• 제목/요약/키워드: Dependence receptor

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Effects of Ethanol on Neurohumoral Mechanisms for Blood Pressure Regulation in Hemorrhaged Conscious Rats

  • Park, Yoon-Yub;Park, Jae-Sik;Lee, Won-Jung
    • The Korean Journal of Physiology
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    • 제29권1호
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    • pp.91-102
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    • 1995
  • The role of neurohumoral mechanisms in the regulation of cardiovascular functions and the effects of ethanol (EOH) on these mechanisms were examined in hemorrhaged conscious Wistar rats. The rats were bled at a constant rate (2 ml/kg/min) through the femoral artery until mean arterial pressure (MAP) was reduced by 30 mmHg. We studied the responses to hemorrhage 1) under normal conditions (Normal), and after pretreatments with 2) neural blockade (NB), pentolinium, 3) arginine vasopressin V1-receptor antagonist (AVPX) + NB, 4) angiotensin II ATI-receptor antagonist (AngIIX) + NB, 5) combined humoral blockade (HB), and 6) neurohumoral blockade. Intravenous administration of 30% EOH (6.3 ml/kg) attenuated the baroreceptor reflex sensitivity, and enhanced the depressor action of AngIIX. During hemorrhage, NB produced a faster fall ill MAP than Normal both in the saline and EOH groups. However, HB accelerated the rate of fall in MAP only in the EOH group. The recovery from hemorrhagic hypotension was not different between NB and Normal rats, but was attenuated in HB rats in the saline group. Under NB, AngIIX, but not AVPX, retarded the recovery rate compared with NB alone. EOH attenuated the recovery of MAP after hemorrhage in Normal rats, but completely abolished the recovery in HB rats. We conclude that 1) the maintenance of MAP during hemorrhage is mediated almost entirely by the autonomic functions, 2) angiotensin II plays an important role in the recovery from hemorrhagic hypotension, but AVP assumes little importance, 3) AVP release largely depends on the changes in blood volume, whereas renin release depends on the changes in blood pressure rather than blood volume, and 4) EOH increases the dependence of cardiovascular regulation on angiotensin II and impairs the recovery from hemorrhagic hypotension through the attenuation of autonomic functions.

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Inositol 1,4,5-Trisphosphate-induced Increase in $Ca^{2+}-ATPase$ Activity in the Microsomes of Tracheal Epithelial Cells

  • Cho, Hyoung-Jin;Park, Sung-Shin;Kim, Young-Kee
    • The Korean Journal of Physiology
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    • 제29권2호
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    • pp.269-277
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    • 1995
  • Membrane vesicles were prepared by differential centrifugation from epithelial cells of porcine trachea. Total activity of microsomal ATPases was measured spectrophotometrically by a coupled enzyme assay. The steady-state activity of the enzyme was $329{\pm}10$ nmol/min mg protein. Thapsigargin, a specific antagonist of intracellular $Ca^{2+}-ATPase$, inhibited about 50% of the activity, leaving $178{\pm}18\;nmol/min .mg$ protein (n=6), indicating that the $Ca^{2+}-ATPase$ is one of the major microsomal ATPases. The microsomes used in this study appeared to be tight-sealed vesicles since they showed saturation in $^{45}Ca^{2+}$ uptake experiments. Inositol 1,4,5-trisphosphate $InsP_{3}, 4\;{\mu}M$, an agonist of $InsP_{3}$-sensitive $Ca^{2+}$ release channel ($InsP_{3}$, receptor), and Ca-ionophore A23187 $(10\;{\mu}M)$ induced $^{45}Ca^{2+}$ releases of 20% and 50% of stored $^{45}Ca^{2+}$, respectively. The addition of $(10\;{\mu}M\;InsP_{3}$ also increased the microsomal ATPase activity from $282{\pm}8$ nmol/min mg protein to $334{\pm}21$ nmol/min . mg protein in the intact vesicles. Similar increase in the activity was observed by making microsomes leaky (uncoupling) using the Ca-ionophore A23187. ;$InsP_{3}-induced$ effects were blocked by either thapsigargin or heparin suggesting that: 1) the $InsP_{3}-induced$ increase in ATPase activity is mediated by microsomal $Ca^{2+}-ATPase$, and 2) dissipation of $Ca^{2+}$ gradient across the microsomal membrane is responsible for the $InsP_{3}-induced$ effect. In order to test the dependence of the $Ca^{2+}-ATPase$ activity on the activity of $InsP_{3}-induced$ the activity of ATPases was monitored in various concentrations of free $Ca^{2+}$ using $EGTA-Ca^{2+}$ buffers. The $Ca^{2+}$-dependent biphasic change is the well-known character of $InsP_{3} receptor but not of microsomal $Ca^{2+}-ATPase$ in non-excitable cells; however, the activity of microsomal ATPase appeared biphasic and a maxim진 activity of $397{\pm}36nmol/min\;.mg$ protein was obtained in the solution containing 100 nM free $Ca^{2+}$. Below or above this concentration, the activity of ATPases was lower. These results strongly support a positive correlation of microsomal $Ca^{2+}-ATPase$ to the $InsP_{3}$ receptors in epithelial microsomes.

