Prabhakar Nanduri R, Peng Ying-Jie
Department of Physiology & Biophysics, Case Western Reserve University, Cleveland, OH 44106, USA.
J Appl Physiol (1985). 2004 Jan;96(1):359-66. doi: 10.1152/japplphysiol.00809.2003.
Peripheral chemoreceptors (carotid and aortic bodies) detect changes in arterial blood oxygen and initiate reflexes that are important for maintaining homeostasis during hypoxemia. This mini-review summarizes the importance of peripheral chemoreceptor reflexes in various physiological and pathophysiological conditions. Carotid bodies are important for eliciting hypoxic ventilatory stimulation in humans and in experimental animals. In the absence of carotid bodies, compensatory upregulation of aortic bodies as well as other chemoreceptors contributes to the hypoxic ventilatory response. Peripheral chemoreceptors are critical for ventilatory acclimatization at high altitude. They also contribute in part to the exercise-induced hyperventilation, especially with submaximal and heavy exercise. During pregnancy, hypoxic ventilatory sensitivity increases, perhaps due to the actions of estrogen and progesterone on chemoreceptors. Augmented peripheral chemoreceptors have been implicated in early stages of recurrent apneas, congestive heart failure, and certain forms of hypertension. It is likely that chemoreceptors tend to maintain oxygen homeostasis and act as a defense mechanism to prevent the progression of the morbidity associated with these diseases. Experimental models of recurrent apneas, congestive heart failure, and hypertension offer excellent opportunities to unravel the cellular mechanisms associated with altered chemoreceptor function.
外周化学感受器(颈动脉体和主动脉体)可检测动脉血氧变化,并引发反射,这些反射对于低氧血症期间维持体内平衡非常重要。本综述总结了外周化学感受器反射在各种生理和病理生理状况下的重要性。颈动脉体对于在人类和实验动物中引发低氧通气刺激很重要。在没有颈动脉体的情况下,主动脉体以及其他化学感受器的代偿性上调有助于低氧通气反应。外周化学感受器对于高原地区的通气适应至关重要。它们也部分促成运动诱发的通气过度,尤其是在次最大强度和剧烈运动时。在怀孕期间,低氧通气敏感性增加,这可能是由于雌激素和孕激素对化学感受器的作用。外周化学感受器功能增强与复发性呼吸暂停、充血性心力衰竭和某些形式的高血压的早期阶段有关。化学感受器可能倾向于维持氧稳态,并作为一种防御机制来防止与这些疾病相关的发病率进展。复发性呼吸暂停、充血性心力衰竭和高血压的实验模型为揭示与化学感受器功能改变相关的细胞机制提供了绝佳机会。