• Title/Summary/Keyword: Capsaicin-induced pain

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The effects of regular exercise on capsaicin-induced pulpal pain and pain-induced changes in passive avoidance learning and memory in rats

  • Raoof, Maryam;Shakoori, Afshin;Kooshki, Razieh;Abbasnejad, Mehdi;Amanpour, Sara
    • The Korean Journal of Pain
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    • v.30 no.4
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    • pp.258-264
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    • 2017
  • Background: Pulpal pain is one of the most common and severe orofacial pain conditions with considerable adverse effects on physiological processes including learning and memory. Regular exercise is known to be effective on cognitive function as well as pain processing in the central nervous system. Here, the possible effects of regular exercise on pulpal pain response as well as pain-induced changes in learning and memory efficiency in rats were investigated. Methods: Twenty-four male Wistar rats were randomly assigned to the control, capsaicin, exercise, and exercise plus capsaicin groups. Rats in exercise groups were forced to run on a treadmill with a moderate exercise protocol for 4 weeks. Capsaicin was used to induce dental pulp pain. Passive avoidance learning and memory performance was assessed by using a shuttle box apparatus. Results: According to the results, regular exercise could decrease the time course of capsaicin-induced pulpal pain (P < 0.001). Moreover, in capsaicin-treated rats, passive avoidance acquisition was impaired as compared to the control (P < 0.05) and exercise (P < 0.001) groups. Additionally, regular exercise before capsaicin injection could attenuate capsaicin-induced memory impairments (P < 0.05). Conclusions: Taken together, the present data showed that regular exercise has inhibitory effects on capsaicin-induced pulpal pain as well as pain-induced cognitive dysfunction in rats.

Orexin-A inhibits capsaicin-induced changes in cyclooxygenase-2 and brain-derived neurotrophic factor expression in trigeminal nucleus caudalis of rats

  • Kooshki, Razieh;Abbasnejad, Mehdi;Mahani, Saeed Esmaeili;Raoof, Maryam;Aghtaei, Mohammad Mehdi Moeini;Dabiri, Shahriar
    • The Korean Journal of Pain
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    • v.31 no.3
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    • pp.174-182
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    • 2018
  • Background: The trigeminal nucleus caudalis (Vc) is a primary central site for trigeminal transmitting. Noxious stimulation of the trigeminal nociceptors alters the central synaptic releases and neural expression of some inflammatory and trophic agents. Orexin-A and the orexin 1 receptor (OX1R) are expressed in pain pathways including trigeminal pain transmission. However, the the mechanism(s) underling orexin-A effects on trigeminal pain modulation have not been fully clarified. Methods: Trigeminal pain was induced by subcutaneous injection of capsaicin in the upper lip in rats. The effect of trigeminal pain on cyclooxygenase-2 (COX-2) and brain-derived neurotrophic factor (BDNF) expression in the Vc of animals was determined by immunofluorescence. Subsequently, OX1R agonist (orexin-A) and antagonist (SB-334867-A) was administrated in the Vc to investigate the possible roles of the Vc OX1R on changes in COX-2 and BDNF levels following pain induction. Results: The data indicated an increase in COX-2 and decrease in BDNF immuno-reactivity in the Vc of capsaicin, and capsaicin- pretreated with SB-334867-A (80 nM), groups of rat. However, the effect of capsaicin on COX-2 and BDNF expressions was reversed by a Vc microinjection of orexin-A (100 pM). Conclusions: Overall, the present data reveals that orexin-A can attenuate capsaicin-induced trigeminal pain through the modulation of pain effects on COX-2 and BDNF expressions in the Vc of rats.

The Effects of Stress Relief and Relaxation on Virtual Reality Intervention in Capsaicin-induced Pain (캡사이신 유발 통증 시 VR 중재가 스트레스 해소 및 이완에 미치는 효과)

  • Sea-Hyun Bae;Kyung-Yoon Kim
    • Journal of the Health Care and Life Science
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    • v.10 no.2
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    • pp.403-411
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    • 2022
  • This study aim to investigate the effects of virtual reality (VR) intervention on stress reduction and relaxation after induced pain through capsaicin skin application for healthy college students. The control group (n=6) was to non-treatment after capsaicin-induced pain, and the experimental group (n=8) was to application VR intervention after capsaicin-induced pain. The effect was measured using VAS, EEG, HRV and as a results, the experimental group was more effective in regressing to baseline value (TO) than the control group. Therefore, VR intervention is considered to be an effective intervention for stress relief and relaxation.

