For: | Takuwa Y, Du W, Qi X, Okamoto Y, Takuwa N, Yoshioka K. Roles of sphingosine-1-phosphate signaling in angiogenesis. World J Biol Chem 2010; 1(10): 298-306 [PMID: 21537463 DOI: 10.4331/wjbc.v1.i10.298] |
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URL: | https://www.wjgnet.com/1949-8454/full/v1/i10/298.htm |
Number | Citing Articles |
1 |
Nura Ahmad, Alexandra Anker, Silvan Klein, Jillian Dean, Leonard Knoedler, Katya Remy, Andrea Pagani, Sally Kempa, Amraj Terhaag, Lukas Prantl. Autologous Fat Grafting—A Panacea for Scar Tissue Therapy?. Cells 2024; 13(16): 1384 doi: 10.3390/cells13161384
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2 |
Gabriela Schneider, Ewa Bryndza, Ahmed Abdel-Latif, Janina Ratajczak, Magdalena Maj, Maciej Tarnowski, Yuri M. Klyachkin, Peter Houghton, Andrew J. Morris, Axel Vater, Sven Klussmann, Magdalena Kucia, Mariusz Z. Ratajczak. Bioactive Lipids S1P and C1P Are Prometastatic Factors in Human Rhabdomyosarcoma, and Their Tissue Levels Increase in Response to Radio/Chemotherapy. Molecular Cancer Research 2013; 11(7): 793 doi: 10.1158/1541-7786.MCR-12-0600
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3 |
Natalie Gray, Maren M. Limberg, Daniela Wiebe, Tobias Weihrauch, Anna Langner, Nicola Brandt, Anja U. Bräuer, Ulrike Raap. Differential Upregulation and Functional Activity of S1PR1 in Human Peripheral Blood Basophils of Atopic Patients. International Journal of Molecular Sciences 2022; 23(24): 16117 doi: 10.3390/ijms232416117
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4 |
Lauren Lupino, Tracey Perry, Sandra Margielewska, Robert Hollows, Maha Ibrahim, Matthew Care, Jeremy Allegood, Reuben Tooze, Roger Sabbadini, Gary Reynolds, Roy Bicknell, Zbigniew Rudzki, Ye Lin Hock, Ulises Zanetto, Wenbin Wei, William Simmons, Sarah Spiegel, Ciaran B. J. Woodman, Martin Rowe, Katerina Vrzalikova, Paul G. Murray. Sphingosine-1-phosphate signalling drives an angiogenic transcriptional programme in diffuse large B cell lymphoma. Leukemia 2019; 33(12): 2884 doi: 10.1038/s41375-019-0478-9
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5 |
Dongdong Zhang, Dongxu Qi, Yi Xu, Chunhe Hu, Xiao Zhang, Qingjian Yang, Zikun Shang, Guisheng Zhang. The S1PR1 agonist SEW2871 promotes the survival of skin flap. Canadian Journal of Physiology and Pharmacology 2021; 99(12): 1280 doi: 10.1139/cjpp-2021-0006
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6 |
Nidhi Mote, Sarah Kubik, William J. Polacheck, Brendon M. Baker, Britta Trappmann. A nanoporous hydrogel-based model to study chemokine gradient-driven angiogenesis under luminal flow. Lab on a Chip 2024; 24(20): 4892 doi: 10.1039/D4LC00460D
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7 |
Chao-Qun Wang, Chih-Yang Lin, Yuan-Li Huang, Shih-Wei Wang, Yan Wang, Bi-Fei Huang, Yu-Wei Lai, Shun-Long Weng, Yi-Chin Fong, Chih-Hsin Tang, Zhong Lv. Sphingosine-1-phosphate promotes PDGF-dependent endothelial progenitor cell angiogenesis in human chondrosarcoma cells. Aging 2019; 11(23): 11040 doi: 10.18632/aging.102508
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8 |
V. van Duinen, D. Zhu, C. Ramakers, A. J. van Zonneveld, P. Vulto, T. Hankemeier. Perfused 3D angiogenic sprouting in a high-throughput in vitro platform. Angiogenesis 2019; 22(1): 157 doi: 10.1007/s10456-018-9647-0
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9 |
