Sex Differences in the Effects of MDMA (Ecstasy) on Plasma Copeptin in Healthy Subjects
Linda D. Simmler, Cédric M. Hysek, Matthias E. Liechti
The Journal of Clinical Endocrinology & Metabolism June 30, 2011 DOI: 10.1210/jc.2011-1143 via OpenAlex
Summary
AI-generated from the abstractMDMA (ecstasy) increases plasma copeptin, a marker for vasopressin secretion, in women but not in men. In a randomized placebo-controlled crossover trial with 16 healthy subjects, MDMA (125 mg) significantly elevated copeptin levels in women at 60 and 120 minutes, an effect prevented by pretreatment with duloxetine, which blocks MDMA-induced release of serotonin and norepinephrine. MDMA also tended to increase urine sodium and osmolality, indicating renal water retention, despite increased water intake. This sex difference in vasopressin secretion may explain why hyponatremia is more common in female ecstasy users.
Study at a glance
| Characteristics | Randomized placebo-controlled crossover trial Peer reviewed |
|---|---|
| Sample size | 16 |
| Population | Healthy subjects (eight female, eight male) |
| Interventions | MDMA (125 mg) duloxetine (120 mg) |
| Dose | 125 mg |
| Topics | MDMA Serotonin |
| Keywords | Copeptin Endocrinology Placebo |
| Citations | 91 |
| Key finding | MDMA significantly elevated plasma copeptin levels in women but not in men, and this effect was prevented by duloxetine, suggesting mediation by serotonin and/or norepinephrine release. |
Abstract
Abstract Background: 3,4-Methylenedioxymethamphetamine (MDMA, ecstasy) misuse is associated with hyponatremia particularly in women. Hyponatremia is possibly due to inappropriate secretion of plasma arginine vasopressin (AVP). Objective: To assess whether MDMA increases plasma AVP and copeptin in healthy male and female subjects and whether effects depend on MDMA-induced release of serotonin and norepinephrine. Copeptin, the C-terminal part of the AVP precursor preprovasopressin, is cosecreted with AVP and can be determined more reliably. Methods: We used a randomized placebo-controlled crossover design. Plasma and urine osmolalities as well as AVP and copeptin levels were measured in 16 healthy subjects (eight female, eight male) at baseline and after MDMA (125 mg) administration. In addition, we tested whether effects of MDMA on AVP and copeptin secretion can be prevented by pretreatment with the serotonin and norepinephrine transporter inhibitor duloxetine (120 mg), which blocks MDMA-induced transporter-mediated release of serotonin and norepinephrine. Results: MDMA significantly elevated plasma copeptin levels at 60 min and at 120 min compared with placebo in women but not in men. The copeptin response to MDMA in women was prevented by duloxetine. MDMA also nonsignificantly increased plasma AVP levels in women, and the effect was prevented by duloxetine. Although subjects drank more water after MDMA compared with placebo administration, MDMA tended to increase urine sodium levels and urine osmolality compared with placebo, indicating increased renal water retention. Conclusion: MDMA increased plasma copeptin, a marker for AVP secretion, in women but not in men. This sex difference in MDMA-induced AVP secretion may explain why hyponatremia is typically reported in female ecstasy users. The copeptin response to MDMA is likely mediated via MDMA-induced release of serotonin and/or norepinephrine because it was prevented by duloxetine, which blocks the interaction of MDMA with the serotonergic and noradrenergic system.