Bv8 is a small protein secreted by frog skin. Mammalian homologues of Bv8, the prokineticins PK1 and PK2, and their G-protein coupled receptors prokineticin receptor 1 (PKR1) and prokineticin receptor 2 (PKR2) have been identified and linked to several biological effects as gut motility, neurogenesis, angiogenesis, circadian rhythms, hematopoiesis, and nociception. Emerging evidences indicated that prokineticins are also associated with pathologies of the reproductive and nervous system, myocardial infarction, and tumorigenesis. Bv8 elicits a dose-dependent reduction in nociceptive threshold to thermal, mechanical, and chemical stimuli. The prokineticin receptors are present in a fraction of G and A delta-fiber neurons also expressing the vanilloid receptors, TRPV1 and TRPA1. Mice lacking PKR genes exhibit impaired Bv8-induced hyperalgesia, develop deficient responses to noxious heat, capsaicin, and protons and show reduced thermal and mechanical hypersensitivity to paw inflammation, indicating a requirement for PKR signaling in activation and sensitization of primary afferent fibers. Bv8/PK2 is highly expressed by neutrophils and other inflammatory cells and must be considered as new pronociceptive mediators in inflamed tissues. Bv8-like hyperalgesic activity was demonstrated in extracts of rat inflammatory granulocytes. Bv8 stimulates macrophage and T lymphocyte to differentiate towards an inflammatory and Th1 profile indicating that Bv8/PK2 plays a role in immunoinflammatory responses. Blockade of PKRs may represent a novel therapeutic strategy in acute and inflammatory pain conditions.

Bv8/Prokineticins and their Receptors A New Pronociceptive System / Negri, Lucia; Lattanzi, Roberta; Giannini, Elisa; Canestrelli, Michela; Nicotra, Annalisa; Melchiorri, Pietro. - STAMPA. - 85:(2009), pp. 145-157. [10.1016/S0074-7742(09)85011-3]

Bv8/Prokineticins and their Receptors A New Pronociceptive System.

NEGRI, Lucia;LATTANZI, Roberta;GIANNINI, Elisa;CANESTRELLI, MICHELA;NICOTRA, ANNALISA;MELCHIORRI, Pietro
2009

Abstract

Bv8 is a small protein secreted by frog skin. Mammalian homologues of Bv8, the prokineticins PK1 and PK2, and their G-protein coupled receptors prokineticin receptor 1 (PKR1) and prokineticin receptor 2 (PKR2) have been identified and linked to several biological effects as gut motility, neurogenesis, angiogenesis, circadian rhythms, hematopoiesis, and nociception. Emerging evidences indicated that prokineticins are also associated with pathologies of the reproductive and nervous system, myocardial infarction, and tumorigenesis. Bv8 elicits a dose-dependent reduction in nociceptive threshold to thermal, mechanical, and chemical stimuli. The prokineticin receptors are present in a fraction of G and A delta-fiber neurons also expressing the vanilloid receptors, TRPV1 and TRPA1. Mice lacking PKR genes exhibit impaired Bv8-induced hyperalgesia, develop deficient responses to noxious heat, capsaicin, and protons and show reduced thermal and mechanical hypersensitivity to paw inflammation, indicating a requirement for PKR signaling in activation and sensitization of primary afferent fibers. Bv8/PK2 is highly expressed by neutrophils and other inflammatory cells and must be considered as new pronociceptive mediators in inflamed tissues. Bv8-like hyperalgesic activity was demonstrated in extracts of rat inflammatory granulocytes. Bv8 stimulates macrophage and T lymphocyte to differentiate towards an inflammatory and Th1 profile indicating that Bv8/PK2 plays a role in immunoinflammatory responses. Blockade of PKRs may represent a novel therapeutic strategy in acute and inflammatory pain conditions.
2009
ENDOTHELIAL GROWTH-FACTOR; NEURAL CREST CELLS; PAIN SENSATION; BV8; PROKINETICIN-2
01 Pubblicazione su rivista::01a Articolo in rivista
Bv8/Prokineticins and their Receptors A New Pronociceptive System / Negri, Lucia; Lattanzi, Roberta; Giannini, Elisa; Canestrelli, Michela; Nicotra, Annalisa; Melchiorri, Pietro. - STAMPA. - 85:(2009), pp. 145-157. [10.1016/S0074-7742(09)85011-3]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/364720
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