Designer Drug Research Unit (@ddru_pubs) 's Twitter Profile
Designer Drug Research Unit

@ddru_pubs

Highlighting research out of the Baumann lab aka the DDRU. The DDRU primarily studies the neuropharmacology of designer drugs & novel medications.

ID: 1347212724191834115

calendar_today07-01-2021 16:05:47

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Grant Glatfelter (@gcglatfelter) 's Twitter Profile Photo

New article out now regarding the pharmacology of #psilocybin analogues including other compounds found in psilocybin-containing mushrooms, their active metabolites, and 4-acetoxy derivatives. pubs.acs.org/doi/10.1021/ac… #pharmacology #psychedelics #aeruginascin #baeocystin

New article out now regarding the pharmacology of #psilocybin analogues including other compounds found in psilocybin-containing mushrooms, their active metabolites, and 4-acetoxy derivatives.

pubs.acs.org/doi/10.1021/ac…

#pharmacology #psychedelics #aeruginascin #baeocystin
ACS Publications Bio & Med Chem Content (@acsbiomed) 's Twitter Profile Photo

SARs for #psilocybin, #baeocystin, #aeruginascin, & related analogs to produce effects in mice. New report on the receptor binding profiles, functional activities, and acute in vivo effects (HTR, body temp, locomotion).#psychedelics #pharmacology go.acs.org/2LO

SARs for #psilocybin, #baeocystin, #aeruginascin, & related analogs to produce effects in mice.

New report on the receptor binding profiles, functional activities, and acute in vivo effects (HTR, body temp, locomotion).#psychedelics #pharmacology 

go.acs.org/2LO
Grant Glatfelter (@gcglatfelter) 's Twitter Profile Photo

Out now! Potential non-5-HT receptor targets of various #psychedelic tryptamines #Psilocybin-like effects and potency of 4-PrO-DMT in mice consistent with reports of its subjective effects 5-HT1A activity influenced 5-HT2A mediated HTR pubs.acs.org/doi/10.1021/ac… ACS Publications Bio & Med Chem Content

Out now!

Potential non-5-HT receptor targets of various #psychedelic tryptamines

#Psilocybin-like effects and potency of 4-PrO-DMT in mice consistent with reports of its subjective effects

5-HT1A activity influenced 5-HT2A mediated HTR

pubs.acs.org/doi/10.1021/ac…

<a href="/ACSBioMed/">ACS Publications Bio & Med Chem Content</a>
Marthe Vandeputte (@marthevdp) 's Twitter Profile Photo

⏩️ Find the answers in this pre-proof on the comparative neuropharmacology of #U47700, #Ndesethylisotonitazene, #brorphine & more 🔀 In vitro + in vivo (rats) profiling ⏯️ doi.org/10.1016/j.drug… Always a pleasure to work with Dr Baumann and team! 🙌🌏 Designer Drug Research Unit Grant Glatfelter

Grant Glatfelter (@gcglatfelter) 's Twitter Profile Photo

Comparative #neuropharmacology of structurally distinct non-#fentanyl #opioids that are appearing on recreational drug markets worldwide Final version is live in @DrugAlcoholDep and you can download it right from this link! authors.elsevier.com/c/1hBPh1LiD3Dm…

Cayman Chemical (@cayman_forensic) 's Twitter Profile Photo

Comparative neuropharmacology of structurally distinct non-fentanyl opioids that are appearing on recreational drug markets worldwide: doi.org/10.1016/j.drug… U-47700 HCL, isotonitazene, N-desethyl isotonitazene, and brorphine HCl were purchased from Cayman Chemical

Comparative neuropharmacology of structurally distinct non-fentanyl opioids that are appearing on recreational drug markets worldwide: doi.org/10.1016/j.drug…

U-47700 HCL, isotonitazene, N-desethyl isotonitazene, and brorphine HCl were purchased from Cayman Chemical
Grant Glatfelter (@gcglatfelter) 's Twitter Profile Photo

The ED50 of the most potent #nitazene, #etonitazene (3 - 12 ug/kg), was ~10–17- & ~ 850–1,400-fold higher compared to #fentanyl & #morphine. In vitro and in vivo potencies were correlated across multiple assays and measures.

The ED50 of the most potent #nitazene, #etonitazene (3 - 12 ug/kg), was ~10–17- &amp; ~ 850–1,400-fold higher compared to #fentanyl &amp; #morphine. In vitro and in vivo potencies were correlated across multiple assays and measures.
Christophe Stove (@christophestove) 's Twitter Profile Photo

The result of yet another fantastic collaboration with the Designer Drug Research Unit (Michael Baumann) group now out in @Psychopharm: 👇 Grant Glatfelter et al., "Alkoxy chain length governs the potency of 2-benzylbenzimidazole 'nitazene' opioids associated with human overdose." 👏 #nitazenes