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세포 주기 변화에 따른 Toxoplasmu gondii의 침투 양상 (Cell cycle-dependent entry of Toxoplasma gondii into synchronized HL-60 cells)

  • 윤지혜;남호우
    • Parasites, Hosts and Diseases
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    • 제29권2호
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    • pp.121-128
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    • 1991
  • Toxoplasma gondii를 HL-60 세포와 함께 in vitro 배양시 Toxopsasma 침투 정도가 각 세포에서 균일하지 않으므로 세포의 주기에 따른 일정 phase가 그 침투에 좋은 환경을 제공할 것이라는 추론으로 HL-60세포 주기를 동시화(synchronization)하여 각 stage에서 변화를 관찰하였다. 동시화는 과량의 thymidine이 DNA 합성을 억제함을 이용하여 2mM thymidine을 10시간 간격으로 각 24, 18시간 동안 처리하여 (double thymidine block method) S (synthetic) phase를 진행하는 세포를 얻었고 이후 30시 간 동안 13회의 간격을 두고 $5{\times}10^6/ml$의 Toxoplasma를 첨가하여 1시간 동안 배양하였다. 숙주세포의 동시화 정도는 (1) 3H-thymidine의 표지량 (2) mitotic index 측전 및 (3) 세포수의 증가를 통해 확인하였다. Toxoplasma의 침투 정도는 S phase중에서도 배지에서 thymidine을 제거한 후 3시간 경과시가 그 전후에 비해 6배 이상 높았으며 특히 이 시기는 DNA 합성이 최고가 되는 점과 일치하였다. 침투된 Toxoplasma 수의 변화 외에 세포의 모양도 상당한 변화가 있었고 이는 19시간 후 2번째 S phase에서도 약하나마 관찰되었다 실험 결과를 통해 특정 약 1시간 동안 일어나는 어떤 세포의 변화가 Toxoplasma 침투에 중요한 역할을 한다는 것을 알 수 있었다. 이는 원충 기생충의 숙주세포 흡착과 interiorization과정에 receptor가 관련되고 몇 receptor는 세포주기에 따라 발현이 조절되는 사실로부터 $G_1/S$ 경계부터 3시간째에 발현되면서 Togopzasma를 유인하는 receptor molecule의 존재 가능성을 시사하였다.

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Sexually Dimorphic Control of Obesity and Skeletal Muscle Lipid Metabolism by Fenofibrate

  • Lim, Hyesook;Lee, Hyunghee;Yoon, Michung
    • 대한의생명과학회지
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    • 제19권1호
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    • pp.17-24
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    • 2013
  • Animals show a sexual dimorphism in metabolic responses. We investigated to verify whether the peroxisome proliferator-activated receptor ${\alpha}$ ($PPAR{\alpha}$) agonist fenofibrate regulates obesity and skeletal muscle lipid metabolism with sexual dimorphism and to determine the changes in skeletal muscle expression of $PPAR{\alpha}$ target genes. After both sexes of C57BL/6J mice received a high fat diet with or without fenofibrate for 7 weeks, we examined the effects of fenofibrate on not only body weight, adipose tissue mass, and skeletal muscle lipid accumulation, but also the mRNA expression of $PPAR{\alpha}$-related genes in skeletal muscle. Male mice given a fenofibrate-supplemented high fat diet showed decreased body weight gain and adipose tissue mass compared with mice fed a high fat diet alone, whereas fenofibrate did not reduce them in high fat diet-fed female mice. Lipid accumulation in skeletal muscle was inhibited by fenofibrate in male mice, but not in female mice. Gene expression analysis revealed that fenofibrate increased the mRNA levels of $PPAR{\alpha}$ target enzymes only in male mice. Therefore, our results suggest that sex-dependence differences in obesity and intramuscular lipid levels under fenofibrate treatment could be due in part to the differences in skeletal muscle $PPAR{\alpha}$ activation between male and female mice.

