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Chronic stimulation of group II metabotropic glutamate receptors in the medulla oblongata attenuates hypertension development in spontaneously hypertensive rats

机译:慢性刺激II组代谢抑制蛋白受体在髓质植物中衰减自发性高血压大鼠的高血压发育

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Baroreflex dysfunction is partly implicated in hypertension and one responsible region is the dorsal medulla oblongata including the nucleus tractus solitarius (NTS). NTS neurons receive and project glutamatergic inputs to subsequently regulate blood pressure, while G-protein-coupled metabotropic glutamate receptors (mGluRs) play a modulatory role for glutamatergic transmission in baroreflex pathways. Stimulating group II mGluR subtype 2 and 3 (mGluR2/3) in the brainstem can decrease blood pressure and sympathetic nervous activity. Here, we hypothesized that the chronic stimulation of mGluR2/3 in the dorsal medulla oblongata can alleviate hypertensive development via the modulation of autonomic nervous activity in young, spontaneously hypertensive rats (SHRs). Compared with that in the sham control group, chronic {"type":"entrez-nucleotide","attrs":{"text":"LY379268","term_id":"1257807854","term_text":"LY379268"}} LY379268 application (mGluR2/3 agonist; 0.40 μg/day) to the dorsal medulla oblongata for 6 weeks reduced the progression of hypertension in 6-week-old SHRs as indicated by the 40 mmHg reduction in systolic blood pressure and promoted their parasympathetic nervous activity as evidenced by the heart rate variability. No differences in blood catecholamine levels or any echocardiographic indices were found between the two groups. The improvement of reflex bradycardia, a baroreflex function, appeared after chronic {"type":"entrez-nucleotide","attrs":{"text":"LY379268","term_id":"1257807854","term_text":"LY379268"}} LY379268 application. The mRNA expression level of mGluR2, but not mGluR3, in the dorsal medulla oblongata was substantially reduced in SHRs compared to that of the control strain. In conclusion, mGluR2/3 signaling might be responsible for hypertension development in SHRs, and modulating mGluR2/3 expression/stimulation in the dorsal brainstem could be a novel therapeutic strategy for hypertension via increasing the parasympathetic activity.
机译:Baroreflex功能障碍部分涉及高血压,一个负责区域是包含细胞核菌菌菌(NTS)的背部髓质椭圆形。 NTS神经元接受和项目谷氨酸基因输入随后调节血压,而G蛋白偶联代谢谷氨酸受体(MGLURS)在吡克隆曲线中发挥对谷氨酸盐传递的调节作用。刺激II族MGLUR亚型2和3(MGLUR2 / 3)在脑干中可以降低血压和交感神经活动。在这里,我们假设慢性刺激在背部Mglula oblongata中的慢性刺激通过调节年轻,自发性高血压大鼠(SHR)的自主神经活性来缓解高血压发育。与虚假对照组相比,慢性{“类型”:“entrez-nucleotide”,“attrez”:{“text”:“ly379268”,“term_id”:“1257807854”,“term_text”:“ly379268”} LY379268申请(MGLUR2 / 3激动剂;0.40μg/天)到背部髓质胶质数据6周减少了6周龄SHR的高血压进展,如40 mmhg减少收缩压和促进其副交感神经活动,如心率变异所证明的。两组之间没有发现血液儿茶酚胺水平的差异或任何超声心动图索引。 Reflex Bradycardia的改善是慢性{“类型”:“entrez-nucleotide”,“attrez-nucleotide”,“attrs”:{“text”:“ly379268”,“term_id”:“term_id”:“term_text”:“ LY379268“}”LY379268应用程序。与对照菌株相比,在背部髓质叶片中的MGLUR2但不是mgluR3的mRNA表达水平显着降低了SHRS中。总之,MGLUR2 / 3信号传导可能负责SHR中的高血压发育,并且调节背部脑干中的MGLUR2 / 3表达/刺激可以通过增加副交感神经活动是高血压的新疗效策略。

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