MECHANISMS OF BLOOD VOLUME ABNORMALITIES IN CFS
MECHANISMS OF BLOOD VOLUME ABNORMALITIES IN CFS
批准号:
6256260
负责人:
Nancy Grace Klimas
金额:
$5.01万
依托单位国家:
美国
项目类别:
财政年份:
1999
资助国家:
美国
项目状态:
已结题
起止时间:
1999-09-30 至 2003-07-31
关键词:
aldosterone blood volume chronic fatigue syndrome clinical research cooperative study erythrocytes erythropoietin hormone regulation /control mechanism human subject hypotension hypoxia interleukin 1 interleukin 6 kidney circulation kidney function norepinephrine pathologic process renin angiotensin system transforming growth factors tumor necrosis factor alpha vascular resistance
中文摘要
慢性疲劳综合征(CFS)有越来越多的文献描述神经心血管异常与发作性低血压相关的CFS复发。斯特里滕和贝尔补充说,他们观察到红细胞(RBC)数量减少,这一发现得到了迈阿密研究小组的证实。这一观察结果与Natelson的CFS组卒中量减少的结果一致。直立性不耐受和红细胞减少在CFS病理生理中的作用以及这些观察结果之间的关系尚不清楚。此外,直立性不耐受与静脉收缩力受损、肾素-血管紧张醛固酮系统异常、肾上腺皮质功能以及自主神经功能的关系尚未阐明。由于红细胞生成素(EPO)水平正常至低,CFS患者红细胞团块减少的观察结果尤其令人困惑。促红细胞生成的主要动力是促红细胞生成素(EPO),它是肾对低氧血症的反应而释放的,通常在低红细胞质量的情况下会相当高。我们假设,低红细胞质量时EPO水平降至正常水平可能有多种机制:1)通过将足够的血液供应分流到肾脏,对EPO升高的需求没有被感知;2)存在小管水平的感觉缺陷,使适当的反应变得迟钝;和/或3)可溶介质直接抑制EPO的产生。在本协议中,我们将测试这些机制的相互作用。我们预测一个混合的机制,包括感觉缺陷和EPO抑制。我们将进行肾血流、肾血管阻力和肾功能的研究,以及肾脏血流动力学和外周血流动力学的比较研究,以测试血流充分性和肾脏与外周交感神经张力。进一步的研究将评估肾素-血管紧张素-醛固酮系统和肾上腺皮质功能对肾脏血流动力学的影响。在仰卧位和直立位之间的血流动力学剖面也将进行比较。最后,将研究血浆或红细胞体积扩张前后的心血管健康状况,以进一步描述低血容量和/或红细胞体积减少对这些参数的作用。通过炎性细胞因子tnf - α、IL- β、tgf - β或IL-6直接抑制EPO是红细胞肿块减少时EPO水平从正常到低的另一个合理解释。这些细胞因子已在体外和体内被证明可以抑制EPO的产生,并且在大量CFS受试者中被证明是升高的。研究炎症细胞因子在EPO抑制中的作用将包括对细胞因子肽的血浆测量以及对单核细胞中编码这些细胞因子的信使rna的测量。将对CFS血清与对照血清对Hep3B细胞系EPO产生的影响进行体外研究,以确定CFS中细胞因子水平升高是否足以减少缺氧诱导的EPO产生。
英文摘要
Chronic Fatigue Syndrome (CFS) has an increasing literature describing neuro-cardiovascular abnormalities with associated episodic hypotension associated with CFS relapse. Streeten and Bell have added the observation of a reduced red blood cell (RBC) mass, a finding confirmed by the Miami research group. This observation is consistent with that of Natelson's group of a reduced stroke volume in CFS. The role of both orthostatic intolerance and reduced RBC mass and the relationship of these observations to each other in the pathophysiology of CFS is poorly understood. Moreover, the relationship of orthostatic intolerance to impaired venous contractility, abnormalities of the renin-angiotensinaldosterone system, adrenocortical function as well as autonomic function has not been elucidated. The observation of a reduced RBC mass in CFS is particularly puzzling because erythropoietin (EPO) levels are normal to low. A major drive of erythropoiesis is EPO, which is released in response to hypoxemia by the kidney, and would normally be quite elevated in the setting of low RBC mass. We postulate that the low to normal EPO levels in the face of low RBC mass can result from more than one mechanism: l) By shunting adequate blood supply to the kidney, the need for elevated EPO is not sensed; 2) A sensory defect at the level of the tubules exists which blunts the appropriate response; and/or 3) EPO production is directly suppressed by soluble mediators. In this protocol, we will test the interaction of these mechanisms. We predict a mixed mechanism including a sensory defect and EPO suppression. We will perform studies of renal blood flow, renal vascular resistance, and renal function as well as studies to compare renal hemodynamics to peripheral hemodynamics to test both adequacy of blood flow and renal vs. peripheral sympathetic tone. Additional studies will evaluate the influence of the renin-angiotensin-aldosterone system and adrenalcortical function on renal hemodynamics. The hemodynamic profiles between the supine and upright position will also be compared. Finally, cardiovascular fitness pre- and post- plasma or RBC volume expansion will be studied to further delineate the role of hypovolemia and/or RBC mass reduction on these parameters. Direct suppression of EPO via the inflammatory cytokines TNF-alpha, IL- lbeta, TGF-beta or IL-6 is another reasonable explanation of normal to low EPO levels in the face of a reduced RBC mass. These cytokines have been demonstrated in vitro and in vivo to inhibit EPO production and have been shown to be elevated in significant numbers of CFS subjects. Studies to examine the role of inflammatory cytokines in EPO inhibition will include plasma measures of cytokine peptide as well as mRNA measures of the message encoding these cytokines from the mononuclear cells. Jn vitro studies of CFS sera vs. control sera on EPO production in Hep3B cell lines will be performed to determine if the level of elevated of cytokines seen in CFS is sufficient to reduce hypoxia induced EPO production.
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