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MT-2 (Melanotan 2 Acetate) - 10mg

Amino

MT-2 (Melanotan 2 Acetate) - 10mg

$30.00

In Stock

MT-2 (Melanotan 2 Acetate) - 10mg is a clearly identified research-use reference material supplied in the verified 10mg · 1 vial presentation. Verified product specification: 10mg. A current lot-specific Certificate of Analysis is available for quality and traceability documentation. Research Use Only. Not for human use. Not for animal use.

1
Research use only. Products are intended strictly for qualified laboratory or in-vitro research and are not for human or veterinary use.

COAs & testing

Current and historical batch documentation

Approved testing records for this product and selected strength are shown directly on the purchase page. Results apply only to the documented sample or batch.

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Safety Data Sheet (SDS)

Melanotan II Acetate

Revision 1.0 · August 30, 2026 · Formulation-level safety, handling, storage, first-aid, and transport information.

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Historical COA

Lot 8260410

Report
2604270105
Test date
2026-04-22
Issued
2026-04-27
Purity
99.62% purity
Assay
99.62%
Disposition
pass

Technical specifications

Compound information

Molecular, technical, storage, and laboratory-handling information for the selected variation. Unknown or unverified fields remain blank.

Molecular profile

Product
MT-2 (Melanotan 2 Acetate) - 10mg
Strength
Standard
Product form
simple
Canonical compound
MT-2 (Melanotan 2 Acetate) - 10mg

Storage requirements

Storage
Refrigerate after mixing, 0°C–8°C. Keep away from UV light.

Storage and handling information is for laboratory operations only. It is not dosing, administration, or medical guidance, and it does not replace a lot-specific expiration or stability document.

Peer-reviewed research

The research behind this compound

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Journal studies

Research articles and study summaries

All articles

MT-2 -: Melatonin Induces Analgesic Effects through MT 2 Receptor-Mediated Neuroimmune Modulation in the Mice Anterior Cingulate Cortex.

Neuropathic pain (NP) represents a considerable clinical challenge, profoundly impacting patients' quality of life. Presently, pharmacotherapy serves as a primary approach for NP alleviation, yet its efficacy often remains suboptimal. Melatonin (MLT), a biologically active compound secreted by the pineal gland, has long been associated with promoting and maintaining sleep.

Read sourced summary

MT-2 -: The location, physiology, pathology of hippocampus Melatonin MT 2 receptor and MT 2 -selective modulators.

Melatonin, a neurohormone secreted by the pineal gland and regulated by the suprachiasmatic nucleus (SCN) of the hypothalamus, is synthesized and directly released into the cerebrospinal fluid (CSF) of the third ventricle (3rdv), where it undergoes rapid absorption by surrounding tissues to exert its physiological function. The hippocampus, a vital structure in the limbic system adjacent to the ventricles, plays a pivotal role in emotional response and memory formation. Melatonin MT 1 and MT 2 receptors are G protein-coupled receptors (GPCRs) that primarily mediate melatonin's receptor-dependent effects.

Read sourced summary

MT-2 -: Differential Function of Melatonin MT 1 and MT 2 Receptors in REM and NREM Sleep.

The pathophysiological function of the G-protein coupled melatonin MT 1 and MT 2 receptors has not yet been well-clarified. Recent advancements using selective MT 1 / MT 2 receptor ligands and MT 1 /MT 2 receptor knockout mice have suggested that the activation of the MT 1 receptors are mainly implicated in the regulation of rapid eye movement (REM) sleep, whereas the MT 2 receptors selectively increase non-REM (NREM) sleep. Studies in mutant mice show that MT 1 knockout mice have an increase in NREM sleep and a decrease in REM sleep, while MT2 knockout mice a decrease in NREM sleep.

Read sourced summary

MT-2 -: Melatonin MT 1 and MT 2 receptor ERK signaling is differentially dependent on G i/o and G q/11 proteins.

G protein-coupled receptors (GPCRs) transmit extracellular signals into cells by activating G protein- and β-arrestin-dependent pathways. Extracellular signal-regulated kinases (ERKs) play a central role in integrating these different linear inputs coming from a variety of GPCRs to regulate cellular functions. Here, we investigated human melatonin MT 1 and MT 2 receptors signaling through the ERK1/2 cascade by employing different biochemical techniques together with pharmacological inhibitors and siRNA molecules.

