• 제목/요약/키워드: Spinal Cord Dorsal Horn

검색결과 91건 처리시간 0.034초

초음파 치료가 좌골신경 압좌 손상된 흰쥐의 c-Fos 발현에 미치는 영향 (The Effects of c-Fos Expression on Ultrasound Treatment in Sciatic Nerve Crush Damaged Rats)

  • 김동대
    • 대한물리치료과학회지
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    • 제14권1_4호
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    • pp.11-23
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    • 2007
  • This study was performed to evaluate the effects of low-intensity ultrasound application to the peripheral nerve injury animal model on enhancement of nerve regeneration and functional recovery. Using aseptic microsurgical techniques, the sciatic nerve of adult male Sprague-Dawley rats was crushed at the outside of right mid-thigh for 30 seconds with fine forceps. Beginning just after surgery, various continuous-wave ultrasound treatments with intensities of 0.2 W/$cm^2$, 0.5 W /$cm^2$ and 1.0 W /$cm^2$ operated at 1 MHz or sham treatment were applied to the opposite inside of the crush site for 1 minute every other day with a transducer moving speed of 2cm/sec. For evaluation of the progress of sciatic nerve regeneration, c-Fos expression in the lumbar spinal cord (L4-5) dorsal horn was investigated. c-fos expression was markedly increased at 1hour after sciatic nerve crush injury, then gradually decreased thereafter. The c-fos expressions were significantly decreased (p<0.05) in all the experimental groups in comparison with the control group until 3days post-crush, and the degrees of decrease were higher in 0.5 W/$cm^2$ and 1 W/$cm^2$ intensity ultrasound application groups. It is suggested that low-intensity ultrasound application to an animal model of sciatic crush injury may suppress pain transmission and promote nerve regeneration, and which may result in delayed progress of muscle atrophy and accelerated progress of muscle recovery and eventually may result in accelerated and improved foot function recovery.

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근타박상시 치료용 초음파가 혈관내피성장인자와 Substance-P 발현에 미치는 효과에 대한 면역조직화학적 연구 (An Immunohistochemical Study of Effects of Therapeutic Ultrasound on the Expression of VEGF and Substance-P in Muscle Contusion Injury)

  • 김용수;오태영;김석범
    • The Journal of Korean Physical Therapy
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    • 제15권4호
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    • pp.46-64
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    • 2003
  • Therapeutic angiogenesis is the controlled induction or stimulation of new blood vessel formation to reduce unfavourable tissue effects caused by local hypoxia and to enhance tissue repair. Therapeutic ultrasound can be considered as a physical agent to deliver therapeutic angiogenesis. The purpose of this study was to evaluate the effect of therapeutic ultrasound after muscle contusion injury by observed immunoreactivity of vascular endothelial growth factor(VEGF) that plays an important role in angiogenesis and substance-P in pain transmission. Ultrasound irradiation(1MHz, $1W/cm^2$, continuous mode, treatment time 5 min) was applied through water submersion technique to 1 limb daily by kept off 5cm from muscle belly of gastrocnemius. The result of this study were as follows. 1. In morphological observation, there were no significant changes excepts of 7 days. At 7 days, granular tissue viewed abundantly in control group. In other groups, general feature were increased interspace of muscle fiber; centronucleated muscle fiber; collapsed of muscle and nerve tissue; appeared inflammatory cell. 2. The VEGF was expressed in interspace of muscle fiber. Especially, at 7 days in experimental group, VEGF was showed in connective tissue surrounding gastrocnemius muscle. 3. The VEGF was higher expressed in experimental group at 2 and 3 days, but in control group at 7 days. These data suggest therapeutic ultrasound enhanced production of VEGF in the early day relatively, therefore stimulated angiogenesis in the skeletal muscle induced contusion injury. Also therapeutic ultrasound may stimulate pain relief by diminish of substance-P in dorsal horn of spinal cord.

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통증의 기억과 선행진통 (Memory of Pain and Preemptive Analgesia)

