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Morphine treatment alters nucleotidase activities in rat blood serum

机译:吗啡治疗可改变大鼠血清中的核苷酸酶活性

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Abstract: Morphine has been widely used in neonatal pain management. However, this treatment may produce adaptive changes in several physiologic systems. Our laboratory has demonstrated that morphine treatment in neonate rats alters nucleoside triphosphate diphosphohydrolase (NTPDase) activity and gene expression in central nervous system structures. Considering the relationship between the opioid and purinergic systems, our aim was to verify whether treatment with morphine from postnatal days 8 (P8) through 14 (P14) at a dose of 5 μg per day alters NTPDase and 5′-nucleotidase activities in rat serum over the short, medium, and long terms. After the in vivo assay, the morphine group showed increased hydrolysis of all nucleotides at P30, and a decrease in adenosine 5′-diphosphate hydrolysis at P60. Moreover, we found that nucleotidase activities change with age; adenosine 5′-triphosphate hydrolysis activity was lower at P16, and adenosine 5'-monophosphate hydrolysis activity was higher at P60. These changes are very important because these enzymes are the main regulators of blood nucleotide levels and, consequently, nucleotide signaling. Our findings showed that in vivo morphine treatment alters nucleotide hydrolysis in rat blood serum, suggesting that purine homeostasis can be influenced by opioid treatment during the neonatal period.
机译:摘要:吗啡已被广泛用于新生儿疼痛的治疗。但是,这种治疗可能会在几种生理系统中产生适应性变化。我们的实验室已经证明,新生大鼠中的吗啡治疗会改变中枢神经系统结构中的核苷三磷酸二磷酸水解酶(NTPDase)活性和基因表达。考虑到阿片类药物与嘌呤能系统之间的关系,我们的目的是验证从出生后第8天(P8)到第14天(P14)每天5μg剂量的吗啡治疗是否能改变大鼠血清中的NTPDase和5'-核苷酸酶活性从短期,中期和长期来看。体内试验后,吗啡基团显示P30处所有核苷酸的水解均增加,而P60处的5'-二磷酸腺苷水解降低。此外,我们发现核苷酸酶的活性随年龄而变化。腺苷5'-三磷酸的水解活性在P16较低,而腺苷5'-单磷酸的水解活性在P60较高。这些变化非常重要,因为这些酶是血液核苷酸水平以及核苷酸信号传导的主要调节剂。我们的研究结果表明,体内吗啡治疗会改变大鼠血清中的核苷酸水解,这表明在新生儿期,阿片类药物治疗可影响嘌呤体内稳态。

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