Read sourced summary

MT-2 -: Activation of spinal melatonin MT 2 receptors reduces neuropathic pain in mice in a sex-dependent manner.

Previous studies have reported the effects of melatonin mainly in male rodents. However, the effect of sex on the effect of melatonin remains unknown. The purpose of this study was to evaluate the role of sex in the antiallodynic effect of melatonin under neuropathic pain conditions.

Read sourced summary

MT-2 -: Melatonin Abates TMJOA Chronic Pain by MT 2 R in Trigeminal Ganglion Neurons.

Temporomandibular joint osteoarthritis (TMJOA) is one of the most common diseases causing chronic pain in the oral and maxillofacial region. So far, there are few ways to relieve the pain of TMJOA. Melatonin (MT) has a good analgesic effect in many diseases, including fibromyalgia, neuropathic pain, chronic headache, and burn pain, with very low acute toxicity and side effects.

Read sourced summary

MT-2 -: 2-Arylmelatonin analogues: Probing the 2-phenyl binding pocket of melatonin MT 1 and MT 2 receptors.

In crystal structures of melatonin MT 1 and MT 2 receptors, a lipophilic subpocket has been characterized which accommodates the phenyl ring of the potent agonist 2-phenylmelatonin. This subpocket appears a key structural element to achieve high binding affinity and selectivity for the MT 2 receptor. A series of 2-arylindole ligands was synthesized to probe the requirements for the optimal occupation and interaction with the 2-phenyl binding pocket.

Read sourced summary

MT-2 -: Melatonin MT 2 receptor is expressed and potentiates contraction in human airway smooth muscle.

Nocturnal asthma is characterized by heightened bronchial reactivity at night, and plasma melatonin concentrations are higher in patients with nocturnal asthma symptoms. Numerous physiological effects of melatonin are mediated via its specific G protein-coupled receptors (GPCRs) named the MT 1 receptor, which couples to both G q and G i proteins, and the MT 2 receptor, which couples to G i . We investigated whether melatonin receptors are expressed on airway smooth muscle; whether they regulate intracellular cyclic AMP (cAMP) and calcium concentrations ([Ca 2+ ] i ), which modulate airway smooth muscle tone; and whether they promote airway smooth muscle cell proliferation.

Read sourced summary

Registered clinical trials

All trials

NCT04073433 · WITHDRAWN

Psychological Effects of Methylenedioxymethamphetamine (MDMA) When Administered to Healthy Volunteers (MT-2)

The goal of this clinical trial is to study MDMA-assisted therapy in healthy volunteers and provide training of therapists. The main question it aims to answer is: Does MDMA-assisted therapy result in personal and professional benefits? Participants will have a non-drug preparatory session prior to each experimental session and an integrative session after each experimental session.

Registry record

NCT01180855 · UNKNOWN

Effects of Ramelteon (8mg) Alone and in Combination With Multi-Component Behavioral Therapy on Sleep and Circadian Phase in Patients With Chronic Insomnia

The specific aims of the proposed study are to compare the sleep, daytime functioning, and circadian phase effects of ROZEREMTM (ramelteon/TAK-375) a selective MT1/MT2 melatonin receptor agonist in humans alone and in combination with multi-component behavior therapy (MCBT) in patients with chronic insomnia.

Registry record

NCT00391755 · TERMINATED

A Double-Blind Placebo-Controlled Trial of Rozerem in Migraine Headaches

To study the effect of Rozerem, a high affinity MT1 and MT2, low affinity 5-HT2B receptor agonist used for insomnia, as a migraine prophylactic agent.

Registry record

NCT06489327 · RECRUITING

Comparing Two Doses of Oral Melatonin as Premedication in Children Undergoing Surgery

Preoperative anxiety is a common issue in pediatric anesthesia. Children often experience anxiety and uneasiness due to uncertain outcomes. Surgery and anesthesia are among the most traumatic experiences for children, often considered anxiety-inducing medical treatments. Because they lack control over their environment and circumstances, children undergoing medical procedures typically experience significant unease or anxiety. Several studies have reported that 50%-80% of children experience preoperative anxiety. In order to reduce kids anxiety intensity, several measures are utilized. These strategies are either pharmacological, psychological, or behavioural. Benzodiazepines are popular drugs that can reduce anxiety in children. The most used one in premedication is midazolam. It is a rapid-acting benzodiazepine that has a short elimination half-life. It has sedative, anxiolytic, hypnotic, and anterograde amnesic effects. Midazolam, on the other hand, might have a number of negative consequences, including paradoxical reactions, interactions with opioids, excessive sedation, disorientation, and reduced psychomotor performance. Melatonin enhances anti-nociceptive effects, most prominently through the modulation of MT1/MT2 receptors in the brain and spinal cord. In addition, it has been demonstrated that melatonin can interact with additional receptors, including those in the GABAergic system, the nitric oxide (NO)arginine route, the N-Methyl-D-aspartate (NMDA) system, and the dopaminergic system, to produce anti-nociceptive and anti-allodynic effects.

