Sympathetic innervation of pulmonary circulation and its role in hypoxic pulmonary vasoconstriction

Ming Zhi , Wang Di-xun

Current Medical Science ›› 1989, Vol. 9 ›› Issue (3) : 153 -159.

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Current Medical Science ›› 1989, Vol. 9 ›› Issue (3) : 153 -159. DOI: 10.1007/BF02908966
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Sympathetic innervation of pulmonary circulation and its role in hypoxic pulmonary vasoconstriction

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Abstract

The purposes of this study were to localize the position of spinal center of sympathetic nerve which controls the pulmonary circulation, and to evaluate the role of pulmonary sympathetic nerve in hypoxic pulmonary vasoconstriction (HPV) in pithed rat model. The sympathetic preganglionic fibers arising from C7–T10 segments were stimulated electrically in succession. During stimulation the pulmonary vascular resistance (PVR) was increased in all segments tested, most significantly in C7-T4 (about 28 % above control value), obviously higher than that in T5-T10. The higher the stimulated spinal segments, the larger the ratio of ΔPVR/ΔSVR. Alveolar hypoxia (12%O2–88% N2) could induce HPV in pithed rat. In the presence of hypoxia, stimulation of T1–T3 segments caused a double increment in PVR and -Pp, as compared with those during normoxia (P<0.05). The data show that 1) the spinal center of sympathetic nerve regulating the vasomotion of pulmonary circulation is located in the C7-T4 segments; 2) the excitation of sympathetic nervous system during hypoxia could enhance HPV.

Keywords

pulmonary circulation / sympathetic nerve / hypoxia / spinal cord center

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Ming Zhi, Wang Di-xun. Sympathetic innervation of pulmonary circulation and its role in hypoxic pulmonary vasoconstriction. Current Medical Science, 1989, 9(3): 153-159 DOI:10.1007/BF02908966

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References

[1]

RichardsonJB. Nerve supply to the lung. Am Rev Respir Dis, 1979, 119: 785-802

[2]

JohnsonTS, et al. . Sympatheadrenal responses to acute and chronic hypoxia in the cat. J Clin Invest, 1983, 71(5): 1263-72

[3]

RoseCE, et al. . Acute hypoxemia and hypercapnia:increase in plasma catecho1amines in conscious dogs. Am J Physiol, 1983, 245(6): H924-9

[4]

DnnisonJC, et al. . Measurement of cardiac output by electrical impedance at rest and during exercise. J Appl Physiol, 1976, 40(1): 91-5

[5]

HRP. 1985;8(4):399–402.

[6]

NjÅ A, PurvesD. Specific innervation of guinea-pig superior cervical ganglion cells by preganglionic fibers arising from different levels of the spinal cord. J Physiol, 1977, 264: 565-83

[7]

WaiblH. Zur Topographie der Medulla spinalis der Albinoratte (Rattus norvegicus). Adv Anat Embryol Cell Biol, 1973, 47: 5-42

[8]

RorieDK, GertrudeMT. Norepinephrine content and disposition in large and small pulmonary artery in dog. Am J Physiol, 1983, 245(1): Hl04-109

[9]

GreenbegSA. Adrenergic mechanism in canine intralobes pulmonary arteries and veins. Am J Physiol, 1981, 9(2): H274-85

[10]

MadderJA, et al. . Hypoxia-induced activation in small isolated arteries from the cat. J Appl Physiol, 1985, 59(1): 113-8

[11]

HamanAL, et al. . Enhancement of α- and β-adrenoceptor responses by elevation in vascular lone in pulmonary circulation. Am J Physiol, 1986, H 250: 109-16

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