(R)-MDMA has a dose of 125 to 300mg orally and a duration of 3.5 to 5.2hours.[2] It has been estimated that doses of 125mg MDMA, 100mg (S)-MDMA, and 300mg (R)-MDMA are equivalent.[2]
The first modern clinical study of the comparative effects of MDMA, (R)-MDMA, and (S)-MDMA was published in August 2024.[1][2] It compared 125mg MDMA, 125mg (S)-MDMA, 125 and 250mg (R)-MDMA, and placebo.[1][2] (R)-MDMA increased any drug effect, good drug effect, drug liking, stimulation, drug high, alteration of vision, and alteration of sense of time ratings similarly to MDMA and (S)-MDMA.[2] However, (S)-MDMA 125mg was more potent in increasing subjective effects, including stimulation, drug high, happy, and open, among others, than (R)-MDMA 125 or 250mg or MDMA 125mg.[1][2] Ratings of bad drug effect and fear were minimal with MDMA, (R)-MDMA, and (S)-MDMA.[2] In contrast to expectations, (R)-MDMA did not produce more psychedelic-like effects than (S)-MDMA.[1][2] Besides subjective effects, (R)-MDMA increased heart rate, blood pressure, and body temperature similarly to MDMA and (S)-MDMA, though it was less potent in producing these effects.[2] Body temperature was notably increased to the same extent with (R)-MDMA 250mg as with MDMA 125mg and (S)-MDMA 125mg.[2]
The differences in effects between (R)-MDMA and (S)-MDMA may reflect the higher potency of (S)-MDMA rather than actual qualitative differences between the effects of (S)-MDMA and (R)-MDMA.[1][2] It was estimated that equivalent effects would be expected with (S)-MDMA 100mg, MDMA 125mg, and (R)-MDMA 300mg.[1][2] The findings of the study were overall regarded as not supporting the hypothesis that (R)-MDMA would produce equivalent therapeutic effects as (S)-MDMA or MDMA whilst reducing safety concerns.[1][2] However, more clinical studies were called for to assess the revised estimated equivalent doses of MDMA, (R)-MDMA, and (S)-MDMA.[1][2]
MDMA is a well-balanced serotonin–norepinephrine–dopamine releasing agent (SNDRA).[19][4][12] (R)-MDMA and (S)-MDMA are both SNDRAs similarly.[19][4][12] However, (R)-MDMA is several-fold less potent than (S)-MDMA in vitro and is also less potent than (S)-MDMA in vivo in non-human primates.[4][12][3] In addition, whereas MDMA and (S)-MDMA are well-balanced SNDRAs, (R)-MDMA is comparatively much less potent as a dopamine releasing agent (~11-fold less potent in releasing dopamine than serotonin), and could be thought of instead more as a serotonin–norepinephrine releasing agent (SNRA) than as an SNDRA.[4][12][3][5] In non-human primates, (S)-MDMA demonstrated significant dopamine transporter (DAT) occupancy, whereas DAT occupancy with (R)-MDMA was undetectable.[3] Similarly, MDMA and (S)-MDMA were found to increase dopamine levels in the striatum in rodents and non-human primates, whereas (R)-MDMA did not increase striatal dopamine levels.[3][20] As such, (R)-MDMA may be less psychostimulant-like than MDMA or (S)-MDMA.[2][5]
In addition to its actions as an SNDRA, MDMA has weak affinity for the serotonin5-HT2A, 5-HT2B, and 5-HT2C receptors, where it acts as an agonist.[3] (R)-MDMA shows higher affinity for the serotonin 5-HT2A receptor than (S)-MDMA or MDMA.[3] In addition, (R)-MDMA is more potent as an agonist of the serotonin 5-HT2A receptor, acting as a weak partial agonist of this receptor, whereas (S)-MDMA shows very little effect.[3] Conversely however, (S)-MDMA is more potent as an agonist of the serotonin 5-HT2C receptor.[3][21] Based on these findings, it has been hypothesized that (R)-MDMA may be more psychedelic-like than (S)-MDMA.[2] However, although (R)-MDMA partially substitutes for lysergic acid diethylamide (LSD) in animal drug discrimination tests, it did not produce the head-twitch response, a behavioral proxy of psychedelic effects, at any tested dose.[22] In any case, findings in this area are conflicting.[23] (R)-MDMA is inactive as an agonist of the human TAAR1, whereas (S)-MDMA shows very weak potency as an agonist of the receptor (EC50Tooltip half-maximal effective concentration = 74,000nM).[24]
MDMA is a well-known serotonergic neurotoxin and this has been demonstrated both in animals and in humans.[3] There is evidence that the serotonergic neurotoxicity of MDMA may be driven primarily by (S)-MDMA rather than (R)-MDMA.[3] (R)-MDMA shows substantially lower or potentially no neurotoxicity compared to (S)-MDMA in animal studies.[3] This has been the case even when doses of (R)-MDMA were increased to account for its lower potency than (S)-MDMA.[3] However, more research is needed to confirm this in other species, such as non-human primates.[3] In contrast to (S)-MDMA, (R)-MDMA does not produce hyperthermia in rodents, and this may be involved in its reduced risk of neurotoxicity, as hyperthermia augments and is essential for the serotonergic neurotoxicity of MDMA.[3][5] The reduced potency of (R)-MDMA as a dopamine releasing agent may also be involved in its reduced neurotoxic potential, as dopamine release is likewise essential for the neurotoxicity of MDMA.[3] The hyperthermia of MDMA may in fact be mediated by dopamine release.[3][5] As (R)-MDMA is less neurotoxic than (S)-MDMA and MDMA or even non-neurotoxic, it may allow for greater clinical viability and prolonged regimens of drug-assisted psychotherapy.[3]
