Product Specific References for Applications and Species
- Immunocytochemistry: Human | Mouse
- Immunohistochemistry: Human | Mouse | Rat
- Western Blot: Human | Mouse
- Additional Publications: Unspecified
Immunocytochemistry: Human | ||
PMID | Dilution | Publication |
34873055 | not listed | Molinar-Inglis, O, et al. 2021. aPC/PAR1 confers endothelial anti-apoptotic activity via a discrete, β-arrestin-2-mediated SphK1-S1PR1-Akt signaling axis. Proceedings of the National Academy of Sciences of the United States of America, e2106623118. |
Immunocytochemistry: Mouse | ||
PMID | Dilution | Publication |
32771459 | not listed | Ranasinghe, ADCU, et al. 2020. Mechanistic regulation of SPHK1 expression and translocation by EMAP II in pulmonary smooth muscle cells. Biochimica et biophysica acta. Molecular and cell biology of lipids, 158789. |
Immunohistochemistry: Human | ||
PMID | Dilution | Publication |
37648331 | 1:100 | Nagaro, H, et al. 2023. Clinical Significance of Phosphorylated Sphingosine Kinase 1 Expression in Pancreatic Ductal Adenocarcinoma. Anticancer Research, 3969-3977. |
30527463 | 1:100 | Nemoto, M, et al. 2019. Phospho-Sphingosine Kinase 1 Expression in Lymphatic Spread of Esophageal Squamous Cell Carcinoma. The journal of surgical research, 123-131. |
30278948 | 1:100 | Yuza, K, et al. 2018. Upregulation of phosphorylated sphingosine kinase 1 expression in colitis-associated cancer. The journal of surgical research, 323-330. |
29370930 | 1:100 | Hanyu, T, et al. 2018. Expression of phosphorylated sphingosine kinase 1 is associated with diffuse type and lymphatic invasion in human gastric cancer. Surgery, 1301-1306. |
27864331 | 1:200 | Fu, P, et al. 2016. Role of Sphingosine Kinase 1 and S1P Transporter Spns2 in HGF-mediated Lamellipodia Formation in Lung Endothelium. The journal of biological chemistry, 27187-27203. |
Immunohistochemistry: Mouse | ||
PMID | Dilution | Publication |
29523764 | not listed | Yamada, A, et al. 2018. ABCC1-Exported Sphingosine-1-phosphate, Produced by Sphingosine Kinase 1, Shortens Survival of Mice and Patients with Breast Cancer. Molecular cancer research : MCR, 1059-1070. |
Immunohistochemistry: Rat | ||
PMID | Dilution | Publication |
31371480 | not listed | Alganga, H, et al. 2019. Short Periods of Hypoxia Upregulate Sphingosine Kinase 1 and Increase Vasodilation of Arteries to Sphingosine 1-Phosphate (S1P) via S1P3. The journal of pharmacology and experimental therapeutics, 63-74. |
Western Blot: Human | ||
PMID | Dilution | Publication |
38287231 | not listed | Prisinzano, M., et al. 2024. Sphingosine 1-phosphate signaling axis mediates neuropeptide S-induced invasive phenotype of endometriotic cells. The FEBS Journal, . |
37830619 | not listed | Epshtein, Y, et al. 2023. UCHL1 Regulates Radiation Lung Injury via Sphingosine Kinase-1. Cells, 2504. |
37582160 | 1:1000 | Bergkamp, ND, et al. 2023. A virally encoded GPCR drives glioblastoma through feed-forward activation of the SK1-S1P1 signaling axis. Science Signaling, eade6737. |
36358599 | not listed | Hengst, JA, et al. 2022. Regulatory Role of Sphingosine-1-Phosphate and C16:0 Ceramide, in Immunogenic Cell Death of Colon Cancer Cells Induced by Bak/Bax-Activation. Cancers, 5182. |
35159039 | not listed | Petrusca, DN, et al. 2022. GFI1-Dependent Repression of SGPP1 Increases Multiple Myeloma Cell Survival. Cancers, 772. |
33931106 | not listed | Dai, L, et al. 2021. Activation of SphK1 by adipocytes mediates epithelial ovarian cancer cell proliferation. Journal of ovarian research, 62. |
33525436 | not listed | Bernacchioni, C, et al. 2021. Role of Sphingosine 1-Phosphate Signalling Axis in Muscle Atrophy Induced by TNFα in C2C12 Myotubes. International journal of molecular sciences, 1280. |
31413745 | not listed | Wu, X, et al. 2019. SphK1 functions downstream of IGF-1 to modulate IGF-1-induced EMT, migration and paclitaxel resistance of A549 cells: A preliminary in vitro study. Journal of cancer, 4264-4269. |
31363040 | 1:1000 | Kao, LP, et al. 2019. Chemotherapy selection pressure alters sphingolipid composition and mitochondrial bioenergetics in resistant HL-60 cells. Journal of lipid research, 1590-1602. |