The ability of orexin-A to modify pain-induced cyclooxygenase-2 and brain-derived neurotrophic factor expression is associated with its ability to inhibit capsaicin-induced pulpal nociception in rats

  • Shahsavari, Fatemeh;Abbasnejad, Mehdi;Esmaeili-Mahani, Saeed;Raoof, Maryam
    • The Korean Journal of Pain
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    • v.35 no.3
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    • pp.261-270
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    • 2022
  • Background: The rostral ventromedial medulla (RVM) is a critical region for the management of nociception. The RVM is also involved in learning and memory processes due to its relationship with the hippocampus. The purpose of the present study was to investigate the molecular mechanisms behind orexin-A signaling in the RVM and hippocampus's effects on capsaicin-induced pulpal nociception and cognitive impairments in rats. Methods: Capsaicin (100 g) was applied intradentally to male Wistar rats to induce inflammatory pulpal nociception. Orexin-A and an orexin-1 receptor antagonist (SB-334867) were then microinjected into the RVM. Immunoblotting and immunofluorescence staining were used to check the levels of cyclooxygenase-2 (COX-2) and brain-derived neurotrophic factor (BDNF) in the RVM and hippocampus. Results: Interdental capsaicin treatment resulted in nociceptive responses as well as a reduction in spatial learning and memory. Additionally, it resulted in decreased BDNF and increased COX-2 expression levels. Orexin-A administration (50 pmol/1 µL/rat) could reverse such molecular changes. SB-334867 microinjection (80 nM/1 µL/rat) suppressed orexin's effects. Conclusions: Orexin-A signaling in the RVM and hippocampus modulates capsaicin-induced pulpal nociception in male rats by increasing BDNF expression and decreasing COX-2 expression.

Capsaicin Pharmacopuncture Modulates Ankle Sprain Induced Pain in Rats (Capsaicin 약침(藥鍼)이 흰쥐의 급성(急性) 염좌(捻挫)에 마치는 효과)

  • Park, Sang-Yeon;Choi, Yoon-Young;Jeon, In-Sook;Koo, Sung-Tae;Kim, Kyoung-Sik;Sohn, In-Chul;Kim, Jae-Hyo
    • Korean Journal of Acupuncture
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    • v.23 no.2
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    • pp.113-123
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    • 2006
  • Objectives: Pharmacopuncture which is a combination of acupuncture and herbal medicine helps to prevent and treat the diseases and symptoms including various pains. However, little was known about the therapeutic effects and its mechanisms on acute pain, although pharmacopuncture has been used frequently in acupuncture clinics. Acupuncture is known for producing analgesia for persistent ankle sprain pain in human. Furthermore, it also produces analgesia in a rat model of ankle sprain pain. Methods: To illuminate the underlying mechanisms of capsaicin pharmacopuncture-induced analgesia, weight bearing force (WBF) was observed on the acute ankle sprained rat model. Ankle sprain was induced in the rat by manually hyper-extending ligaments of the right ankle. Capsaicin pharmacopuncture was applied to SI6 (Yanglo) on the left forelimb (contralateral to the sprained ankle). Results: In behavioral test, capsaicin pharmacopuncture produced marked analgesic effects on acute ankle sprained animals as measured by WBF of the affected limb similar to manual acupuncture. Capsaicin pharmacopuncture was also suppressed by serotonin (5-HT) receptor antagonist methysergide (2 mg/kg, Lp.), but not by opioids receptor antagonist naltrexone (10 mg/kg, Lp.) and alpha adrenoceptor antagonist phentolamine (5 mg/kg, Lp.). Conclusion: The data suggest that capsaicin pharmacopuncture-induced analgesia is accomplished by activating the descending serotonergic inhibitory systems.