Jessie W. Yester, Etsegenet Tizazu, Kuzhuvelil B. Harikumar, Tomasz Kordula. Extracellular and intracellular sphingosine-1-phosphate in cancer. Cancer and Metastasis Reviews 2011; 30(3-4): 577 doi: 10.1007/s10555-011-9305-0
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10 |
Francois Pognan, J. Andreas Mahl, Maria Papoutsi, David Ledieu, Marc Raccuglia, Diethilde Theil, Sarah B. Voytek, Patrick J. Devine, Katie Kubek-Luck, Natalie Claudio, Andre Cordier, Annabelle Heier, Carine Kolly, Andreas Hartmann, Salah-Dine Chibout, Page Bouchard, Christian Trendelenburg. Induction of hemangiosarcoma in mice after chronic treatment with S1P-modulator siponimod and its lack of relevance to rat and human. Archives of Toxicology 2018; 92(5): 1877 doi: 10.1007/s00204-018-2189-9
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11 |
Ibrahim Fathi, Ryuichi Nishimura, Takehiro Imura, Akiko Inagaki, Norifumi Kanai, Akira Ushiyama, Masafumi Kikuchi, Masamitsu Maekawa, Hiroaki Yamaguchi, Masafumi Goto. KRP-203 Is a Desirable Immunomodulator for Islet Allotransplantation. Transplantation 2022; 106(5): 963 doi: 10.1097/TP.0000000000003870
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12 |
Cecília R. Panta, Éva Ruisanchez, Dorottya Móré, Péter T. Dancs, Andrea Balogh, Ágnes Fülöp, Margit Kerék, Richard L. Proia, Stefan Offermanns, Gábor J. Tigyi, Zoltán Benyó. Sphingosine-1-Phosphate Enhances α1-Adrenergic Vasoconstriction via S1P2–G12/13–ROCK Mediated Signaling. International Journal of Molecular Sciences 2019; 20(24): 6361 doi: 10.3390/ijms20246361
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13 |
Hongzeng Xu, Yuanzhe Jin, Haifeng Ni, Shengda Hu, Qin Zhang. Sphingosine-1-Phosphate Receptor Agonist, FTY720, Restores Coronary Flow Reserve in Diabetic Rats. Circulation Journal 2014; 78(12): 2979 doi: 10.1253/circj.CJ-14-0521
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14 |
Kathleen M. Chen, Jie Tan, Gregory P. Way, Georgia Doing, Deborah A. Hogan, Casey S. Greene. PathCORE-T: identifying and visualizing globally co-occurring pathways in large transcriptomic compendia. BioData Mining 2018; 11(1) doi: 10.1186/s13040-018-0175-7
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15 |
Jing Zhang, Jie Song. Amphiphilic degradable polymers for immobilization and sustained delivery of sphingosine 1-phosphate. Acta Biomaterialia 2014; 10(7): 3079 doi: 10.1016/j.actbio.2014.02.051
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16 |
Erica R. Seelemann, Sheethal Panchakshari, Parabhjot Kaur Labana, Maxwell M. Wolverton, Yupu Deng, Haya Abdelwahab, Chris Consmueller, Duncan J. Stewart, Ketul R. Chaudhary. Sexual dimorphism in right ventricular adaptation to pressure overload involves differential angiogenic response. American Journal of Physiology-Heart and Circulatory Physiology 2025; 328(3): H496 doi: 10.1152/ajpheart.00549.2024
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17 |
Aneta Dobierzewska, Macarena Palominos, Marianela Sanchez, Michael Dyhr, Katja Helgert, Pia Venegas-Araneda, Stephen Tong, Sebastian E. Illanes, Cees Oudejans. Impairment of Angiogenic Sphingosine Kinase-1/Sphingosine-1-Phosphate Receptors Pathway in Preeclampsia. PLOS ONE 2016; 11(6): e0157221 doi: 10.1371/journal.pone.0157221
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18 |
