• 제목/요약/키워드: dopamine receptor

검색결과 237건 처리시간 0.021초

Implications of Circadian Rhythm in Dopamine and Mood Regulation

  • Kim, Jeongah;Jang, Sangwon;Choe, Han Kyoung;Chung, Sooyoung;Son, Gi Hoon;Kim, Kyungjin
    • Molecules and Cells
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    • 제40권7호
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    • pp.450-456
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    • 2017
  • Mammalian physiology and behavior are regulated by an internal time-keeping system, referred to as circadian rhythm. The circadian timing system has a hierarchical organization composed of the master clock in the suprachiasmatic nucleus (SCN) and local clocks in extra-SCN brain regions and peripheral organs. The circadian clock molecular mechanism involves a network of transcription-translation feedback loops. In addition to the clinical association between circadian rhythm disruption and mood disorders, recent studies have suggested a molecular link between mood regulation and circadian rhythm. Specifically, genetic deletion of the circadian nuclear receptor Rev-$erb{\alpha}$ induces mania-like behavior caused by increased midbrain dopaminergic (DAergic) tone at dusk. The association between circadian rhythm and emotion-related behaviors can be applied to pathological conditions, including neurodegenerative diseases. In Parkinson's disease (PD), DAergic neurons in the substantia nigra pars compacta progressively degenerate leading to motor dysfunction. Patients with PD also exhibit non-motor symptoms, including sleep disorder and neuropsychiatric disorders. Thus, it is important to understand the mechanisms that link the molecular circadian clock and brain machinery in the regulation of emotional behaviors and related midbrain DAergic neuronal circuits in healthy and pathological states. This review summarizes the current literature regarding the association between circadian rhythm and mood regulation from a chronobiological perspective, and may provide insight into therapeutic approaches to target psychiatric symptoms in neurodegenerative diseases involving circadian rhythm dysfunction.

파킨슨 병 이외의 적응증을 가진 환자의 Pramipexole 혹은 Ropinirole 사용과 관련된 충동 조절 장애: 주제 범위 문헌 고찰 (Impulse Control Disorders associated with Pramipexole/Ropinirole Use in Non-Parkinson's Disease: A Scoping Review)

  • 정태현;서승민;송현진;전나경
    • 한국임상약학회지
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    • 제30권4호
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    • pp.250-258
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    • 2020
  • Background: Dopamine receptor agonists (DRAs) have been associated with impulse control disorders (ICDs) in Parkinson's disease (PD) in preliminary studies. Whether the association holds true when DRAs are used to treat non-PD, such as restless legs syndrome, prolactinoma, and several mood disorders is uncertain. Objective: The present study aimed to understand the research gaps related to the risk of ICDs associated with pramipexole or ropinirole (PRX/ROP) use as a treatment for specific underlying diseases, excluding Parkinson's disorders. Methods: We conducted a scoping review, systematically searching databases to identify literature on the types, prevalence, and factors associated with ICD in non-PD patients receiving PRX/ROP. All relevant information that helped understand the epidemiology of ICDs among non-PD patients taking PRX/ROP were extracted and analyzed. We also evaluated the potential associations between PRX/ROP and ICDs, utilizing the Naranjo scale or statistical analysis, depending on the type of literature. Results: We included 24 articles (19 case reports or case series and 5 population-based studies) in this scoping review. Evaluating the 19 case reports or case series using Naranjo scores led to the discovery of a possible link between PRX/ROP exposure and ICDs. However, important information to assess causality is frequently missing. Moreover, the population-based studies lack diversity in the study populations and enough study samples to draw conclusive results. Conclusion: Our scoping review suggests that the currently available literature requires more details in future case reports and for well-powered studies in various disease conditions where PRX/ROP is frequently used.

