Calcium channels blockers toxins attenuate abdominal hyperalgesia and inflammatory response associated with the cerulein-induced acute pancreatitis in rats

急性胰腺炎 胰腺炎 痛觉过敏 电压依赖性钙通道 药理学 钙通道阻滞剂 内科学 钙通道 医学 伤害 化学 内分泌学 麻醉 受体
作者
Vanice Paula Ricardo Carvalho,Juliana Figueira da Silva,Marcelo Araújo Buzelin,Cláudio Antônio da Silva Júnior,Duana Carvalho Santos,Danuza Montijo Diniz,Nancy Scardua Binda,Márcia Helena Borges,André Luiz Sena Guimarães,Elizete Maria Rita Pereira,Marcus V. Gomez
出处
期刊:European Journal of Pharmacology [Elsevier BV]
卷期号:891: 173672-173672 被引量:10
标识
DOI:10.1016/j.ejphar.2020.173672
摘要

Agents that modulate the activity of high-voltage gated calcium channels (HVCCs) exhibit experimentally and clinically significant effect by relieving visceral pain. Among these agents, the toxins Phα1β and ω-conotoxin MVIIA effectively reduce chronic pain in rodent models. The molecular mechanisms underlying the chronic pain associated with acute pancreatitis (AP) are poorly understood. Hypercalcemia is a risk factor; the role of cytosolic calcium is considered to be a modulator of pancreatitis. Blockade of Ca2+ signals may be useful as a prophylactic treatment of pancreatitis. We explored the pathophysiological roles of three peptide toxins: Phα1β and its recombinant form CTK 01512-2-blockers of TRPA1 receptor and HVCCs and ω-conotoxin MVIIA, a specific blocker of N-type calcium channels in cerulein-induced AP. Cerulein injection elicits AP in rats, evidenced by an increase in hyperalgesic pain, inflammatory infiltration, amylase and lipase secretion, and reactive oxygen species, TNF-α, and p65 NF-κB levels. These effects of cerulein-induced AP were abolished by Phα1β and its recombinant form CTK 01512-2, whereas ω-conotoxin MVIIA had no effect on the induced increase in pancreatic enzyme secretion. Our results demonstrate that Phα1β and CTK 01512-2 toxins-antagonists of HVCCs and TRPA1 receptor presented an effective response profile, in the control of nociception and inflammatory process in the AP model in rats, without causing changes in spontaneous locomotion of the rats.
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