300-26
Human
Chemotaxis Assay
300-12
Human
Chemotaxis Assay
300-46
Human
Chemotaxis Assay
300-28A
Human
Chemotaxis Assay
300-28B
Human
Chemotaxis Assay
300-47
Human
Chemotaxis Assay
300-50
Human
Chemotaxis Assay
300-55
Human
Chemotaxis Assay
300-31
Human
Chemotaxis Assay
First Author
Alenazi, Y
Title
Genetically engineered two-warhead evasins provide a method to achieve precision targeting of disease-relevant chemokine subsets.
Citation
Scientific Reports; 2018 Apr 20; 8(1) pg6333
PubMed ID
29679010
Show Usages
Product Cited
Cross-Reactivity
Applications
300-37
Human
Chemotaxis Assay
300-04
Human
Chemotaxis Assay
300-08
Human
Chemotaxis Assay
300-56
Human
Chemotaxis Assay
300-09
Human
Chemotaxis Assay
300-58
Human
Chemotaxis Assay
300-06
Human
Chemotaxis Assay
300-17
Human
Chemotaxis Assay
300-15
Human
Chemotaxis Assay
300-21
Human
Chemotaxis Assay
300-24
Human
Chemotaxis Assay
300-38
Human
Chemotaxis Assay
300-43
Human
Chemotaxis Assay
300-44
Human
Chemotaxis Assay
300-30
Human
Chemotaxis Assay
300-34
Human
Chemotaxis Assay
300-29B
Human
Chemotaxis Assay
300-29A
Human
Chemotaxis Assay
300-35
Human
Chemotaxis Assay
300-36A
Human
Chemotaxis Assay
300-29
Human
Chemotaxis Assay
300-33
Human
Chemotaxis Assay
300-48
Human
Chemotaxis Assay
300-54
Human
Chemotaxis Assay
300-11
Human
Chemotaxis Assay
300-39
Human
Chemotaxis Assay
300-40
Human
Chemotaxis Assay
300-16
Human
Chemotaxis Assay
300-22
Human
Chemotaxis Assay
300-22B
Human
Chemotaxis Assay
300-41
Human
Chemotaxis Assay
300-14
Human
Chemotaxis Assay
200-08
Human
Chemotaxis Assay
300-26
Human
Chemotaxis Assay
300-12
Human
Chemotaxis Assay
300-46
Human
Chemotaxis Assay
300-28A
Human
Chemotaxis Assay
300-28B
Human
Chemotaxis Assay
300-47
Human
Chemotaxis Assay
300-50
Human
Chemotaxis Assay
300-55
Human
Chemotaxis Assay
300-31
Human
Chemotaxis Assay
First Author
Wang, X
Title
Trophoblast-derived CXCL16 induces M2 macrophage polarization that in turn inactivates NK cells at the maternal-fetal interface.
Citation
Cellular & molecular immunology; 2018 Dec; 15(12) pg1038-1046
PubMed ID
29588487
Show Usages
Product Cited
Cross-Reactivity
Applications
300-25
Human
in vitro
300-55
Human
in vitro
First Author
Singh, K
Title
Yeast surface display identifies a family of evasins from ticks with novel polyvalent CC chemokine-binding activities.
