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Decrease of Substance P in Primary Afferent Neurones and Impairment of Neurogenic Plasma Extravasation by Capsaicin

Overview
Journal Br J Pharmacol
Publisher Wiley
Specialty Pharmacology
Date 1980 Feb 1
PMID 6153545
Citations 127
Authors
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Abstract

1 Rats were pretreated with capsaicin (50 mg/kg, s.c.) on the 2nd, 10th, or 20th day of life. Three months later immunoreactive substance P (I-SP) was determined in skin, sensory nerves and the central nervous system. Neurogenic plasma extravasation was also examined.2 Pretreatment at the age of 2 or 10 days resulted in a decrease (26 to 69%) of I-SP in skin, saphenous and vagus nerve, dorsal roots, dorsal half of the spinal cord, and medulla oblongata. The I-SP content of the ventral half of the spinal cord, of midbrain, hypothalamus, striatum, cortex, and cerebellum remained unchanged. Neurogenic plasma extravasation was inhibited by more than 80%.3 In contrast to this irreversible effect of capsaicin on newborn rats, pretreatment of 20 day old rats led to reversible depletion of I-SP and to reversible impairment of neurogenic plasma extravasation.4 Capsaicin pretreatment of adult rats caused a marked depletion of I-SP in the skin of the hind paw and an impairment of neurogenic plasma extravasation. A similar decrease of I-SP was seen after chronic denervation of the skin.5 Intra-arterial infusion of substance P (threshold dose 5 x 10(-13) mol/min) or physalaemin induced dose-dependent plasma extravasation. Somatostatin, vasoactive intestinal polypeptide, caerulein and the enkephalin-analogue FK 33-824 were ineffective in doses 100 fold higher.6 The results indicate that the action of capsaicin on substance P neurones is restricted to primary sensory neurones. Since in every case a decreased substance P content of the skin was associated with impaired neurogenic plasma extravasation, it is suggested that release of substance P is involved in neurogenic plasma extravasation.

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References
1.
Glowinski J, Iversen L . Regional studies of catecholamines in the rat brain. I. The disposition of [3H]norepinephrine, [3H]dopamine and [3H]dopa in various regions of the brain. J Neurochem. 1966; 13(8):655-69. DOI: 10.1111/j.1471-4159.1966.tb09873.x. View

2.
JANCSO N, JANCSO-GABOR A, Szolcsanyi J . Direct evidence for neurogenic inflammation and its prevention by denervation and by pretreatment with capsaicin. Br J Pharmacol Chemother. 1967; 31(1):138-51. PMC: 1557289. DOI: 10.1111/j.1476-5381.1967.tb01984.x. View

3.
Dobbing J . The development of the blood-brain barrier. Prog Brain Res. 1968; 29:417-27. DOI: 10.1016/S0079-6123(08)64172-2. View

4.
Chang M, Leeman S . Isolation of a sialogogic peptide from bovine hypothalamic tissue and its characterization as substance P. J Biol Chem. 1970; 245(18):4784-90. View

5.
Szolcsanyi J, JANCSO-GABOR A, Joo F . Functional and fine structural characteristics of the sensory neuron blocking effect of capsaicin. Naunyn Schmiedebergs Arch Pharmacol. 1975; 287(2):157-69. DOI: 10.1007/BF00510447. View