30118478 | not listed | Arish, M, et al. 2018. Sphingosine-1-phosphate signaling in Leishmania donovani infection in macrophages. PLoS neglected tropical diseases, e0006647. |
29427528 | 1:500 | Cattaneo, MG, et al. 2018. Cross-talk between sphingosine-1-phosphate and EGFR signaling pathways enhances human glioblastoma cell invasiveness. FEBS letters, 949-961. |
28240350 | 1:1000 | Lee, HM, et al. 2017. Oncogenic S1P signalling in EBV-associated nasopharyngeal carcinoma activates AKT and promotes cell migration through S1P receptor 3. The journal of pathology, 62-72. |
27956387 | not listed | Powell, J, et al. 2017. Targeting sphingosine kinase 1 induces MCL1-dependent cell death in acute myeloid leukemia. Blood, 771-782. |
27864331 | not listed | Fu, P, et al. 2016. Role of Sphingosine Kinase 1 and S1P Transporter Spns2 in HGF-mediated Lamellipodia Formation in Lung Endothelium. The journal of biological chemistry, 27187-27203. |
24137500 | not listed | Seo, YJ, et al. 2013. Sphingosine kinase 1 serves as a pro-viral factor by regulating viral RNA synthesis and nuclear export of viral ribonucleoprotein complex upon influenza virus infection. PLoS One, e75005. |
20634980 | not listed | Benakanakere, MR, et al. 2010. Sphingosine kinase-1 is required for toll mediated beta-defensin 2 induction in human oral keratinocytes. PLoS One, e11512. |
18426913 | not listed | Miller, AV, et al. 2008. Sphingosine kinases and sphingosine-1-phosphate are critical for transforming growth factor beta-induced extracellular signal-regulated kinase 1 and 2 activation and promotion of migration and invasion of esophageal cancer cells. Molecular and cellular biology, 4142-4151. |
Western Blot: Mouse | ||
PMID | Dilution | Publication |
37392305 | not listed | Tan ,J, et al. 2023. Ritanserin suppresses acute myeloid leukemia by inhibiting DGKα to downregulate phospholipase D and the Jak-Stat/MAPK pathway. Discover. Oncology, 118. |
35203362 | not listed | Bernacchioni, C, et al. 2022. S1P Signalling Axis Is Necessary for Adiponectin-Directed Regulation of Electrophysiological Properties and Oxidative Metabolism in C2C12 Myotubes. Cells, 713. |
32771459 | not listed | Ranasinghe, ADCU, et al. 2020. Mechanistic regulation of SPHK1 expression and translocation by EMAP II in pulmonary smooth muscle cells. Biochimica et biophysica acta. Molecular and cell biology of lipids, 158789. |
31971297 | not listed | Mohammed, S, et al. 2020. Regulatory role of SphK1 in TLR7/9-dependent type I interferon response and autoimmunity. FASEB journal : official publication of the Federation of American Societies for Experimental Biology, 4329-4347. |
30569280 | not listed | Grassi, S, et al. 2019. Human Remyelination Promoting Antibody Stimulates Astrocytes Proliferation Through Modulation of the Sphingolipid Rheostat in Primary Rat Mixed Glial Cultures. Neurochemical research, 1460-1474. |
30279138 | 1:1000 | Pierucci, F, et al. 2018. Involvement of released sphingosine 1-phosphate/sphingosine 1-phosphate receptor axis in skeletal muscle atrophy. Biochimica et biophysica acta. Molecular basis of disease, 3598-3614. |
28890935 | 1:1000 | Hengst, J, et al. 2017. SKI-178: A Multitargeted Inhibitor of Sphingosine Kinase and Microtubule Dynamics Demonstrating Therapeutic Efficacy in Acute Myeloid Leukemia Models. Cancer translational medicine, 109-121. |
27485122 | 1:500 | Salta, E, et al. 2016. miR-132 loss de-represses ITPKB and aggravates amyloid and TAU pathology in Alzheimer's brain. EMBO molecular medicine, 1005-1018. |
24464131 | not listed | Harikumar, KB, et al. 2014. K63-linked polyubiquitination of transcription factor IRF1 is essential for IL-1-induced production of chemokines CXCL10 and CCL5. Nature immunology, 231-238. |
Additional Publications: Unspecified | ||
PMID | Publication | |
37225163 | Medina-Moctezuma, ZB, et al. 2023. Sphingosine-1-phosphate Regulation of Luteinising Hormone-induced Steroidogenesis and Proliferation of Bovine Theca Cells in Vitro. Reproduction, Fertility, and Development, 518-526. |