5-Hydroxytryptophan Reduces Levodopa-Induced Dyskinesia via Regulating AKT/mTOR/S6K and CREB/ΔFosB Signals in a Mouse Model of Parkinson's Disease

  • Yujin Choi;Eugene Huh;Seungmin Lee;Jin Hee Kim;Myoung Gyu Park;Seung-Yong Seo;Sun Yeou Kim;Myung Sook Oh
    • Biomolecules & Therapeutics
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    • 제31권4호
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    • pp.402-410
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    • 2023
  • Long-term administration of levodopa (L-DOPA) to patients with Parkinson's disease (PD) commonly results in involuntary dyskinetic movements, as is known for L-DOPA-induced dyskinesia (LID). 5-Hydroxytryptophan (5-HTP) has recently been shown to alleviate LID; however, no biochemical alterations to aberrant excitatory conditions have been revealed yet. In the present study, we aimed to confirm its anti-dyskinetic effect and to discover the unknown molecular mechanisms of action of 5-HTP in LID. We made an LID-induced mouse model through chronic L-DOPA treatment to 6-hydroxydopamine-induced hemi-parkinsonian mice and then administered 5-HTP 60 mg/kg for 15 days orally to LID-induced mice. In addition, we performed behavioral tests and analyzed the histological alterations in the lesioned part of the striatum (ST). Our results showed that 5-HTP significantly suppressed all types of dyskinetic movements (axial, limb, orolingual and locomotive) and its effects were similar to those of amantadine, the only approved drug by Food and Drug Administration. Moreover, 5-HTP did not affect the efficacy of L-DOPA on PD motor manifestations. From a molecular perspective, 5-HTP treatment significantly decreased phosphorylated CREB and ΔFosB expression, commonly known as downstream factors, increased in LID conditions. Furthermore, we found that the effects of 5-HTP were not mediated by dopamine1 receptor (D1)/DARPP32/ERK signaling, but regulated by AKT/mTOR/S6K signaling, which showed different mechanisms with amantadine in the denervated ST. Taken together, 5-HTP alleviates LID by regulating the hyperactivated striatal AKT/mTOR/S6K and CREB/ΔFosB signaling.

Selective blockade of spinal D2DR by levo-corydalmine attenuates morphine tolerance via suppressing PI3K/Akt-MAPK signaling in a MOR-dependent manner

  • Dai, Wen-Ling;Liu, Xin-Tong;Bao, Yi-Ni;Yan, Bing;Jiang, Nan;Yu, Bo-Yang;Liu, Ji-Hua
    • Experimental and Molecular Medicine
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    • 제50권11호
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    • pp.6.1-6.12
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    • 2018
  • Morphine tolerance remains a challenge in the management of chronic pain in the clinic. As shown in our previous study, the dopamine D2 receptor (D2DR) expressed in spinal cord neurons might be involved in morphine tolerance, but the underlying mechanisms remain to be elucidated. In the present study, selective spinal D2DR blockade attenuated morphine tolerance in mice by inhibiting phosphatidylinositol 3 kinase (PI3K)/serine-threonine kinase (Akt)-mitogen activated protein kinase (MAPK) signaling in a ${\mu}$ opioid receptor (MOR)-dependent manner. Levo-corydalmine (l-CDL), which exhibited micromolar affinity for D2DR in D2/CHO-K1 cell lines in this report and effectively alleviated bone cancer pain in our previous study, attenuated morphine tolerance in rats with chronic bone cancer pain at nonanalgesic doses. Furthermore, the intrathecal administration of l-CDL obviously attenuated morphine tolerance, and the effect was reversed by a D2DR agonist in mice. Spinal D2DR inhibition and l-CDL also inhibited tolerance induced by the MOR agonist DAMGO. l-CDL and a D2DR small interfering RNA (siRNA) decreased the increase in levels of phosphorylated Akt and MAPK in the spinal cord; these changes were abolished by a PI3K inhibitor. In addition, the activated Akt and MAPK proteins in mice exhibiting morphine tolerance were inhibited by a MOR antagonist. Intrathecal administration of a PI3K inhibitor also attenuated DAMGO-induced tolerance. Based on these results, l-CDL antagonized spinal D2DR to attenuate morphine tolerance by inhibiting PI3K/Akt-dependent MAPK phosphorylation through MOR. These findings provide insights into a more versatile treatment for morphine tolerance.

