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1 sm (eg, painful cramps, nociceptive pain, or neuropathic pain).
2 expression in the injured DRG and attenuates neuropathic pain.
3 a new role for the RGMa/Neogenin pathway on neuropathic pain.
4 cer pharmacotherapy, leading to debilitating neuropathic pain.
5 contribute to the pathogenesis of orofacial neuropathic pain.
6 y and retraction scars limiting movement) or neuropathic pain.
7 ependent distribution resulting in disabling neuropathic pain.
8 els, expressed by nociceptors, contribute to neuropathic pain.
9 development of more specific treatments for neuropathic pain.
10 ng in rat spared nerve injury (SNI) model of neuropathic pain.
11 that a D1/D5 antagonist transiently inhibits neuropathic pain.
12 e nociceptive system is a basic mechanism of neuropathic pain.
13 ing in small fibre neuropathy and associated neuropathic pain.
14 the somatosensory cortex of a mouse model of neuropathic pain.
15 been suggested to be novel drug targets for neuropathic pain.
16 potentially contributing to the mechanism of neuropathic pain.
17 se and rat peripheral nerve injury models of neuropathic pain.
18 useful in the treatment of inflammatory and neuropathic pain.
19 nal cord persistently attenuated SNL-induced neuropathic pain.
20 ted sodium channel NaV1.7 is dysregulated in neuropathic pain.
21 in microglial activation and pathogenesis of neuropathic pain.
22 mer's disease; and schizophrenia and chronic neuropathic pain.
23 the rat chronic constrictive injury model of neuropathic pain.
24 ity in preclinical models of inflammatory or neuropathic pain.
25 rs including depression, drug addiction, and neuropathic pain.
26 paired heat hyperalgesia in inflammatory and neuropathic pain.
27 bute to hypersensitivity in rodent models of neuropathic pain.
28 potential targets for the pharmacotherapy of neuropathic pain.
29 also inhibited allodynia in a mouse model of neuropathic pain.
30 uent RIM1alpha/CaV2.2 cascade in SNL-induced neuropathic pain.
31 analgesic effect in the treatment of chronic neuropathic pain.
32 hanical hypersensitivity, a major symptom of neuropathic pain.
33 y be a useful analgesic in the management of neuropathic pain.
34 -5p decreased CXCL13 expression, alleviating neuropathic pain.
35 opioid analgesic effects in animal models of neuropathic pain.
36 ipheral nerve injury- and paclitaxel-induced neuropathic pain.
37 ists holds promise as a viable treatment for neuropathic pain.
38 ant role of oligodendrocyte-derived IL-33 in neuropathic pain.
39 ession of MORs in primary sensory neurons in neuropathic pain.
40 activates astrocytes via CXCR5 to facilitate neuropathic pain.
41 as a treatment option for paclitaxel-induced neuropathic pain.
42 ling may be suitable therapeutic targets for neuropathic pain.
43 ain perception and relieves inflammatory and neuropathic pain.
44 he potential of cell-based therapies against neuropathic pain.
45 a crucial contribution to the development of neuropathic pain.
46 on (DRG) and diminishes the opioid effect on neuropathic pain.
47 algesics for the dual treatment of acute and neuropathic pain.
48 ministration of TGF-beta1 potently inhibited neuropathic pain.
49 dations for the pharmacological treatment of neuropathic pain.
50 l nucleus in subjects with chronic orofacial neuropathic pain.
51 timulation, represents a cardinal feature of neuropathic pain.
52 death, axonal retraction, and development of neuropathic pain.
53 calcium channel ligands in the treatment of neuropathic pain.
54 es a substantial unmet need in patients with neuropathic pain.
55 tic silencing as a new treatment modality in neuropathic pain.
56 al disorders, including absence epilepsy and neuropathic pain.
57 method for targeted silencing of A-fibers in neuropathic pain.
58 development and/or maintenance of peripheral neuropathic pain.
59 of chronic constriction injury (CCI)-induced neuropathic pain.
60 ganglion (DRG) in the development of chronic neuropathic pain.
61 G recommendations for the pharmacotherapy of neuropathic pain.
62 represent a novel strategy for management of neuropathic pain.
