• Title/Summary/Keyword: locomotor activity

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Anxiolytic-like Effects of Panax ginseng on the Elevated Plus-maze Model in Mice

  • CHA Hwa-Young;SEO Jeong-Ju;PARK Jeong-Hill;EUN Jae-Soon;LEE Seung-Ho;HWANG Bang-Yeon;HONG Jin-Tae;OH Ki-Wan
    • Biomolecules & Therapeutics
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    • v.13 no.3
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    • pp.156-164
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    • 2005
  • This study was performed to investigate the anxiolytic-like effects Panax ginseng in mice using the elevated plus-maze model. Furthermore, the anxiolytic-like effects of Panax ginseng were compared to a known active anxiolytic drug, diazepam. Ginseng total saponin (GTS, 100 mg/kg) from red ginseng (RG), sun ginseng (SG) total extract (50 mg/kg), butanol fraction of SG(25 and 50 mg/kg) and ginsenosides ($Rb_1,\;Rg_1,\;and\;Rg_5$ and Rk mixture) significantly increased the number of open arm entries and the time spent on the open arm, compared with that of control. However, Red ginseng (RG) total extract (l00 mg/kg), GTS (25, 50 mg/kg), SG total extract (25 mg/kg) and ginsenosides ($Rg_{3}-R\;and\;Rg_{3}-S$) did not increase the number of open arm entries and the time spent on the open arm. On the other hand, butanol fraction of RG (l00 mg/kg), total extract of SG (50 mg/kg), butanol fraction of SG (50 mg/kg), ginsenosides ($Rb_{1},\;and\;Rg_{5}$ and Rk mixture) decreased the locomotor activity, in a similar fashion to diazepam. These data support that ginseng has the anxiolytic-like effects and the anxiolytic potential of SG was stronger than that of RG. Ginsenosides $Rb_{1},\;Rg_{1},\;and\;Rg_{5}$ and Rk mixture play important role on the anxiolytic-like effects of Panax ginseng. We provide evidence that ginseng and some ginsenosides may be useful for the treatment of anxiety.

Hangover relieving effect of Sanghwang mushroom mycelium cultured in germinated buckwheat

  • An, Yoo-Jin;Cho, Sung-Min;Kim, Min-Su;Moon, Hae-Hee;Park, Dong-Soo;Jeon, Nam-Gen;Lee, oungjae;Han, Chang-Hoon
    • Korean Journal of Veterinary Research
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    • v.57 no.3
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    • pp.147-154
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    • 2017
  • The present study was performed to evaluate the hangover relieving effect of germinated buckwheat (GB) and Sanghwang mushroom mycelium cultured in GB (SGB). Both GB and SGB showed 1,1-diphenyl-2-picrylhydrazyl radical scavenging activities and significantly increased (p < 0.001) aldehyde dehydrogenase (ALDH) activities; up to 140% increase at concentrations of $16{\mu}L/mL$. Locomotor activity test results from alcohol-SGB and alcohol-GB groups showed improved motor activities over that of the alcohol-water group at 90 min post-administration. Both alcohol-GB and alcohol-SGB groups had significantly reduced (p < 0.001) alcohol ($40.02{\pm}33.38{\mu}g/mL$, $66.01{\pm}22.04{\mu}g/mL$, respectively) and aldehyde ($5.72{\pm}0.47{\mu}g/mL$, $6.72{\pm}1.70{\mu}g/mL$, respectively) concentrations in blood compared to those in the alcohol-water group ($199.75{\pm}33.83{\mu}g/mL$, $50.43{\pm}13.88{\mu}g/mL$, respectively) at 90 min post-administration. Based on cDNA microarray analysis, expressions of ALDH genes ALDH1a7 and ALDH18a1 and cytochrome P450 (CY450) gene CYP4a30b were upregulated in the alcohol-GB and alcohol-SGB groups compared to levels in the control group. Overall, the results suggest that both GB and SGB have hangover relieving effects by reducing blood acetaldehyde levels. The molecular mechanisms may involve ALDH activation and upregulated expression of alcohol metabolism-related genes such as ALDH and CYP450.

