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背内侧下丘脑参与对束缚应激的自主神经和神经内分泌反应的调节。

The Dorsomedial Hypothalamus Is Involved in the Mediation of Autonomic and Neuroendocrine Responses to Restraint Stress.

作者信息

Brasil Taíz F S, Lopes-Azevedo Silvana, Belém-Filho Ivaldo J A, Fortaleza Eduardo A T, Antunes-Rodrigues José, Corrêa Fernando M A

机构信息

Department of Pharmacology of the School of Medicine of Ribeirão Preto, University of São Paulo, Ribeirão Preto, Brazil.

Department of Physiology of the School of Medicine of Ribeirão Preto, University of São Paulo, Ribeirão Preto, Brazil.

出版信息

Front Pharmacol. 2020 Jan 23;10:1547. doi: 10.3389/fphar.2019.01547. eCollection 2019.

Abstract

We hypothesized that dorsomedial hypothalamus (DMH) modulates autonomic and neuroendocrine responses in rats at rest and when subjected to restraint stress (RS). Male Wistar rats were used, and guide cannulas were bilaterally implanted in the DMH for microinjection of vehicle or the nonspecific synaptic blocker CoCl (1 mM/100 nl). A polyethylene catheter was inserted into the femoral artery for the recording of arterial pressure and heart rate (HR). Tail temperature was measured using a thermal camera. The session of RS started 10 min after DMH treatment with vehicle or CoCl2. Under home-cage condition, the pretreatment of DMH with CoCl increased baseline blood pressure (BP), and heart rate (HR) without affecting the tail temperature. In addition, it decreased plasma vasopressin levels without affecting plasma corticosterone and oxytocin contents. When rats pretreated with CoCl were exposed to RS, the RS-evoked cardiovascular were similar to those observed in vehicle-treated animals; however, because cobalt pretreatment of the DMH increased baseline BP and HR values, and the RS-evoked cardiovascular responses did not exceed those observed in vehicle-treated animals, suggesting a possible celling limit, the possibility that DMH is involved in the modulation of RS-evoked cardiovascular responses cannot be certainly excluded. Nonetheless, the pretreatment of DMH with CoCl blocked the reduction in tail temperature caused by RS. The DMH pretreatment with CoCl did not modify the RS-evoked increase in plasma corticosterone and oxytocin contents. In conclusion, the present data suggest the involvement of DMH in the maintenance of BP, HR, and vasopressin release under the rest conditions at the home-cage. Furthermore, indicate that DMH is an important thermoregulatory center during exposure to RS, regulating tail artery vasoconstriction.

摘要

我们假设,下丘脑背内侧核(DMH)可调节大鼠在静息状态以及遭受束缚应激(RS)时的自主神经和神经内分泌反应。使用雄性Wistar大鼠,将引导套管双侧植入DMH,用于微量注射溶媒或非特异性突触阻滞剂氯化钴(1 mM/100 nl)。将一根聚乙烯导管插入股动脉,用于记录动脉血压和心率(HR)。使用热成像仪测量尾温。在用溶媒或CoCl₂处理DMH 10分钟后开始束缚应激实验。在笼内条件下,用CoCl预处理DMH可升高基线血压(BP)和心率(HR),但不影响尾温。此外,它可降低血浆血管加压素水平,而不影响血浆皮质酮和催产素含量。当用CoCl预处理的大鼠暴露于束缚应激时,束缚应激诱发的心血管反应与溶媒处理的动物相似;然而,由于DMH的钴预处理提高了基线BP和HR值,且束缚应激诱发的心血管反应未超过溶媒处理动物所观察到的反应,提示可能存在上限,因此不能完全排除DMH参与调节束缚应激诱发的心血管反应的可能性。尽管如此,用CoCl预处理DMH可阻断束缚应激引起的尾温降低。用CoCl预处理DMH并未改变束缚应激诱发的血浆皮质酮和催产素含量增加。总之,目前的数据表明,DMH参与笼内静息条件下BP、HR和血管加压素释放的维持。此外,表明DMH在暴露于束缚应激期间是一个重要的体温调节中枢,调节尾动脉血管收缩。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/853d/6989482/141d8def6b72/fphar-10-01547-g001.jpg

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