• Title/Summary/Keyword: Sensory receptor

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Development of muscle sensory neurons and monosynaptic stretch reflex circuit (근육 감각 신경과 단일연접 신전반사 회로의 발달)

  • Kim, Sik-Hyun
    • PNF and Movement
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    • v.5 no.1
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    • pp.57-66
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    • 2007
  • This review discusses the development of muscle receptors, in particular, that of muscle sensory neurons and monosynaptic stretch reflex circuit. The development of muscle sensory neurons and monosynaptic stretch reflex requires a series of steps including expression of neurotrophic transcriptional factors and their receptor. The monosynaptic stretch reflex circuit is unique neuronal circuit system, and highly precise synaptic connection systems. Thus, coordination of sensory-motor function in muscle receptors depend on the expression of distinct classes of molecular cues, and on the formation of selective synaptic connections between sensory-motor neurons and their target muscle. Recent neurotrophic and transcription factor expression studies have expanded our knowledge on how muscle sensory neuron is formed, and how sensory-motor system is developed.

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Functional Anatomy and Histology of the Olfactory Organ in Korean Eel Goby, Odontamblyopus lacepedii (Pisces: Gobiidae)

  • Kim, Hyun Tae;Lee, Yong Joo;Park, Jong Young
    • Applied Microscopy
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    • v.48 no.1
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    • pp.11-16
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    • 2018
  • For Odontamblyopus lacepedii with small and turbid eyes, the gross structure and histology of the olfactory organ, which is important for its survival and protection of the receptor neuron in estuarial environment and its ecological habit, was investigated using a stereo, light and scanning electron microscopes. Externally, the paired olfactory organs with two nostrils are located identically on each side of the snout. These nostrils are positioned at the anterior tip of the upper lip (anterior nostril) and just below eyes covered with the epidermis (posterior nostril). Internally, this is built of an elongated olfactory chamber and two accessory nasal sacs. In histology, the olfactory chamber is elliptical in shape, and lined by the sensory epithelium and the non-sensory epithelium. The sensory epithelium of a pseudostratified layer consists of olfactory receptor neurons, supporting cells, basal cells and lymphatic cells. The non-sensory epithelium of a stratified layer has swollen stratified epithelial cells and mucous cells with acidic and neutral sulfomucin. From these results, we confirmed the olfactory organ of O. lacepedii is adapted to its ecological habit as well as its habitat with burrows at the muddy field with standing and murky waters.

Red ginseng extract blocks histamine-dependent itch by inhibition of H1R/TRPV1 pathway in sensory neurons

  • Jang, Yongwoo;Lee, Wook-Joo;Hong, Gyu-Sang;Shim, Won-Sik
    • Journal of Ginseng Research
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    • v.39 no.3
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    • pp.257-264
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    • 2015
  • Background: Korean Red Ginseng-a steamed root of Panax ginseng Meyer-has long been used as a traditional medicine in Asian countries. Its antipruritic effect was recently found, but no molecular mechanisms were revealed. Thus, the current study focused on determining the underlying molecular mechanism of Korean Red Ginseng extract (RGE) against histamine-induced itch at the peripheral sensory neuronal level. Methods: To examine the antipruritic effect of RGE, we performed in vivo scratching behavior test in mice, as well as in vitro calcium imaging and whole-cell patch clamp experiments to elucidate underlying molecular mechanisms. Results: The results of our in vivo study confirmed that RGE indeed has an antipruritic effect on histamine-induced scratching in mice. In addition, RGE showed a significant inhibitory effect on histamine-induced responses in primary cultures of mouse dorsal root ganglia, suggesting that RGE has a direct inhibitory effect on sensory neuronal level. Results of further experiments showed that RGE inhibits histamine-induced responses on cells expressing both histamine receptor subtype 1 and TRPV1 ion channel, indicating that RGE blocks the histamine receptor type 1/TRPV1 pathway in sensory neurons, which is responsible for histamine-dependent itch sensation. Conclusion: The current study found for the first time that RGE effectively blocks histamine-induced itch in peripheral sensory neurons. We believe that the current results will provide an insight on itch transmission and will be helpful in understanding how RGE exerts its antipruritic effects.

