• Title/Summary/Keyword: Neuropathic pain: Allodynia

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Preemptive application of QX-314 attenuates trigeminal neuropathic mechanical allodynia in rats

  • Yoon, Jeong-Ho;Son, Jo-Young;Kim, Min-Ji;Kang, Song-Hee;Ju, Jin-Sook;Bae, Yong-Chul;Ahn, Dong-Kuk
    • The Korean Journal of Physiology and Pharmacology
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    • v.22 no.3
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    • pp.331-341
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    • 2018
  • The aim of the present study was to examine the effects of preemptive analgesia on the development of trigeminal neuropathic pain. For this purpose, mechanical allodynia was evaluated in male Sprague-Dawley rats using chronic constriction injury of the infraorbital nerve (CCI-ION) and perineural application of 2% QX-314 to the infraorbital nerve. CCI-ION produced severe mechanical allodynia, which was maintained until postoperative day (POD) 30. An immediate single application of 2% QX-314 to the infraorbital nerve following CCI-ION significantly reduced neuropathic mechanical allodynia. Immediate double application of QX-314 produced a greater attenuation of mechanical allodynia than a single application of QX-314. Immediate double application of 2% QX-314 reduced the CCI-ION-induced upregulation of GFAP and p-p38 expression in the trigeminal ganglion. The upregulated p-p38 expression was co-localized with NeuN, a neuronal cell marker. We also investigated the role of voltage-gated sodium channels (Navs) in the antinociception produced by preemptive application of QX-314 through analysis of the changes in Nav expression in the trigeminal ganglion following CCI-ION. Preemptive application of QX-314 significantly reduced the upregulation of Nav1.3, 1.7, and 1.9 produced by CCI-ION. These results suggest that long-lasting blockade of the transmission of pain signaling inhibits the development of neuropathic pain through the regulation of Nav isoform expression in the trigeminal ganglion. Importantly, these results provide a potential preemptive therapeutic strategy for the treatment of neuropathic pain after nerve injury.

Effects of Acupuncture at SI3, BL40, SI3·BL40 on Neuropathic pain control and c-Fos protein expression in rats (후계(後谿), 위중(委中), 후계배위중(後谿配委中) 침자(鍼刺)가 백서(白鼠)의 신경병리성(神經病理性) 동통억제(疼痛抑制) 및 c-Fos 단백(蛋白) 발현(發顯)에 미치는 영향(影響))

  • Jung, Jung-hee;Yun, Dae-whan;Na, Chang-su;Ryu, Choong-ryul;Yun, Yeo-chung;Cho, Myung-rae
    • Journal of Acupuncture Research
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    • v.21 no.1
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    • pp.240-251
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    • 2004
  • Objective: We have studied to know effects of acupuncture at SI3, BL40, SI3 BL40 on mechnical allodynia, cold allodynia and c-fos protein expression in a model of neuropathic pain of rat. Methods: A model of neuropathic pain was made by injuring tibial nerve and sural nerve while common peroneal nerve was maintained. after 2 weeks, we performed behavioral tests for 7 days to try out mechnical allodynia using von frey filament and cold allodynia using acetone, which are calculated by counting withdrawal response on foot. Rat brains removed and sliced on 8th days. Serial sections were immunohistochemically reacted with polyclonal c-fos antibody. The numbers of c-Fos protein immunoreactive neurons in the central gray were examined using scion image program. Results: Mechanical allodynia in the SI3, BL40, SI3 BL40 groups were diminished compared with the control group. Cold allodynia in the SI3, BL40, SI3 BL40 groups were diminished compared with the control group. c-Fos protein expression on the central gray in the SI3 group were lower than that of the control group. Conclusions: We have noticed that acupuncture at SI3, BL40, SI3 BL40 diminished mechanical allodynia and cold allodynia in a model of neuropathic pain compared with the control group. c- Fos protein expression in the central gray of that group was also decreased compared with the control group. pain control using acupunture was accumulated as time goes by. This study can be used as a basic resource on a study and a treatment of pain.