Registry record

NCT04959825 · COMPLETED

The Role of Preoperative Melatonin in Reducing the Inhaled Isoflurane Requirements in Open Nephrectomy

Melatonin is a hormone that the pineal gland in the brain produces. Melatonin fulfills many functions in the body but it is mostly known for maintaining a circadian rhythm that is governed by the central circadian pacemaker (biological clock) in the suprachiasmatic nuclei in the hypothalamus. Melatonin works by attaching to receptors or nerve endings in the suprachiasmatic nucleus (SCN) in the hypothalamus. It binds to melatonin receptor 1 and melatonin receptor 2, commonly referred to as MT1 and MT2. People can take it as a natural or synthetic supplement to promote restful sleep. Melatonin showed promise for preventing shifts in sleep and wake times in people with jetlag and improving sleep in people with insomnia. It can also be used for headaches, cancer, and Alzheimer's disease. Melatonin can be used as an analgesic, sedative, and hypnotic drug that can distinguish it as an attractive alternative premedicant

Registry record
Educational summaries describe published research cautiously and do not make diagnostic, treatment, dosing, cure, or human-use claims. Human, animal, in-vitro, computational, and review evidence are identified separately. Registered trials are not the same as published results. Last reviewed: 2026-09-11T03:00:57.67+00:00.

Original sources

Sources, journals & trials

Third-party sources are linked for independent review. A citation does not imply endorsement of this store or product.

1. pubmed · human

Melatonin Induces Analgesic Effects through MT 2 Receptor-Mediated Neuroimmune Modulation in the Mice Anterior Cingulate Cortex.

Jian Wang, Junxiang Gu, Fujuan Ma, Yi Wei, Pan Wang, Shanming Yang, Xianxia Yan, Yifan Xiao, Keke Xing, Anxin Lou, Liru Zheng, Tingting Cao, Dayu Zhu, Jinlian Li, Luoying Zhang, Yunqing Li, Tao Chen · Research (Washington, D.C.) · 2024

Neuropathic pain (NP) represents a considerable clinical challenge, profoundly impacting patients' quality of life. Presently, pharmacotherapy serves as a primary approach for NP alleviation, yet its efficacy often remains suboptimal. Melatonin (MLT), a biologically active compound secreted by the pineal gland, has long been associated with promoting and maintaining sleep. Although recent studies suggest analgesic effects of MLT, the underlying mechanism remains largely unknown, particularly its impact on the cortex. In this study, we induced an NP model in mice through spared nerve injury (SNI) and observed a considerable, dose-dependent alleviation in NP symptoms following intraperitoneal or anterior cingulate cortex (ACC) administration of MLT. Our findings further indicated that the NP management of MLT is selectively mediated by MLT-related receptor 2 (MT 2 R), rather than MT 1 R, o

Why linked: The title contains the resolved identity “MT-2 -”.

2. pubmed · animal

The location, physiology, pathology of hippocampus Melatonin MT 2 receptor and MT 2 -selective modulators.

Yueqin Feng, Xiaowen Jiang, Wenwu Liu, Hongyuan Lu · European journal of medicinal chemistry · 2023

Melatonin, a neurohormone secreted by the pineal gland and regulated by the suprachiasmatic nucleus (SCN) of the hypothalamus, is synthesized and directly released into the cerebrospinal fluid (CSF) of the third ventricle (3rdv), where it undergoes rapid absorption by surrounding tissues to exert its physiological function. The hippocampus, a vital structure in the limbic system adjacent to the ventricles, plays a pivotal role in emotional response and memory formation. Melatonin MT 1 and MT 2 receptors are G protein-coupled receptors (GPCRs) that primarily mediate melatonin's receptor-dependent effects. In comparison to the MT 1 receptor, the widely expressed MT 2 receptor is crucial for mediating melatonin's biological functions within the hippocampus. Specifically, MT 2 receptor is implicated in hippocampal synaptic plasticity and memory processes, as well as neurogenesis and axogenes

Why linked: The title contains the resolved identity “MT-2 -”.