Ameliorating Effects of Herbal Ethanol Extract from Gynostemma pentaphyllum on Chronic Stress-Induced Anxiety in Mice (돌외 에탄올 추출물 엑스의 만성 스트레스-유도 불안작용에 대한 개선작용)

  • Choi, Hyun-Sook;Shin, Kun-Seong;Choi, Soon-Ok;Kim, Seung-Hwan;Hwang, Bang-Yeon;Lee, Chong-Kil;Lee, Myung-Koo
    • Korean Journal of Pharmacognosy
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    • v.42 no.1
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    • pp.32-37
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    • 2011
  • The effects of herbal ethanol extract from Gynostemma pentaphyllum (GP extract) on chronic stress-induced anxiety in mice were investigated. The animals were treated with GP extracts (50 and 100 mg/kg/day, p.o.) for 21 days before exposure to electric footshock (EF; duration and interval 10 sec for 3 min, 2 mA) for chronic stress once a day. The ambulatory locomotor activity was reduced by chronic EF stress and it was recovered by 12.9-15.1% in GP extract-treated groups. The grip strength was also significantly decreased by chronic EF stress, however, the EF-stressed groups treated with GP extract increased grip strength from 13.9% to 56.8% compared to EF-stressed groups. In addition, the serum levels of corticosterone were significantly elevated by chronic EF stress to 197% of the control levels, which was reduced to 73.1% by treatment with GP extract (100 mg/kg). In contrast, the brain levels of dopamine and serotonin were reduced to 67.6% and 63.1% by chronic EF stress, which was recovered to 90% of the control levels by treatment with GP extract. These results indicate that GP extract shows the ameliorating effects on chronic EF stress-induced anxiety in mice and it can be developed as the promising anti-anxiety agent.

Evaluation of Acute Toxicity of Pomace Schisandra chinensis Extracts Using SD-rats (SD-rats를 이용한 오미자박 추출물의 급성경구독성 평가)

  • Seokho, Kim;Bo Ra, Yoo;Young-Suk, Kim;Jong-Min, Lim;Bon-Hwa, Ku;Kyeong Tae, Kwak;Byeong Yeob, Jeon
    • Herbal Formula Science
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    • v.30 no.4
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    • pp.281-291
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    • 2022
  • Objectives : In this study, acute oral toxicity test of pomace Schisandra chinensis extracts was conducted in order to up-cycling to a high value-added industry using by-products discarded in the production process of Schisandra chinensis products and active ingredients such as dibenzocyclooctadiene lignans in Schisandra chinensis. Methods : Pomace Schisandra chinensis extracts were orally administered to SD-rats(female, n=3) without a control group according to the 'OECD guidelines'. After, mortality and clinical signs were observed, and the deceased animals were subjected to an autopsy. In addition, acute oral toxicity test was sequentially performed in step I (300 mg/kg), step II(300 mg/kg), step III(2,000 mg/kg), and step IV(2,000 mg/kg) according to the mortality. Results : There were no abnormalities caused by pomace Schisandra chinensis extracts in step I and step II. However, one animal each died in step III and step IV. In addition, clinical signs(salivation, decrease in food intake, prone position, decrease of locomotor activity, loss of locomotor activity, convulsion, hypothermia, lacrimation, staining around mouth, soiled perineal region, reddish urine, chromaturia, decrease of fecal volume, lying on side, blackish stool, no stool, compound-colored stool, refusal to feed, excitement, hypersensitivity, rigidity, dorsal position, etc.) were observed. But, no clinical signs were observed from 5th day, and experiment animals recovered completely. Conclusions : As a result of this study, pomace Schisandra chinensis extracts may exhibit acute toxicity at concentrations of 2,000 to 5,000 mg/kg, and the GHS classification was designated as 'Category 5'.

Behavioral Deficits in Adolescent Mice after Sub-Chronic Administration of NMDA during Early Stage of Postnatal Development

  • Adil, Keremkleroo Jym;Remonde, Chilly Gay;Gonzales, Edson Luck;Boo, Kyung-Jun;Kwon, Kyong Ja;Kim, Dong Hyun;Kim, Hee Jin;Cheong, Jae Hoon;Shin, Chan Young;Jeon, Se Jin
    • Biomolecules & Therapeutics
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    • v.30 no.4
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    • pp.320-327
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    • 2022
  • Neurodevelopmental disorders are complex conditions that pose difficulty in the modulation of proper motor, sensory and cognitive function due to dysregulated neuronal development. Previous studies have reported that an imbalance in the excitation/inhibition (E/I) in the brain regulated by glutamatergic and/or GABAergic neurotransmission can cause neurodevelopmental and neuropsychiatric behavioral deficits such as autism spectrum disorder (ASD). NMDA acts as an agonist at the NMDA receptor and imitates the action of the glutamate on that receptor. NMDA however, unlike glutamate, only binds to and regulates the NMDA receptor subtypes and not the other glutamate receptors. This study seeks to determine whether NMDA administration in mice i.e., over-activation of the NMDA system would result in long-lasting behavioral deficits in the adolescent mice. Both gender mice were treated with NMDA or saline at early postnatal developmental period with significant synaptogenesis and synaptic maturation. On postnatal day 28, various behavioral experiments were conducted to assess and identify behavioral characteristics. NMDA-treated mice show social deficits, and repetitive behavior in both gender mice at adolescent periods. However, only the male mice but not female mice showed increased locomotor activity. This study implies that neonatal exposure to NMDA may illicit behavioral features similar to ASD. This study also confirms the validity of the E/I imbalance theory of ASD and that NMDA injection can be used as a pharmacologic model for ASD. Future studies may explore the mechanism behind the gender difference in locomotor activity as well as the human relevance and therapeutic significance of the present findings.