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Inhibitory effects of Electroacupuncture & Acupuncture at Hu-gye(SI03), Wijung(BL40),Hu-gye(SI03)ㆍWijung(BL40) on Neuropathic Pain in Rats (위중(委中), 후계(後谿), 위중배후계(委中配後谿) 전침(電鍼) 및 침자(鍼刺)가 백서(白鼠)의 신경병리성(神經病理性) 동통(疼痛) 억제(抑制)에 미치는 영향(影響))

  • Oh, Chang-log;Na, Chang-su;Lyu, Chung-yeol;Cho, Myung-rae
    • Journal of Acupuncture Research
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    • v.22 no.1
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    • pp.77-90
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    • 2005
  • Objective : Neuropathic pain sometimes arises from a partial peripheral nerve injury. This kind of pain is usually accompanied by spontaneous burning pain, allodynia and hyperalgesia. It has been well known that acupuncture is effective to the pain control from ancient time in Asia. However, it is not clear whether Electroacupuncture(EA) & Acupuncture(AC) can control neuropathic pain effectively. The aim of this study is to examine if Electroacupuncture&Acupuncture at Hu-gye(SI03), Wijung(BL4O), Hu-gye(SI03) Wijung(BL40) may be effective to the neuropathic pain (mechanical allodynia cold allodynia) in a rat model of neuropathic pain. Methods : A rat model of neuropathic pain was made by injurying tibial nerve and sural nerve while common peroneal nerve was maintained. After the neuropathic surgery, we examined if the rats exhibited the behavioral signs allodynia. The allodynia was assessed by stimulating the medial malleolus with von frey filament and acetone. Three weeks after the neuropathic surgery, electroacupuncture &, acupuncture stimulation was delivered to Hu-gye(SI03), Wijung(BL40), Hu-gye(SI03) Wijung(BL40) one time a day for one week. After that we examined the withdrawal response of neuropathic rats' legs by von frey filament and acetone stimulation, c-fos and AchE(Acetylcholine esterase) in the periaqe- ductal gray(PAG) of neuropathic rats' brain. Results : 1. Electroacupuncture&Acupuncture at Hu-gye(SI03), Wijung(BL40), Hu-gye(SI03) Wijung(BL4O) significantly decreased the withdrawal response of mechanically allodynia in EA-BL40+SI03 group and AC-SI03 group as compared with control group on 6th day. 2. Electroacupuncture &Acupuncture at Hu-gye(SI03), Wijung(BL40), Hu-gye (SI03) Wijung (BL40) significantly decreased the withdrawal response of chemical allodynia(cold allodynia) in EA-SI03 group, EA-BL40+SI03 group and AC-SI03 group as compared with control group on 6th day. 3. Electroacupuncture & Acupuncture at Hu-gye ( SI03), Wijung (BL40), Hu-gye (SI03) Wijung(BL40) significantly decreased the expression of c-fos in the periaqe- ductal gray(PAC) of neuropathic rats' brain in EA-BL40+SI03 group and AC-SI03 group as compared with control group. 4. Electroacupuncture&Acupuncture at Hu-gye(SI03), Wijung(BL40), Hu-gye (SI03) Wijung(BL40) significantly decreased the expression of AchE in the periaqe- ductal gray(PAG) of neuropathic rats' brain in EA-BL40+SI03 group and AC-SI03 group as compared with control group. Conclusions : Based on the above results it is assumed that Electroacupuncture at Hu-gye(SI03) Wijung(BL40) and Acupuncture at Hu-gye(SI03) can help the treatment of neuropathic pain.