3. pubmed · animal

Differential Function of Melatonin MT 1 and MT 2 Receptors in REM and NREM Sleep.

Gabriella Gobbi, Stefano Comai · Frontiers in endocrinology · 2024

The pathophysiological function of the G-protein coupled melatonin MT 1 and MT 2 receptors has not yet been well-clarified. Recent advancements using selective MT 1 / MT 2 receptor ligands and MT 1 /MT 2 receptor knockout mice have suggested that the activation of the MT 1 receptors are mainly implicated in the regulation of rapid eye movement (REM) sleep, whereas the MT 2 receptors selectively increase non-REM (NREM) sleep. Studies in mutant mice show that MT 1 knockout mice have an increase in NREM sleep and a decrease in REM sleep, while MT2 knockout mice a decrease in NREM sleep. The localization of MT 1 receptors is also distinct from MT2 receptors; for example, MT 2 receptors are located in the reticular thalamus (NREM area), while the MT 1 receptors in the Locus Coeruleus and lateral hypothalamus (REM areas). Altogether, these findings suggest that these two receptors not only hav

Why linked: The title contains the resolved identity “MT-2 -”.

4. pubmed · animal

Melatonin MT 1 and MT 2 receptor ERK signaling is differentially dependent on G i/o and G q/11 proteins.

Min Chen, Erika Cecon, Angeliki Karamitri, Wenwen Gao, Romain Gerbier, Raise Ahmad, Ralf Jockers · Journal of pineal research · 2021

G protein-coupled receptors (GPCRs) transmit extracellular signals into cells by activating G protein- and β-arrestin-dependent pathways. Extracellular signal-regulated kinases (ERKs) play a central role in integrating these different linear inputs coming from a variety of GPCRs to regulate cellular functions. Here, we investigated human melatonin MT 1 and MT 2 receptors signaling through the ERK1/2 cascade by employing different biochemical techniques together with pharmacological inhibitors and siRNA molecules. We show that ERK1/2 activation by both receptors is exclusively G protein-dependent, without any participation of β-arrestin1/2 in HEK293 cells. ERK1/2 activation by MT 1 is only mediated though G i/o proteins, while MT 2 is dependent on the cooperative activation of G i/o and G q/11 proteins. In the absence of G q/11 proteins, however, MT 2 -induced ERK1/2 activatio

Why linked: The title contains the resolved identity “MT-2 -”.

5. pubmed · animal

Activation of spinal melatonin MT 2 receptors reduces neuropathic pain in mice in a sex-dependent manner.

Crystell G Guzmán-Priego, Itzel I Ramos-Rodríguez, Juan M Pizaña-Encarnación, Ana M Islas-Espinoza, María J Escoto-Rosales, Diana K Morales-Galindo, Myrna Déciga-Campos, Erick J Rodríguez-Palma, Vinicio Granados-Soto · European journal of pharmacology · 2025

Previous studies have reported the effects of melatonin mainly in male rodents. However, the effect of sex on the effect of melatonin remains unknown. The purpose of this study was to evaluate the role of sex in the antiallodynic effect of melatonin under neuropathic pain conditions. Intrathecal melatonin reduced both evoked and spontaneous pain in female and male neuropathic mice, with a significantly greater effect in female mice. Selective blockade of spinal melatonin MT 2 , but not MT 1 , receptors abated the antiallodynic effect of melatonin in both sexes. In contrast, blockade of spinal opioid receptors abated the antiallodynic effect of melatonin in male mice and partially in female mice. Notably, ovariectomy eliminated the antiallodynic effect of melatonin in female mice. Additionally, 17β-estradiol or estrogen receptor-α agonist PPT treatment, but not estrogen recept

Why linked: The title contains the resolved identity “MT-2 -”.

6. pubmed · human

Melatonin Abates TMJOA Chronic Pain by MT 2 R in Trigeminal Ganglion Neurons.