63 s of the A1R can be effective treatments for neuropathic pain.
64 apses in a rat partial nerve-injury model of neuropathic pain.
65 y targeting the receptor in the treatment of neuropathic pain.
66 h the cognitive and the sensory component of neuropathic pain.
67 ntion of chronic cancer chemotherapy-induced neuropathic pain.
68 the rat chronic constrictive injury model of neuropathic pain.
69 itivity in peripheral nerve injury models of neuropathic pain.
70 odone in pain-free states, and in a model of neuropathic pain.
71 nhibition of Panx1 may be useful in treating neuropathic pain.
72 which may contribute to nerve injury-induced neuropathic pain.
73 n the rat spared nerve injury (SNI) model of neuropathic pain.
74 eurological disorders including epilepsy and neuropathic pain.
75 thus promotes post-traumatic axonal loss and neuropathic pain.
76 stically distinct models of inflammatory and neuropathic pain.
77 and treatment algorithms designed to target neuropathic pain.
78 CXCL12/CXCR4 signaling pathway may alleviate neuropathic pain.
79 ined therapeutic target for inflammatory and neuropathic pain.
80 ovel strategy for preventing and controlling neuropathic pain.
81 nced amygdala activity in an animal model of neuropathic pain.
82 effective in the treatment of some types of neuropathic pain.
83 hanical hypersensitivity, a major symptom of neuropathic pain.
84 nctional role in SNI- and paclitaxel-induced neuropathic pain.
85 c pain, 100% had probable and 95.2% definite neuropathic pain.
86 apeutic target to alleviate inflammatory and neuropathic pain.
87 ent amnesia, dysautonomia, neuromyotonia and neuropathic pain.
88 a cellular target for treating this form of neuropathic pain.
89 ssociation for the Study of Pain grading for neuropathic pain, 100% had probable and 95.2% definite n
91 for neuropathic pain.SIGNIFICANCE STATEMENT Neuropathic pain, a type of moderate to severe chronic p
94 peutic target for SCI.SIGNIFICANCE STATEMENT Neuropathic pain after spinal cord injury (SCI) may in p
95 rom segments where patients had a history of neuropathic pain also showed electrophysiological and im
96 of the complement system in inflammatory and neuropathic pain, although the underlying mechanisms are
100 e chronic constriction nerve injury model of neuropathic pain and carrageenan model of inflammatory p
101 ate the effects of EpFAs on diabetes induced neuropathic pain and define a previously unknown mechani
102 lts in prolongation of inflammatory pain and neuropathic pain and enhancement of GluN2B-mediated NMDA
103 this study we investigated the incidence of neuropathic pain and examined the presence of nerve dysf
104 changes that arise during the development of neuropathic pain and identify the activation of specific
105 rtant role in multiple preclinical models of neuropathic pain and in inherited human pain phenotypes,
106 w male-dominant microglial signaling in some neuropathic pain and inflammatory pain states, although
107 of extract from Corydalis yanhusuo alleviate neuropathic pain and levo-tetrahydropalmatine (l-THP) is
108 Beyond impaired motor and sensory function, neuropathic pain and loss of bladder control caused by s
109 first-line treatment in chemotherapy-induced neuropathic pain and may be highly efficacious in neurop
112 tivated pro-drugs to localize treatments for neuropathic pain and nerve injury to injured nerves.
114 te that trkB.T1 in astrocytes contributes to neuropathic pain and neurological dysfunction following
115 regulation contributes to the development of neuropathic pain and stimulation of inflammasome signali
116 esic actions in preclinical rodent models of neuropathic pain and that A3AR analgesia is independent
117 berrant afferent input in the maintenance of neuropathic pain and the potential for targeted chemogen
118 , and led to robust motosensory improvement, neuropathic pain and tissue damage mitigation, and myeli
120 play a critical role in mPFC deactivation in neuropathic pain and underlie the mPFC-specific cognitiv
121 ials that included 396 patients investigated neuropathic pain, and 12 trials that included 1600 patie
122 ne contribute to the generation of epilepsy, neuropathic pain, and autism spectrum disorders; thus, i
123 atherosclerosis, multiple sclerosis, asthma, neuropathic pain, and diabetic nephropathy, as well as c
126 I-mtO2(.-)-pCREB-pC/EBPbeta signaling in HIV neuropathic pain, and should help in the development of
128 ia, nausea/vomiting related to chemotherapy, neuropathic pain, and spasticity in multiple sclerosis.