정신질환에 있어서의 신경펩타이드 연구 - Endorphin과 cholecystokinin을 중심으로 - (Neuropeptides in Clinical Psychiatric Research : Endorphins and Cholecystokinins)

  • 김영훈;심주철
    • 생물정신의학
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    • 제5권1호
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    • pp.34-45
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    • 1998
  • 단가아민 신경전달물질과 신경펩타이드의 가장 큰 차이점은 합성과정에 있다. 시냅스에서의 활동과 비활성화 과정에서도 양자의 차이는 뚜렷하다. 단가아민 신경전달물질의 작용은 매우 단시간 내에 일어나며, 대개는 재흡수기전을 통해 활동이 정지되고, 일부가 효소반응에 의해 비활성물질로 대사된다. 또한 이들은 단가아민 신경전달물질들과 마찬가지로 presynaptic peptidergic receptor를 갖는다는 사실이 알려져 있으며, 신경펩타이드 분비를 조절하는 자가수용체도 갖고 있다. 신경펩타이드의 시냅스전 세포로의 재흡수기전에 대해서는 아직 밝혀져 있지 않다. 신경펩타이드들도 시냅스 후막의 수용체로 확산되어 이차전령, 삼차전령을 통해 생물학적 반응을 일으킨다는 것은 단가아민 신경전달 물질과 동일하다. 본래 신경세포는 자극에 의해 glycoproteins, enzymes, inorganic ions, metal ions, phospholipids, purines, amines, peptides 등의 물질들을 함께 분비한다. 이들 중에는 신경전달물질의 기준에 부합되는 것도 있으나, 대다수는 기능이 없다. 때로는 수 종류의 신경전달물질들과 신경신경펩타이드들이 한가지 신경전달물질의 분비에 관여하기도 한다. 저자들은 현재 임상연구에서 괄목할 만한 진전을 보이고 있는 두가지 신경펩타이드들에 대해 그 신경생물학적 측면과 임상적 측면을 고찰하였다. 알코올의 신경생리에 있어 가장 흥미있는 것은 아마 강화기전일 것이다. 내인성 opioid계 물질들이 알코올의 강화효과와 관계가 있다는 근거들은 많다. Naltrexone은 수용체 차단을 통해 이러한 강화기전을 차단함으로서 음주욕을 감소시키는 것으로 해석된다. Opioid reinforcement는 변연계의 도파민 활성화를 통해 이루어진다. 이는 알코올의 강화에 도파민이 관여한다는 사실과도 관계된다. 이를 도파민-알코올 강화 가설이라 한다. 기타 세로토닌도 알코올의 강화를 중재하는 신경전달물질로 생각되고 있다. 선택적 세로토닌 재흡수 차단제를 장기간 사용하거나, $5-HT_3$ 수용체 길항제를 사용하면 음주욕이 감소된다고 알려져 있다. 신경전달물질계간에는 중요한 상호작용이 있다. 알코올이 측중격핵에서 도파민의 분비를 촉진시키는 기전에도 여러 신경전달계의 상호작용이 관여된다. 이의 기전에 생리적 수준에서 관여되는 대표적인 물질로는 (1) opiates, (2) serotonin, (3) amino acids, (4) 기타 neuropeptide들을 들 수 있다. Opiate 수용체 길항제들은 측중격핵에서 도파민 분비를 차단하고, $5-HT_3$ 수용체 효현제는 이를 자극한다. 이들을 총체적으로 종합하면, 도파민, 세로토닌, opiate 수용체들을 조절하면 알콜리즘을 치료할 수 있다는 것이다. CCK는 흥분성 신경전달물질로 밝혀지고 있으며, 진통 및 morphine에 대한 내성형성, 포만, 기억 등의 정신병리에 일부 관여하나, 역시 최근 가장 주목을 받는 것은 CCK계가 불안의 병리에 관여한다는 소견이다. 이 분야의 연구에 기폭제가 된 것은 CCK-4가 공황발작을 유발한다는 임상 연구결과로부터 비롯된다. 이에 의한 불안반응은 자연유발된 공황발작과 거의 같으며, 정상인과 공황장애 환자를 구별하는 민감도를 갖고 있다. 이 CCK-4에 의해 유발된 공황발작은 $CCK_B$ 길항제들에 의해 차단된다. 즉 공황불안의 기전에 $CCK_B$ 수용체가 관여할 가능성이 있다. 따라서 공황발작이 $CCK_B$ 수용체의 민감도 결함으로 추정될 수 있다. 또한 이 반응은 imipramine과 benzodiazepine계 약물들에 의해 차단됨이 알려져 있다. 이 공황 불안의 형성 기전에 다른 신경전달계와의 상호작용이 있다. 본고에서는 특히 benzodiazepine계와의 상호작용 및 5-HT계와의 상호작용을 거론하였다. 향후 CCK 길항제들이 항불안제로 개발될 전망이다. 이들은 내성형성, 금단증상, 진정작용 등의 문제가 없으므로 새로운 항불안제로 기대된다.