꼼치, Liparis tanakae에서 특이하게 발현되는 새로운 유전인자의 검색 (Molecular Cloning of Novel Genes Specifically Expressed in Snailfish, Liparis tanakae)

  • 송인선;이석근;손진기
    • 한국발생생물학회지:발생과생식
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    • 제4권1호
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    • pp.67-77
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    • 2000
  • 심해에서 서식하며 특이한 조직형태를 갖고 있는 꼼치조직에서 cDNA를 제작하여 클로닝을 통해서, 꼼치에서 특이하게 발현하는 유전인자를 검색하였다. 그 결과 62례의 클론이 알려진 유전자에 동질성이 있었는데 이들은 thioesterase가 9례, myosin이 8례, creatine kinase가 7례, skeletal alpha-actin이 6례, parvalbumin b와 ribosomal protein이 각각 5례, type I collagen과 muscle troponin이 각각 3례, dopamine receptor, histatin, 그리고 heat shock protein이 각각 2례, cystatin, lectin, statherin, secretory carrier membrane protein, keratin type I, desmin, chloroplast, muscle tropomyosin, reticulum calcium ATPase, ribonucleoprotein이 각각 1례로 나타났다. 나머지 클론은 동질성이 낮거나 비반복성으로 나타났으며, 이 중 in situ hybridization으로 조직에서 특이하게 발현되는 5종류의 클론을 선택하여 분석하였으며, C 말단 단백질 구조와 특색(motif)을 분석하였다. 5종류의 클론에서 C9O-77은 약 5000bp 크기로 상피조직, 점액조직, 섬유조직 그리고 교원질 조직에서 강한 양성반응을 보이는 세포의 기질단백질로 예상되었다. C9O-116은 약 1500bp 크기로 섬유조직, 상피조직 그리고 점액조직에서 약한 양성반응을 보였고, 근육 다발 주변 부위 세포에서 매우 강한 양성반응을 보이는 막투과성 단백질로 예상되었다. C9O-130은 약 1200bp 크기로 상피조직, 근육조직 그리고 점액조직에서 양성반응을 나타냈으며, 특히 상피조직에서 강한 양성반응을 나타내는 세포내 단백질로 예상되었다. C9O-161은 약 2000bp 크기로 상피조직 과 근육조직 그리고 점액성 섬유조직에서 약한 양성반응을 보였고, 상피세포에서 강한 양성반응을 보였으며, 근육다발을 둘러싸는 섬유성 세포에서도 강한 양성반응을 보이는 세포외 기질단백질로 추측되었다. C9O-171은 약 1000bp크기로 상피조직, 근육조직 그리고 섬유기질 조직에 널리 강한 양성반응을 나타냈으며 교원띠조직에서도 양성반응을 보이는 전사인자로 추측되었다.

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모단피의 PC12 cell 산화억제 효과 및 neuronal 유전자 발현 profile 분석에 대한 연구 (Effect of Moutan Cortex Radicis on gene expression profile of differentiated PC12 rat cells oxidative-stressed with hydrogen peroxide)

