• Title/Summary/Keyword: allodynia

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Anti-nociceptive effects of dual neuropeptide antagonist therapy in mouse model of neuropathic and inflammatory pain

  • Kim, Min Su;Kim, Bo Yeon;Saghetlians, Allen;Zhang, Xiang;Okida, Takuya;Kim, So Yeon
    • The Korean Journal of Pain
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    • v.35 no.2
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    • pp.173-182
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    • 2022
  • Background: Neurokinin-1 (NK1) and calcitonin gene-related peptide (CGRP) play a vital role in pain pathogenesis, and these proteins' antagonists have attracted attention as promising pharmaceutical candidates. The authors investigated the anti-nociceptive effect of co-administration of the CGRP antagonist and an NK1 antagonist on pain models compared to conventional single regimens. Methods: C57Bl/6J mice underwent sciatic nerve ligation for the neuropathic pain model and were injected with 4% formalin into the hind paw for the inflammatory pain model. Each model was divided into four groups: vehicle, NK1 antagonist, CGRP antagonist, and combination treatment groups. The NK1 antagonist aprepitant (BIBN4096, 1 mg/kg) or the CGRP antagonist olcegepant (MK-0869, 10 mg/kg) was injected intraperitoneally. Mechanical allodynia, thermal hypersensitivity, and anxiety-related behaviors were assessed using the von Frey, hot plate, and elevated plus-maze tests. The flinching and licking responses were also evaluated after formalin injection. Results: Co-administration of aprepitant and olcegepant more significantly alleviated pain behaviors than administration of single agents or vehicle, increasing the mechanical threshold and improving the response latency. Anxiety-related behaviors were also markedly improved after dual treatment compared with either naive mice or the neuropathic pain model in the dual treatment group. Flinching frequency and licking response after formalin injection decreased significantly in the dual treatment group. Isobolographic analysis showed a meaningful additive effect between the two compounds. Conclusions: A combination pharmacological therapy comprised of multiple neuropeptide antagonists could be a more effective therapeutic strategy for alleviating neuropathic or inflammatory pain.

Medial prefrontal cortex nitric oxide modulates neuropathic pain behavior through mu opioid receptors in rats

  • Raisian, Dorsa;Erfanparast, Amir;Tamaddonfard, Esmaeal;Soltanalinejad-Taghiabad, Farhad
    • The Korean Journal of Pain
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    • v.35 no.4
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    • pp.413-422
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    • 2022
  • Background: The neocortex, including the medial prefrontal cortex (mPFC), contains many neurons expressing nitric oxide synthase (NOS). In addition, increasing evidence shows that the nitric oxide (NO) and opioid systems interact in the brain. However, there have been no studies on the interaction of the opioid and NO systems in the mPFC. The objective of this study was to investigate the effects of administrating L-arginine (L-Arg, a precursor of NO) and N(gamma)-nitro-L-arginine methyl ester (L-NAME, an inhibitor of NOS) into the mPFC for neuropathic pain in rats. Also, we used selective opioid receptor antagonists to clarify the possible participation of the opioid mechanism. Methods: Complete transection of the peroneal and tibial branches of the sciatic nerve was applied to induce neuropathic pain, and seven days later, the mPFC was cannulated bilaterally. The paw withdrawal threshold fifty percent (50% PWT) was recorded on the 14th day. Results: Microinjection of L-Arg (2.87, 11.5 and 45.92 nmol per 0.25 µL) increased 50% PWT. L-NAME (17.15 nmol per 0.25 µL) and naloxonazine (an antagonist of mu opioid receptors, 1.54 nmol per 0.25 µL) inhibited anti-allodynia induced by L-Arg (45.92 nmol per 0.25 µL). Naltrindole (a delta opioid receptor antagonist, 2.45 nmol per 0.25 µL) and nor-binaltorphimine (a kappa opioid receptor antagonist, 1.36 nmol per 0.25 µL) were unable to prevent L-Arg (45.92 nmol per 0.25 µL)-induced antiallodynia. Conclusions: Our results indicate that the NO system in the mPFC regulates neuropathic pain. Mu opioid receptors of this area might participate in pain relief caused by L-Arg.