David Garandeau, Marguerite Mrad, Thierry Levade, Cristiana Perrotta, Nathalie Andrieu-Abadie, Mona Diab-Assaf. Bioactive Sphingolipids in Cancer Biology and Therapy. 2015; : 123 doi: 10.1007/978-3-319-20750-6_6
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19 |
Paul Cheresh, Seok-Jo Kim, Long Shuang Huang, Satoshi Watanabe, Nikita Joshi, Kinola J.N. Williams, Monica Chi, Ziyan Lu, Anantha Harijith, Anjana Yeldandi, Anna P. Lam, Cara Gottardi, Alexander V. Misharin, G.R. Scott Budinger, Viswanathan Natarajan, David W. Kamp. The Sphingosine Kinase 1 Inhibitor, PF543, Mitigates Pulmonary Fibrosis by Reducing Lung Epithelial Cell mtDNA Damage and Recruitment of Fibrogenic Monocytes. International Journal of Molecular Sciences 2020; 21(16): 5595 doi: 10.3390/ijms21165595
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20 |
Yuan-Li Huang, Wei-Pang Huang, Hsinyu Lee. Roles of sphingosine 1-phosphate on tumorigenesis. World Journal of Biological Chemistry 2011; 2(2): 25-34 doi: 10.4331/wjbc.v2.i2.25
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21 |
Aynaz Mihanfar, Hamid Reza Nejabati, Amir Fattahi, Zeinab Latifi, Masoud Pezeshkian, Abbas Afrasiabi, Naser Safaie, Ahmad Reza Jodati, Mohammad Nouri. The role of sphingosine 1 phosphate in coronary artery disease and ischemia reperfusion injury. Journal of Cellular Physiology 2019; 234(3): 2083 doi: 10.1002/jcp.27353
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22 |
Viswanathan Natarajan, Alison W. Ha, Yangbasai Dong, Narsa M. Reddy, David L. Ebenezer, Prasad Kanteti, Sekhar P. Reddy, J. Usha Raj, Zhengdeng Lei, Mark Maienschein-Cline, Zarema Arbieva, Anantha Harijith. Expression profiling of genes regulated by sphingosine kinase1 signaling in a murine model of hyperoxia induced neonatal bronchopulmonary dysplasia. BMC Genomics 2017; 18(1) doi: 10.1186/s12864-017-4048-0
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23 |
Jeong Pyo Lee, Hwa Jun Cha, Kwang Sik Lee, Kun Kook Lee, Ju Hyun Son, Kwang Nyeon Kim, Dong Kyu Lee, Sungkwan An. Phytosphingosine-1-phosphate represses the hydrogen peroxide-induced activation of c-Jun N-terminal kinase in human dermal fibroblasts through the phosphatidylinositol 3-kinase/Akt pathway. Archives of Dermatological Research 2012; 304(8): 673 doi: 10.1007/s00403-012-1241-5
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24 |
Anthony O. Awojoodu, Molly E. Ogle, Lauren S. Sefcik, Daniel T. Bowers, Kyle Martin, Kenneth L. Brayman, Kevin R. Lynch, Shayn M. Peirce-Cottler, Edward Botchwey. Sphingosine 1-phosphate receptor 3 regulates recruitment of anti-inflammatory monocytes to microvessels during implant arteriogenesis. Proceedings of the National Academy of Sciences 2013; 110(34): 13785 doi: 10.1073/pnas.1221309110
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25 |
Emma Muñoz-Sáez, Estefanía de Munck García, Rosa María Arahuetes Portero, Francisca Vicente, Francisco Javier Ortiz-López, Juan Cantizani, Begoña Gómez Miguel. Neuroprotective role of sphingosine-1-phosphate in L-BMAA treated neuroblastoma cells (SH-SY5Y). Neuroscience Letters 2015; 593: 83 doi: 10.1016/j.neulet.2015.03.010
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26 |
Mladen Korbelik, Judit Banáth, Wei Zhang, Kyi Min Saw, Zdzislaw M. Szulc, Alicja Bielawska, Duska Separovic. Interaction of acid ceramidase inhibitor LCL521 with tumor response to photodynamic therapy and photodynamic therapy‐generated vaccine. International Journal of Cancer 2016; 139(6): 1372 doi: 10.1002/ijc.30171
