Literature DB >> 30462566

Spleen reactivity during incremental ascent to altitude.

Graeme M Purdy1, Marina A James1, Jordan L Rees2, Peter Ondrus3, Jamie L Keess4, Trevor A Day5, Craig D Steinback1.   

Abstract

The spleen contains a reservoir of red blood cells that are mobilized into circulation when under physiological stress. Despite the spleen having an established role in compensation to acute hypoxia, no previous work has assessed the role of the spleen during ascent to high altitude. Twelve participants completed 2 min of handgrip exercise at 30% of maximal voluntary contraction at 1,045, 3,440, and 4,240 m. In a subset of eight participants, an infusion of phenylephrine hydrochloride was administered at a dosage of 30 µg/l of predicted blood volume at each altitude. The spleen was imaged by ultrasound via a 2- to 5.5-MHz curvilinear probe. Spleen volume was calculated by the prolate ellipsoid formula. Finger capillary blood samples were taken to measure hematocrit. Spleen images and hematocrit were taken both before and at the end of both handgrip and phenylephrine infusion. No changes in resting spleen volume were observed between altitudes. At low altitude, the spleen contracted in response to handgrip [272.8 ml (SD 102.3) vs. 249.6 ml (SD 105.7), P = 0.009], leading to an increase in hematocrit (42.6% (SD 3.3) vs. 44.3% (SD 3.3), P = 0.023] but did not contract or increase hematocrit at the high-altitude locations. Infusion of phenylephrine led to spleen contraction at all altitudes, but only lead to an increase in hematocrit at low altitude. These data reveal that the human spleen may not contribute to acclimatization to chronic hypoxia, contrary to its response to acute sympathoexcitation. These results are explained by alterations in spleen reactivity to increased sympathetic activation at altitude. NEW & NOTEWORTHY The present study demonstrated that, despite the known role of the human spleen in increasing oxygen delivery to tissues during acute hypoxia scenarios, the spleen does not mobilize red blood cells during ascent to high altitude. Furthermore, the spleen's response to acute stressors at altitude depends on the nature of the stressor; the spleen's sensitivity to neurotransmitter is maintained, while its reflex response to stress is dampened.

Entities:  

Keywords:  acclimatization; hypoxia; spleen; sympathetic activity

Mesh:

Substances:

Year:  2018        PMID: 30462566      PMCID: PMC6383637          DOI: 10.1152/japplphysiol.00753.2018

Source DB:  PubMed          Journal:  J Appl Physiol (1985)        ISSN: 0161-7567


  44 in total

Review 1.  Autonomic innervation of immune organs and neuroimmune modulation.

Authors:  F Mignini; V Streccioni; F Amenta
Journal:  Auton Autacoid Pharmacol       Date:  2003-02

2.  Spleen contraction during 20 min normobaric hypoxia and 2 min apnea in humans.

Authors:  Angelica Lodin-Sundström; Erika Schagatay
Journal:  Aviat Space Environ Med       Date:  2010-06

3.  Effects of altitude on spleen volume: sonographic assessment.

Authors:  Guner Sonmez; Ersin Ozturk; C Cinar Basekim; Hakan Mutlu; Selim Kilic; Yalcin Onem; Esref Kizilkaya
Journal:  J Clin Ultrasound       Date:  2007-05       Impact factor: 0.910

4.  Sonographic measurement of splenic length: correlation with measurement at autopsy.

Authors:  W K Loftus; L T Chow; C Metreweli
Journal:  J Clin Ultrasound       Date:  1999-02       Impact factor: 0.910

5.  Speed of spleen volume changes evoked by serial apneas.

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Authors:  U Leuenberger; K Gleeson; K Wroblewski; S Prophet; R Zelis; C Zwillich; L Sinoway
Journal:  Am J Physiol       Date:  1991-11

8.  Sympathetic response during 21 days at high altitude (4,300 m) as determined by urinary and arterial catecholamines.

Authors:  R S Mazzeo; E E Wolfel; G E Butterfield; J T Reeves
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Authors:  A C Otto; D J Rona du Toit; P H Pretorius; M G Lötter; A van Aswegen
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