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Gene Expression Profiling of the Rewarding Effect Caused by Methamphetamine in the Mesolimbic Dopamine System

  • Yang, Moon Hee;Jung, Min-Suk;Lee, Min Joo;Yoo, Kyung Hyun;Yook, Yeon Joo;Park, Eun Young;Choi, Seo Hee;Suh, Young Ju;Kim, Kee-Won;Park, Jong Hoon
    • Molecules and Cells
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    • 제26권2호
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    • pp.121-130
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    • 2008
  • Methamphetamine, a commonly used addictive drug, is a powerful addictive stimulant that dramatically affects the CNS. Repeated METH administration leads to a rewarding effect in a state of addiction that includes sensitization, dependence, and other phenomena. It is well known that susceptibility to the development of addiction is influenced by sources of reinforcement, variable neuroadaptive mechanisms, and neurochemical changes that together lead to altered homeostasis of the brain reward system. These behavioral abnormalities reflect neuroadaptive changes in signal transduction function and cellular gene expression produced by repeated drug exposure. To provide a better understanding of addiction and the mechanism of the rewarding effect, it is important to identify related genes. In the present study, we performed gene expression profiling using microarray analysis in a reward effect animal model. We also investigated gene expression in four important regions of the brain, the nucleus accumbens, striatum, hippocampus, and cingulated cortex, and analyzed the data by two clustering methods. Genes related to signaling pathways including G-protein-coupled receptor-related pathways predominated among the identified genes. The genes identified in our study may contribute to the development of a gene modeling network for methamphetamine addiction.

주정중독환자의 혈소판막과 $^{125}I-LSD$ 결합에 관한 연구 (The Binding Study of $^{125}I-LSD$ to Platelet Membrane in Alcoholism)

  • 정영철;은홍배
    • 생물정신의학
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    • 제3권2호
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    • pp.245-250
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    • 1996
  • 본 연구는 알코올사용장애 환자의 혈소판막에 있는 serotonin수용체가 대조군과 비교했을 때 어떤 차이가 있는지 알아보기 위해 시행되었다. $_{125}I-LSD$를 radioligand로 사용하여 포화반응을 해 봄으로서 다음의 결과를 얻었다. 1) 환자군과 대조군간은 $B_{max}$에 있어서만 유의한 차이를 보였다(P<0.0017). 2) Type 1군과 type 2군 사이 역시 $B_{max}$에 있어서만 유의한 차이를 보였다(P<0.0396). 3) 알코올남용군과 알코올의존군 사이의 $B_{max}$$K_d$는 모두 유의한 차이가 없었다. 위 결과들은 알코올사용장애의 serotonin 결핍가설을 지지해주며 혈소판의 serotonin 수용체 수의 증가가 알코올사용장애의 trait marker가 될 수 있음을 시사해 준다.

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PMA에 의한 중성구의 당섭취 기전 연구 (Mechanism of Glucose Uptake on PMA Stimulated Neutrophils)

