Suppr超能文献

血管内皮上的搏动性剪切应力通过周期性加速(pGz)使肾上腺髓质素增加。

Adrenomedullin is increased by pulsatile shear stress on the vascular endothelium via periodic acceleration (pGz).

作者信息

Martínez Alfredo, Arias Jaqueline, Bassuk Jorge A, Wu Heng, Kurlansky Paul, Adams Jose A

机构信息

Department of Cellular, Molecular, and Developmental Neurobiology, Instituto Cajal, CSIC, Madrid, Spain.

出版信息

Peptides. 2008 Jan;29(1):73-8. doi: 10.1016/j.peptides.2007.10.021. Epub 2007 Nov 4.

Abstract

Periodic acceleration (pGz) is produced by a platform which moves the supine body repetitively in a headward to footward direction. The imparted motion produces pulsatile shear stress on the vascular endothelium. Pulsatile shear stress on the vascular endothelium has been shown to elicit production of a host of cardioprotective, cytoprotective mediators. The purpose of this study was to ascertain if pGz also enhances production of adrenomedullin (AM) in normal healthy swine. Twelve pigs (weight range 20-30 kg) were anesthetized, intubated and placed on conventional mechanical ventilation. All animals were secured to the motion platform. In one group (pGz) (n=7) was activated for 1h, and monitored for an additional 3h. A control group (CONT) (n=5) served as time control. Arterial blood gases, hemodynamic measurements, and serum for AM, interleukin 4, 6 and thromboxane B(2) (TBXB2) were measured at baseline, immediately after pGz, and 3h after pGz had been discontinued. There was no significant change from baseline value in IL-4, IL-6 or TBXB2. Mean arterial blood pressure decreased in pGz-treated animals from 115+/-10 at baseline to 90+/-8 after 60 min of pGz (p<0.01). AM levels increase from 776+/-176 pg/ml baseline to 1160+/-68 pg/ml immediately after pGz, and remained elevated to 1584+/-160 pg/ml, 3h after pGz (p<0.01 vs. BL). This is the first report of AM-enhanced production using a non-invasive method of increasing pulsatile shear stress on the vascular endothelium. pGz increases production of AM in normal healthy swine. These changes are independent of IL-4, IL-6 or TBXB2 production.

摘要

周期性加速度(pGz)由一个平台产生,该平台使仰卧的身体在头向至足向的方向上反复移动。所施加的运动会在血管内皮上产生脉动剪切应力。血管内皮上的脉动剪切应力已被证明能引发多种心脏保护、细胞保护介质的产生。本研究的目的是确定pGz是否也能增强正常健康猪体内肾上腺髓质素(AM)的产生。12头猪(体重范围20 - 30千克)被麻醉、插管并置于传统机械通气下。所有动物都固定在运动平台上。一组(pGz组)(n = 7)激活1小时,并额外监测3小时。对照组(CONT组)(n = 5)作为时间对照。在基线、pGz结束后即刻以及pGz停止3小时后,测量动脉血气、血流动力学指标以及用于检测AM、白细胞介素4、6和血栓素B2(TBXB2)的血清。白细胞介素4、6或TBXB2与基线值相比无显著变化。pGz处理的动物平均动脉血压从基线时的115±10降至pGz处理60分钟后的90±8(p < 0.01)。AM水平从基线时的776±176 pg/ml在pGz结束后即刻升至1160±68 pg/ml,并在pGz停止3小时后仍保持升高至1584±160 pg/ml(与基线相比p < 0.01)。这是首次使用增加血管内皮脉动剪切应力的非侵入性方法提高AM产生的报告。pGz可增加正常健康猪体内AM的产生。这些变化与白细胞介素4、6或TBXB2的产生无关。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验