  • 김현희;노삼웅;나영인;배현수;신민규;김정숙;홍무창
    • 동의생리병리학회지
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    • 제17권2호
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    • pp.529-541
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    • 2003
  • Yukmijihwang-tang has been widely used as an and-aging herbal medicine for hundred years in Asian countries. Numerous studies show that Yukmijihwangtang has anti-oxidative effect both in vivo and in vitro. It has been reported that Moutan Cortex Radicis extract (MCR) was the most effective herb in Yukmijihwang-tang on undifferentiated PC12 cells upon oxidative-stressed with hydrogen peroxide. The purpose of this study is to; 1) evaluate the recovery of neuronal damage by assessing the anti-oxidant effect of MCR on PC12 cells differentiated with nerve growth factor (NGF), 2) identify candidate genes responsible for anti-oxidative effect on differentiated PC12 cells by oligonucleotide chip microarray. PC12 cells, which were differentiated by treating with NGF, were treated without or with hydrogen peroxide in the presence or absence of various concentration of MCR. Cell survival was determined by using MTS assay. Measurement of intracellular reactive oxygen species (ROS) generation was determined using the H2DCFDA assay The viability of cells treated with MCR was significantly recovered from stressed PC12 cell. In addition, wide rage of concentrations of MCR shows dose-dependent inhibitory effect on ROS production in oxidative-stressed cells. Total RNAs of cells without treatment(Control group), only treated with H₂O₂ (stressed group) and treated with both H₂O₂ and of MCR (MCR group) were isolated, and cDNAs was synthesized using oligoT7(dT) primer. The fragmented cRNAs, synthesized from cDNAs, were applied to Affymetrix GeneChip Rat Neurobiology U34 Array. mRNA of Calcium/calmodulin-dependent protein kinase II delta subunit(CaMKII), neuron glucose transporter (GLUT3) and myelin/oligodendrocyte glycoprotein(MOG) were downregulated in Stressed group comparing to Control group. P2X2-5 receptor (P2X2R-5), P2X2-4 receptor (P2X2R-4), c-fos, 25 kDa synaptosomal attachment protein(SNAP-25a) and GLUT3 were downregulated, whereas A2 adenosine receptor (A2AR), cathechol-O-methyltransferase(COMT), glucose transporter 1 (GLUT1), EST223333, heme oxygenase (HO), VGF, UI-R-CO-ja-a-07-0-Ul.s1 and macrophage migration inhibitory factor (MIF) were upregulated in MCA group comparing to Control group. Expression of Putative potassium channel subunit protein (ACK4), P2X2A-5, P2X2A-4, Interferon-gamma inducing factor isoform alpha precursor (IL-18α), EST199031, P2XR, P2X2 purinoceptor isoform e (P2X2R-e), Precursor interleukin 18 (IL-18) were downregulated, whereas MOO, EST223333, GLUT-1, MIF, Neuronatin alpha, UI-R-C0-ja-a-07-0-Ul.s1, A2. adenosine receptor, COMT, neuron-specific enolase (NSE), HO, VGF, A rat novel protein which is expressed with nerve injury (E12625) were upregulated in MCR group comparing to Stressed group. The results suggest that decreased viability and AOS production of PC12 cell by H₂O₂ may be, at lease, mediated by impaired glucose transporter expression. It is implicated that the MCR treatment protect PC12 cell from oxidative stress via following mechanisms; improving glucose transport into the cell, enhancing expression of anti-oxidative genes and protecting from dopamine cytotoxicity by increment of COMT and MIF expression. The list of differentially expressed genes may implicate further insight on the action and mechanism behind the anti-oxidative effects of herbal extract Moutan Cortex Radicis.

흰쥐 부신에서 카테콜아민 분비작용과 도파민 수용체간의 상관성 (Interrelationship between Dopaminergic Receptors and Catecholamine Secretion from the Rat Adrenal Gland)

