A bradykinin (BK)1 receptor antagonist blocks capsaicin‐induced ear inflammation in mice
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Summary
The results suggest that BK1 along with BK2 receptors are located on capsaicin‐sensitive fibres, where they may modulate the degree of neurogenic inflammation.
- Type
- article
- Published
- 1990-03-01
- Cited by
- 54
- References
- 10
- Access
- Open access
- OpenAlex
- https://openalex.org/W1691948
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:44845828
Keywords
Unit (ring theory), Control (management), Computer science, Mathematics, Artificial intelligence
References
- THE EFFECTS OF SENSORY DENERVATION ON THE RESPONSES OF THE RABBIT EYE TO PROSTAGLANDIN E1, BRADYKININ AND SUBSTANCE P
- Studies on the induction of pharmacological responses to des‐Arg9‐bradykinin in vitro and in vivo
- Interaction of bradykinin with substance P on vascular permeability and pain response.
- The actions of kinin antagonists on B1 and B2 receptor systems.
- Simultaneous release by bradykinin of substance P‐and calcitonin gene‐related peptide immunoreactivities from capsaicin‐sensitive structures in guinea‐pig heart
- Effects of capsaicin on release of substance P-like immunoreactivity and physiological parameters in isolated perfused guinea-pig heart.
- Multiple tachykinin pools in sensory nerve fibres in the rabbit iris.
- Biochemical and anatomical observations on the degeneration of peptide-containing primary afferent neurons after neonatal capsaicin.
- Pharmacology of bradykinin and related kinins.
Cited by
- Mechanisms of mild ocular irritation.
- The articular polymodal nociceptor in health and disease.
- Neurokinin-1 Receptor Agonists Are Involved in Mediating Neutrophil Accumulation in the Inflamed, But Not Normal, Cutaneous Microvasculature: An In Vivo Study Using Neurokinin-1 Receptor Knockout Mice1
- Peptidergic sensory neurons in the control of vascular functions: mechanisms and significance in the cutaneous and splanchnic vascular beds.
- SSR240612 [(2R)-2-[((3R)-3-(1,3-Benzodioxol-5-yl)-3-[(6-methoxy-2-naphthyl)sulfonyl]aminopropanoyl)amino]-3-(4-[2R,6S)-2,6-dimethylpiperidinyl]methylphenyl)-N-isopropyl-N-methylpropanamide Hydrochloride], a New Nonpeptide Antagonist of the Bradykinin B1 Receptor: Biochemical and Pharmacological
- Topically applied diterpenoids from Egletes viscosa (Asteraceae) attenuate the dermal inflammation in mouse ear induced by tetradecanoylphorbol 13-acetate- and oxazolone.
- Synthesis and pharmacological evaluation of pyrazine N-acylhydrazone derivatives designed as novel analgesic and anti-inflammatory drug candidates.
- Effect of the tachykinin receptor antagonists, SR 140333, FK 888, and SR 142801, on capsaicin-induced mouse ear oedema
- The bradykinin B1 receptor antagonist B9858 inhibits a nociceptive spinal reflex in rabbits.
- Profile of capsaicin‐induced mouse ear oedema as neurogenic inflammatory model: comparison with arachidonic acid‐induced ear oedema
- Topical anti-inflammatory effect of Caryocar coriaceum Wittm. (Caryocaraceae) fruit pulp fixed oil on mice ear edema induced by different irritant agents.
- Modulation of topical inflammation and visceral nociception by Vanillosmopsis arborea essential oil in mice
- (-)-α-Bisabolol attenuates visceral nociception and inflammation in mice.
- The expression of bradykinin B(1) receptors on primary sensory neurones that give rise to small caliber sciatic nerve fibres in rats.
- Involvement of substance P as a mediator in capsaicin-induced mouse ear oedema
- In vivo pharmacological profile of novel, potent, stable BK antagonists at B1 and B2 receptors.
- Evaluation of cutaneous algogenic responses to bradykinin and inhibition by bradykinin analogs
- Inhibitory effect of glycyrrhetinic acid derivatives on capsaicin-induced ear edema in mice.
- Studies on the anti-inflammatory and analgesic activity of Curatella americana L.
- Pharmacological investigations of Sapindus trifoliatus in various in vitro and in vivo models of inflammation
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