Altered ATP release and metabolism in dorsal root ganglia of neuropathic rats

被引:39
作者
Matsuka, Yoshizo [1 ,2 ]
Ono, Takeshi [1 ,3 ]
Iwase, Hirotate [1 ]
Mitrirattanakul, Somsak [1 ,4 ]
Omoto, Kevin S. [1 ]
Cho, Ting [1 ]
Lam, Yan Yan N. [1 ]
Snyder, Bradley [1 ]
Spigelman, Igor [1 ]
机构
[1] Univ Calif Los Angeles, Sch Dent, Div Oral Biol & Med, Los Angeles, CA 90024 USA
[2] Okayama Univ, Dept Oral & Maxillofacial Rehabil, Grad Sch Med Dent & Pharmaceut Sci, Okayama, Japan
[3] Japan Ground Self Def Force Med Sch, Dept Educ, Tokyo, Japan
[4] Mahidol Univ, Fac Dent, Bangkok 10700, Thailand
关键词
D O I
10.1186/1744-8069-4-66
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Background: Adenosine 5'-triphosphate (ATP) has a ubiquitous role in metabolism and a major role in pain responses after tissue injury. We investigated the changes in basal and KCl-evoked ATP release from rat dorsal root ganglia (DRG) after peripheral neuropathy induction by unilateral sciatic nerve entrapment (SNE). Results: After SNE, rats develop long-lasting decreases in ipsilateral hindpaw withdrawal thresholds to mechanical and thermal stimulation. At 15-21 days after neuropathy induction, excised ipsilateral L4-L5 DRG display significantly elevated basal extracellular ATP levels compared to contralateral or control ( naive) DRG. However, KCl-evoked ATP release is no longer observed in ipsilateral DRG. We hypothesized that the differential SNE effects on basal and evoked ATP release could result from the conversion of extracellular ATP to adenosine with subsequent activation of adenosine A1 receptors (A1Rs) on DRG neurons. Adding the selective A1R agonist, 2-chloro-N-6-cyclopentyladenosine ( 100 nM) significantly decreased basal and evoked ATP release in DRG from nave rats, indicating functional A1R activation. In DRG ipsilateral to SNE, adding a selective A1R antagonist, 8-cyclopentyl-1,3-dipropylxanthine ( 30 nM), further increased basal ATP levels and relieved the blockade of KCl-evoked ATP release suggesting that increased A1R activation attenuates evoked ATP release in neurons ipsilateral to SNE. To determine if altered ATP release was a consequence of altered DRG metabolism we compared O-2 consumption between control and neuropathic DRG. DRG ipsilateral to SNE consumed O-2 at a higher rate than control or contralateral DRG. Conclusion: These data suggest that peripheral nerve entrapment increases DRG metabolism and ATP release, which in turn is modulated by increased A1R activation.
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页数:13
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共 80 条
[1]   International union of pharmacology LVIII: Update on the P2Y G protein-coupled nucleotide receptors: From molecular mechanisms and pathophysiology to therapy [J].
Abbracchio, Maria P. ;
Burnstock, Geoffrey ;
Boeynaems, Jean-Marie ;
Barnard, Eric A. ;
Boyer, Jose L. ;
Kennedy, Charles ;
Knight, Gillian E. ;
Fumagalli, Marta ;
Gachet, Christian ;
Jacobson, Kenneth A. ;
Weisman, Gary A. .
PHARMACOLOGICAL REVIEWS, 2006, 58 (03) :281-341
[2]   Axotomy- and autotomy-induced changes in the excitability of rat dorsal root ganglion neurons [J].
Abdulla, FA ;
Smith, PA .
JOURNAL OF NEUROPHYSIOLOGY, 2001, 85 (02) :630-643
[3]  
Amir R, 1996, J NEUROSCI, V16, P4733
[4]  
Barclay J, 2002, J NEUROSCI, V22, P8139
[5]   P2X receptors mediate ATP-induced primary nociceptive neurone activation [J].
Bland-Ward, PA ;
Humphrey, PPA .
JOURNAL OF THE AUTONOMIC NERVOUS SYSTEM, 2000, 81 (1-3) :146-151
[6]   Purinergic signalling: ATP release [J].
Bodin, P ;
Burnstock, G .
NEUROCHEMICAL RESEARCH, 2001, 26 (8-9) :959-969
[7]   Glucose-dependent, cAMP-mediated ATP efflux from Saccharomyces cerevisiae [J].
Boyum, R ;
Guidotti, G .
MICROBIOLOGY-SGM, 1997, 143 :1901-1908
[8]   Pathophysiology and therapeutic potential of purinergic signaling [J].
Burnstock, G .
PHARMACOLOGICAL REVIEWS, 2006, 58 (01) :58-86
[9]   Physiology and pathophysiology of purinergic neurotransmission [J].
Burnstock, Geoffrey .
PHYSIOLOGICAL REVIEWS, 2007, 87 (02) :659-797
[10]   A putative osmoreceptor system that controls neutrophil function through the release of ATP, its conversion to adenosine, and activation of A2 adenosine and P2 receptors [J].
Chen, Y ;
Shukla, A ;
Namiki, S ;
Insel, PA ;
Junger, WG .
JOURNAL OF LEUKOCYTE BIOLOGY, 2004, 76 (01) :245-253