The prominin-like Gene Expressed in a Subset of Dopaminergic Neurons Regulates Locomotion in Drosophila

  • Ryu, Tae Hoon;Subramanian, Manivannan;Yeom, Eunbyul;Yu, Kweon
    • Molecules and Cells
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    • v.45 no.9
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    • pp.640-648
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    • 2022
  • CD133, also known as prominin-1, was first identified as a biomarker of mammalian cancer and neural stem cells. Previous studies have shown that the prominin-like (promL) gene, an orthologue of mammalian CD133 in Drosophila, plays a role in glucose and lipid metabolism, body growth, and longevity. Because locomotion is required for food sourcing and ultimately the regulation of metabolism, we examined the function of promL in Drosophila locomotion. Both promL mutants and pan-neuronal promL inhibition flies displayed reduced spontaneous locomotor activity. As dopamine is known to modulate locomotion, we also examined the effects of promL inhibition on the dopamine concentration and mRNA expression levels of tyrosine hydroxylase (TH) and DOPA decarboxylase (Ddc), the enzymes responsible for dopamine biosynthesis, in the heads of flies. Compared with those in control flies, the levels of dopamine and the mRNAs encoding TH and Ddc were lower in promL mutant and pan-neuronal promL inhibition flies. In addition, an immunostaining analysis revealed that, compared with control flies, promL mutant and pan-neuronal promL inhibition flies had lower levels of the TH protein in protocerebral anterior medial (PAM) neurons, a subset of dopaminergic neurons. Inhibition of promL in these PAM neurons reduced the locomotor activity of the flies. Overall, these findings indicate that promL expressed in PAM dopaminergic neurons regulates locomotion by controlling dopamine synthesis in Drosophila.

Intrathecal administration of naringenin improves motor dysfunction and neuropathic pain following compression spinal cord injury in rats: relevance to its antioxidant and anti-inflammatory activities

  • Fakhri, Sajad;Sabouri, Shahryar;Kiani, Amir;Farzaei, Mohammad Hosein;Rashidi, Khodabakhsh;Mohammadi-Farani, Ahmad;Mohammadi-Noori, Ehsan;Abbaszadeh, Fatemeh
    • The Korean Journal of Pain
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    • v.35 no.3
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    • pp.291-302
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    • 2022
  • Background: Spinal cord injury (SCI) is one of the most debilitating disorders throughout the world, causing persistent sensory-motor dysfunction, with no effective treatment. Oxidative stress and inflammatory responses play key roles in the secondary phase of SCI. Naringenin (NAR) is a natural flavonoid with known anti-inflammatory and antioxidative properties. This study aims at evaluating the effects of intrathecal NAR administration on sensory-motor disability after SCI. Methods: Animals underwent a severe compression injury using an aneurysm clip. About 30 minutes after surgery, NAR was injected intrathecally at the doses of 5, 10, and 15 mM in 20 µL volumes. For the assessment of neuropathic pain and locomotor function, acetone drop, hot plate, inclined plane, and Basso, Beattie, Bresnahan tests were carried out weekly till day 28 post-SCI. Effects of NAR on matrix metalloproteinase (MMP)-2 and MMP-9 activity was appraised by gelatin zymography. Also, histopathological analyses and serum levels of glutathione (GSH), catalase and nitrite were measured in different groups. Results: NAR reduced neuropathic pain, improved locomotor function, and also attenuated SCI-induced weight loss weekly till day 28 post-SCI. Zymography analysis showed that NAR suppressed MMP-9 activity, whereas it increased that of MMP-2, indicating its anti-neuroinflammatory effects. Also, intrathecal NAR modified oxidative stress related markers GSH, catalase, and nitrite levels. Besides, the neuroprotective effect of NAR was corroborated through increased survival of sensory and motor neurons after SCI. Conclusions: These results suggest intrathecal NAR as a promising candidate for medical therapeutics for SCI-induced sensory and motor dysfunction.

Defensive Behavior against Noxious Heat Stimuli Is Declined with Aging Due to Decreased Pain-Associated Gene Expression in Drosophila

  • Ghimire, Saurav;Kim, Man Su
    • Biomolecules & Therapeutics
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    • v.23 no.3
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    • pp.290-295
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    • 2015
  • Aging is defined as a collective process that alters organism's functional capacity and appearance over the course of life. Apart from an increase in susceptibility to many diseases, aging affects the cellular system that is responsible for decoding painful stimuli. Yet, aging-associated molecular mechanisms of pain perception remains elusive. Using Drosophila, we showed a decrease in temperature tolerance and a reduction in high temperature thermal avoidance with aging. Locomotor activity assay demonstrated that the age-dependent changes in heat nociception did not stem from the general decline in muscular activity. However, we identified pain-related gene expression alteration with aging. We anticipate that our findings would help opening a new window onto developing the optimal pain treatment for the elderly.