  • 송선옥
    • Journal of Yeungnam Medical Science
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    • 제17권1호
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    • pp.12-20
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    • 2000
  • The memory of pain can be more damaging than its initial experience. Several factors arc related the directions of pain memory: current pain intensity, emotion, expectation of pain, and peak intensity of previous pain. The possible mechanisms behind the memory of pain are neuroplastic changes of nervous system via peripheral and central sensitization. Peripheral sensitization is induced by neurohumoral alterations at the site of injury and nearby. Biochemicals such as K+, prostaglandins, bradykinin, substance P, histamine and serotonin, increase transduction and produce continuous nociceptive input. Central sensitization takes place within the dorsal horn of spinal cord and amplifies the nociceptive input from the periphery. The mechanisms of central sensitization involve a variety of transmitters and postsynaptic mechanisms resulting from the activations of NMDA receptors by glutamate. and activation of NK-1 tachykinnin receptors by substance-P and neurokinnin. The clinical result of peripheral and central sensitization is hyperalgesia, allodynia, spontaneous pain, referred pain, or sympathetically maintained pain. These persistent sensory responses to noxious stimuli arc a form of memory. The hypothesis of preemptive analgesia is that analgesia administered before the painful stimulus will prevent or reduce subsequent pain and analgesic requirements in comparison to the identical analgesic intervention administered after the painful stimulus, by preventing or reducing the memory of pain in the nervous system. Conventionally, pain management was initiated following noxious stimuli such as surgery. More recently, however many have endorsed preemptive analgesia initiated before surgery. Treatments to control postsurgical pain are often best started before injury activates peripheral nociceptors and triggers central sensitization. Such preemption is not achieved solely by regional anesthesia and drug therapy but also requires behavioral interventions to decrease anxiety or stress. Although the benefit of preemptive analgesia may not be obvious in every circumstance, and in many cases may not sufficient to abolish central sensitization, it is an appropriate and human goal of clinical practice.

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Synthetic peptide를 이용한 mu-opioid receptor에 대한 항혈청의 생산과 검정 (Production and identification of antisera against mu-opioid receptor using synthetic peptide epitope)

  • 이장헌;권영배;한호재
    • 대한수의학회지
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    • 제39권1호
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    • pp.45-54
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    • 1999
  • In the present study we have analyzed the characteristics and distribution of the mu-opioid receptor(MOR) by raising anti-peptide antisera to the C-terminal peptide of MOR. The antisera against MOR was produced in New Zealand White rabbit against 15 residue corresponding to amino acids, 384-398 of the cloned rat MOR. The antigenic peptide was synthesized using an Applied Biosystems 432 solid-phase peptide synthesizer. The specificity and identification of the antisera were tested by analysis of transfected cells, epitope mapping and immunohistochemical method. COS-7 cells electroporated with MOR cDNA were used to evaluate the characteristics and subcellular distribution of MOR. MOR immunoreactivity was prodominent in the plasmalemma and subcellular compartments such as endoplasmic reticulum, Golgi apparatus and vesicle like structure. Furthermore, both tissue sections and transfected cell lines could be immunostained with these antisera and the immunoreactivity was abolished when anti-MOR sera were preincubated with the peptide against which they were raised. Based on epitope mapping analysis, all antisera appeared to have a similar epitope, which was determined to be within the last amino acid, 391-398. Moreover, immunohistochemistry showed that MOR immunoreactivity was observed in many brain areas including cerebral cortex, striatum, hippocampus, locus coeruleus and the superficial laminae of the dorsal horn. These stained spinal cord and brain areas showed the mirrored pattern observed in auto radiographic studies of mu-opioid binding as well as a pattern similar to that seen by is situ hybridization for MOR. Thus, several lines of evidence support the conclusion that the antisera produced in the present study most likely recognize mu-opioid receptor. These results suggest that MOR antisera may be utilized as useful tool to analyze the physiological and pharmacological studies for mu-opioid receptor in the future.

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Intravenous Administration of Substance P Attenuates Mechanical Allodynia Following Nerve Injury by Regulating Neuropathic Pain-Related Factors

  • Chung, Eunkyung;Yoon, Tae Gyoon;Kim, Sumin;Kang, Moonkyu;Kim, Hyun Jeong;Son, Youngsook
    • Biomolecules & Therapeutics
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    • 제25권3호
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    • pp.259-265
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    • 2017
  • This study aimed to investigate the analgesic effect of substance P (SP) in an animal model of neuropathic pain. An experimental model of neuropathic pain, the chronic constriction injury (CCI) model, was established using ICR mice. An intravenous (i.v.) injection of SP (1 nmole/kg) was administered to the mice to examine the analgesic effects of systemic SP on neuropathic pain. Behavioral testing and immunostaining was performed following treatment of the CCI model with SP. SP attenuated mechanical allodynia in a time-dependent manner, beginning at 1 h following administration, peaking at 1 day post-injection, and decaying by 3 days post-injection. The second injection of SP also increased the threshold of mechanical allodynia, with the effects peaking on day 1 and decaying by day 3. A reduction in phospho-ERK and glial fibrillary acidic protein (GFAP) accompanied the attenuation of mechanical allodynia. We have shown for the first time that i.v. administration of substance P attenuated mechanical allodynia in the maintenance phase of neuropathic pain using von Frey's test, and simultaneously reduced levels of phospho-ERK and GFAP, which are representative biochemical markers of neuropathic pain. Importantly, glial cells in the dorsal horn of the spinal cord (L4-L5) of SP-treated CCI mice, expressed the anti-inflammatory cytokine, IL-10, which was not seen in vehicle saline-treated mice. Thus, i.v. administration of substance P may be beneficial for improving the treatment of patients with neuropathic pain, since it decreases the activity of nociceptive factors and increases the expression of anti-nociceptive factors.

