Intrathecal injection of brilliant blue G, a P2X7 antagonist, attenuates the exercise pressor reflex in rats

被引:5
作者
Estrada, Juan A. [1 ]
Ducrocq, Guillaume P. [1 ]
Kim, Joyce S. [1 ]
Kaufman, Marc P. [1 ]
机构
[1] Penn State Coll Med, Heart & Vasc Inst, Hershey, PA 17033 USA
关键词
autonomic function; glia; purinergic receptors; spinal cord; IV MUSCLE AFFERENTS; GROUP-III; SPINAL-CORD; RECEPTORS; CONTRACTION; ACTIVATION; RESPONSES; BLOCKADE; CHANNELS; FIBERS;
D O I
10.1152/ajpregu.00093.2020
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Purinergic 2X (P2X) receptors on the endings of group III and IV afferents play a role in evoking the exercise pressor reflex. Particular attention has been paid to P2X3 receptors because their blockade in the periphery attenuated this reflex. In contrast, nothing is known about the role played by P2X receptors in the spinal cord in evoking the exercise pressor reflex in rats. P2X7 receptors, in particular, may be especially important in this regard because they are found in abundance on spinal glial cells and may communicate with neurons to effect reflexes controlling cardiovascular function. Conse-quently, we investigated the role played by spinal P2X7 receptors in evoking the exercise pressor reflex in decerebrated rats. We found that intrathecal injection of the P2X7 antagonist brilliant blue G (BBG) attenuated the exercise pressor reflex (blood pressure index: 294 +/- 112 mmHg center dot s before vs. 7 +/- 32 mmHg center dot s after; P < 0.05). Likewise, intrathecal injection of minocycline, which inhibits microglial cell output, attenuated the reflex. In contrast, intrathecal injection of BBG did not attenuate the pressor response evoked by intracarotid injection of sodium cyanide, a maneuver that stimulated carotid chemorecep-tors. Moreover, injections of BBG either into the arterial supply of the contracting hindlimb muscles or into the jugular vein did not attenuate the exercise pressor reflex. Our findings support the hypothesis that P2X7 receptors on microglial cells within the spinal cord play a role in evoking the exercise pressor reflex.
引用
收藏
页码:R223 / R232
页数:10
相关论文
共 37 条
[1]   Intrathecal blockade of both NMDA and non-NMDA receptors attenuates the exercise pressor reflex in cats [J].
Adreani, CM ;
Hill, JM ;
Kaufman, MP .
JOURNAL OF APPLIED PHYSIOLOGY, 1996, 80 (01) :315-322
[2]   On the contribution of group III and IV muscle afferents to the circulatory response to rhythmic exercise in humans [J].
Amann, Markus ;
Runnels, Sean ;
Morgan, David E. ;
Trinity, Joel D. ;
Fjeldstad, Anette S. ;
Wray, D. Walter ;
Reese, Van R. ;
Richardson, Russell S. .
JOURNAL OF PHYSIOLOGY-LONDON, 2011, 589 (15) :3855-3866
[3]   Mapping the Site of Action of Human P2X7 Receptor Antagonists AZ11645373, Brilliant Blue G, KN-62, Calmidazolium, and ZINC58368839 to the Intersubunit Allosteric Pocket [J].
Bin Dayel, Anfal ;
Evans, Richard J. ;
Schmid, Ralf .
MOLECULAR PHARMACOLOGY, 2019, 96 (03) :355-363
[4]   Four novel tarantula toxins as selective modulators of voltage-gated sodium channel subtypes [J].
Bosmans, F ;
Rash, L ;
Zhu, SY ;
Diochot, S ;
Lazdunski, M ;
Escoubas, P ;
Tytgat, J .
MOLECULAR PHARMACOLOGY, 2006, 69 (02) :419-429
[5]   Tissue distribution of the P2X(7) receptor [J].
Collo, G ;
Neidhart, S ;
Kawashima, E ;
KoscoVilbois, M ;
North, RA ;
Buell, G .
NEUROPHARMACOLOGY, 1997, 36 (09) :1277-1283
[6]   REFLEX NATURE OF PRESSOR RESPONSE TO MUSCULAR EXERCISE [J].
COOTE, JH ;
HILTON, SM ;
PEREZGON.JF .
JOURNAL OF PHYSIOLOGY-LONDON, 1971, 215 (03) :789-&
[7]   The mechano-gated channel inhibitor GsMTx4 reduces the exercise pressor reflex in decerebrate rats [J].
Copp, Steven W. ;
Kim, Joyce S. ;
Ruiz-Velasco, Victor ;
Kaufman, Marc P. .
JOURNAL OF PHYSIOLOGY-LONDON, 2016, 594 (03) :641-655
[8]   Relating the structure of ATP-gated ion channel receptors to their function [J].
Egan, TM ;
Migita, K ;
Voigt, MM .
EXTRACELLULAR NUCLEOTIDES AND NUCLEOSIDES: RELEASE, RECEPTORS, AND PHYSIOLOGICAL AND PATHOPHYSIOLOGICAL EFFECTS, 2003, 54 :183-202
[9]   μ-Opioid receptors inhibit the exercise pressor reflex by closing N-type calcium channels but not by opening GIRK channels in rats [J].
Estrada, Juan A. ;
Kaufman, Marc P. .
AMERICAN JOURNAL OF PHYSIOLOGY-REGULATORY INTEGRATIVE AND COMPARATIVE PHYSIOLOGY, 2018, 314 (05) :R693-R699
[10]   ATP-mediated cytotoxicity in microglial cells [J].
Ferrari, D ;
Chiozzi, P ;
Falzoni, S ;
DalSusino, M ;
Collo, G ;
Buell, G ;
DiVirgilio, F .
NEUROPHARMACOLOGY, 1997, 36 (09) :1295-1301