Anti-stress Effect of Lactic Acid Bacteria (Lactobacillus acidophilus, Pediococcus pentosaseus, Bifidobacterium longum SPM1205) (유산균 (Lactobacillus acidophilus, Pediococcus pentosaseus, Bifidobacterium longum SPM1205)의 항스트레스 효과)

  • Jang, Seok;Lee, Do-Kyung;Yang, Hwan-Jin;An, Hyang-Mi;Baek, Eun-Hye;Kim, Mi-Jin;Lee, Kang-Oh;Chung, Myung-Jun;Kim, Jin-Eung;Ha, Nam-Joo
    • Environmental Analysis Health and Toxicology
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    • v.25 no.1
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    • pp.79-84
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    • 2010
  • 이 연구의 목적은 유산균(LAB)의 항스트레스 효과를 알아보기 위함이다. 본 실험에서는 ICR 마우스에게 구속 스트레스를 가하면서 혼합유산균과 홍삼추출물을 경구투여 하였다. 5일간 Normal 그룹을 제외한 saline (control), LAB100, LAB200, RGE200에게 구속 스트레스를 주었다. 구속 스트레스를 가한 후에 ICR 마우스에게 kg당 100 mg ($3.0\times10^{11}$ CFU/g) 또는 200 mg $3.0\times10^{11}$ CFU/g)의 혼합유산균(Lactobacillus acidophilus, Pediococcus pentosaseus, Bifidobacterium longum SPM1205)을 투여하였으며 대조물질로는 홍삼 추출물(Red ginseng extract) 200 mg (홍삼추출물)/kg (마우스)을 투여하였다. 마지막 실험일에는 locomotor와 elevated plus-maze 실험을 통하여 마우스의 행동변화를 측정하였다. 그 결과, 혼합유산균을 투여한 그룹에서는 스트레스를 일부 억제하는 효과를 보였다. 특히 Elevated plus-maze 실험에서, 스트레스를 받은 마우스는 open zone에서보다 closed zone에서 더욱 많은 시간을 보냈다. 그렇지만 혼합유산균을 투여한 그룹에서는 open zone에서 더욱 오래 시간을 보냈으며 그 시간은 saline과 RGE200 그룹에 비해서도 길었다. 그것은 또한 아무것도 처리하지 않은 Normal 그룹과도 비슷한 결과이다. 그리고 마우스의 분변에서 유산균수를 측정하였는데 스트레스를 가하고 혼합유산균은 투여하지 않은 saline 그룹에서는 유산균수가 감소했지만 혼합유산균을 투여한 LAB100, LAB200 그룹에서는 유산균수가 증가하였다.

Assessment of the Abuse Liability of Synthetic Cannabinoid Agonists JWH-030, JWH-175, and JWH-176

  • Tampus, Reinholdgher;Yoon, Seong Shoon;Pena, June Bryan de la;Botanas, Chrislean Jun;Kim, Hee Jin;Seo, Joung-Wook;Jeong, Eun Ju;Jang, Choon Gon;Cheong, Jae Hoon
    • Biomolecules & Therapeutics
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    • v.23 no.6
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    • pp.590-596
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    • 2015
  • The emergence and use of synthetic cannabinoids have greatly increased in recent years. These substances are easily dispensed over the internet and on the streets. Some synthetic cannabinoids were shown to have abuse liability and were subsequently regulated by authorities. However, there are compounds that are still not regulated probably due to the lack of abuse liability studies. In the present study, we assessed the abuse liability of three synthetic cannabinoids, namely JWH-030, JWH-175, and JWH-176. The abuse liability of these drugs was evaluated in two of the most widely used animal models for assessing the abuse potential of drugs, the conditioned place preference (CPP) and self-administration (SA) test. In addition, the open-field test was utilized to assess the effects of repeated (7 days) treatment and abrupt cessation of these drugs on the psychomotor activity of animals. Results showed that JWH-175 (0.5 mg/kg), but not JWH-030 or JWH-176 at any dose, significantly decreased the locomotor activity of mice. This alteration in locomotor activity was only evident during acute exposure to the drug and was not observed during repeated treatment and abstinence. Similarly, only JWH-175 (0.1 mg/kg) produced significant CPP in rats. On the other hand, none of the drugs tested was self-administered by rats. Taken together, the present results indicate that JWH-175, but not JWH-030 and JWH-176, may have abuse potential. More importantly, our findings indicate the complex psychopharmacological effects of synthetic cannabinoids and the need to closely monitor the production, dispensation, and use of these substances.