Superoxide and Nitric Oxide Involvement in Enhancing of N-methyl-D-aspartate Receptor-Mediated Central Sensitization in the Chronic Post-ischemia Pain Model

  • Ryu, Tae-Ha;Jung, Kyung-Young;Ha, Mi-Jin;Kwak, Kyung-Hwa;Lim, Dong-Gun;Hong, Jung-Gil
    • The Korean Journal of Pain
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    • 제23권1호
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    • pp.1-10
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    • 2010
  • Background: Recent studies indicate that reactive oxygen species (ROS) are involved in persistent pain, including neuropathic and inflammatory pain. Since the data suggest that ROS are involved in central sensitization, the present study examines the levels of activated N-methyl-D-aspartate (NMDA) receptors in the dorsal horn after an exogenous supply of three antioxidants in rats with chronic post-ischemia pain (CPIP). This serves as an animal model of complex regional pain syndrome type-I induced by hindpaw ischemia/reperfusion injury. Methods: The application of tight-fitting O-rings for a period of three hours produced CPIP in male Sprague-Dawley rats. Allopurinol 4 mg/kg, allopurinol 40 mg/kg, superoxide dismutase (SOD) 4,000 U/kg, N-nitro-L-arginine methyl ester (L-NAME) 10 mg/kg and SOD 4,000 U/kg plus L-NAME 10 mg/kg were administered intraperitoneally just after O-ring application and on the first and second days after reperfusion. Mechanical allodynia was measured, and activation of the NMDA receptor subunit 1 (pNR1) of the lumbar spinal cord (L4-L6) was analyzed by the Western blot three days after reperfusion. Results: Allopurinol reduced mechanical allodynia and attenuated the enhancement of spinal pNR1 expression in CPIP rats. SOD and L-NAME also blocked spinal pNR1 in accordance with the reduced mechanical allodynia in rats with CPIP. Conclusions: The present data suggest the contribution of superoxide, produced via xanthine oxidase, and the participation of superoxide and nitric oxide as a precursor of peroxynitrite in NMDA mediated central sensitization. Finally, the findings support a therapeutic potential for the manipulation of superoxide and nitric oxide in ischemia/reperfusion related pain conditions.

진교${\cdot}$위령선${\cdot}$하고초 복합방이 MIA 유발 골관절염 모델에서 중추신경내 통증관련물질에 미치는 영향 (GCP Treatment on the Expression of NOS, C-fos, Serotonin and Substance-P in Central Nerve System of Monosodium Iodoacetate-Induced Osteoarthritic Pain Model)

  • 박원태;정수현;서일복;김순중
    • 동의생리병리학회지
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    • 제21권6호
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    • pp.1483-1490
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    • 2007
  • This study was carried out to investigate the effects of GCP treatment on the expression of NOS, c-fos, serotonin and substance P in central nerve system of monosodium iodoacetate(MIA)-induced osteoarthritic pain model. Arthritis was induced by injection of MIA(0.5 mg) into knee joint cavities of rats. Arthritic rats were divided into control(n=8) and treated(n=8) group. Control group was taken distilled water for 20 days. Treated group was taken extracts of GCP by oraly for same duration. Normal group(n=8) was infected with normal saline and was taken distilled water for 20 days. The numbers of NADPH-d positive cells in superficial dorsal horn of spinal cord of treated group($21{\pm}5$) was significantly (p<0.01) decreased compared with control($33{\pm}5$). The numbers of NADPH-d positive cell in dorsolateral periaqueductal gray matter of treated group($111{\pm}16$) was significantly(p<0.01) decreased compared with control($143{\pm}14$). The numbers of c-fos positive cells in dorsal periaqueductal gray matter of treated group($57{\pm}16$) was significantly(p<0.01) decreased compared with control($78{\pm}13$). The numbers of c-fos positive cells in paraventricular thalamic nucleus of treated group($60{\pm}15$) was significantly decreased compared with control($88{\pm}27$). The numbers of serotonin positive cells in median raphe nucleus of treated group($171{\pm}31$) was significantly(p<0.05) decreased compared with control($217{\pm}48$). On the basis of these results, we concluded that GCP treatment has inhibiting effects on the pain transmission in monosodium iodoacetate-induced osteoarthritic pain model in rat.