  • 백진영;고봉호;유만길;진광호
    • 대한임상검사과학회지
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    • 제39권3호
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    • pp.249-255
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    • 2007
  • While respiratory burst enhances neutrophil glucose utilization, many neutrophil functions are critically influenced by extracellular matrix interaction and phosphoinositide-3-OH kinase (PI3K) signaling. We thus evaluated the role of RGD integrin occupancy and PI3K inhibition on respiratory burst and [18F]FDG uptake of stimulated neutrophils. Human neutrophils were stimulated by 100 ng/mL phorbol-myristate-acetate (PMA), and respiratory burst was measured by cumulative luminescence with lucigenin. [18F]FDG uptake and total hexokinase activity was measured 20 min after PMA stimulation in the presence or absence of soluble RGD peptides (200 g/mL) and/or the PI3K inhibitor wortmannin (200 nM). PMA induced a 71.70.9 fold increase in neutrophil oxygen intermediate generation. [18F]FDG uptake was increased to $194.6{\pm} 3.7%$ and hexokinase activity to $145.0{\pm}2.0%$ of basal levels (both p<0.0005). RGD peptides attenuated respiratory burst activation to $35.6{\pm}0.2%$ (p<0.005), but did not inhibit stimulated [18F]FDG uptake or hexokinase activity. In contrast, without affecting respiratory burst activation, wortmannin inhibited PMA stimulated [18F]FDG uptake to $66.9{\pm}1.6%$ and hexokinase activity to $81.0{\pm}4.2%$ (both P<0.0005), demonstrating its dependence on PI3K activity. Neither RGD nor wortmannin reversed the other's inhibitory effect on stimulated [18F]FDG uptake and hexokinase activity or respiratory burst, which suggests the involvement of distinct signaling pathways. Neutrophil [18F]FDG uptake is enhanced by PMA through a mechanism that requires PI3K activity but is independent of integrin receptor occupancy or respiratory burst activation.

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초기 성인기 한국인에서 도파민 D4 수용체의 유전적 다형성, 기질특성, 음주행동 사이의 연관성 (The Association among the Genetic Polymorphism of Dopamine D4 Receptor, Temperament and Alcohol Drinking Behavior in Young Korean Adults)

  • 남영우;이상익;신철진;손정우;김시경
    • 생물정신의학
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    • 제18권2호
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    • pp.101-108
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    • 2011
  • Objectives The aim of this study is to explore the association among DRD4 polymorphism, temperament and alcohol drinking behavior of Koreans in their early adulthood. Method Participants were 172 healthy Korean adults (mean age $28.1{\pm}0.8$). Their temperament was assessed with the Temperament and Character Inventory (TCI) and their alcohol drinking behavior were evaluated with a self-reported questionnaire including the CAGE and the Korean version of Alcohol Use Disorder Identification Test (AUDIT-K). DRD4 exon III 48 base pair variable number of tandem repeats (VNTR) was genotyped by PCR. Results No significant association was found between DRD4 polymorphism and TCI temperament dimension (novelty seeking, harm avoidance, reward dependence, and persistence) as well as alcohol drinking behavior scales. However, novelty seeking was significantly associated with alcohol drinking behavior. The higher level of novelty seeking was associated with the higher severity index of drinking (B = -0.225, p < 0.001) and problematic alcohol use on the CAGE and AUDIT-K [Odds Ratio (OR) = 1.111, 95% Confidence Interval (CI) 1.021-1.209, p = 0.015, OR = 1.087, 95% CI 1.009-1.170, p = 0.028]. Conclusion In our study, while there is no significant association of DRD4 polymorphism with temperament and alcohol drinking behavior, novelty seeking affects problematic alcohol use. Results suggest that novelty seeking may play an important role in problematic alcohol use in young Korean adults.

Pharmacological Action of Panax Ginseng on the Behavioral Toxicities Induced by Psychotropic Agents

  • Kim Hyoung-Chun;Shin Eun-Joo;Jang Choon-Gon;Lee Myung-Koo;Eun Jae-Soon;Hong Jin-Tae;Oh Ki-Wan
    • Archives of Pharmacal Research
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    • 제28권9호
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    • pp.995-1001
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    • 2005
  • Morphine-induced analgesia has been shown to be antagonized by ginseng total saponins (GTS), which also inhibit the development of analgesic tolerance to and physical dependence on morphine. GTS is involved in both of these processes by inhibiting morphine-6-dehydrogenase, which catalyzes the synthesis of morphinone from morphine, and by increasing the level of hepatic glutathione, which participates in the toxicity response. Thus, the dual actions of ginseng are associated with the detoxification of morphine. In addition, the inhibitory or facilitated effects of GTS on electrically evoked contractions in guinea pig ileum (I-L-receptors) and mouse vas deferens $(\delta-receptors)$ are not mediated through opioid receptors, suggesting the involvement of non-opioid mechanisms. GTS also attenuates hyperactivity, reverse tolerance (behavioral sensitization), and conditioned place preference induced by psychotropic agents, such as methamphetamine, cocaine, and morphine. These effects of GTS may be attributed to complex pharmacological actions between dopamine receptors and a serotonergic/adenosine $A_{2A}1\delta-opioid$ receptor complex. Ginsenosides also attenuate the morphine-induced cAMP signaling pathway. Together, the results suggest that GTS may be useful in the prevention and therapy of the behavioral side effects induced by psychotropic agents.