Targeted Cholera Toxin for Treatment of Hyperalgesia
Targeted Cholera Toxin for Treatment of Hyperalgesia
批准号:
6734623
负责人:
ROBERT M CAUDLE
金额:
$14.54万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2003
资助国家:
美国
项目状态:
已结题
起止时间:
2003-05-01 至 2006-04-30
关键词:
CHO cellsG proteinchemical conjugatechemical structurecholera toxincholera vaccinechronic paincyclic AMPdisease /disorder modeldrug design /synthesis /productiondrug screening /evaluationhyperalgesialaboratory ratneuronsneuropeptide receptornociceptorsopioid receptorprotein structure functionspinal cordsubstance Pwestern blottings
中文摘要
描述(申请人提供):由美国疼痛协会进行的一项研究表明,9%的美国人口患有中度到重度的慢性疼痛。目前治疗慢性疼痛的方法在许多情况下都是无效的,或者产生了广泛的副作用,限制了它们的实用性。在这个项目中,我们将利用最近的发现,鞘内注射霍乱毒素可以阻止慢性疼痛啮齿动物模型中的痛觉过敏和超敏,并且毒素可以通过神经激肽1(NK1)受体直接靶向脊髓中的伤害性神经元。我们将霍乱毒素的催化部分与P物质偶联,以将霍乱毒素导向脊髓中表达NK1受体的细胞。这种结合物将在表达NK1的细胞系和慢性疼痛的啮齿动物模型中进行活性测试,以刺激cAMP的产生,抑制Gs g蛋白的表达,并抑制痛觉过敏和痛觉异常。这种结合物的独特之处在于,霍乱毒素不会像Saporin、白喉毒素和假单胞菌外毒素那样杀死脊髓中表达NK1的细胞,这些毒素以前被用于NK1受体靶向策略。相反,霍乱毒素将阿片受体与Gs解偶联,从而增强其抑制作用,并将降低Gs偶联受体系统的活性,从而进一步抑制伤害性传递。因此,据我们所知,这个项目将是第一个通过直接操纵活体中已确定的神经元群体中的G蛋白功能来产生治疗效果的项目。如果成功,该项目将生产一种用于控制疼痛的新型药物,并将通过使特定细胞中的g-蛋白成为药理靶点,打开治疗学的一个全新维度。
英文摘要
DESCRIPTION (provided by applicant): In a study conducted by the American Pain Society it was demonstrated that 9 percent of the United States population suffers from moderate to severe chronic pain. Current methods to treat chronic pain are in many instances not effective or produce a wide range of side effects that limit their utility. In this project we are going to take advantage of the recent discoveries that intrathecally administered cholera toxin blocks hyperalgesia and allodynia in rodent models of chronic pain, and that toxins can be directly targeted to nociceptive neurons in the spinal cord via the neurokinin 1 (NK1) receptor. We will conjugate the catalytic portion of cholera toxin to substance P in order to direct the cholera toxin to NK1 receptor expressing cells in the spinal cord. This conjugate will be tested for activity in NK1 expressing cell lines and in rodent models of chronic pain for its ability to stimulate cAMP production, suppress the expression of Gs g-proteins and to inhibit hyperalgesia and allodynia. The unique aspect of this conjugate is that cholera toxin will not kill the NK1 expressing cells in the spinal cord like saporin, diphtheria toxin and pseudomonas exotoxin, which have previously been used in NK1 receptor targeting strategies. Instead, cholera toxin will uncouple opioid receptors from Gs, thus enhancing their inhibitory actions, and will reduce the activity of Gs coupled receptor systems, which would further suppress nociceptive transmission. Thus, this project will be the first, to the best our knowledge, to produce a therapeutic effect by directly manipulating g-protein function in an identified population of neurons in vivo. If successful, this project will produce a novel agent for the control of pain and will open up an entire new dimension in therapeutics by making g-proteins in specific cells the pharmacological target.
期刊论文(2)
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科研奖励(0)
会议论文
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NOCICEPTION AND NMDA RECEPTOR PHOSPHORYLATION
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海外基金