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27 |
Samanwita Mandal, Deblina Chakrabarty, Arijit Bhattacharya, Joydeep Paul, Srijan Haldar, Kuntal Pal. miRNA regulation of G protein-coupled receptor mediated angiogenic pathways in cancer. The Nucleus 2021; 64(3): 303 doi: 10.1007/s13237-021-00365-0
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28 |
Shingo Yasuda, Takayoshi Sumioka, Masayasu Miyajima, Hiroki Iwanishi, Tomoya Morii, Naoki Mochizuki, Peter S. Reinach, Winston W.Y. Kao, Yuka Okada, Chia-Yang Liu, Shizuya Saika. Anomaly of cornea and ocular adnexa in spinster homolog 2 (Spns2) knockout mice. The Ocular Surface 2022; 26: 111 doi: 10.1016/j.jtos.2022.08.007
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29 |
Giuseppe Trapani, Martin Sebastian Weiß, Britta Trappmann. Tunable Synthetic Hydrogels to Study Angiogenic Sprouting. Current Protocols 2023; 3(8) doi: 10.1002/cpz1.859
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30 |
Long Shuang Huang, Tara Sudhadevi, Panfeng Fu, Prasanth-Kumar Punathil-Kannan, David Lenin Ebenezer, Ramaswamy Ramchandran, Vijay Putherickal, Paul Cheresh, Guofei Zhou, Alison W. Ha, Anantha Harijith, David W. Kamp, Viswanathan Natarajan. Sphingosine Kinase 1/S1P Signaling Contributes to Pulmonary Fibrosis by Activating Hippo/YAP Pathway and Mitochondrial Reactive Oxygen Species in Lung Fibroblasts. International Journal of Molecular Sciences 2020; 21(6): 2064 doi: 10.3390/ijms21062064
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31 |
Yoshino Yonezu, Shogo Tanabe, Hidemi Misawa, Rieko Muramatsu. Lysophosphatidic acid stimulates pericyte migration via LPA receptor 1. Biochemical and Biophysical Research Communications 2022; 618: 61 doi: 10.1016/j.bbrc.2022.06.016
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32 |
Reyhaneh Eghbali Zarch, Hassan Semyari, Maryam Tehranchi, Abbas Rezapour, Vahid Golghalyani. Pleiotropic effect of intramucosal injection of FTY720 on angiogenesis and tissue healing after free gingival graft surgery: a comparative experimental study in rabbits. Clinical Oral Investigations 2023; 28(1) doi: 10.1007/s00784-023-05450-z
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33 |
Min Liu, Yunfei You, Huaiyi Zhu, Yu Chen, Zhenying Hu, Jingjing Duan. N-Acetylcysteine Alleviates Impaired Muscular Function Resulting from Sphingosine Phosphate Lyase Functional Deficiency-Induced Sphingoid Base and Ceramide Accumulation in Caenorhabditis elegans. Nutrients 2024; 16(11): 1623 doi: 10.3390/nu16111623
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34 |
HWA JUN CHA, JEONG PYO LEE, KWANG SIK LEE, KUN KOOK LEE, MYOUNG JUN CHOI, DONG KYU LEE, KWANG NYEON KIM, SUNGKWAN AN. Phytosphigosine-1-phosphate increases sensitivity of EGF-dependent cell proliferation. International Journal of Molecular Medicine 2014; 33(3): 649 doi: 10.3892/ijmm.2014.1617
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35 |
Simona Federica Spampinato, Sara Merlo, Yasuteru Sano, Takashi Kanda, Maria Angela Sortino. Protective effect of the sphingosine-1 phosphate receptor agonist siponimod on disrupted blood brain barrier function. Biochemical Pharmacology 2021; 186: 114465 doi: 10.1016/j.bcp.2021.114465