  • 임동윤;윤중근;문백
    • 대한약리학회지
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    • 제30권1호
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    • pp.87-100
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    • 1994
  • 도파민 함유세포가 교감신경절에 존재하는 것으로 알려져 있으나, 말초에서 신경전달 물질로써 그의 역할과 작용기전에 대해서 아직까지 알려진 바가 많지 않다. 따라서 본 연구에서는 도파민 $D_2$-수용체의 선택적인 효능약으로 알려진 apomorphine이 흰쥐 적출 관류 부신에서 카테콜아민(CA)분비작용에 미치는 영향을 연구코자 시도하여 다음과 같은 연구결과를 얻었다. $10{\um}M\;Apomorphine$의 비교적 낮은 농도를 부신정맥내에 20분간 관류 하였을때 5.32mM ACh, 56mM KCl, $100{\mu}M$ DMPP 및 $100{\mu}M$ McN-A-343 등의 투여에 의한 CA 분비작용이 의의 있게 감소되었다. Apomorphine 농도를 $30{\mu}M$로 증가시켜 관류하였을때 상기약물에 의한 CA 분비작용은 더욱 억제되었으며 또한 Bay-K-8644에 의한 $100{\mu}M$의 고농도로 전처치 하였을때, ACh, excess $K^+$, DMPP 및 McN-A-343에 의한 CA분비작용은 현저히 차단되었다. 도파민 $D_2$-수용체 차단제인 metoclopramide $(30{\mu}M)$으로 20분간 관류 하였을때 ACh, DMPP 및 McN-A-343에 의한 CA 분비작용은 유의하게 억제된 효과를 나타내었으나 $excess\;{K^+}$에 의한 CA분비작용은 별다른 영향을 받지 않았다. 그러나 metoclopramide $(30{\mu}M)$ 존재하에서 $30{\mu}M$ apomorphine으로 20분간 전처치 하였을때 $excess{K^+}$ 뿐만 아니라 DMPP의 CA 분비작용은 별다른 변화를 받지 않았다. 이상과 같은 실험 연구결과를 종합하여 보면, apomorphine은 cholinergic receptor stimulation과 membrane depolarization에 의한 CA 분비작용을 용량의존적으로 억제하여, 이러한 작용은 억제성 도파민 수용체를 활성화 시킴으로써 흰쥐 부신 수질의 chromaffin cell 내로 칼슘의 유입을 억제하여 나타나는 것으로 사료된다.

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소동물에서 18F-Fallypride의 비방사능에 따른 뇌의 PET이미지와 Binding Potential 차이에 대한 연구 (A study of Brain Micro-PET Imaging and Bindingpotential with a Different Specific Activity of 18F-Fallypride in the Small Animal)

  • 조규상;안성민
    • 한국콘텐츠학회논문지
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    • 제15권9호
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    • pp.418-424
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    • 2015
  • 본 연구에서는 비방사능 값에 따른 소동물 in vivo실험에서 어느 정도의 비방사능에서부터 수용체-리간드의 결합능력의 변화와 선조체에서의 방사능 집적에 변화가 있는지를 규명하고자 실험을 진행하다. 18F-Fallypride을 3가지 값 ; 높은 비방사능 : 43.29~74 GBq/umol, 중간 비방사능 : 20.72~29.23 GBq/umol, 낮은 비방사능 : 6.29~8.51 GBq/umol)으로 나누어 순차적으로 혈관주사 후 Micro PET을 이용하여 90분 동적 스캔 하였다. 스캔 후 양쪽 선조체에서 Binding Potential(BP)을 구한 후 비교 분석하였다. 높은 비방사능과 낮은 비방사능, 중간 비방사능과 낮은 비방사능에서 유의한 차이가 나타났다. 또한 18F-Fallypride을 이용한 PET 영상비교에서는 높은 비방사능과 중간 비방사능에서는 선조체 에서 높은 방사능집적을 보여주었지만, 낮은 비방사능에서는 다른 두 비방사능에 비해 낮은 방사능 집적을 볼 수 있었다. 이는 18F-Fallypride의 약동학적 특성상 D2/D3에 대한 친화성이 좋기 때문에 비방사능 값이 어느 정도 떨어진 상태에서도 BP의 차이가 크지 않았다. 하지만 높은 비방사능에 비해 6.5배 낮은 비방사능 값 부터는 이미지 및 BP의 차이가 유의하게 나왔으므로 앞으로 18F-Fallyprdie을 이용한 선조체 PET연구에서는 이를 고려하여 실험 할 필요가 있을 것이다.