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Analgesic Effects of DA-5018, a New Capsaicin Derivative, after Subcutaneous Injection and Topical Application (새로운 캅사이신유도체 DA-5018의 피하주사 및 국소도포시 진통효과)

  • 김희기;배은주;신명수;손문호;김순희;김원배;양중익;공재양
    • Biomolecules & Therapeutics
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    • v.5 no.2
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    • pp.117-124
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    • 1997
  • The analgesic effects of DA-5018, a new caosaucin derivative, were evaluated in various experimental pain models. Drugs were administered subcutaneously or topically. When drugs were administered subcutaneously, 1) the $ED_{50}$ of DA-5018, morphine . HCI, capsaicin and acetaminophen were 0.091-2.0, 0.3-4.3, 1.4-26.5 and 45.4-643 mg/kg, respectively in various pain or inflammatory models including acetic acid writhing, formalin, tail flick, Randall-Selitto, hot plate and crouton oil-induced ear edema test, 2) the AD2 values (the dose for doubling of pain threshold of vehicle control) of DA-5018, capsaicin and ketoprpgin were 1.07 $\pm$ 0. 18, 23.47$\pm$4.46 and 2.97$\pm$0.43 mg/kg in Freund's complete adjuvant (FCA)-induced arthritic pain model. And by topical application, 1) neither DA-5018 0.3% cream nor Zostrix-HP (capsaicin 0.075%) were effective in formalin test, 2) although DA-5018 0.3% cream significantly inhibited the croton oil-induced ear edema being better than Zostrix-HP and Kenofen (ketoprofen 3%). 3) In FCA model, DA-5018 0.3% cream reversed the decreased pain threshold of arthritic rat from 136.4 g (day 0) to 289.0 g (day 5) and 250.1 g (day 10), which was similar to Zostrix-HP. These results suggest that DA-5018 administered subcutaneously has a potent and broad analgesic spectrum than nonsteroidal antiinflammatory drugs against acute and chronic pain, and by topical application it exerts comparable analgesic and antiinglammaatory effects to capsaicin cream.

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The Antinociceptive Effect of Sigma-1 Receptor Antagonist, BD1047, in a Capsaicin Induced Headache Model in Rats

  • Kwon, Young-Bae;Jeong, Young-Chan;Kwon, Jung-Kee;Son, Ji-Seon;Kim, Kee-Won
    • The Korean Journal of Physiology and Pharmacology
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    • v.13 no.6
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    • pp.425-429
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    • 2009
  • Intracranial headaches, including migraines, are mediated by nociceptive activation of the trigeminal nucleus caudalis (TNC), but the precise mechanisms are poorly understood. We previously demonstrated that selective blockage of spinal sigma-1 receptors (Sig-1R) produces a prominent antinociceptive effect in several types of pain models. This study evaluates whether the Sig-1R antagonist (BD1047) has an antinociceptive effect on capsaicin (a potent C-fiber activator) induced headache models in rats. Intracisternal infusion of capsaicin evoked pain behavior (face grooming), which was significantly attenuated by BD1047 pretreatment. BD1047 consistently reduced capsaicin-induced Fos-like immunoreactivity (Fos-LI), a neuronal activator, in the TNC in a dose-dependent manner. Moreover, capsaicininduced phosphorylation of N-methyl-D-aspartate receptor subunit 1 was reversed by BD1047 pretreatment in the TNC. These results indicate that the Sig-1R antagonist has an inhibitory effect on nociceptive activation of the TNC in the capsaicin-induced headache animal model.

