2855123-30-5
Chemical Structure
2-Bromo-LSD D-Tartrate
Synonym(s): BOL-148 D-Tartrate; Bromolysergide D-Tartrate
- CAS No.: 2855123-30-5
- Formula:C20H24BrN3O·1/2C4H6O6
- Molecular Weight:477.39
SMILES: OC([C@@H](O)[C@H](O)C(O)=O)=O.BrC1=C2C3=C(N1)C=CC=C3C4=C[C@@H](C(N(CC)CC)=O)CN(C)[C@]4([H])C2.[1/2]
Biological Activity: 2-Bromo-LSD D-Tartrate (BOL-148 D-Tartrate) is a blood-brain barrier-permeable 5-HT2A partial agonist and competitive partial antagonist. 2-Bromo-LSD D-Tartrate acts as both a potent partial agonist (with an EC50 of 0.81 nM for Gq dissociation) and a potent partial antagonist (with a KB of 0.18 nM for Gq dissociation) at the 5-HT2A receptor. 2-Bromo-LSD D-Tartrate exhibits partial agonist activity at multiple aminergic GPCRs, including 5-HT2A. 2-Bromo-LSD D-Tartrate lacks 5-HT2B agonist activity. 2-Bromo-LSD D-Tartrate induces dendritogenesis and spinogenesis. 2-Bromo-LSD D-Tartrate reverses the behavioral effects of chronic stress and increases active coping behaviors in mice[1][2].
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2-Bromo-LSD D-Tartrate | 99.91% | 2-Bromo-LSD D-Tartrate (BOL-148 D-Tartrate) is a blood-brain barrier-permeable 5-HT2A partial agonist and competitive partial antagonist. 2-Bromo-LSD D-Tartrate acts as both a potent partial agonist (with an EC50 of 0.81 nM for Gq dissociation) and a potent partial antagonist (with a KB of 0.18 nM for Gq dissociation) at the 5-HT2A receptor. 2-Bromo-LSD D-Tartrate exhibits partial agonist activity at multiple aminergic GPCRs, including 5-HT2A. 2-Bromo-LSD D-Tartrate lacks 5-HT2B agonist activity. 2-Bromo-LSD D-Tartrate induces dendritogenesis and spinogenesis. 2-Bromo-LSD D-Tartrate reverses the behavioral effects of chronic stress and increases active coping behaviors in mice. | ||||||||||||||||||||
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- [1]. Persson SA, et al. The effect of LSD and 2-bromo LSD on the striatal DOPA accumulation after decarboxylase inhibition in rats. Eur J Pharmacol. 1977;43(1):73-83. [Content Brief]
- [2]. Lewis V, et al. A non-hallucinogenic LSD analog with therapeutic potential for mood disorders. Cell Rep. 2023;42(3):112203. [Content Brief]
Keywords