Effects of Dextromethorphan on the Development of Tachyphylaxis to Sciatic Nerve Blockade Induced by 2-Chloroprocaine in the Rat (2-chloroprocaine에 의한 쥐좌골신경 차단시 발생한 급성내성에 대한 Dextromethorphan의 영향)

  • Park, Myong-Su;Lee, Kang-Chang;Kim, Tai-Yo
    • The Korean Journal of Pain
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    • v.9 no.1
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    • pp.39-45
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    • 1996
  • Tachyphylaxis to local anesthetics has shown to be promote longer interanalgesic intervals between injections. Previous study demonstrated thermal hyperalgesia accelerates development of tachyphylaxis to sciatic nerve blockade in rats, while MK-801 prevents development of tachyphylaxis. Dextromethorphan is one of NMDA receptor antagonist similar to MK-801. A hypothesis that dextromethorphan would prevent the development of tachyphylaxis was tested in this study. A catheter was surgically implanted along the sciatic nerve a in rat. After recovery from surgery, the animal received repeated injections of 3% 2-chloroprocaine followed by motor block testing with or without hot-plate testing at $56^{\circ}C$. In other experiments, dextromethorphan was administrered by intraperiotneal injection prior to an injection of local anesthetic therough the implanted catheter. Sensory and motor testing was then carried out. Rats injected with 2-chloroprocaine and subjected to hot-plate testing, developed tachyphylaxis to motor and sensory blockade. However, animals pretreated with dextromethorphan did not develop tachyphylaxis over series of three injections. Dextromethorphan seems to prevent development of tachyphylaxis to sciatic nerve blockade in this rat model. Dextromethorphan, one of N-Methyl-D-aspartate receptor antagonist, can be applied to prolong the effect of local anesthetic.

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Antipsychotics for patients with pain

  • Shin, Sang Wook;Lee, Jin Seong;Abdi, Salahadin;Lee, Su Jung;Kim, Kyung Hoon
    • The Korean Journal of Pain
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    • v.32 no.1
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    • pp.3-11
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    • 2019
  • Going back to basics prior to mentioning the use of antipsychotics in patients with pain, the International Association for the Study of Pain (IASP) definition of pain can be summarized as an unpleasant experience, composed of sensory experience caused by actual tissue damage and/or emotional experience caused by potential tissue damage. Less used than antidepressants, antipsychotics have also been used for treating this unpleasant experience as adjuvant analgesics without sufficient evidence from research. Because recently developed atypical antipsychotics reduce the adverse reactions of extrapyramidal symptoms, such as acute dystonia, pseudo-parkinsonism, akathisia, and tardive dyskinesia caused by typical antipsychotics, they are expected to be used more frequently in various painful conditions, while increasing the risk of metabolic syndromes (weight gain, diabetes, and dyslipidemia). Various antipsychotics have different neurotransmitter receptor affinities for dopamine (D), 5-hydroxytryptamine (5-HT), adrenergic (${\alpha}$), histamine (H), and muscarinic (M) receptors. Atypical antipsychotics antagonize transient, weak $D_2$ receptor bindings with strong binding to the $5-HT_{2A}$ receptor, while typical antipsychotics block long-lasting, tight $D_2$ receptor binding. On the contrary, antidepressants in the field of pain management also block the reuptake of similar receptors, mainly on the 5-HT and, next, on the norepinephrine, but rarely on the D receptors. Antipsychotics have been used for treating positive symptoms, such as delusion, hallucination, disorganized thought and behavior, perception disturbance, and inappropriate emotion, rather than the negative, cognitive, and affective symptoms of psychosis. Therefore, an antipsychotic may be prescribed in pain patients with positive symptoms of psychosis during or after controlling all sensory components.

