1. Sphingosine-1-phosphate induces airway smooth muscle cell proliferation, migration, and contraction by modulating Hippo signaling effector YAP
    Lu Liu et al, 2018, American Journal of Physiology-Lung Cellular and Molecular Physiology CrossRef
  2. Inhibition of lysophosphatidic acid receptor 1–3 deteriorates experimental autoimmune encephalomyelitis by inducing oxidative stress
    Jong Hee Choi et al, 2021, Journal of Neuroinflammation CrossRef
  3. The ATX–LPA Axis Regulates Vascular Permeability during Cerebral Ischemic-Reperfusion
    Susmita Bhattarai et al, 2022, International Journal of Molecular Sciences CrossRef
  4. NADPH Oxidase 3: Beyond the Inner Ear
    Marc Herb, 2024, Antioxidants CrossRef
  5. Inhibition of ChREBP ubiquitination via the ROS/Akt-dependent downregulation of Smurf2 contributes to lysophosphatidic acid-induced fibrosis in renal mesangial cells
    Donghee Kim et al, 2022, Journal of Biomedical Science CrossRef
  6. Effects of lysophosphatidic acid on human periodontal ligament stem cells from teeth extracted from dental patients
    Byung Cheol Kim et al, 2019, The Journal of Biomedical Research CrossRef
  7. Sphingosine-1-phosphate promotes pulmonary artery smooth muscle cells proliferation by stimulating autophagy-mediated E-cadherin/CDH1 down-regulation
    Cui Zhai et al, 2020, European Journal of Pharmacology CrossRef
  8. Status of Metabolomic Measurement for Insights in Alzheimer’s Disease Progression—What Is Missing?
    Chunyuan Yin et al, 2023, International Journal of Molecular Sciences CrossRef
  9. Sphingosine 1-phosphate elicits RhoA-dependent proliferation and MRTF-A mediated gene induction in CPCs
    Alessandra Castaldi et al, 2016, Cellular Signalling CrossRef
  10. Successive High-Resolution (H2O)n-GCIB and C60-SIMS Imaging Integrates Multi-Omics in Different Cell Types in Breast Cancer Tissue
    Hua Tian et al, 2021, Analytical Chemistry CrossRef
  11. Plasma Rich in Growth Factors Induces Cell Proliferation, Migration, Differentiation, and Cell Survival of Adipose-Derived Stem Cells
    Maravillas Mellado-López et al, 2017, Stem Cells International CrossRef
  12. Isolation, culture and identification of human adipose-derived stem cells
    Jian-Mei Wang et al, 2017, Experimental and Therapeutic Medicine CrossRef
  13. Cross-talk between lysophosphatidic acid receptor 1 and tropomyosin receptor kinase A promotes lung epithelial cell migration
    Ling Nan et al, 2016, Biochimica et Biophysica Acta (BBA) - Molecular Cell Research CrossRef
  14. Lysophosphatidic acid signaling regulates the KLF9-PPARγ axis in human induced pluripotent stem cell-derived neurons
    Tamotsu Tsukahara et al, 2017, Biochemical and Biophysical Research Communications CrossRef
  15. Protective effect of antioxidant Tempol on cardiac stem cells in chronic pressure overload hypertrophy
    Sherin Saheera et al, 2019, Life Sciences CrossRef
  16. A Novel Model of Diabetic Complications: Adipocyte Mitochondrial Dysfunction Triggers Massive β-Cell Hyperplasia
    Christine M. Kusminski et al, 2020, Diabetes CrossRef
  17. Expression of factors involved in apoptosis and cell survival is correlated with enzymes synthesizing lysophosphatidic acid and its receptors in granulosa cells originating from different types of bovine ovarian follicles
    Emilia Sinderewicz et al, 2017, Reproductive Biology and Endocrinology CrossRef
  18. BNIP3 induction by hypoxia stimulates FASN-dependent free fatty acid production enhancing therapeutic potential of umbilical cord blood-derived human mesenchymal stem cells
    Hyun Jik Lee et al, 2017, Redox Biology CrossRef
  19. Lysophosphatidic Acid Receptor 1- and 3-Mediated Hyperalgesia and Hypoalgesia in Diabetic Neuropathic Pain Models in Mice
    Hiroshi Ueda et al, 2020, Cells CrossRef
  20. Lysophosphatidic Acid and Hematopoiesis: From Microenvironmental Effects to Intracellular Signaling
    Kuan-Hung Lin et al, 2020, International Journal of Molecular Sciences CrossRef
  21. Targeting lysophosphatidic acid receptor with Ki16425 impedes T cell lymphoma progression through apoptosis induction, glycolysis inhibition, and activation of antitumor immune response
    Vishal Kumar Gupta et al, 2022, Apoptosis CrossRef