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The role of neuronal uptake atα- andβ-adrenoceptor sites in subcutaneous adipose tissue

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Summary

Intravascular noradrenaline infusion may cause vasodilatation or vasoconstriction in subcutaneous adipose tissue, whereas sympathetic nerve activity causes vasoconstriction only. This discrepancy may be due to a differential distribution of α- and β-adrenoceptors in relation to adrenergic nerve terminals in the adipose tissue vessels. In order to test this hypothesis the extent of prejunctional supersensitivity to noradrenaline was studied after blockade the neuronal uptake of noradrenaline with cocaine.

In the autoperfused, isolated inguinal canine adipose tissue pretreatment with cocaine (200–600 μg close i.a.) increased lipolysis following sympathetic nerve stimulation or close i.a. injection of noradrenaline. Cocaine also potentiated the vasoconstriction induced by nerve stimulation (1–3 Hz) or intra-arterial noradrenaline (0.2–2 nmoles) as well as the vasodilatation induced by sympathetic nerve stimulation (1–3 Hz) after α-receptor blockade. However, the vasodilatation following close i.a. injection of noradrenaline after α-receptor blockade was not changed by cocaine.

The results indicate that the functionally important vascular α-adrenoceptors in adipose tissue are in close contact with adrenergic nerve terminals, whereas most vascular β-adrenoceptors seem to be unrelated to the nerve terminals. Thus, the α-adrenoceptors in the adipose tissue vessels may be classified as innervated receptors, in contrast to the vascular β-adrenoceptors which may be more acessible to circulating catecholamines and may be classified as humoral receptors. Furthermore at least some of the β-receptors on the adipocytes seem to be located close to sympathetic nerve terminals.

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References

  • Ballantyne, B., Raftery, A. T.: The neurochemistry of adipose tissue. J. Physiol. (Lond.)205, 31–33 (1969)

    Google Scholar 

  • Ballard, K., Cobb, C. A., Rosell, S.: Vascular and lipolytic responses in canine subcutaneous adipose tissue following infusion of catecholamines. Acta physiol. scand.81, 246–253 (1971)

    Google Scholar 

  • Ballard, K., Malmfors, T., Rosell, S.: Adrenergic innervation and vascular patterns in canine adipose tissue. Microvasc. Res.8, 164–171 (1974)

    Google Scholar 

  • Bevan, J. A., Su, C.: Sympathetic mechanisms in blood vessels: nerve and muscle relationships. Ann. Rev. Pharmacol.13, 269–285 (1973)

    Google Scholar 

  • Bevan, J. A., Verity, M. A.: Sympathetic nerve-free vascular muscle. J. Pharmacol. exp. Ther.157, 117–124 (1967)

    Google Scholar 

  • Brick, I., Hutchison, K. I., Roddie, I. C.: A comparison of the effects of circulating noradrenaline, and vasoconstrictor nerve stimulation on forearm blood vessels. J. Physiol. (Lond.)189, 27–28P (1967)

    Google Scholar 

  • De La Lande, I. S., Frewin, D., Waterson, J. G.: The influence of sympathetic innervation on vascular sensitivity to noradrenaline. Brit. J. Pharmacol. Chemother.31, 82–93 (1967)

    Google Scholar 

  • Diculescu, I., Stoica, M.: Fluorescence histochemical investigation on the adrenergic innervation of the white adipose tissue in the rat. J. Neuro-Visceral Relations32, 25–36 (1970)

    Google Scholar 

  • Glick, G., Epstein, S. E., Wechsler, A. S., Braunwald, E.: Physiological differences between the effects of neuronally released and bloodborne norepinephrine on β-adrenergic receptors in the arterial bed of the dog. Circulat. Res.XXI, 217–227 (1967)

    Google Scholar 

  • Guimaràes, S., Osswald, W., Cardoso, W., Branco, D.: The effects of cocaine and denervation on the sensitivity to noradrenaline, its uptake and the termination of its action, in isolated venous tissue. Naunyn-Schmiedebergs Arch. Pharmak.271, 262–273 (1971)

    Google Scholar 

  • Hoffbrand, B. I., Forsyth, R. P.: Regional blood flow changes during norepinephrine, tyramine and methoxamine infusions in the unanesthetized rhesus monkey. J. Pharmacol. exp. Ther.184, 656–661 (1973)

    Google Scholar 

  • Johansson, B., Ljung, B., Malmfors, T., Olson, L.: Prejunctional supersensitivity in the rat portal vein as related to its pattern of innervation. Acta physiol. scan., Suppl.349, 5–16 (1970)

    Google Scholar 

  • Laurell, S., Tibbling, G.: An enzymatic fluorometric micromethod for the determination of glycerol. Clin. chim. Acta13, 317–322 (1966)

    Google Scholar 

  • Ljung, B., Bevan, I. A., Su, C.: Evidence for uneven α-receptor distribution in the rat portal vein. Circulat. Res.XXXII, 556–563 (1973)

    Google Scholar 

  • Maxwell, R. A., Wastila, W. B., Eckhardt, S. B.: Some factors determining the response of rabbit aortic strips todl-norepinephrine-7-H3 hydrochloride and the influence of cocaine, guanethidine and methylphenidate, on these factors. J. Pharmacol. exp. Ther.151, 253–261 (1966)

    Google Scholar 

  • Napolitano, L. M.: Observations on the fine structure of adipose cells. Ann. N. Y. Acad. Sci.131, 34–42 (1965)

    Google Scholar 

  • Nielsen, S. L., Bitsch, V., Larsen, O. A., Lassen, N. A., Quade, F.: Blood flow through human adipose tissue during lipolysis. Scand. J. clin. Lab. Invest.22, 124–130 (1968)

    Google Scholar 

  • Norberg, K. A., Hamberger, B.: The sympathetic adrenergic neuron. Acta physiol. scand., Suppl.238, 5–42 (1964)

    Google Scholar 

  • Rosell, S.: Release of free fatty acids from subcutaneous adipose tissue in dogs following sympathetic nerve stimulation. Acta physiol. scand.67, 343–351 (1966)

    Google Scholar 

  • Rosell, S., Belfrage, E.: Adrenergic receptors in adipose tissue and their relation to adrenergic innervation. Nature (Lond.)253, 738–739 (1975)

    Google Scholar 

  • Rosell, S., Sedvall, G.: Restoration of vasoconstrictor effects in reserpinized cats. Acta physiol. scand.53, 174–184 (1961)

    Google Scholar 

  • Whitby, L. G., Hertting, G., Axelrod, J.: Effects of cocaine on the disposition of noradrenaline labeled with tritium. Nature (Lond.)187, 604–605 (1960)

    Google Scholar 

  • Wirsén, C.: Adrenergic innervation of adipose tissue examined by fluorescence microscopy. Nature (Lond.)202, 913 (1964)

    Google Scholar 

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Belfrage, E., Rosell, S. The role of neuronal uptake atα- andβ-adrenoceptor sites in subcutaneous adipose tissue. Naunyn-Schmiedeberg's Arch. Pharmacol. 294, 9–15 (1976). https://doi.org/10.1007/BF00692779

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