Citation
Scientific Reports; 2017 Jun 27; 7(1) pg4267
PubMed ID
28655871
Show Usages
Product Cited
Cross-Reactivity
Applications
300-34
Human
in vitro
300-11
Human
in vitro
300-15
Human
in vitro
300-29B
Human
in vitro
300-46
Human
in vitro
300-48
Human
in vitro
300-54
Human
in vitro
300-08
Human
in vitro
300-28A
Human
in vitro
300-43
Human
in vitro
300-45
Human
in vitro
300-31
Human
in vitro
300-36A
Human
in vitro
300-14
Human
in vitro
300-39
Human
in vitro
300-55
Human
in vitro
300-16
Human
in vitro
300-28B
Human
in vitro
300-22
Human
in vitro
300-44
Human
in vitro
300-33
Human
in vitro
300-26
Human
in vitro
300-38
Human
in vitro
300-57
Human
in vitro
300-24
Human
in vitro
300-40
Human
in vitro
300-41
Human
in vitro
300-30
Human
in vitro
300-12
Human
in vitro
300-50
Human
in vitro
300-47
Human
in vitro
300-29A
Human
in vitro
300-35
Human
in vitro
300-17
Human
in vitro
300-09
Human
in vitro
300-56
Human
in vitro
300-04
Human
in vitro
300-21
Human
in vitro
250-01
Mouse
Binding Assay
250-04
Mouse
Binding Assay
250-06
Mouse
Binding Assay
250-07
Mouse
Binding Assay
250-10
Mouse
Binding Assay
250-11
Mouse
Binding Assay
250-12
Mouse
Binding Assay
250-13
Mouse
Binding Assay
250-15
Mouse
Binding Assay
250-16
Mouse
Binding Assay
250-17
Mouse
Binding Assay
250-18
Mouse
Binding Assay
250-20A
Mouse
Binding Assay
250-20B
Mouse
Binding Assay
250-22
Mouse
Binding Assay
250-23
Mouse
Binding Assay
250-24
Mouse
Binding Assay
250-26
Mouse
Binding Assay
250-27
Mouse
Binding Assay
250-27B
Mouse
Binding Assay
250-28
Mouse
Binding Assay
250-29
Mouse
Binding Assay
250-30
Mouse
Binding Assay
250-32
Mouse
Binding Assay
250-36
Mouse
Binding Assay
250-37
Mouse
Binding Assay
250-39
Mouse
Binding Assay
First Author
Junk, D J
Title
Oncostatin M promotes cancer cell plasticity through cooperative STAT3-SMAD3 signaling.
Citation
Oncogene; 2017 Jul 13; 36(28) pg4001-4013
PubMed ID
28288136
Show Usages
Product Cited
Cross-Reactivity
Applications
100-55B
Human
in vitro
120-40
Human
in vitro
120-02
Human
in vitro
120-05
Human
in vitro
120-39
Human
in vitro
450-18
Human
in vitro
450-13
Human
in vitro
300-32
Human
in vitro
300-11
Human
in vitro
300-55
Human
in vitro
300-41
Human
in vitro
AF-100-15
Human
in vitro
100-04
Human
in vitro
300-23
Human
in vitro
120-07
Human
in vitro
120-42
Human
in vitro
100-39
Human
in vitro
100-03
Human
in vitro
100-11
Human
in vitro
200-11
Human
in vitro
200-35
Human
in vitro
200-06
Human
in vitro
300-05
Human
in vitro
300-10
Human
in vitro
150-18
Human
in vitro
120-35
Human
in vitro
100-21
Human
in vitro
First Author
Dreymueller, D
Title
The perioperative time course and clinical significance of the chemokine CXCL16 in patients undergoing cardiac surgery.
Citation
Journal of cellular and molecular medicine; 2016 Jan; 20(1) pg104-15
PubMed ID
26499307
Show Usages
Product Cited
Cross-Reactivity
Applications
300-55
Human
in vitro
First Author
Pon, J R
Title
MEF2B mutations in non-Hodgkin lymphoma dysregulate cell migration by decreasing MEF2B target gene activation.
Citation
Nature Communications; 2015 Aug 6; 6 pg7953
PubMed ID
26245647
Show Usages
Product Cited
Cross-Reactivity
Applications
300-55
Human
Chemotaxis Assay
First Author
Taghizadeh, R
Title
CXCR6, a newly defined biomarker of tissue-specific stem cell asymmetric self-renewal, identifies more aggressive human melanoma cancer stem cells.
Citation
PLoS ONE; 2010 Dec 22; 5(12) pge15183
PubMed ID
21203549
Show Usages
Product Cited
Cross-Reactivity
Applications
300-55
Human
in vitro
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