The role of botulinum toxin type A related axon transport in neuropathic pain induced by chronic constriction injury

  • Bu, Huilian;Jiao, Pengfei;Fan, Xiaochong;Gao, Yan;Zhang, Lirong;Guo, Haiming
    • The Korean Journal of Pain
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    • v.35 no.4
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    • pp.391-402
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    • 2022
  • Background: The mechanism of peripheral axon transport in neuropathic pain is still unclear. Chemokine ligand 13 (CXCL13) and its receptor (C-X-C chemokine receptor type 5, CXCR5) as well as GABA transporter 1 (GAT-1) play an important role in the development of pain. The aim of this study was to explore the axonal transport of CXCL13/CXCR5 and GAT-1 with the aid of the analgesic effect of botulinum toxin type A (BTX-A) in rats. Methods: Chronic constriction injury (CCI) rat models were established. BTX-A was administered to rats through subcutaneous injection in the hind paw. The pain behaviors in CCI rats were measured by paw withdrawal threshold and paw withdrawal latencies. The levels of CXCL13/CXCR5 and GAT-1 were measured by western blots. Results: The subcutaneous injection of BTX-A relieved the mechanical allodynia and heat hyperalgesia induced by CCI surgery and reversed the overexpression of CXCL13/CXCR5 and GAT-1 in the spinal cord, dorsal root ganglia (DRG), sciatic nerve, and plantar skin in CCI rats. After 10 mmol/L colchicine blocked the axon transport of sciatic nerve, the inhibitory effect of BTX-A disappeared, and the levels of CXCL13/CXCR5 and GAT-1 in the spinal cord and DRG were reduced in CCI rats. Conclusions: BTX-A regulated the levels of CXCL13/CXCR5 and GAT-1 in the spine and DRG through axonal transport. Chemokines (such as CXCL13) may be transported from the injury site to the spine or DRG through axonal transport. Axon molecular transport may be a target to enhance pain management in neuropathic pain.

Synergistic interaction between acetaminophen and L-carnosine improved neuropathic pain via NF-κB pathway and antioxidant properties in chronic constriction injury model

  • Owoyele, Bamidele Victor;Bakare, Ahmed Olalekan;Olaseinde, Olutayo Folajimi;Ochu, Mohammed Jelil;Yusuff, Akorede Munirdeen;Ekebafe, Favour;Fogabi, Oluwadamilare Lanre;Roi, Treister
    • The Korean Journal of Pain
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    • v.35 no.3
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    • pp.271-279
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    • 2022
  • Background: Inflammation is known to underlie the pathogenesis in neuropathic pain. This study investigated the anti-inflammatory and neuroprotective mechanisms involved in antinociceptive effects of co-administration of acetaminophen and L-carnosine in chronic constriction injury (CCI)-induced peripheral neuropathy in male Wistar rats. Methods: Fifty-six male Wistar rats were randomly divided into seven experimental groups (n = 8) treated with normal saline/acetaminophen/acetaminophen + L-carnosine. CCI was used to induce neuropathic pain in rats. Hyperalgesia and allodynia were assessed using hotplate and von Frey tests, respectively. Investigation of spinal proinflammatory cytokines and antioxidant system were carried out after twenty-one days of treatment. Results: The results showed that the co-administration of acetaminophen and L-carnosine significantly (P < 0.001) increased the paw withdrawal threshold to thermal and mechanical stimuli in ligated rats compared to the ligated naïve group. There was a significant (P < 0.001) decrease in the levels of nuclear factor kappa light chain enhancer B cell inhibitor, calcium ion, interleukin-1-beta, and tumour necrotic factor-alpha in the spinal cord of the group coadministered with acetaminophen and L-carnosine compared to the ligated control group. Co-administration with acetaminophen and L-carnosine increased the antioxidant enzymatic activities and reduced the lipid peroxidation in the spinal cord. Conclusions: Co-administration of acetaminophen and L-carnosine has anti-inflammatory effects as a mechanism that mediate its antinociceptive effects in CCI-induced peripheral neuropathy in Wistar rat.