(R)-MDMA and (S)-MDMA have shown equivalent effects in terms of inducing prosocial behavior in monkeys.[3] However, (S)-MDMA shows higher potency, whereas (R)-MDMA shows greater maximal effects.[3] Conversely, (S)-MDMA does not increase prosocial behavior in mice, whereas both MDMA and (R)-MDMA do so.[3][5] MDMA and (S)-MDMA increase locomotor activity, a measure of psychostimulant-like effect, in rodents, whereas (R)-MDMA does not do so.[5] (R)-MDMA likewise showed fewer reinforcing effects than (S)-MDMA in non-human primates.[3] These findings further add to (R)-MDMA showing reduced psychostimulant-like and addictive effects compared to MDMA and (S)-MDMA.[3]
MDMA, MDA, and enantiomers at serotonin 5-HT2 receptors
(R)-3,4-Methylenedioxy-N-methylamphetamine ((R)-MDMA) is a controlled substance and an enantiomer of MDMA (ecstasy)
. Due to its legal status as a scheduled substance in most jurisdictions, it cannot be legally purchased through standard retail channels. Purchasing is strictly restricted to licensed scientific, pharmaceutical, or forensic research facilities through authorized chemical suppliers, requiring proper registration and controlled substance licenses.
Wikipedia
Legality: In most countries, MDMA and its enantiomers are classified as Schedule I or equivalent controlled substances, making unauthorized possession, sale, or distribution illegal.
Supplier Acquisition: Licensed research institutions looking for analytical standards can inquire with reputable, regulated chemical research suppliers (e.g., Sigma-Aldrich, Cayman Chemical) that specialize in authorized, controlled substances.
Alternatives: Researchers studying the enantiomers of MDMA must follow all local laws regarding the acquisition of controlled substances, which involves documentation of research intent and authorized storage.
Do not attempt to purchase this substance through unregulated online sources, as this is illegal and dangerous.
(R)-MDMA - Wikipedia
(R)-3,4-Methylenedioxy-N-methylamphetamine ((R)-MDMA), also known as (R)-midomafetamine or as levo-MDMA, is the (R)- or levorotato...
Wikipedia
3,4-Methylenedioxyamphetamine
It has been described as the first entactogen. MDA has also been described as probably the most popular analogue of MDMA. In most ...
MDMA (3,4-Methylenedioxymethamphetamine, Ecstasy) is a psychoactive amphetamine drug with entactogenic, psychedelic, and stimulant effects. The mechanism of ...Read more
Missing: (R R Cas 81262-70-6
(±)-3,4-Methylenedioxymethamphetamine 64057-70-1
Sigma-Aldrich
https://www.sigmaaldrich.com › product › sigma
3,4-Methylenedioxymethamphetamine hydrochloride; CAS Number: 64057-70-1; Synonyms: (±)-MDMA hydrochloride,DL-3,4-Methylenedioxymethamphetamine,DL-MDMA ...
(R)-MDMA
Wikipedia
https://en.wikipedia.org › wiki › (R)-MDMA
(R)-MDMA shows equivalent therapeutic-like effects to MDMA, such as increased prosocial behavior, but shows reduced psychostimulant-like effects.Read more
3,4-MDMA (hydrochloride): An Analytical Reference Material. CAS Number: 64057-70-1. Synonyms: 3,4-Methylenedioxymethylamphetamine, NSC 168383. Purity: ≥98%.
Missing: 81262-70-6 | Show results with: 81262-70-6
Ecstasy: 3,4-methylenedioxymethamphetamine (MDMA)
National Institutes of Health (.gov)
https://pubmed.ncbi.nlm.nih.gov › ...
by BH Morimoto · 1998 · Cited by 27 — The crystal structure of 3,4-methylenedioxymethamphetamine [systematic name: N-methyl-1-[3,4-(methylenedioxy) phenyl]-2-aminopropane] hydrochloride, C11H15NO2.Read more
Missing: (R R Cas 81262-70-6
Dark Classics in Chemical Neuroscience: 3,4 ...
ACS Publications
https://pubs.acs.org › doi
Better known as “ecstasy”, 3,4-methylenedioxymethamphetamine (MDMA) is a small molecule that has played a prominent role in defining the ethos of today's ...Read more
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N-Methyl-3,4-methylenedioxyamphetamine
National Institute of Standards and Technology (.gov)
https://webbook.nist.gov › cgi › inchi
N-Methyl-3,4-methylenedioxyamphetamine · Formula: C11H15NO · Molecular weight: 193.2423 · IUPAC Standard InChI: InChI=1S/C11H15NO2/c1-8(12-2)5-9-3-4-10-11(6-9)14-7 ...Read more
3,4-Methylenedioxymethamphetamine, commonly known as MDMA or ecstasy, is a psychoactive drug. MDMA was first synthesized in 1912 by the German pharmaceutical ...Read more
Missing: 81262-70-6 | Show results with: 81262-70-6
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