Effect of Capsaicin on the Formalin-induced Fos-like Immunoreactivity in the Spinal Cord of Rat (Formalin에 의해 흰쥐의 척수에서 유도된 Fos-like Immunoreactivity에 미치는 Capsaicin의 영향)

  • 곽지연;오우택
    • YAKHAK HOEJI
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    • v.43 no.3
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    • pp.404-410
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    • 1999
  • Administration of capsaicin produces acute pain and subsequent long-lasting antinociception. The antinociceptive action site of capsaicin is primarily small afferent nerve fibers. However, the effect of capsaicin on the neural activity of dorsal horn neurons are not well understood. The goal of the present experiment was to study the action of capsaicin on activity of dorsal horn neurons using c-fos immunoreactivity in the spinal cord. Intradermal injection of formalin in the hindpaw produced inflammation in the foot pad and increased the number of cells exhibiting Fos-like immunoreactivity (FLI) in the dorsal horn of the spinal cord, suggesting the hyperalgesia because of the apparent inflammation. Intradermal injection of capsaicin prior to formalin injection significantly reduced the number of cells exhibiting FLI induced by formalin and increased the paw-withdrawal latency, suggesting the hypoalgesic effect of capsaicin. Coadministeration with capsaicin of capsazepine and ruthenium red, antagonists of capsaicin receptor reversed the reduction of formalin-induced FLI by capsaicin. he antagonists also partially antagonized the antinociceptive effect of capsaicin in the paw-withdrawal test. These results further suggest that capsaicin reduces prsponses of dorsal horn neurons to the inflammatory nociceptive stimuli in the periphery. Thus, the reduction of FLI subserves the neural mechanisms underlying analgesia produced by capsaicin.

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Decreased Pain Sensitivity of Capsaicin-Treated Rats Results from Decreased VR1 Expression

  • Lee, Soon-Youl;Hong, Young-Mi;Oh, Uh-Taek
    • Archives of Pharmacal Research
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    • v.27 no.11
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    • pp.1154-1160
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    • 2004
  • We investigated the neurotoxic effects of capsaicin (CAP) on pain sensitivity and on the expression of capsaicin receptor, the vanilloid receptor (VR1), in rats. High-dose application of CAP has been known to degenerate a large fraction of the sensory neurons. Although the neurotoxic effects of CAP are well documented, the effects of CAP on the vanilloid receptor (VR1) are not yet known. In this paper, we investigated the effects of high-dose application of CAP on the expression of VR1 in rats. Thermal and mechanical pain sensitivity was reduced when neonatal rats were treated with a high dose of CAP. This reduction of pain sensitivity was significantly decreased after initiating carrageenan-induced inflammation. The expression of VR1 in dorsal root ganglia (DRG) isolated from the CAP-treated rats was reduced compared to that from the vehicle-treated rats. Therefore, we can conclude that the neurotoxic effect of CAP is related to the decrease of VR1 expression.

Analgesic Effect of DA-5018, a New Capsaicin Derivative, against Experimental Acute Pain (새로운 캅사이신 유도체 DA-5018의 급성통증 모델에서의 진통작용)

  • 손문호;배은주;김희기;신명수;김순희;김원배;양중의;박노상
    • Biomolecules & Therapeutics
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    • v.5 no.1
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    • pp.67-73
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    • 1997
  • Analgesic effect of DA-5018, a new capsaicin derivative, was evaluated in various rat models of experimentally induced acute pain. DA-5018(0.2∼10.0 mg/kg, p.o.) prevented the writhing syndromes induced by acetic acid or phenol-p-benzoquinone(PBQ). It increased the pain threshold of inflamed paw when tested by the Randall-Selitto method at the dose of 2.0∼20.0 mg/kg by oral administration. And also it showed antinociceptive activities in tail-pinch(1.0∼20.0 mg/kg, p.o.) and tail-flick test(5.0∼50.0 mg/kg, p.o.). the potency and efficacy of DA-5018 were comparable to morphine · HCI in all the models mentioned above. Acetaminophen exhibited the inhibition of acetic acid-induced writhing syndromes and also analgesic activity in Randall-Selitto test, but it showed the limited efficacy in tail-pinch and tail-flick test. These results mean that DA-5018 has a broader analgesic activity profile than acetaminophen. And we found out that the analgesic activity of DA-5018 was 100 times more potent when administered centrally than administered orally in tail-flick test. These results suggest that DA-5018 has an orally active analgesic activity, and central nervous system may be involved in the action of DA-5018.

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