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Dive into the research topics where Kotaro Maruhama is active.

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Featured researches published by Kotaro Maruhama.


Journal of Oral Rehabilitation | 2012

Intradermal injection of Botulinum toxin type A alleviates infraorbital nerve constriction-induced thermal hyperalgesia in an operant assay.

Ai Kumada; Yoshizo Matsuka; Igor Spigelman; Kotaro Maruhama; Yumiko Yamamoto; John K. Neubert; Todd A. Nolan; K. Watanabe; Kenji Maekawa; Hiroshi Kamioka; Takashi Yamashiro; Takuo Kuboki; Keiji Oguma

Recent studies have shown that infraorbital nerve constriction (IoNC)-induced mechanical allodynia has been attenuated by administration of highly purified 150-kDa Botulinum neurotoxin type A (BoNT/A). Here, we extend these studies to determine whether BoNT/A could attenuate IoNC-induced symptoms of thermal hyperalgesia. Instead of testing head withdrawal thresholds, a thermal operant assay was used to evaluate cortical processing of sensory input following IoNC. In this assay, a fasted rats desire to obtain a food reward (sweetened condensed milk) is coupled to its ability to tolerate facial contact with a warm (45 °C) thermode. Bilateral IoNC decreased the ratio of thermode contact duration/event, which is an indicative of thermal hyperalgesia. BoNT/A injection intradermally in the area of infraorbital nerve (IoN) innervation 7 days after IoNC resulted in decreased number of facial contacts and increased the ratio of contact duration/event (measured at 14 days after IoNC). The BoNT/A (2-200 pg) effects were dose dependent and statistically significant at 100 and 200 pg (P < 0·05). Complete reversal of thermal hyperalgesia symptoms was obtained with a 200-pg dose, without affecting sham rat behaviour. Off-site (neck) injection of BoNT/A did not relieve thermal hyperalgesia, while co-injection of BoNT/A with a neutralising antibody in the area of IoN innervation prevented relief of thermal hyperalgesia. Neither IoNC nor BoNT/A injection affected operant assay parameters with a 24 °C thermode, indicating selectivity of thermal hyperalgesia measurements. These results strongly suggest that intradermal injection of BoNT/A in the area of IoN innervation alleviates IoNC-induced thermal hyperalgesia in an operant assay.


Toxins | 2015

Cross-Excitation in Peripheral Sensory Ganglia Associated with Pain Transmission

Katsuhiro Omoto; Kotaro Maruhama; Ryuji Terayama; Yumiko Yamamoto; Osamu Matsushita; Tomosada Sugimoto; Keiji Oguma; Yoshizo Matsuka

Despite the absence of synaptic contacts, cross-excitation of neurons in sensory ganglia during signal transmission is considered to be chemically mediated and appears increased in chronic pain states. In this study, we modulated neurotransmitter release in sensory neurons by direct application of type A botulinum neurotoxin (BoNT/A) to sensory ganglia in an animal model of neuropathic pain and evaluated the effect of this treatment on nocifensive. Unilateral sciatic nerve entrapment (SNE) reduced the ipsilateral hindpaw withdrawal threshold to mechanical stimulation and reduced hindpaw withdrawal latency to thermal stimulation. Direct application of BoNT/A to the ipsilateral L4 dorsal root ganglion (DRG) was localized in the cell bodies of the DRG and reversed the SNE-induced decreases in withdrawal thresholds within 2 days of BoNT/A administration. Results from this study suggest that neurotransmitter release within sensory ganglia is involved in the regulation of pain-related signal transmission.


Archives of Oral Biology | 2014

Assessment of intraoral mucosal pain induced by the application of capsaicin

Ryuji Terayama; Kotaro Maruhama; Hiroki Tsuchiya; Masahide Mizutani; Seiji Iida; Tomosada Sugimoto

OBJECTIVE To develop an objective method for assessing nociceptive behaviour in an animal model of capsaicin-induced intraoral pain. Changes in nociceptive responses were also examined after injury to the inferior alveolar nerve (IAN). DESIGN Nociceptive responses evoked by the intraoral application of various doses of capsaicin were analyzed in lightly anaesthetized rats. The number of c-Fos protein-like immunoreactive (Fos-LI) neurons in the medullary dorsal horn (MDH) induced by the intraoral application of capsaicin was measured. Behavioural and c-Fos responses were also examined 14 days after injury to the IAN. RESULTS Larger doses of intraoral capsaicin (1, 10 and 100μg) induced vigorous licking behaviour and c-Fos response in the MDH in a reproducible manner. The magnitudes of both behavioural activity and the c-Fos response from the 10 and 100μg doses of capsaicin were significantly greater than that by the 1μg dose. Injury to the IAN exaggerated the behavioural and c-Fos responses evoked by intraoral capsaicin. CONCLUSIONS The intraoral application of capsaicin is a valid and reliable method for studying intraoral pain and hyperalgesia following nerve injury.