쥐 척수후각세포의 유해자극 반응에 대한 칼슘이온통로 차단제의 억제작용 (Calcium Channel Blockers Suppress the Responses of Rat Dorsal Horn Cell to Nociceptive Input)

  • 강석한;김기순;신홍기
    • The Korean Journal of Physiology and Pharmacology
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    • 제1권6호
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    • pp.625-637
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    • 1997
  • Calcium ions are implicated in a variety of physiological functions, including enzyme activity, membrane excitability, neurotransmitter release, and synaptic transmission, etc. Calcium antagonists have been known to be effective for the treatment of exertional angina and essential hypertension. Selective and nonselective voltage-dependent calcium channel blockers also have inhibitory action on the acute and tonic pain behaviors resulting from thermal stimulation, subcutaneous formalin injection and nerve injury. This study was undertaken to investigate the effects of iontophoretically applied $Ca^{++}$ and its antagonists on the responses of WDR (wide dynamic range) cells to sensory inputs. The responses of WDR cells to graded electrical stimulation of the afferent nerve and also to thermal stimulation of the receptive field were recorded before and after iontophoretical application of $Ca^{++}$, EGTA, $Mn^{++}$, verapamil, ${\omega}-conotoxin$ GVIA, ${\omega}-conotoxin$ MVIIC and ${\omega}-agatoxin$ IVA. Also studied were the effects of a few calcium antagonists on the C-fiber responses of WDR cells sensitized by subcutaneous injection of mustard oil (10%). Calcium ions and calcium channel antagonists ($Mn^{++}$, verapamil, ${\omega}-conotoxin$ GVIA & ${\omega}-agatoxin$ IVA) current-dependently suppressed the C-fiber responses of WDR cells without any significant effects on the A-fiber responses. But ${\omega}-conotoxin$ MVIIC did not have any inhibitory actions on the responses of WDR cell to A-fiber, C-fiber and thermal stimulation. Iontophoretically applied EGTA augmented the WDR cell responses to C-fiber and thermal stimulations while spinal application of EGTA for about $20{\sim}30\;min$ strongly inhibited the C-fiber responses. The augmenting and the inhibitory actions of EGTA were blocked by calcium ions. The WDR cell responses to thermal stimulation of the receptive field were reduced by iontophoretical application of $Ca^{++}$, verapamil, ${\omega}-agatoxin$ IVA, and ${\omega}-conotoxin$ GVIA but not by ${\omega}-conotoxin$ MVIIC. The responses of WDR cells to C-fiber stimulation were augmented after subcutaneous injection of mustard oil (10%, 0.15 ml) into the receptive field and these sensitized C-fiber responses were strongly suppressed by iontophoretically applied $Ca^{++}$, verapamil, ${\omega}-conotoxin$ GVIA and ${\omega}-agatoxin$ IVA. These experimental findings suggest that in the rat spinal cord, L-, N-, and P-type, but not Q-type, voltage-sensitive calcium channels are implicated in the calcium antagonist-induced inhibition of the normal and the sensitized responses of WDR cells to C-fiber and thermal stimulation, and that the suppressive effect of calcium and augmenting action of EGTA on WDR cell responses are due to changes in excitability of the cell.

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Cold Allodynia after C2 Root Resection in Sprague-Dawley Rats