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36 |
Gangyuan Bi, Lina Mo, Sa Liu, Xiupeng Zhong, Junzhong Yang, Zhongrun Yuan, Shenggui Chen, Li Ren. DLP printed β-tricalcium phosphate functionalized ceramic scaffolds promoted angiogenesis and osteogenesis in long bone defects. Ceramics International 2022; 48(18): 26274 doi: 10.1016/j.ceramint.2022.05.310
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37 |
Ziad Sartawi, Ernestina Schipani, Katie B. Ryan, Christian Waeber. Sphingosine 1-phosphate (S1P) signalling: Role in bone biology and potential therapeutic target for bone repair. Pharmacological Research 2017; 125: 232 doi: 10.1016/j.phrs.2017.08.013
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38 |
A. Navarrete, F.J. Rupérez, T.O. Mendes, S. Pérez-Rial, A. Girón-Martínez, R. Terrón-Expósito, J.J. Díaz-Gil, G. Peces-Barba, C. Barbas, A. García. A metabolomic approach shows sphingosine 1-phosphate and lysophospholipids as mediators of the therapeutic effect of liver growth factor in emphysema. Journal of Pharmaceutical and Biomedical Analysis 2017; 139: 238 doi: 10.1016/j.jpba.2017.02.045
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39 |
Shi-feng Yan, Jian-kang Zhang, Tong Zhang, Yan Li, Xiao Li. Advances in endothelial cell lipid metabolism and tumor angiogenesis. Results in Chemistry 2024; 7: 101467 doi: 10.1016/j.rechem.2024.101467
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40 |
Bisera Stepanovska Tanturovska, Roxana Manaila, Doriano Fabbro, Andrea Huwiler. Lipids as Targets for Renal Cell Carcinoma Therapy. International Journal of Molecular Sciences 2023; 24(4): 3272 doi: 10.3390/ijms24043272
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41 |
Sei Hien Lim, Choong Kim, Amir R. Aref, Roger D. Kamm, Michael Raghunath. Complementary effects of ciclopirox olamine, a prolyl hydroxylase inhibitor and sphingosine 1-phosphate on fibroblasts and endothelial cells in driving capillary sprouting. Integrative Biology 2013; 5(12): 1474 doi: 10.1039/c3ib40082d
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42 |
Rosamaria Lappano, Marcello Maggiolini. GPCRs and cancer. Acta Pharmacologica Sinica 2012; 33(3): 351 doi: 10.1038/aps.2011.183
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43 |
Jingjing Liu, Andrew Hsu, Jen-Fu Lee, Daniel E Cramer, Menq-Jer Lee. To stay or to leave: Stem cells and progenitor cells navigating the S1P gradient. World Journal of Biological Chemistry 2011; 2(1): 1-13 doi: 10.4331/wjbc.v2.i1.1
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44 |
Lei Guo, Xianghong Ou, Hong Li, Zhiming Han. Roles of Sphingosine-1-Phosphate in Reproduction. Reproductive Sciences 2014; 21(5): 550 doi: 10.1177/1933719113512534
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45 |
Cyndi G. Hernández-Coronado, Adrian Guzmán, Héctor Castillo-Juárez, Diana Zamora-Gutiérrez, Ana María Rosales-Torres. Sphingosine-1-phosphate (S1P) in ovarian physiology and disease. Annales d'Endocrinologie 2019; 80(5-6): 263 doi: 10.1016/j.ando.2019.06.003
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46 |
Judy R. van Beijnum, Wietske Pieters, Patrycja Nowak‐Sliwinska, Arjan W. Griffioen. Insulin‐like growth factor axis targeting in cancer and tumour angiogenesis – the missing link. Biological Reviews 2017; 92(3): 1755 doi: 10.1111/brv.12306
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47 |