Sensory Physiology of Sex Pheromone and Its uses for Insect Pest Management (성페로몬 감각생리와 해충관리기술)

  • Kim, Yonggyun
    • Korean journal of applied entomology
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    • v.60 no.1
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    • pp.15-47
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    • 2021
  • Sex pheromone is used for chemical communication for mating in a species-specific manner in insects. Insect antennae possess sensory receptors specific to sex pheromone components and generate receptor potential to be perceived by the brain to evoke mating behavior. The sex pheromones have been used for monitoring specific species of insect pests to predict their subsequent occurrences based on a temperature-dependent growth model. Sex pheromones are also used for controlling pest insects using several different strategies such as mass capture, lure-and-kill, or mating disruption. This review explains the sensory physiology and insect pest management techniques related with sex pheromone.

A Novel and Highly Potent Non-vanilloid VR Antagonist

  • Suh, Young-Ger;Lee, Yong-Sil;Lee, Bo-Young;Min, Kyung-Hoon;Kim, Jin-Kwan;Seung, Ho-Sun;Park, Young-Ho
    • Proceedings of the PSK Conference
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    • 2003.04a
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    • pp.239.1-239.1
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    • 2003
  • The vanilloid receptor VR has attracted great interest as a sensory transducer for capsaicin. protons, and heat. and as a therapeutic target. On the basis of the previous studies on vanilloid agonists and antagonists. we have looked for non-vanilloid VR antagonists by developing ideal vanilloid equivalents, which might provide the perfect analgesic effects without the side effects caused by vanilloid receptor agonists. (omitted)

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The Anatomy and Histology of the Olfactory Organ in the Korean Sand Goby Favonigobius gymnauchen (Pisces, Gobiidae) (한국산 날개망둑 Favonigobius gymnauchen (Pisces, Gobiidae) 후각기관의 해부 및 조직학적 연구)

  • Kim, Hyun Tae;Kim, Hyeong Su;Park, Jong Young
    • Korean Journal of Ichthyology
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    • v.28 no.1
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    • pp.28-34
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    • 2016
  • The anatomy and histology of the olfactory organ in Favonigobius gymnauchen was investigated using a stereo microscopy, light microscopy and scanning electron microscopy. The paired olfactory organs in the dorsal snout are set in between the upper lip and the eyes. These organs are composed of two openings (anterior nostril with a tubular structure and posterior nostril), a single olfactory cavity, two nasal sac (ethmoidal and lacrimal sacs), olfactory nerve and olfactory bulb. The distributional pattern of the sensory epithelium is a only one type (continuous type). This epithelium is made up of the receptor cell, supporting cell and basal cell. The receptor cell has a only one type (ciliated receptor cell with 3~4 cilia). The non-sensory epithelium is built of the stratified epithelial cells and has mucous openings on the surface. Such an olfactory organ in F. gymnauchen may be considered to reflect its ecological habitat as a shallow water or tidal pool in the coastal zone.

Immunohistochemical localization of protein kinase C and nitric oxide synthase in the vomeronasal organ of the horse (말 서골코기관에서 protein kinase C 및 nitric oxide synthase의 면역조직학적 관찰)

  • Lee, Kwanghyup;Ahn, Meejung;Lee, Yongduk;Ha, Theyoung;Kim, Heeseok;Shin, Thekyun
    • Korean Journal of Veterinary Research
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    • v.41 no.3
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    • pp.269-273
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    • 2001
  • The expression of protein kinase C(PKC) isoforms and nitric oxide synthase (NOs) isoforms was studied in the equine vomeronasal organ(VNO), a pheromone receptor organ, using immunohistochemistry. All PKC isoforms including PKC $\alpha$, ${\beta}I$, $\delta$, and $\theta$ were detected in the supporting cells, sensory receptor cells, and basal sensory epithelial cells, while constitutive PKC $\alpha$ and ${\beta}I$ were stained more intensely than novel PKC $\delta$ and ${\theta}$. There was also a varying degree of immunostaining for PKCs in the glandular acini and VNO nerve. Constitutive neuronal and endothelial NOSs, and inducible NOS were detected in the VNO sensory epithelia. There was intense immunoreactivity for endothelial NOS in the VNO sensory epithelia but weak reactivity for neuronal NOS, while inducible NOS showed little immunoreactivity in the adjacent section. These findings suggest that both PKCs and NOSs may be involved in the process of pheromone reception in the horse. Constitutive isoforms of these enzymes may play a more important role in signal trasduction in the VNO of the horse.

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