International Journal of Neuroscience | 2018

Differential induction of c-Fos and phosphorylated ERK by a noxious stimulus after peripheral nerve injury

Mitsuyasu Tabata; Ryuji Terayama; Kotaro Maruhama; Seiji Iida; Tomosada Sugimoto

ABSTRACT Purpose: In this study, we compared induction of c-Fos and phosphorylated extracellular signal-regulated kinase (p-ERK) in the spinal dorsal horn after peripheral nerve injury. Materials and methods: We examined the spinal dorsal horn for noxious heat-induced c-Fos and p-ERK protein-like immunoreactive (c-Fos- and p-ERK-IR) neuron profiles after tibial nerve injury. The effect of administration of a MEK 1/2 inhibitor (PD98059) on noxious heat-induced c-Fos expression was also examined after tibial nerve injury. Results: A large number of c-Fos- and p-ERK-IR neuron profiles were induced by noxious heat stimulation to the hindpaw in sham-operated animals. A marked reduction in the number of c-Fos- and p-ERK-IR neuron profiles was observed in the medial 1/3 (tibial territory) of the dorsal horn at 3 and 7 days after nerve injury. Although c-Fos-IR neuron profiles had reappeared by 14 days after injury, the number of p-ERK-IR neuron profiles remained decreased in the tibial territory of the superficial dorsal horn. Double immunofluorescence labeling for c-Fos and p-ERK induced by noxious heat stimulation to the hindpaw at different time points revealed that a large number of c-Fos-IR, but not p-ERK-IR, neuron profiles were distributed in the tibial territory after injury. Although administration of a MEK 1/2 inhibitor to the spinal cord suppressed noxious heat-induced c-Fos expression in the peroneal territory, this treatment did not alter c-Fos induction in the tibial territory after nerve injury. Conclusions: ERK phosphorylation may be involved in c-Fos induction in normal nociceptive responses, but not in exaggerated c-Fos induction after nerve injury.


Neurochemical Research | 2015

Activated Microglia Contribute to Convergent Nociceptive Inputs to Spinal Dorsal Horn Neurons and the Development of Neuropathic Pain

Yuya Yamamoto; Ryuji Terayama; Noriko Kishimoto; Kotaro Maruhama; Masahide Mizutani; Seiji Iida; Tomosada Sugimoto


Experimental Brain Research | 2015

Peripheral nerve injury activates convergent nociceptive input to dorsal horn neurons from neighboring intact nerve

Ryuji Terayama; Yuya Yamamoto; Noriko Kishimoto; Kotaro Maruhama; Masahide Mizutani; Seiji Iida; Tomosada Sugimoto


Neurochemical Research | 2015

Convergent Nociceptive Input to Spinal Dorsal Horn Neurons After Peripheral Nerve Injury

Ryuji Terayama; Noriko Kishimoto; Yuya Yamamoto; Kotaro Maruhama; Hiroki Tsuchiya; Masahide Mizutani; Seiji Iida; Tomosada Sugimoto


Neurochemical Research | 2016

Differential Changes in Neuronal Excitability in the Spinal Dorsal Horn After Spinal Nerve Ligation in Rats

Ryuji Terayama; Yuya Yamamoto; Noriko Kishimoto; Mitsuyasu Tabata; Kotaro Maruhama; Seiji Iida; Tomosada Sugimoto


Experimental Brain Research | 2018

A3 adenosine receptor agonist attenuates neuropathic pain by suppressing activation of microglia and convergence of nociceptive inputs in the spinal dorsal horn

Ryuji Terayama; Mitsuyasu Tabata; Kotaro Maruhama; Seiji Iida


Journal of Oral Biosciences | 2015

Basic research and clinical investigations of the neural basis of orofacial pain

Yoshizo Matsuka; Koichi Iwata; Ryuji Terayama; Yoshiki Imamura; Kotaro Maruhama; Masamichi Shinoda; Yoshiyuki Tsuboi; Masahiro Kondo; Kuniya Honda; Ayano Katagiri; Tomosada Sugimoto

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