조현병 환자에서 아미설프라이드의 치료반응과 도파민 D3 수용체 유전자다형성의 연관성 (Association Study between Treatment Response of Amisulpride and Dopamine D3 Receptor Gene Polymorphisms)

  • 강승걸;이헌정;이승재;최태영;우정민;김지현;정성원;구본훈;이광헌;김정란;지익성;이종훈
    • 생물정신의학
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    • 제20권3호
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    • pp.91-96
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    • 2013
  • Objectives The aim of this study is to evaluate the association between rs6280 and rs905568 genetic polymorphism of DRD3 gene and the treatment response of amisulpride. Methods After six weeks treatment of amisulpride, 125 schizophrenia patients were interviewed based on the Positive and Negative Syndrome Scale (PANSS) and the Clinical Global Impression-Severity (CGI-S). The genotyping for rs6280 and rs905568 was performed using TaqMan single nucleotide polymorphism (SNP) genotyping assay. Results There was no significant difference in the frequency of genotype and allele of rs6280 between the responders and non-responders based on the total, positive, and general score of PANSS and CGI-S score. However, there was a significant association between this SNP and treatment response in the negative score of PANSS (${\chi}^2=5.23$, p = 0.022). There was no significant association between rs905568 and the response in positive, negative, general, and total PANSS score and CGI-S score. Conclusions This is the first positive association study between DRD3 gene and the treatment response of negative symptoms to amisulpride in Korean schizophrenia patients. A larger scale research on more SNP of the DRD3 gene will make a progress in the study of pharmacogenetics on the treatment response of the amisulpride.

Neuroendocrine Control of Gonadotropin Secretion during the Menstrual Cycle

  • Ryu, Kyung-Za
    • 대한약리학회지
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    • 제23권2호
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    • pp.57-75
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    • 1987
  • Two modalities of gonadotropin secretion, pulsatile gonadotropin and preovulatory gonadotropin surge, have been identified in the mammals. Pulsatile gonadotropin secretion is modulated by the pulsatile pattern of GnRH release and complex ovarian steroid feedback actions. The neural mechansim that regulates the pulsatile release of GnRH in the hypothalamus is called "GnRH pulse generator". Ovarian steroids, estradiol and progesterone, appear to exert thier feedback effects both directly on the pituitary to modulate gonadotropin release and on a hypothalamic site to modulate GnRH release; estradiol primarily affects the amplitude while progesterone decreases the frequency of the pulsatile GnRH. Steroid hormones are known to affect catecholamine transmission in brain. MBH-POA is richly innervated by NE systems and close apposition of NE terminals and GnRH cell bodies occurs in the MBH as well as in the POA. NE normally facilitates pulsatile LH release by acting through ${\alpha}-receptor$ mechanism. However, precise nature of facilitative role of NE transmission in maintaining pulsatile LH has not been clearly understood. Close apposition of DA and GnRH terminals in ME might permit DA to influence GnRH release. Action of DA transmission probably is mediated by axo-axonic contacts between GnRH and DA fibers in the ME. Dopamine transmission does not normally regulate pulsatile LH release, but under certain conditions, increased DA transmission inhibit LH pulse. Endogenous opioid acts to suppress the secretion of GnRH into hypophysial portal circulation, thereby inhibiting gonadotropin secretion. However, an interaction between endogenenous opioid peptides and gonadotropin release is a complex one which involves ovarian hormones as well. LH secretion appears to be most suppressed by endogenenous opioids during the luteal phase, at a time of elevated progesterone secretion. The arcuate nucleus contains not only cell bodies for GnRH and ${\beta}-endorphin$ but also a dense aborization of fibers suggesting that GnRH release is changed by the interactions between GnRH and ${\beta}-endorphin$ cell bodies within the arcuate nucleus. The frequency and amplitude of pulsatile LH release seem to be increased during the preovulatory gonadotropin surge. Estradiol exerts positive feedback action on the hypothalamo-pituitary axis to trigger preovulatory LH surge. GnRH is also crucial hormonal stimulus for preovulatory LH surge. It is unlikely, however, that increased secretion of GnRH during the preovulatory gonadotropin surge represents an obligatory neural signal for generation of the LH discharge in primates including human. Modulation of preovulatory LH surge by catecholamines has been studied almost exclusively in rats. NE and E may be involved in distinct way to accumulate GnRH in the MBH and its release into the hypophysial portal system during the critical period for LH surge on proestrus in rats. However, the mechanisms whereby augmented adrenergic transmission may facilitate the formation and accumulation of GnRH in the ME-ARC nerve terminals before the LH surge have not been clearly understood.

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