Hypidone hydrochloride(YL-0919),the 5-HT1A/6 agonists and 5-HT reuptake inhibitor,is a novel potent antidepressant with original chemical structure.Previous studies confirmed that YL-0919 has significant antidepressan...Hypidone hydrochloride(YL-0919),the 5-HT1A/6 agonists and 5-HT reuptake inhibitor,is a novel potent antidepressant with original chemical structure.Previous studies confirmed that YL-0919 has significant antidepressant-and anxiolytic-like effects.Compared with first-line antidepressants,YL-0919 possesses rapid-onset and cognition-enhancing advantages without causing sexual disorders.Recently,it has been found that it has high affinity with 5-HT6 receptor.Objective:To study the target characteristics of YL-0919 to 5-HT6 receptors,and to explore the relationship between the 5-HT6 receptor and the cognition-enhancing,antidepressant/anxiolytic-like effects of YL-0919 and targeting mechanisms.Methods:The radioligand binding inhibition test and[35S]-GTPγS binding assay were used to evaluate the binding affinity of YL-0919 to 5-HT6 receptor in rat striatum,transient CHO cell line and stable Hela cell lines.Novel object recognition(NOR),Morris water maze(MWM)and step-down test(SD)were used to evaluate the cognition-enhancing activity of YL-0919,and the selective 5-HT6 receptor antagonist SB271046 was used to evaluate the relationship between behavioral improvement caused by YL-0919 and 5-HT6 receptor activation.To study the 5-HT6 receptor related mechanisms of YL-0919,the competitive immunofluorescence assay were used to examine the cAMP level in h5-HT6 receptor-expressed in the Hela cells Results:①Radioligand competitive binding experiments showed that YL-0919 had high binding affinity with 5-HT6 receptors in the rat striatum,the CHO cells transiently expressed the h5-HT6 receptor and the Hela cells stably expressed the h5-HT6 receptor,with Ki of 10.72,14.76 and 28.12 nM respectively;[35S]-GTPγS showed full agonist characteristics of YL-0919 in striatum and cells,with EC50 of 71.23,64.73 and 52.92 nM respectively,and the maximum efficiency(Emax)reached 100%which is the same to the 5-HT6 receptor agonist WAY208466,suggesting that YL-0919 is a full 5-HT6 receptor agonist.②Cognitive-related behavioral tests showed that subchronic oral administration of YL-0919(1.25~2.5 mg·kg-1)could significantly increase the recognition index in NOR,the entries and duration in the target quadrant,the entries crossing the platform in WMW,shortened the first time crossing the platform in MWM and the step-down latency in SD,suggesting the cognitionenhancing effects of YL-0919;compared with Vilazodone,the partial agonist of 5-HT1A receptor and 5-HT reuptake inhibitor,which of no such functions;Further study showed that 5-HT6 receptor antagonist SB271046(10 mg·kg-1)completely blocked the cognition-enhancing effects of YL-0919 without affecting the cognitive activity itself,suggesting that 5-HT6 receptor activation might be its underlying mechanisms;③Mechanism study found that YL-0919 could significantly increase cAMP levels in the Hela cells stably-expressed the h5-HT6 receptor,which could be dose-dependent blocked by SB271046.Conclusion:YL-0919 is a full agonist of 5-HT6 receptor.YL-0919 showed significant cognition-enhancing effects in various kinds of animal models,and its underlying important mechanism might be activating 5-HT6 receptor.In addition,enhancing downstream cAMP-CREB signaling pathway of 5-HT6 receptor might at least partially mediate the above process.Moreover,5-HT6 receptor activation might also be one of the mechanisms of antidepressant-and anxiolytic-like effects of YL-0919.In conclusion,this study confirmed the 5-HT6 receptor-related mechanisms of YL-0919,the 1.1 types of antidepressants,laying the experimental foundation for developing novel antidepressants with cognition-enhancing effects.展开更多