129 neurotransmission as a critical mechanism of neuropathic pain, and suggest that targeting insular M2
131 aggravating stroke, temporal lobe epilepsy, neuropathic pain, and various neurodegenerative diseases
132 Here, we show that both basal mechanical and neuropathic pain are controlled by the microRNA-183 (miR
133 ors effectively reduce inflammatory pain and neuropathic pain, arguing against the importance of morp
136 eclinical profile in two different models of neuropathic pain as well as in a reserpine model of cent
137 ) recommendations for the pharmacotherapy of neuropathic pain based on the results of a systematic re
139 P2, and DPP10 are potential drug targets for neuropathic pain because they form a channel complex wit
140 activity with intrathecal anti-IL10 unmasks neuropathic pain behavior in infant nerve injured mice,
141 plays a critical role in CeA plasticity and neuropathic pain behaviors in the rat spinal nerve ligat
143 nal blockade of intracellular mGluR5 reduces neuropathic pain behaviours and signalling molecules, wh
145 w-strength evidence that cannabis alleviates neuropathic pain but insufficient evidence in other pain
146 ciception in models of post-surgical and HIV neuropathic pain but only slightly blocked anti-nocicept
148 a proinflammatory cytokine, IFN-gamma drives neuropathic pain by inducing microglial activation in th
149 ndings suggest that DNMT3a may contribute to neuropathic pain by repressing Kcna2 expression in the D
150 recovery ("remission") from inflammatory or neuropathic pain can be reversed by opioid antagonists.
154 nsmission in the posterior insular cortex in neuropathic pain condition and the involvement of M2 rec
155 mia is thought to play a role in a number of neuropathic pain conditions, and yet the role of hypoxia
160 molecule-1alpha (RIM1alpha) participates in neuropathic pain development by binding to and upregulat
161 se findings indicate that G9a contributes to neuropathic pain development through epigenetic silencin
162 Spinal plasticity, a key process mediating neuropathic pain development, requires ubiquitination-de
163 onic non-freezing cold injury is a disabling neuropathic pain disorder due to a sensory neuropathy.
164 eund's adjuvant injection and the late phase neuropathic pain following chronic constriction injury (
166 use and proposal as first-line treatment in neuropathic pain for tricyclic antidepressants, serotoni
173 ng, we found that individuals with orofacial neuropathic pain have increased infra-slow oscillatory a
174 le of the medial prefrontal cortex (mPFC) in neuropathic pain have led to an increased awareness of h
177 Using the spared nerve injury (SNI) model of neuropathic pain in Long-Evans rats and patch-clamp reco
181 ling, and functional profiling can attenuate neuropathic pain in patients carrying the S241T mutation
184 vidence suggests that cannabis may alleviate neuropathic pain in some patients, but insufficient evid
186 a potential new target for the treatment of neuropathic pain, including chemotherapy (paclitaxel)-in
187 dies of oral and topical pharmacotherapy for neuropathic pain, including studies published in peer-re
188 In this study, we report in individuals with neuropathic pain increased oscillatory neural activity w
189 sults suggest that A3AR-mediated reversal of neuropathic pain increases modulation of GABA inhibitory
192 phrine, TNFalpha, and interleukin-6, and the neuropathic pain induced by the cancer chemotherapy pacl
201 experimental animal investigations show that neuropathic pain is associated with altered infra-slow (
202 ence from human investigations suggests that neuropathic pain is associated with altered thalamic bur
205 ng the underlying mechanisms responsible for neuropathic pain is critical if we are to develop more e
206 echanisms responsible for the maintenance of neuropathic pain is imperative for the development of mo
212 s in understanding the mechanisms underlying neuropathic pain, limited success in therapeutic approac
213 d non-pharmacological treatment protocol for neuropathic pain management, was reported to selectively
214 ent of cortical hyperexcitability underlying neuropathic pain may involve homeostatic plasticity in r
215 new insights in the understanding of the HIV neuropathic pain mechanisms and treatment.SIGNIFICANCE S
228 E), we revised the Special Interest Group on Neuropathic Pain (NeuPSIG) recommendations for the pharm
229 between structural changes and magnitude of neuropathic pain (NP) remains incompletely understood.