Comparative study of acupuncture and invasive laser acupuncture therapy at $SI_3$.$BL_{40}$ on the tibial, sural nerve injury and L5 spinal nerve ligation model in rats (백서(白鼠)의 신경병리성(神經病理性) 동통(疼痛)에 대한 후계(後谿).위중(委中) 혈위(穴位) 호침료법(毫鍼療法)과 레이저 침습조사(侵襲照射) 침료법(鍼療法)과의 비교(比較) 연구(硏究))

  • Wei, Tung-Sheun;Youn, Dae-Hwan;Youn, Yeo-Chung;Na, Chang-Su
    • Korean Journal of Acupuncture
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    • v.22 no.2
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    • pp.9-24
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    • 2005
  • Objective: We have studied the effects of acupuncture and low level He-Ne laser therapy(LLLT) at $SI_3$, $BL_{40}$ on the tibial, sural nerve injury due to sports-damage or traffic accident and L5 spinal nerve ligature model like general herniation of nucleus pulposus(HNP) in a rat of neuopathic pain. Methods: A model of neuropathic pain was made by injuring tibial nerve and sural nerve while common peroneal nerve was maintained. Also, it was made by isolating left 5th lumbar spinal nerve. Three weeks after the neuropathic surgery, acupuncture and LLLT was injected at $SI_3$,$BL_{40}$ one time a day for one week. LLLT was divided three groups, that is LLLT-1(5mW), LLLT-2(10mW) and LLLT-3(30mW). After that, we examined the withdrawal response of neuropathic rats' legs by Von frey filament and acetone stimulation. And also we examined c-Fos, Nocieptin and KOR-3 in the midbrain central gray of neuropathic rats. Results: As we have observed the effect of mechanical allodynia, LLLT-3 group were diminished on 4 day, 5 day, 6 day and 7 day in the resection model compared with control model, LLLT-1 group were diminished on 5 day, LLLT-2 group were diminished on 3 day and 6 day, LLLT-3 group were diminished on 3 day, 4 day, 5 day, 6 day and 7 day in connected model compared with control group. As we have observed the effect of cold allodynia, LLLT-3 group were diminished on 7 day in the resection model compared with control model, LLLT-1 group were diminished on 6 day, 7 day, LLLT-3 group were diminished on 7 day in connected model compared with control group. As we have observed the effect of activity of c-Fos in the central gray part, LLLT-3 were diminished in resection model compared with control group, LLLT-1 group were diminished in connected model compared with control group. As we have observed the effect of activity of Nociceptin in the central gray part, resection model were not increased compared with control group, LLLT-1 group and LLLT-3 group were increased in connected model compared with control model. As we have observed the effect of activity of KOR-3 in the central gray part, resection model were not increased compared with control group, LLLT-3 group were increased in connected model compared with control model. Conclusions: We have noticed that LLLT-1 and LLLT-3 group have more controllable effect than acupuncture group. This study can be used in clinical therapy for neuropathic pain. But it is not reliability that Nociceptin and KOR-3 have effectively to control pain. Therefore We have to follow up about that.

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Effects of Araliae Continentalis Radix Pharmacopuncture on a Neuropathic Pain Rat Model (독활 약침이 신경병리성 통증 유발 흰쥐에 미치는 영향)

  • Kim, Myung Sik;Kim, Jae Hong;Youn, Dae Hwan;Cho, Myoung Rae
    • Korean Journal of Acupuncture
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    • v.37 no.2
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    • pp.104-121
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    • 2020
  • Objectives : Since neuropathic pain shows a variety of symptoms via various mechanisms, there are many difficulties in treatment and various treatments have been tried. This study was conducted to investigate the effects of Araliae Continentalis Radix pharmacopuncture (ACR) on neuropathic pain. Methods : After dividing the white rats into six groups, the sciatic nerves of five groups except the normal group were excised to induce neuropathic pain. Except normal and control group, the other four groups were given: saline (Saline group), ACR 1.100 mg/kg (ACR 1 group), ACR 2.743 mg/kg (ACR 2 group), and ACR 5.486 mg/kg (ACR 3 group) at GB30, twice a week for a total of six times in three weeks. Withdrawal response react time and force intensity, c-Fos, TNF-α, IL-6, and IFN-γ were observed to investigate the efficacy of ACR in each group. Body weight, WBC, RBC, HGB, PLT, AST, ALT, BUN, and Cr changes were observed to check the safety of ACR. Results : Both withdrawal response react time & force intensity were significantly increased in the ACR2 and ACR3 groups at 3 weeks. C-Fos tended to decrease in all ACR groups and significantly decreased in ACR3 group. In blood serum, TNF-α showed a tendency to decrease in all ACR groups and a significant decrease in ACR3 group. But IL-6 and IFN-γ did not change significantly in all experimental groups. In the spinal cord, IFN-γ was significantly decreased in the ACR3 group. But TNF-α and IL-6 were not significantly changed in all experimental groups. Body weight was not changed significantly in all experimental groups. RBC increased significantly in ACR2 group, HGB increased in ACR3 group, and PLT increased significantly in all experimental groups. ALT significantly decreased in ACR1 group, and there were no significant changes in AST, BUN, and Cr in all experimental groups. Conclusions : At high concentrations, ACR pharmacopuncture reduced c-Fos, and TNF-α in the blood serum and IFN-γ in the spinal cord thereby suppressed allodynia. More in-depth studies about pharmacopuncture concentration or mechanism are needed.