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The efficacy of GABAergic precursor cells transplantation in alleviating neuropathic pain in animal models: a systematic review and meta-analysis

  • Askarian-Amiri, Shaghayegh;Maleki, Solmaz Nasseri;Alavi, Seyedeh Niloufar Rafiei;Neishaboori, Arian Madani;Toloui, Amirmohammad;Gubari, Mohammed I.M.;Sarveazad, Arash;Hosseini, Mostafa;Yousefifard, Mahmoud
    • The Korean Journal of Pain
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    • v.35 no.1
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    • pp.43-58
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    • 2022
  • Background: Current therapies are quite unsuccessful in the management of neuropathic pain. Therefore, considering the inhibitory characteristics of GABA mediators, the present systematic review and meta-analysis aimed to determine the efficacy of GABAergic neural precursor cells on neuropathic pain management. Methods: Search was conducted on Medline, Embase, Scopus, and Web of Science databases. A search strategy was designed based on the keywords related to GABAergic cells combined with neuropathic pain. The outcomes were allodynia and hyperalgesia. The results were reported as a pooled standardized mean difference (SMD) with a 95% confidence interval (95% CI). Results: Data of 13 studies were analyzed in the present meta-analysis. The results showed that administration of GABAergic cells improved allodynia (SMD = 1.79; 95% CI: 0.87, 271; P < 0.001) and hyperalgesia (SMD = 1.29; 95% CI: 0.26, 2.32; P = 0.019). Moreover, the analyses demonstrated that the efficacy of GABAergic cells in the management of allodynia and hyperalgesia is only observed in rats. Also, only genetically modified cells are effective in improving both of allodynia, and hyperalgesia. Conclusions: A moderate level of pre-clinical evidence showed that transplantation of genetically-modified GABAergic cells is effective in the management of neuropathic pain. However, it seems that the transplantation efficacy of these cells is only statistically significant in improving pain symptoms in rats. Hence, caution should be exercised regarding the generalizability and the translation of the findings from rats and mice studies to large animal studies and clinical trials.

Antinociceptive Effects of Tramadol on the Neuropathic Pain in Rats (쥐의 신경병증성 통증 모델에서 트라마돌의 진통효과)

  • Song, Kyung-Wha;Kim, Hyun-Jeong;Yum, Kwang-Won
    • The Korean Journal of Pain
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    • v.14 no.2
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    • pp.150-155
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    • 2001
  • Background: Tramadol is known to be a weak opioid. However, it has also been shown that tramadol is an effective norepinephrine and serotonin uptake blocker, which may be effective in the treatment of neuropathic pain. The present study was undertaken in order to assess the antinociceptive action of tramadol and to investigate possible antinociceptive mechanisms by using antagonists in an animal neuropathic pain models in rats. Methods: Rats were prepared with tight ligation at the left 5 and 6th lumbar spinal nerves (Kim and Chung's neuropathic pain model). The antinociceptive effects of tramadol (10, 20, and 50 mg/kg i.p.) in rats with neuropathic pain were assessed. Additionally, following coadministration of antagonists such as naloxone (1 mg/kg i.p.), yohimbine (1 mg/kg i.p.) and ritanserin (1 mg/kg i.p.) with 50 mg/kg of tramadol, the responses to mechanical and thermal stimuli were measured over a two-hour period. Results: Tramadol displayed potent antinociceptive effects in a dose-dependent manner on rats with neuropathic pain (P < 0.05). The effects of tramadol were inhibited by coadministered naloxone and yohimbine in rats with mechanical and thermal allodynia, respectively (P < 0.05). However, there were no significant changes in the pain behaviors in the case of ritanserin. Conclusions: Tramadol showed significant antinociceptive effects in rats with regards to neuropathic pain against both mechanical and thermal allodynia. The antinociceptive effect on the mechanical stimuli is medicated via an opioid receptor. However, it appears that the antinociceptive effects on thermal allodynia are mediated via a noradrenalin receptor vice a serotonergic receptor.