W Liu, H Jiang, X Liu, S Hu, H Li, Y Feng, J Ke, X Long · Journal of dental research · 2022

Temporomandibular joint osteoarthritis (TMJOA) is one of the most common diseases causing chronic pain in the oral and maxillofacial region. So far, there are few ways to relieve the pain of TMJOA. Melatonin (MT) has a good analgesic effect in many diseases, including fibromyalgia, neuropathic pain, chronic headache, and burn pain, with very low acute toxicity and side effects. This study was to investigate the role and mechanism of MT in TMJOA chronic pain. In rats TMJOA chronic pain occurred at day 14 after an intra-temporomandibular joint injection of monosodium iodoacetate, which we previously reported. The enzyme-linked immunosorbent assay results showed that MT levels were higher in the synovial fluid from patients and rats with TMJOA as compared with those from control. Fluorescent retrograde tracing (Dil) identified that upregulation of MT type 2 receptor (MT 2 R) in trigeminal g

Why linked: The title contains the resolved identity “MT-2 -”.

DOI 10.1177/00220345211026551PMID 34315312Journal Article, Research Support, Non-U.S. Gov't

7. pubmed · animal

2-Arylmelatonin analogues: Probing the 2-phenyl binding pocket of melatonin MT 1 and MT 2 receptors.

Michele Mari, Gian Marco Elisi, Annalida Bedini, Simone Lucarini, Michele Retini, Valeria Lucini, Francesco Scaglione, Fabrizio Vincenzi, Katia Varani, Riccardo Castelli, Marco Mor, Silvia Rivara, Gilberto Spadoni · European journal of medicinal chemistry · 2022

In crystal structures of melatonin MT 1 and MT 2 receptors, a lipophilic subpocket has been characterized which accommodates the phenyl ring of the potent agonist 2-phenylmelatonin. This subpocket appears a key structural element to achieve high binding affinity and selectivity for the MT 2 receptor. A series of 2-arylindole ligands was synthesized to probe the requirements for the optimal occupation and interaction with the 2-phenyl binding pocket. Thermodynamic integration simulations applied to MT 1 and MT 2 receptors in complex with the α-naphthyl derivative provided a rationale for the MT 2 -selectivity and investigation on the binding mode of a couple of atropisomers allowed to define the available space and arrangement of substituents inside the subpocket. Interestingly, more hydrophilic 2-aza-substituted compounds displayed high binding affinity and molecular dynamics simul

Why linked: The title contains the resolved identity “MT-2 -”.

8. pubmed · human

Melatonin MT 2 receptor is expressed and potentiates contraction in human airway smooth muscle.

Haruka Sasaki, Yi Zhang, Charles W Emala, Kentaro Mizuta · American journal of physiology. Lung cellular and molecular physiology · 2021

Nocturnal asthma is characterized by heightened bronchial reactivity at night, and plasma melatonin concentrations are higher in patients with nocturnal asthma symptoms. Numerous physiological effects of melatonin are mediated via its specific G protein-coupled receptors (GPCRs) named the MT 1 receptor, which couples to both G q and G i proteins, and the MT 2 receptor, which couples to G i . We investigated whether melatonin receptors are expressed on airway smooth muscle; whether they regulate intracellular cyclic AMP (cAMP) and calcium concentrations ([Ca 2+ ] i ), which modulate airway smooth muscle tone; and whether they promote airway smooth muscle cell proliferation. We detected the mRNA and protein expression of the melatonin MT 2 but not the MT 1 receptor in native human and guinea pig airway smooth muscle and cultured human airway smooth muscle (HASM) cells by RT-PCR, immunoblot

Why linked: The title contains the resolved identity “MT-2 -”.

DOI 10.1152/ajplung.00273.2021PMID 34612067PMCID PMC8715028Journal Article, Research Support, N.I.H., Extramural, Research Support, Non-U.S. Gov't

9. pubmed · animal

Mapping ligands for MT 1 /MT 2 and 5-HT 2C receptors: Chemotypes, SAR, and polypharmacology.

Alban Lepailleur, Damien Geslin, Johanna Giovannini, Bertrand Cuissart, Jean-Luc Lamotte, Ronan Bureau · Drug discovery today · 2026

Understanding ligand selectivity and efficacy at melatonin (MT 1 , MT 2 ) and serotonin (5-HT 2C ) receptors remains a key challenge in central nervous system (CNS) drug discovery. Ligands combining MT 1 /MT 2 agonism with 5-HT 2C antagonism are of therapeutic relevance in depression and circadian rhythm disorders. This review provides a comprehensive overview of ligands reported for these receptors in ChEMBL, with an emphasis on compounds evaluated across multiple targets. A pharmacophore-based approach was applied to group ligands by shared features, revealing pharmacomodulations influencing receptor selectivity and polypharmacology. Together, these insights can inspire the rational design of selective or polypharmacological ligands, offering new opportunities for multitarget drug discovery.