Eileen M McGowan, Nahal Haddadi, Najah T. Nassif, Yiguang Lin. Targeting the SphK-S1P-SIPR Pathway as a Potential Therapeutic Approach for COVID-19. International Journal of Molecular Sciences 2020; 21(19): 7189 doi: 10.3390/ijms21197189
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48 |
Nunzia Caporarello, Giovanni Ligresti. Vascular Contribution to Lung Repair and Fibrosis. American Journal of Respiratory Cell and Molecular Biology 2023; 69(2): 135 doi: 10.1165/rcmb.2022-0431TR
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49 |
Noriko Takuwa, Yasuo Okamoto, Kazuaki Yoshioka, Yoh Takuwa. Sphingosine-1-phosphate signaling and cardiac fibrosis. Inflammation and Regeneration 2013; 33(2): 096 doi: 10.2492/inflammregen.33.096
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50 |
Stefan Hajny, Christina Christoffersen. A Novel Perspective on the ApoM-S1P Axis, Highlighting the Metabolism of ApoM and Its Role in Liver Fibrosis and Neuroinflammation. International Journal of Molecular Sciences 2017; 18(8): 1636 doi: 10.3390/ijms18081636
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51 |
Vivek Choudhary, Mrunal Choudhary, Wendy B. Bollag. Exploring Skin Wound Healing Models and the Impact of Natural Lipids on the Healing Process. International Journal of Molecular Sciences 2024; 25(7): 3790 doi: 10.3390/ijms25073790
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52 |
Takeshi Nagamatsu, Yuki Iwasawa‐Kawai, Mayuko Ichikawa, Kei Kawana, Takahiro Yamashita, Yutaka Osuga, Tomoyuki Fujii, Danny J. Schust. Emerging Roles for Lysophospholipid Mediators in Pregnancy. American Journal of Reproductive Immunology 2014; 72(2): 182 doi: 10.1111/aji.12239
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53 |
Hyo Jin Kim, Gyeongmin Kim, Kyun Yoo Chi, Jong-Hoon Kim. In Vitro Generation of Luminal Vasculature in Liver Organoids: From Basic Vascular Biology to Vascularized Hepatic Organoids. International Journal of Stem Cells 2023; 16(1): 1 doi: 10.15283/ijsc22154
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54 |
Amélie Vézina, Cyndia Charfi, Alain Zgheib, Borhane Annabi. Cerebrovascular Angiogenic Reprogramming upon LRP1 Repression: Impact on Sphingosine-1-Phosphate-Mediated Signaling in Brain Endothelial Cell Chemotactism. Molecular Neurobiology 2018; 55(4): 3551 doi: 10.1007/s12035-017-0614-3
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55 |
Yoanne Mousseau, Séverine Mollard, Karine Faucher-Durand, Laurence Richard, Angélique Nizou, Jeanne Cook-Moreau, Yasser Baaj, Hao Qiu, Xavier Plainard, Laurent Fourcade, Benoit Funalot, Franck G. Sturtz. Fingolimod potentiates the effects of sunitinib malate in a rat breast cancer model. Breast Cancer Research and Treatment 2012; 134(1): 31 doi: 10.1007/s10549-011-1903-6
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56 |
Youn-Jeong Choi, Julie D. Saba. Sphingosine phosphate lyase insufficiency syndrome (SPLIS): A novel inborn error of sphingolipid metabolism. Advances in Biological Regulation 2019; 71: 128 doi: 10.1016/j.jbior.2018.09.004
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57 |
Batoul M. Issleny, Rama Jamjoum, Saurav Majumder, Johnny Stiban. History of The Enzymes, Current Topics and Future Perspectives. The Enzymes 2023; 54: 171 doi: 10.1016/bs.enz.2023.07.003
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58 |
