医学
神经病理性疼痛
止痛药
氨基酸
链脲佐菌素
代谢组学
糖尿病
丙氨酸
酪氨酸
药理学
内分泌学
痛觉超敏
内科学
伤害
痛觉过敏
生物化学
生物信息学
化学
生物
受体
作者
Qi Zhang,Qingchun Li,Siying Liu,Hangping Zheng,Lijin Ji,Na Yi,Xiaoming Zhu,Wanwan Sun,Xiaoxia Liu,Shuo Zhang,Yiming Li,Qian Xiong,Bin Lü
标识
DOI:10.1016/j.diabres.2021.108790
摘要
Aims The pathophysiological alteration of diabetic neuropathic pain (DNP) in brain is unclear. Here we aimed to explore the metabolomic characteristics of brain in rats over the progression of DNP through metabolomic analysis. Methods Adult rats were randomly divided into control group and DNP group. Body weight, blood glucose and behavioral assessment of neuropathic pain were measured every week after streptozotocin (STZ) injection. Finally, the brains of 2 rats from control group and 6 rats from DNP group were removed every 4 weeks after STZ injection for metabolomics analysis. Results After 4 weeks of STZ-injection, the rats with diabetes developed DNP, which was characterized as mechanical allodynia and thermal nociception. As for metabolomic analysis, differentially expressed metabolites (DE metabolites) showed a dynamic alteration over the development of DNP and affected several KEGG pathways associated with amino acid metabolism. Furthermore, the expression of l-Threonine, l-Methionine, d-Proline, l-Lysine and N-Acetyl-l-alanine were significantly decreased at all time points of DNP group. The amino acids which were precursor of analgesic neurotransmitters were downregulated over the progression of DNP, including l-tryptophan, l-histidine and l-tyrosine. Conclusions The impairment of amino acid metabolism in brain might contribute to the progression of DNP through decreasing analgesic neurotransmitters.
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