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The Combined Antiallodynic Effect of Gabapentin and Milnacipran in a Rat Neuropathic Pain Model (흰 쥐의 신경병증성 통증 모델에서 Gabapentin과 Milnacipran의 병용 효과)

  • Lee, Hyeon Jeong;Shin, Sang-Wook;Jang, Hee Jeong
    • The Korean Journal of Pain
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    • v.20 no.1
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    • pp.8-14
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    • 2007
  • Background: Anticonvulsants and antidepressants are adjuvant analgesic drugs that are used widely for treating chronic neuropathic pain syndromes. The combined analgesic effect of gabapentin and milnacipran was investigated with a rat neuropathic pain model. Methods: The rat neuropathic pain model was made by ligating the spinal nerves (L5 and L6). An intrathecal catheter was inserted into the subarachnoid space. Tactile allodynia was tested with the up-down method using von Frey hair. We determined the antiallodynic effect of intraperitoneal (I.P.) and intrathecal (I.T.) gabapentin. The combined effect of I.P. gabapentin (50 mg/kg) and milnacipran (0, 10 and 30 mg/kg) was investigated. Results: Intraperitoneal and intrathecal administration of gabapentin increased the threshold for tactile allodynia (the ED50 was 60.6 mg/kg and $45.5{\mu}g$, respectively). Co-administration of I.P. milnacipran increased the antiallodynic effect of I.P. gabapentin in a dose-dependent fashion. Conclusion: The combined administration of milnacipran and gabapentin may increase the total analgesic effect during treatment of neuropathic pain.

Anti-allodynic effect of bee venom on neuropathic pain in the rat

  • Lee, Bae-Hwan;Chae, Youn-Byoung;Hwang, Hye-Jeong;Choi, Young-Kook;Hahm, Dae-Hyun;Han, Seung-Moo;Kang, Sung-Keel;Lee, Hye-Jung;Pyun, Kwang-Ho;Shim, In-Sop
    • Advances in Traditional Medicine
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    • v.6 no.4
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    • pp.324-329
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    • 2006
  • Neuropathic pain syndromes resulted from peripheral nerve injury appear to be resistant to conventional analgesics like opioids. However, it has been demonstrated that acupuncture including aqua-acupuncture may be effective in managing neuropathic pain. The present study was conducted to determine if bee venom injection into acupoint ihibits neuropathic pain, which is difficult to be treated by usual analgesics. Under pentobarbital anesthesia, male Sprague-Dawley rats were subjected to neuropathic surgery. Two weeks after nerve injury, mechanical and cold allodynia were tested in order to evaluate the antiallodynic effects of bee venom injection into an acupoint. Intraperitoneal injection of morphine inhibited mechanical allodynia dose-dependently. Bee venom injected into Zusanli acupoint significantly inhibited mechanical and cold allodynia. These results suggest that bee venom-acupuncture as well as morphine is very effective to inhibit mechanical allodynia.

Anti-allodynic Efficacy of NMDA Antagonist Peptide and Noradrenaline Alone and in Combination in Rodent Neuropathic Pain Model

  • Nasirinezhad, Farinaz;Hosseini, Marjan;Salari, Sajad
    • The Korean Journal of Pain
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    • v.28 no.2
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    • pp.96-104
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    • 2015
  • Background: The present experiment was conducted to identify the cooperative effect of serine histogranin (SHG) and noradrenaline in alleviating peripheral neuropathic pain. Methods: Chronic constriction injury of the right sciatic nerve was used to induce chronic neuropathic pain. For drug delivery, a PE10 tube was inserted into the subarachnoid space. Acetone drops and a $44^{\circ}C$ water bath were used to evaluate the cold and heat allodynia, respectively. Placing and grasping reflexes were used to assess the locomotor system. Results: SHG at 0.5 and $1{\mu}g$significantly (P < 0.05) decreased the thermal allodynia. The cold allodynia was also significantly reduced by intrathecal injections of 0.5 (P < 0.05) and $1{\mu}g$(P < 0.001) of SHG. $1{\mu}g$of noradrenaline, but not $0.5{\mu}g$, significantly alleviated the cold (P < 0.01) and thermal (P < 0.05) allodynia. The ameliorating effect of noradrenaline or SHG disappeared when the two compounds were administrated in equal concentrations. A significant difference (P < 0.01 in the acetone and P < 0.05 in the heat) was observed in the groups under equal doses of the two compounds, with a lower effectiveness of the combination therapy. Conclusions: Our findings suggest that the simultaneous administrations of noradrenaline and SHG do not result in synergistic analgesia, and combination therapy may not be a good approach to the treatment of chronic neuropathic pain syndrome.