232 steroidal anti-inflammatory drugs, drugs for neuropathic pain, opioids, and cannabinoids, to physical
233 nged in a sciatic nerve transection model of neuropathic pain or in the Complete Freund's adjuvant mo
234 . x 12 days) suppressed chemotherapy-induced neuropathic pain produced by paclitaxel without producin
235 yer 5 mPFC pyramidal neurons is abolished in neuropathic pain rats due to a severe reduction of a mus
237 his single cluster controls more than 80% of neuropathic pain-regulated genes and scales basal mechan
239 increased 5-HT2CR in the BLA contributes to neuropathic-pain-related amygdala plasticity by driving
241 ategy, 5-HT2CR knockdown in the BLA inhibits neuropathic-pain-related behaviors.SIGNIFICANCE STATEMEN
246 ical sensitivity, which resemble features of neuropathic pain reported in humans and other species an
247 of the pain-sensing system, as in chronic or neuropathic pain, represents a major health burden with
250 dynia) is prevalent in many inflammatory and neuropathic pain settings, with little known of the mech
251 questionnaire, and treatment algorithms for neuropathic pain should now be used in the management of
252 y, we report that individuals with orofacial neuropathic pain show altered functional connectivity be
253 adigms in a rat model of oxaliplatin-induced neuropathic pain, showed the better antihypersensitive p
254 subunits could be potential drug targets for neuropathic pain.SIGNIFICANCE STATEMENT Neuropathic pain
255 ic cognitive deficits that are comorbid with neuropathic pain.SIGNIFICANCE STATEMENT The medial prefr
256 including chemotherapy (paclitaxel)-induced neuropathic pain.SIGNIFICANCE STATEMENT This work demons
257 therapeutic target against inflammatory and neuropathic pain.SIGNIFICANCE STATEMENT We demonstrate t
261 pathic pain and may be highly efficacious in neuropathic pain states that are refractive to opioid an
263 ck selectively controls the sensory input in neuropathic pain states, suggesting that modulating its
269 subscale (d = 0.26; P = .026), the SF-MPQ-2 neuropathic pain subscale (d = 0.24; P = .036), and SF-M
270 5], Ocular Surface Disease Index [OSDI], and Neuropathic Pain Symptom Inventory modified for the eye
272 ar puncture alleviates early- and late-phase neuropathic pain symptoms, such as allodynia and hyperal
275 analgesic against thermal, inflammatory, and neuropathic pain that acts independently of 7TM mu-opioi
276 ong-term treatments to ameliorate peripheral neuropathic pain that includes mechanical allodynia are
277 have been implicated in nerve injury-induced neuropathic pain, the manner by which injured sensory ne
278 sic effects in rodent models of experimental neuropathic pain through the A3 adenosine receptor (A3AR
281 tivity in nociceptive neurons and suppresses neuropathic pain transduction in a specific, light-touch
282 gh several efficacious medications exist for neuropathic pain treatment, pain is still underrecognize
286 aviors in C57BL/6J male mice were induced by neuropathic pain, unpredictable chronic mild stress, and
287 post-traumatic intraneural inflammation and neuropathic pain using the chronic constriction injury (
288 A3AR agonists (IB-MECA and MRS5698) reverse neuropathic pain via a spinal mechanism of action that m
290 igation was to determine whether, in humans, neuropathic pain was also associated with altered infra-
294 enerated by the spared nerve injury model of neuropathic pain was reversed by ivermectin treatment.
296 ing the spinal nerve ligation (SNL) model of neuropathic pain, we found that CXCL13 was persistently
297 T2 represents a valuable strategy to relieve neuropathic pain, we synthesized novel activators (4a-f)
298 d to increased hypersensitivity in models of neuropathic pain, whereas the behavior in models of infl
299 B1 signaling would suppress inflammatory and neuropathic pain without producing cannabimimetic effect
300 agonist that attenuates chemotherapy-induced neuropathic pain without producing tolerance and may pro
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