Why linked: The title contains the resolved identity “MT-2 -”.

10. pubmed · human

Primary role for melatonin MT 2 receptors in the regulation of anhedonia and circadian temperature rhythm.

Francisco Borja Belloch, Elena Beltrán, Elisabeth Venzala, Javier Montalt-Tordera, Teresa Diaz-Perdigón, Erika Cecon, Elena Puerta, Philippe Delagrange, Rosa María Tordera · European neuropsychopharmacology : the journal of the European College of Neuropsychopharmacology · 2021

Circadian rhythms disturbance is widely observable in patients with major depression (MD) and is also associated with depression vulnerability. Of them, disturbed melatonin secretion rhythm is particularly relevant to MD and is strongly phase-locked to core body temperature (CBT) rhythm. Here we aim to study the specific role of each melatonin receptor (MT 1 and MT 2 ) subtype in melatonin regulation of circadian CBT and its possible relationship with depressive-like behaviors. MT 1 -/- , MT 2 -/- and WT (C57BL/6) mice were used.  Anhedonia, using the sucrose intake test, circadian CBT, environmental place preference (EPP) conditioning and vulnerability to chronic social defeat stress (CSDS) procedure were studied. Moreover, the antidepressant effects of reboxetine (15 mg/kg/day, i.p.) for three weeks or ketamine (15 mg/kg i.p. every four days, 4 doses in total) were studi

Why linked: The title contains the resolved identity “MT-2 -”.

DOI 10.1016/j.euroneuro.2020.12.012PMID 33451856Journal Article, Research Support, Non-U.S. Gov't

11. pubmed · animal

Type 2 diabetes-associated variants of the MT 2 melatonin receptor affect distinct modes of signaling.

Angeliki Karamitri, Bianca Plouffe, Amélie Bonnefond, Min Chen, Jonathan Gallion, Jean-Luc Guillaume, Alan Hegron, Mathilde Boissel, Mickaël Canouil, Claudia Langenberg, Nicholas J Wareham, Christian Le Gouill, Viktoria Lukasheva, Olivier Lichtarge, Philippe Froguel, Michel Bouvier, Ralf Jockers · Science signaling · 2019

Melatonin is produced during the night and regulates sleep and circadian rhythms. Loss-of-function variants in MTNR1B , which encodes the melatonin receptor MT 2 , a G protein-coupled receptor (GPCR), are associated with an increased risk of type 2 diabetes (T2D). To identify specific T2D-associated signaling pathway(s), we profiled the signaling output of 40 MT 2 variants by monitoring spontaneous (ligand-independent) and melatonin-induced activation of multiple signaling effectors. Genetic association analysis showed that defects in the melatonin-induced activation of Gα i1 and Gα z proteins and in spontaneous β-arrestin2 recruitment to MT 2 were the most statistically significantly associated with an increased T2D risk. Computational variant impact prediction by in silico evolutionary lineage analysis strongly correlated with the measured phenotypic effect of each va

Why linked: The title contains the resolved identity “MT-2 -”.

DOI 10.1126/scisignal.aan6622PMID 30154102Journal Article, Research Support, Non-U.S. Gov't

12. pubmed · animal

Characterization of the MT-2 Treg-like cell line in the presence and absence of forkhead box P3 (FOXP3).

Morgan J McCullough, Miriya K Tune, Johnny Castillo Cabrera, Jose Torres-Castillo, Minghong He, Yongqiang Feng, Claire M Doerschuk, Hong Dang, Adriana S Beltran, Robert S Hagan, Jason R Mock · Immunology and cell biology · 2024

CD4 + forkhead box P3 (FOXP3) + regulatory T cells (Tregs) are essential in maintaining immune tolerance and suppressing excessive immune responses. Tregs also contribute to tissue repair processes distinct from their roles in immune suppression. For these reasons, Tregs are candidates for targeted therapies for inflammatory and autoimmune diseases, and in diseases where tissue damage occurs. MT-2 cells, an immortalized Treg-like cell line, offer a model to study Treg biology and their therapeutic potential. In the present study, we use clustered regularly interspaced palindromic repeats (CRISPR)-mediated knockdown of FOXP3 in MT-2 cells to understand the transcriptional and functional changes that occur when FOXP3 is lost and to compare MT-2 cells with primary human Tregs. We demonstrate that loss of FOXP3 affects the transcriptome of MT-2 cells and that FOXP3's potential downstream tar

Why linked: The title contains the resolved identity “MT-2 -”.