The effect of Acanthopanax sessiliflorus using the model of neuropathic pain and formalin-induced pain. (신경병리성 통증과 포르말린 테스트 통증 모델을 이용한 오가피(五加皮)의 효과)

  • Kim, Jang-Hyun;Chang, Gyu-Tae;Kang, Mi-Sun
    • The Journal of Korean Medicine
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    • v.28 no.3 s.71
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    • pp.261-272
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    • 2007
  • Objectives : This study was conducted to determine the analgesic effect of Acanthopanax sessiliflorus using the model of neuropathic pain and formalin-induced pain. Methods : A model of neuropathic pain was made by injuring the tibial nerve and sural nerve while the common peroneal nerve was maintained. After 2 weeks, the Acanthopanax sessiliflorus was orally administered to rats. The author performed behavioral teststo try out mechanical allodynia using von frey filament and cold allodynia using acetone, which are calculated by counting withdrawal response on foot. Thirty minutes after the Acanthopanax sessiliflorus injection in the abdominal cavity, the formalin test was performed. 2% formalin in a volume of $20{\mu}l$was injected subcutaneously into the plantar surface of the hindpaw with 26-G needle. To access formalin-induced pain behavior, paw licking time was measured every 5 min. Results : The Acanthopanax sessiliflorus 400mg/10ml/kg group showed significant decrease the withdrawal response of mechanical allodynia using von frey filament in the 10min, 30min, 60min and 120min increments compared with the control group. There were no significant differences in each group in the withdrawal response of cold allodynia using acetone. The Acanthopanax sessiliflorus group showed significant decrease in the formalin-induced pain behavior in the 15min, 20min and 25min increments compared with the control group. Conclusions : The Acanthopanax sessiliflorus may have a significant analgesic effect on the general pain as well as nerve injury pain.

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A New Rat Model of Cisplatin-induced Neuropathic Pain

  • Lin, Hai;Heo, Bong Ha;Yoon, Myung Ha
    • The Korean Journal of Pain
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    • v.28 no.4
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    • pp.236-243
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    • 2015
  • Background: Chemotherapy-induced peripheral neuropathy is a major side effect of anti-cancer drugs, and our knowledge of its mechanisms is lacking. Several models for chemotherapy-induced neuropathy have been introduced. However, the outcomes of these models differ significantly among laboratories. Our object was to create a model of chemotherapy-induced neuropathy in rats with cancer. Methods: Female Sprague-Dawley rats were used. Mammary rat metastasis tumor (MRMT-1) cells were implanted subcutaneously in rats. Chemotherapy-induced peripheral neuropathy was induced by injection of cisplatin once a day for four days. The responses to mechanical and thermal stimuli were examined using von Frey filaments, acetone, and radiant heat. Results: Cisplatin (2 mg/kg/day) produced mechanical allodynia, while it did not induce cold allodynia or thermal hyperalgesia. This dose of cisplatin could work successfully against cancer. Body weight loss was not observed in cisplatin-treated rats, nor were other abnormal behaviors noted in the same rats. Conclusions: Repeated injection of intraperitoneal cisplatin induced peripheral neuropathic pain in rats. Thus, this type of rat model has broad applicability in studies related to searching for the mechanism of cisplatin-induced mechanical allodynia and agents for the treatment of neuropathic pain.