Development of a Discogenic Pain Animal Model: Preliminary Study (추간판성통증 동물모델의 개발: 초기 연구)

  • Kim, Byung-Jo;Lee, Min;Lim, Eun-Jeong;Yu, Sung-Wook;Hong, Sung-Ha;Hong, Seok-Joo;Na, Heung-Sik
    • Annals of Clinical Neurophysiology
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    • v.11 no.2
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    • pp.41-47
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    • 2009
  • Background: Discogenic pain can develop into chronic low back pain that is very difficult to treat effectively, because the pathogenesis of the disease still remains controversial. To clarify the pathogenesis, numerous animal models of intervertebral disc degeneration have been proposed in the literature, each with attendant advantages and disadvantages. The aim of this study was to determine the most efficacious method and dose of complete Freund's adjuvant (CFA) injection into intervertebral disc to develop a discogenic pain in a rat. Methods: CFA was injected into the L5-L6 or L4-L5 disc of male Sprague-Dawley rats in various conditions including a dose of CFA (10, 20, or 50 uL), drilling, injection site sealing using cyanoacrylate, and injection velocity. Sham animals were subjected to the same procedure, except for the CFA injection. Mechanical and heat allodynia were serially measured at both hindpaws until 8 weeks post-operatively. Serial MRI analyses were performed to observe degenerative changes of the discs. In addition, CGRP & Substance P-immunoreactivities (ir) in the superficial dorsal horn were evaluated at 4 weeks using immunohistochemistry. Results: Each condition provoked various problems such as development of hindpaw paralysis, CFA leakage, and no pain development. Mid-sagittal T2 MRI revealed no significant degenerative changes in the CFA injected disc. The CGRP-ir of the bilateral superficial dorsal horns at the level of L5-L6 was significantly increased in the CFA group. Conclusions: A total of 10 uL CFA injection into L5-L6 disc for a period of 10 minutes using a 26-gauge needle without drilling was the most efficacious way to develop discogenic pain animal model.

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Spinal α2 Adrenoceptor and Antiallodynic Effect by Clonidine after Chronic Administration of 4-Methylcatechol in Neuropathic Rat Pain Model (신경병증성 통증모델에서 신경영양인자 유도물질의 반복 투여가 척수 아드레날린계에 미치는 영향)

  • Chung, Kyu Yeon;Shin, Sang Wook;Choi, Bong Soo;Kim, Chul Hong;Kim, Kyung Hoon;Kim, Hae Kyu
    • The Korean Journal of Pain
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    • v.21 no.3
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    • pp.179-186
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    • 2008
  • Background: The adrenergic nervous system in the spinal cord contributes to the development of neuropathic pain after nerve injury. Brain derived neurotrophic factor may facilitate the sympathetic change in the spinal cord and influence the state of neuropathic pain. We probed the effect of chronic repetitive administration of systemic 4-methylcatechol, which is known to be a neurotrophic factor inducer, in a spinal nerve ligation model. Methods: We made the rat neuropathic pain model by the ligation of the L5 spinal nerve. Intraperitoneal 4-methylcatechol ($10{\mu}g/kg$) or the same volume of saline wasadministrated twice daily just after the operation for 7 days. The tactile allodynia was measured by using von Frey filaments and its change was followed up from 3 days after SNL. The lumbosacral enlargement of the spinal cord was taken out and the mRNA contents of the ${\alpha}_2-adrenoceptor$ subtypes were measured by real time polymerase chain reaction and this was then compared with the control groups. The antiallodynic effect of intrathecal clonidine (3, 10, $30{\mu}g$) was evaluated and compared in the 4-methylcatechol treated rats and the control rats. Results: The expression of the ${\alpha}_{2A}$ and ${\alpha}_{2C}$ adrenoceptor subtypes did not change after 4-methylcatechol treatment. Intrathecal clonidine showed an earlier and better effect at the highest dose ($30{\mu}g$ intrathecal), but not with any other doses. Conclusions: Chronic intraperitoneal administration of 4-methylcatechol may improve the effect of intrathecal clonidine, but we could not prove the increase of ${\alpha}_{2A}$ and ${\alpha}_{2C}$ adrenoceptors in the spinal cord of 4-methylcatechol treated rats.