DOI 10.1111/imcb.12725PMID 38288547PMCID PMC13137391Journal Article, Research Support, N.I.H., Extramural

NCT04073433 · WITHDRAWN

Psychological Effects of Methylenedioxymethamphetamine (MDMA) When Administered to Healthy Volunteers (MT-2)

Resilient Pharmaceuticals · INTERVENTIONAL · PHASE1

The goal of this clinical trial is to study MDMA-assisted therapy in healthy volunteers and provide training of therapists. The main question it aims to answer is: Does MDMA-assisted therapy result in personal and professional benefits? Participants will have a non-drug preparatory session prior to each experimental session and an integrative session after each experimental session.

NCT01180855 · UNKNOWN

Effects of Ramelteon (8mg) Alone and in Combination With Multi-Component Behavioral Therapy on Sleep and Circadian Phase in Patients With Chronic Insomnia

University of Arizona · INTERVENTIONAL · PHASE4

The specific aims of the proposed study are to compare the sleep, daytime functioning, and circadian phase effects of ROZEREMTM (ramelteon/TAK-375) a selective MT1/MT2 melatonin receptor agonist in humans alone and in combination with multi-component behavior therapy (MCBT) in patients with chronic insomnia.

NCT00391755 · TERMINATED

A Double-Blind Placebo-Controlled Trial of Rozerem in Migraine Headaches

Charlottesville Neuroscience · INTERVENTIONAL · PHASE4

To study the effect of Rozerem, a high affinity MT1 and MT2, low affinity 5-HT2B receptor agonist used for insomnia, as a migraine prophylactic agent.

NCT06489327 · RECRUITING

Comparing Two Doses of Oral Melatonin as Premedication in Children Undergoing Surgery

Al-Azhar University · INTERVENTIONAL · NA

Preoperative anxiety is a common issue in pediatric anesthesia. Children often experience anxiety and uneasiness due to uncertain outcomes. Surgery and anesthesia are among the most traumatic experiences for children, often considered anxiety-inducing medical treatments. Because they lack control over their environment and circumstances, children undergoing medical procedures typically experience significant unease or anxiety. Several studies have reported that 50%-80% of children experience preoperative anxiety. In order to reduce kids anxiety intensity, several measures are utilized. These strategies are either pharmacological, psychological, or behavioural. Benzodiazepines are popular drugs that can reduce anxiety in children. The most used one in premedication is midazolam. It is a rapid-acting benzodiazepine that has a short elimination half-life. It has sedative, anxiolytic, hypnotic, and anterograde amnesic effects. Midazolam, on the other hand, might have a number of negative consequences, including paradoxical reactions, interactions with opioids, excessive sedation, disorientation, and reduced psychomotor performance. Melatonin enhances anti-nociceptive effects, most prominently through the modulation of MT1/MT2 receptors in the brain and spinal cord. In addition, it has been demonstrated that melatonin can interact with additional receptors, including those in the GABAergic system, the nitric oxide (NO)arginine route, the N-Methyl-D-aspartate (NMDA) system, and the dopaminergic system, to produce anti-nociceptive and anti-allodynic effects.

NCT04959825 · COMPLETED

The Role of Preoperative Melatonin in Reducing the Inhaled Isoflurane Requirements in Open Nephrectomy

Cairo University · INTERVENTIONAL · EARLY_PHASE1

Melatonin is a hormone that the pineal gland in the brain produces. Melatonin fulfills many functions in the body but it is mostly known for maintaining a circadian rhythm that is governed by the central circadian pacemaker (biological clock) in the suprachiasmatic nuclei in the hypothalamus. Melatonin works by attaching to receptors or nerve endings in the suprachiasmatic nucleus (SCN) in the hypothalamus. It binds to melatonin receptor 1 and melatonin receptor 2, commonly referred to as MT1 and MT2. People can take it as a natural or synthetic supplement to promote restful sleep. Melatonin showed promise for preventing shifts in sleep and wake times in people with jetlag and improving sleep in people with insomnia. It can also be used for headaches, cancer, and Alzheimer's disease. Melatonin can be used as an analgesic, sedative, and hypnotic drug that can distinguish it as an attractive alternative premedicant

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