Size: | Price | Quantity | |
---|---|---|---|
5 mg | $76.00 | ||
25 mg | $300.00 |
Guggulsterone-(Z) (39025-23-5) is a natural steroid from Commiphora mukul extract (guggulipid) which lowers cholesterol and acts as an FXR antagonist.1 Attenuates astrocyte-mediated neuroinflammation.2 Induces differentiation of pluripotent stem cells to dopaminergic neurons.3 Produces antidepressant-like effects via activation of the BDNF signaling pathway in mouse models.4
References/Citations:
1) Urizar et al. (2002), A Natural Product That Lowers Cholesterol as an Antagonist Ligand for FXR; Science, 296 1703
2) Liu et al. (2018), Z-Guggulsterone attenuates astrocytes-mediated neuroinflammation after ischemia by inhibiting toll-like receptor 4 pathway; J. Neurochem., 147 803
3) Agbay et al. (2018), Guggulsterone-releasing Microspheres Direct the Differentiation of Human Induced Pluripotent Stem Cells Into Neural Phenotypes; Biomed. Mater., 13 034104
4) Liu et al. (2017), Z-Guggulsterone Produces Antidepressant-Like Effects in Mice through Activation of the BDNF Signaling Pathway; Int. J. Neuropsychopharmacol., 20 485
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Guggulsterone-(Z) (39025-23-5) is a natural steroid from Commiphora mukul extract (guggulipid) which lowers cholesterol and acts as an FXR antagonist.1 Attenuates astrocyte-mediated neuroinflammation.2 Induces differentiation of pluripotent stem cells to dopaminergic neurons.3 Produces antidepressant-like effects via activation of the BDNF signaling pathway in mouse models.4
References/Citations:
1) Urizar et al. (2002), A Natural Product That Lowers Cholesterol as an Antagonist Ligand for FXR; Science, 296 1703
2) Liu et al. (2018), Z-Guggulsterone attenuates astrocytes-mediated neuroinflammation after ischemia by inhibiting toll-like receptor 4 pathway; J. Neurochem., 147 803
3) Agbay et al. (2018), Guggulsterone-releasing Microspheres Direct the Differentiation of Human Induced Pluripotent Stem Cells Into Neural Phenotypes; Biomed. Mater., 13 034104
4) Liu et al. (2017), Z-Guggulsterone Produces Antidepressant-Like Effects in Mice through Activation of the BDNF Signaling Pathway; Int. J. Neuropsychopharmacol., 20 485
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