Case report : Postherpetic Neuralgia (포진후 신경통의 치료 증례)

  • Bae, Kook-Jin;Ahn, Jong-Mo;Yoon, Chang-Lyuk;Cho, Young-Gon;Ryu, Ji-Won
    • Journal of Oral Medicine and Pain
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    • v.35 no.1
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    • pp.93-99
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    • 2010
  • Herpes zoster (HZ) is the secondary manifestation of an earlier infection with the varicella-zoster virus in one or more dermatomes. As reactivation of the virus is linked to an age-related diminished virus-specific and cell-mediated immunity, HZ develops mainly in elderly people. Acute zoster is painful, but does not incur lasting morbidity. Reactivation of the varicella-zoster virus in the trigeminal nerve (Herpes zoster) occur with severe pain and rash in the oro-facial region. The acute pain decreases as the rash begins to heal. Postherpetic neuralgia(PHN), the most frequent complication of herpes zoster, is usually defined as pain in the involved dermatome that is still present 3 month after rash onset. The clinical characteristics of PHN are, eposodic stabbing pain, burning pain and allodynia, with hypoesthesia and/or dysesthesia. $Neurometer^{(R)}$(neuroselective sensory nerve conduction threshold: sNCT, Automated current perception threshold: CPT, neurotron incorporated. Baltimore, Maryland. 21209 U.S.A.) is convenient, rapid and noninvasive, and allows objective assessment of sensory disturbance. This case is about the postherptic neuralgia patient assessed with $Neurometer^{(R)}$. From this case, we reviewed the pathophysiology and the treatment of PHN and recommend the assessment of pain intensity with $Neurometer^{(R)}$ as quantitative and objective method.

Endothelin-l as a Regulator of Vascular Smooth Muscle Contraction-related Signal Transduction and Endothelin-l-induced Pain-related Nociception -The Approach of Basic Physical Therapy for the Study of Pain Specialized Physical Therapy- (혈관평활근 수축-연관 신호전달 체계에 대한 Endothelin-1의 역할과 Endothelin-1-유도통증-연관 유해감각 -통증전문물리치료 연구를 위한 기초물리치료학적 접근을 중심으로-)

  • Kim, Jung-Hwan;Lee, Sook-Hee;Lee, Sang-Bin;Choi, Yoo-Rim;Kim, Bo-Kyung;Park, Ju-Hyun;Koo, Ja-Pung;Choi, Wan-Suk;An, Ho-Jung;Choi, Jeong-Hyun;Kim, Moo-Gi;Kim, Soon-Hee
    • Journal of Korean Physical Therapy Science
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    • v.13 no.2
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    • pp.99-119
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    • 2006
  • Endothelin (ET) is a 21 amino acid peptide with multifunctional effects on the vasculature as well as a variety of other cell types such as respiratory, gastrointestinal, urogenital, endocrine, central nervous systems, and others. Endothelin has emerged as a modulator by autocrine and paracrine actions for many cellular activities, including vasoconstriction, cell proliferation, hormone production, neurotransmitter and/or neuromodulator. The endothelin family consists of three closely related peptides, ET-1, ET-2, and ET-3 derived from separate genes, such as chromosome 6, 1, and 20, respectively. ET-1 is the predominant isoform produced in the cardiovascular system and about which most is known. Endothelin receptors are seven-transmembrane GTP-binding protein-coupled receptors, which are classified into endothelin-A (ETA) and endothelin-B (ETB) receptors. Interestingly, recent evidence is accumulating to suggest that ET -1 may contribute to a variety of pain states such as allodynia and hyperalgesia in animals and humans. Therefore, in this review the biological characteristics and contraction-related mechanism of endothelin-1 in mammalian cells will be summarized. Especially, we focus on multifunctional roles for ET-1 in noxious stimulation-induced pain for the study of pain specialized physical therapy.

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