Product References
Ginsenoside Rb1 induces a pro-neurogenic microglial phenotype via PPARγ activation in male mice exposed to chronic mild stress.
Journal of neuroinflammation
Zhang L,Tang M,Xie X,Zhao Q,Hu N,He H,Liu G,Huang S,Peng C,Xiao Y,You Z
PA5-36763 was used in Western Blot to study whether ginsenoside Rb1 (GRb1) may exert antidepressant effects by promoting a pro-neurogenic phenotype of microglia and thereby increasing neurogenesis.
Mon Aug 09 00:00:00 UTC 2021
Ginsenoside Rb1 induces a pro-neurogenic microglial phenotype via PPARγ activation in male mice exposed to chronic mild stress.
Journal of neuroinflammation
Zhang L,Tang M,Xie X,Zhao Q,Hu N,He H,Liu G,Huang S,Peng C,Xiao Y,You Z
PA5-36763 was used in Western Blot to study whether ginsenoside Rb1 (GRb1) may exert antidepressant effects by promoting a pro-neurogenic phenotype of microglia and thereby increasing neurogenesis.
Mon Aug 09 00:00:00 UTC 2021
Cardiolipin-mediated PPARγ S112 phosphorylation impairs IL-10 production and inflammation resolution during bacterial pneumonia.
Cell reports
Garg M,Johri S,Sagar S,Mundhada A,Agrawal A,Ray P,Chakraborty K
PA5-36763 was used in Immunoprecipitation to explore the mechanism of mito-DAMP-mediated impaired lung inflammation resolution and propose a therapeutic strategy targeting PPARγ PTMs.
Tue Feb 09 00:00:00 UTC 2021
Transcriptional and Histochemical Signatures of Bone Marrow Mononuclear Cell-Mediated Resolution of Synovitis.
Frontiers in immunology
Menarim BC,El-Sheikh Ali H,Loux SC,Scoggin KE,Kalbfleisch TS,MacLeod JN,Dahlgren LA
PA5-36763 was used in Immunohistochemistry (Paraffin) to study differential transcriptional signatures of bone marrow mononuclear cells in response to normal and inflamed synovial fluid.
Thu Feb 10 00:00:00 UTC 2022
Long non-coding RNA PRRT3-AS1 silencing inhibits prostate cancer cell proliferation and promotes apoptosis and autophagy.
Experimental physiology
Fan L,Li H,Wang W
PA5-36763 was used in Immunohistochemistry (Paraffin), Western Blot to investigate the effects of lncRNA PRRT3-AS1 on the progression of prostate cancer (PC) with involvement of peroxisome proliferator-activated receptor γ (PPARγ).
Fri May 01 00:00:00 UTC 2020
Inactivated FABP5 suppresses malignant progression of prostate cancer cells by inhibiting the activation of nuclear fatty acid receptor PPARγ.
Genes & cancer
Al-Jameel W,Gou X,Jin X,Zhang J,Wei Q,Ai J,Li H,Al-Bayati A,Platt-Higgins A,Pettitt A,Rudland PS,Ke Y
PA5-36763 was used in Immunocytochemistry to show that the FABP5 inhibitor dmrFABP5 is a novel molecule for treatment of experimental CRPC and its inhibitory effect is much greater than that produced by SB-FI-26 reported in our previous work.
Wed May 01 00:00:00 UTC 2019
Inactivated FABP5 suppresses malignant progression of prostate cancer cells by inhibiting the activation of nuclear fatty acid receptor PPARγ.
Genes & cancer
Al-Jameel W,Gou X,Jin X,Zhang J,Wei Q,Ai J,Li H,Al-Bayati A,Platt-Higgins A,Pettitt A,Rudland PS,Ke Y
PA5-36763 was used in Immunocytochemistry to show that the FABP5 inhibitor dmrFABP5 is a novel molecule for treatment of experimental CRPC and its inhibitory effect is much greater than that produced by SB-FI-26 reported in our previous work.
Wed May 01 00:00:00 UTC 2019
Inactivated FABP5 suppresses malignant progression of prostate cancer cells by inhibiting the activation of nuclear fatty acid receptor PPARγ.
Genes & cancer
Al-Jameel W,Gou X,Jin X,Zhang J,Wei Q,Ai J,Li H,Al-Bayati A,Platt-Higgins A,Pettitt A,Rudland PS,Ke Y
PA5-36763 was used in Immunocytochemistry to show that the FABP5 inhibitor dmrFABP5 is a novel molecule for treatment of experimental CRPC and its inhibitory effect is much greater than that produced by SB-FI-26 reported in our previous work.
Wed May 01 00:00:00 UTC 2019