Michael W Irvin, Andries Zijlstra, John P Wikswo, Ambra Pozzi. Techniques and assays for the study of angiogenesis. Experimental Biology and Medicine 2014; 239(11): 1476 doi: 10.1177/1535370214529386
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59 |
Jennifer E. Kyle, Geremy Clair, Gautam Bandyopadhyay, Ravi S. Misra, Erika M. Zink, Kent J. Bloodsworth, Anil K. Shukla, Yina Du, Jacquelyn Lillis, Jason R. Myers, John Ashton, Timothy Bushnell, Matthew Cochran, Gail Deutsch, Erin S. Baker, James P. Carson, Thomas J. Mariani, Yan Xu, Jeffrey A. Whitsett, Gloria Pryhuber, Charles Ansong. Cell type-resolved human lung lipidome reveals cellular cooperation in lung function. Scientific Reports 2018; 8(1) doi: 10.1038/s41598-018-31640-x
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60 |
Katarina Riesner, Yu Shi, Angela Jacobi, Martin Kräter, Martina Kalupa, Aleixandria McGearey, Sarah Mertlitz, Steffen Cordes, Jens-Florian Schrezenmeier, Jörg Mengwasser, Sabine Westphal, Daniel Perez-Hernandez, Clemens Schmitt, Gunnar Dittmar, Jochen Guck, Olaf Penack. Initiation of acute graft-versus-host disease by angiogenesis. Blood 2017; 129(14): 2021 doi: 10.1182/blood-2016-08-736314
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61 |
Stefan Hajny, Anna Borup, Sara Elsøe, Christina Christoffersen. Increased plasma apoM levels impair triglyceride turnover in mice. Biochimica et Biophysica Acta (BBA) - Molecular and Cell Biology of Lipids 2021; 1866(9): 158969 doi: 10.1016/j.bbalip.2021.158969
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62 |
Shingo Yasuda, Takayoshi Sumioka, Hiroki Iwanishi, Yuka Okada, Masayasu Miyajima, Kana Ichikawa, Peter S. Reinach, Shizuya Saika. Loss of sphingosine 1-phosphate receptor 3 gene function impairs injury-induced stromal angiogenesis in mouse cornea. Laboratory Investigation 2021; 101(2): 245 doi: 10.1038/s41374-020-00505-1
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63 |
Noriko Takuwa, Yasuo Okamoto, Kazuaki Yoshioka, Yoh Takuwa. Bioactive Lipid Mediators. 2015; : 237 doi: 10.1007/978-4-431-55669-5_17
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64 |
Adam Rauff, Steven A. LaBelle, Hannah A. Strobel, James B. Hoying, Jeffrey A. Weiss. Imaging the Dynamic Interaction Between Sprouting Microvessels and the Extracellular Matrix. Frontiers in Physiology 2019; 10 doi: 10.3389/fphys.2019.01011
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65 |
Yi Yang, Michel T. Torbey . Angiogenesis and Blood-Brain Barrier Permeability in Vascular Remodeling after Stroke. Current Neuropharmacology 2020; 18(12): 1250 doi: 10.2174/1570159X18666200720173316
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66 |
Briana Prager, Simona F. Spampinato, Richard M. Ransohoff. Sphingosine 1-phosphate signaling at the blood–brain barrier. Trends in Molecular Medicine 2015; 21(6): 354 doi: 10.1016/j.molmed.2015.03.006
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67 |
Agnes Bocian-Jastrzębska, Anna Malczewska-Herman, Beata Kos-Kudła. Role of Leptin and Adiponectin in Carcinogenesis. Cancers 2023; 15(17): 4250 doi: 10.3390/cancers15174250
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68 |
Christa Huuskonen, Mari Hämäläinen, Nooa Kivikangas, Timo Paavonen, Eeva Moilanen, Ari Mennander. Myocardial interaction of apixaban after experimental acute volume overload. Journal of International Medical Research 2022; 50(11) doi: 10.1177/03000605221137474
