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临床试验/NCT06955650
NCT06955650已完成1 期

First-in-man Imaging of a New PET Radiotracer for Oxytocin Receptors - Biodistribution and Radiation Dosimetry

Aarhus University Hospital1 个研究点 分布在 1 个国家目标入组 6 人开始时间: 2021年4月30日最近更新:
干预措施

试验速览

阶段
1 期
状态
已完成
发起方
入组人数
6
试验地点
1
主要终点
Radiation dosimetry of 13N-Oxytocin calculated using MIRDcalc

研究概览

简要总结

The investigators will test a new positron-emitting radiotracer to determine whether it is suitable for studying the oxytocin receptor by positron emission tomography (PET) in humans. If suitable, the radiotracer will be used to study the brain and trigeminal nerve in several disorders.

详细描述

The nine amino acid peptide oxytocin was first isolated in 1927 and is primarily recognised for its hormonal role in uterine contractions, lactation, and social bonding. It has been used to induce labour via infusion since the 1950s and was previously approved for nasal application to aid lactation, although its effectiveness for this purpose has since been questioned. Oxytocin is also involved in the modulation of pain within the body. It has been localised to the human dorsal root and trigeminal ganglia, and the terminals of hypothalamic neurons containing oxytocin-specific carrier proteins have been found in the dorsal horn of the spinal trigeminal nucleus. Oxytocin receptors have been identified in regions of the spinal cord associated with pain transmission in both non-human primates and rodents. Animal studies have provided evidence of oxytocin's analgesic effects, particularly following direct administration into the spinal canal or brain cavities.

Intrathecal administration of oxytocin, as opposed to intravenous delivery, has shown effectiveness in reducing chronic low back pain in humans, potentially involving the body's own opioid system. While direct access to the trigeminal system is challenging due to the skull's structure, a promising alternative is the nasocerebral pathway. This pathway enables certain substances administered nasally to reach central nervous system structures and has been explored as a method for delivering treatments to regions affected by neurodegenerative conditions.

Preliminary research suggests that intranasal delivery of oxytocin leads to pain relief restricted to areas supplied by the trigeminal nerve in both animals and humans. This effect appears to result from the nasal route enabling oxytocin to reach trigeminal receptors directly. In preclinical models, nasal but not systemic administration produced a significant analgesic effect in the face. Similar outcomes were observed in individuals with chronic migraine, where nasal oxytocin administration led to a strong reduction in facial pain. These findings suggest that intranasal oxytocin may work by concentrating in the trigeminal nerve via the nasocerebral route.

The current study aims to evaluate how oxytocin distributed via nasal administration spreads in the body, using positron emission tomography (PET). This imaging technique will allow visualisation of how the compound moves through the body and whether it reaches relevant structures such as the trigeminal nerve. The goal is to better understand how intranasal oxytocin might enable targeted pain relief and potentially support its use in treating conditions related to the trigeminal system.

研究设计

研究类型
Interventional
分配方式
Na
干预模型
Single Group
主要目的
Basic Science
盲法
None

入排标准

年龄范围
35 Years 至 50 Years(Adult)
性别
All
接受健康志愿者

入选标准

  • Female or male age 35-50 (Women of childbearing potential must use birth control and test negative for pregnancy prior to enrollment in this study).
  • Normal anatomy in nasal region evaluated with MRI
  • Normal sensory function evaluated with "The Sniffin' Sticks Olfactory Test-Kits

排除标准

  • Pregnancy or breast-feeding.
  • Metal implanted in the body.
  • Diseases of the nose and airways.
  • Former or current cancer in the head/neck area where radiation therapy was applied.
  • Former or current brain disease.
  • Psychiatric diseases.
  • Heart disease.
  • Other serious chronic or acute disease.
  • Substance abuse disorders.

研究组 & 干预措施

Intranasal 13N-Oxytocin PET Imaging

Experimental

There is only one arm. All participants in the study will receive intranasal administration of a novel radiolabelled compound, 13N-Oxytocin, developed to selectively bind to oxytocin receptors. Following administration, participants will undergo positron emission tomography (PET) imaging to evaluate the in vivo distribution of the tracer, with a focus on uptake in the brain and trigeminal nerve regions.

干预措施: Imaging procedure to measure the distribution of a newly developed radiolabeled ligand for the oxytocin receptor (Drug)

结局指标

主要结局

Radiation dosimetry of 13N-Oxytocin calculated using MIRDcalc

时间窗: Up to 14 days post-administration

Description: Radiation dosimetry will be calculated based on dynamic PET scan data using MIRDcalc software. Organ-specific absorbed radiation doses and effective dose will be reported based on ICRP Publication 103 guidelines. Units of Measure: Millisievert (mSv), milligray (mGy)

次要结局

  • Biodistribution of 13N-Oxytocin assessed by PET imaging(Up to 14 days post-administration)

研究者

发起方
Aarhus University Hospital
申办方类型
Other
责任方
Principal Investigator
主要研究者

Michael Winterdahl

Associate professor in neuroimaging

Aarhus University Hospital

研究点 (1)

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