  • Chung, Daeyeong;Cho, Dae-Chul;Park, Seong-Hyun;Kim, Kyoung-Tae;Sung, Joo-Kyung;Jeon, Younghoon
    • Journal of Korean Neurosurgical Society
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    • 제61권2호
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    • pp.186-193
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    • 2018
  • Objective : The purpose of this study was to evaluate pain-related behaviors after bilateral C2 root resection and change in pain patterns in the suboccipital region in rats. Methods : Male Sprague-Dawley rats were randomly assigned to three groups (n=25/group); $n{\ddot{a}}ive$, sham, and C2 resection. Three, 7, 10, and 14 days after surgery, cold allodynia was assessed using $20{\mu}L$ of 99.7% acetone. c-Fos and c-Jun were immunohistochemically stained to evaluate activation of dorsal horn gray matter in C2 segments of the spinal cord 2 hours, 1 day, 7 days, and 14 days after surgery. Results : Three days after surgery, the response to acetone in the sham group was significantly greater than in the $n{\ddot{a}}ive$ group, and this significant difference between the $n{\ddot{a}}ive$ and sham groups was maintained throughout the experimental period (p<0.05 at 3, 7, 10, and 14 days). Seven, 10, and 14 days after surgery, the C2 root resection group exhibited a significantly greater response to acetone than the $n{\ddot{a}}ive$ group (p<0.05), and both the sham and C2 resection groups exhibited significantly greater responses to acetone compared with 3 days after surgery. No significant difference in cold allodynia was observed between the sham and C2 root resection groups throughout the experimental period. Two hours after surgery, both the sham and C2 root resection groups exhibited significant increases in c-Fos- and c-Jun-positive neurons compared with the naive group (p=0.0021 and p=0.0358 for the sham group, and p=0.0135 and p=0.014 for the C2 root resection group, respectively). One day after surgery, both the sham and C2 root resection groups exhibited significant decreases in c-Fos -positive neurons compared with two hours after surgery (p=0.0169 and p=0.0123, respectively), and these significant decreases in c-Fos immunoreactivity were maintained in both the sham and C2 root resection groups 7 and 14 days after surgery. The sham and C2 root resection groups presented a tendency toward a decrease in c-Jun-positive neurons 1, 7, and 14 days after surgery, but the decrease did not reach statistical significance. Conclusion : We found no significant difference in cold allodynia and the early expression of c-Fos and c-Jun between the sham and C2 resection groups. Our results may support the routine resection of the C2 nerve root for posterior C1-2 fusion, but, further studies are needed.

Capsaicin 적용 후 손상된 흰쥐 척수내 c-fos와 HSP70의 발현 (The expression of c-fos and HSP70 by the Capsaicin injection in the spinal cord(dorsal horn))

  • 김동현;김석범;백수정;김진상
    • The Journal of Korean Physical Therapy
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    • 제14권1호
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    • pp.131-137
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    • 2002
  • C-fos는 원종양유전자(proto-oncogene)인 v-fos의 세포 동족체로써, 성장인자나 신경전달 물질에 의해 수분 내에 다양한 형태의 세포에서 활성화된다. Fos단백질은 스트레스와 통증 과정의 신호전달기전에서 세포활동을 조절하는 3차전령으로 활동한다. 열충격 단백질(Heat shock protein : 이하 HSP)은 계통발생학적으로 초기 척추 동물에서부터 발현되며 생체방어체계의 중요한 인자로 세포가 고열, 외상, 허혈 등의 스트레스에 직면했을 때 발현이 증가하는 단백질로 알려져 있다. 본 연구에서는 캡사이신(capsaicin)으로 말초 신경병변을 유발시킨 후 통각신경활성의 지표로 이용되는 원종양 유전자인 c-fos의 발현과 열 또는 스트레스로 야기되는 손상에 대한 조직의 방어작용으로 발현되는 HSP 70의 발현을 동시에 관찰함으로서, 급성으로 유발된 말초 신경병변의 확인과 동시에 실험동물 체내에서 방어적인 역할을 밝히는 일환으로 이 실험을 실시하였다. 본 실험의 결과는 다음과 같다; 1. 척수 등쪽뿔 천층(Laminae I and II)에서 각각 c-fos와 HSP70을 항원으로 하는 면역조직화학적 방법으로 염색한 표본에서 0.9% NaCI 투여 2시간 후 c-fos와 HSP70의 양성을 나타내는 세포는 전혀 없음을 알 수 있었다. 2. 척수 등쪽뿔 천층에서 c-fos 단백질을 항원으로 하는 면역조직화학적 방법으로 염색한 표본에서 Capsaicin 투여 2시간 후 c-fos 단백질에 양성을 나타내는 세포가 많이 발현됨을 육안적 관찰로서 알 수 있었다. 3. 척수 등쪽뿔 천층에서 HSP70을 항원으로 하는 면역조직화확적 방법으로 염색한 표본에서 Capsaicin 투여 2시간 후 HSP7O의 양성을 나타내는 세포가 보통수준으로 발현됨을 육안적 관찰로서 알 수 있었다. 이 실험의 결과로 볼 때, 화학적인 신경병변 유발물질에 의한 손상을 방어하기 위해서 체내에는 내인성 물질이 형성될 것이라는 추측과 c-fos 가 다른 유전자의 발현을 유도한다는 점을 함께 고려 하였을때, Capsaicin에 의한 말초 신경병변에서 c-fos 발현이 많이 나타나는 것은 손상을 방어하는 물질의 생성에 관여하기 때문이며, 방어물질 중 이 실험에서 본 HSP70도 증가한 내인성 방어물질의 하나라고 할 수 있을 것이다.

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