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69 |
Priscilla A. Williams, Roberta S. Stilhano, Vivian P. To, Lyndon Tran, Kevin Wong, Eduardo A. Silva, Rudolf Kirchmair. Hypoxia Augments Outgrowth Endothelial Cell (OEC) Sprouting and Directed Migration in Response to Sphingosine-1-Phosphate (S1P). PLOS ONE 2015; 10(4): e0123437 doi: 10.1371/journal.pone.0123437
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70 |
Sofia Avnet, Emi Mizushima, Beatrice Severino, Maria Veronica Lipreri, Antonia Scognamiglio, Angela Corvino, Nicola Baldini, Margherita Cortini. Antagonizing the S1P-S1P3 Axis as a Promising Anti-Angiogenic Strategy. Metabolites 2025; 15(3): 178 doi: 10.3390/metabo15030178
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71 |
Sharada Prasanna Swain, Chandra Sekhara Mahanta, Madan Maurya, Debabrata Mandal, Vipan Parihar, V. Ravichandiran. Exploring SK/S1P/S1PR pathway as a target for antiviral drug development. Health Sciences Review 2024; 11: 100177 doi: 10.1016/j.hsr.2024.100177
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72 |
Douglas B. Cowan, Hao Wu, Hong Chen. Epsin Endocytic Adaptor Proteins in Angiogenic and Lymphangiogenic Signaling. Cold Spring Harbor Perspectives in Medicine 2024; 14(1): a041165 doi: 10.1101/cshperspect.a041165
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73 |
Anusuya Das, Claire E. Segar, Brian B. Hughley, Daniel T. Bowers, Edward A. Botchwey. The promotion of mandibular defect healing by the targeting of S1P receptors and the recruitment of alternatively activated macrophages. Biomaterials 2013; 34(38): 9853 doi: 10.1016/j.biomaterials.2013.08.015
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74 |
Rouhollah Mousavizadeh, Charlie M. Waugh, Robert G. McCormack, Brian E. Cairns, Alex Scott. MRGPRX2-mediated mast cell activation by substance P from overloaded human tenocytes induces inflammatory and degenerative responses in tendons. Scientific Reports 2024; 14(1) doi: 10.1038/s41598-024-64222-1
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75 |
Anusuya Das, Steven M. Lenz, Anthony O. Awojoodu, Edward A. Botchwey. Abluminal Stimulation of Sphingosine 1-Phosphate Receptors 1 and 3 Promotes and Stabilizes Endothelial Sprout Formation. Tissue Engineering Part A 2015; 21(1-2): 202 doi: 10.1089/ten.tea.2013.0744
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76 |
Priscilla A. Williams, Eduardo A. Silva. The Role of Synthetic Extracellular Matrices in Endothelial Progenitor Cell Homing for Treatment of Vascular Disease. Annals of Biomedical Engineering 2015; 43(10): 2301 doi: 10.1007/s10439-015-1400-x
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77 |
H. Ren, M. Panchatcharam, P. Mueller, D. Escalante-Alcalde, A.J. Morris, S.S. Smyth. Lipid phosphate phosphatase (LPP3) and vascular development. Biochimica et Biophysica Acta (BBA) - Molecular and Cell Biology of Lipids 2013; 1831(1): 126 doi: 10.1016/j.bbalip.2012.07.012
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78 |
Simona Federica Spampinato, Maria Angela Sortino, Salvatore Salomone. New Targets for the Treatment of Hypertension and Associated Diseases. Advances in Pharmacology 2022; 94: 95 doi: 10.1016/bs.apha.2022.02.001
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