Neuropathic pain,often featuring allodynia,imposes significant physical and psychological burdens on patients,with limited treatments due to unclear central mechanisms.Addressing this challenge remains a crucial unsol...Neuropathic pain,often featuring allodynia,imposes significant physical and psychological burdens on patients,with limited treatments due to unclear central mechanisms.Addressing this challenge remains a crucial unsolved issue in pain medicine.Our previous study,using protein kinase C gamma(PKCγ)-tdTomato mice,highlights the spinal feedforward inhibitory circuit involving PKCγ neurons in gating neuropathic allodynia.However,the regulatory mechanisms governing this circuit necessitate further elucidation.We used diverse transgenic mice and advanced techniques to uncover the regulatory role of the descending serotonin(5-HT)facilitation system on spinal PKCγ neurons.Our findings revealed that 5-HT neurons from the rostral ventromedial medulla hyperpolarize spinal inhibitory interneurons via 5-HT_(2C) receptors,disinhibiting the feedforward inhibitory circuit involving PKCγ neurons and exacerbating allodynia.Inhibiting spinal 5-HT_(2C) receptors restored the feedforward inhibitory circuit,effectively preventing neuropathic allodynia.These insights offer promising therapeutic targets for neuropathic allodynia management,emphasizing the potential of spinal 5-HT_(2C) receptors as a novel avenue for intervention.展开更多
It has been reported that augmentative effect of tetrandrine on pentobarbital hypnosis in mice may be related to serotonergic system. The present study was undertaken to investigate the interaction of tetrandrine and ...It has been reported that augmentative effect of tetrandrine on pentobarbital hypnosis in mice may be related to serotonergic system. The present study was undertaken to investigate the interaction of tetrandrine and different 5-HT receptors on pentobarbital-induced sleep by using the loss-of-righting reflex method. The results showed that augmentative effect of tetrandrine on pentobarbital hypnosis in mice were potentiated by the p-MPPI (5-HT1A receptor antagonist) (1 mg/kg, i.p.) and ketanserin (5-HT2A/2C receptor antagonist) (1.5 mg/kg, i.p.), respectively. Pretreatment with either 8-OH-DPAT (5-HT1A receptor agonist) (0.1 mg/kg, s.c.) or DOI (5-HT2A/2C receptor agonist) (0.2 mg/kg, i.p.) significantly decreased pentobarbital-induced sleep time, and tetrandrine (60 mg/kg, i.g.) significantly reversed this effect. These results suggest that both the 5-HTLA and 5-HT2A/2C subfamily may be involved in the potentiating mechanism of tetrandrine's effects on pantobarbital hypnosis.展开更多
5-HT1A receptor is a crucial therapeutic target for the treatment of anxiety, depression, pain, etc. Design and preparation of potent 5-HT1A receptor ligands for drug discovery has attracted extensive attention in the...5-HT1A receptor is a crucial therapeutic target for the treatment of anxiety, depression, pain, etc. Design and preparation of potent 5-HT1A receptor ligands for drug discovery has attracted extensive attention in the past few years. In this paper, a three dimensional model of human 5-HT1A receptor was constructed by means of homology modeling. And the docking of MP349 to the receptor suggested a reliable binding mode for 5-HT1A receptor ligand. Based on this ligand-receptor binding mode, an elaborate receptor structure based pharmacophore model was established, which revealed many important features responsible for ligand and 5-HT1A receptor interactions. A virtual screening experiment verified the ability of this pharmacophore model to discover true 5-HT1A receptor ligand. The results of this research would provide important information for further optimizations of 5-HT1A receptor ligands and guide related new lead discoveries.展开更多
文摘Hypidone hydrochloride(YL-0919),the 5-HT1A/6 agonists and 5-HT reuptake inhibitor,is a novel potent antidepressant with original chemical structure.Previous studies confirmed that YL-0919 has significant antidepressant-and anxiolytic-like effects.Compared with first-line antidepressants,YL-0919 possesses rapid-onset and cognition-enhancing advantages without causing sexual disorders.Recently,it has been found that it has high affinity with 5-HT6 receptor.Objective:To study the target characteristics of YL-0919 to 5-HT6 receptors,and to explore the relationship between the 5-HT6 receptor and the cognition-enhancing,antidepressant/anxiolytic-like effects of YL-0919 and targeting mechanisms.Methods:The radioligand binding inhibition test and[35S]-GTPγS binding assay were used to evaluate the binding affinity of YL-0919 to 5-HT6 receptor in rat striatum,transient CHO cell line and stable Hela cell lines.Novel object recognition(NOR),Morris water maze(MWM)and step-down test(SD)were used to evaluate the cognition-enhancing activity of YL-0919,and the selective 5-HT6 receptor antagonist SB271046 was used to evaluate the relationship between behavioral improvement caused by YL-0919 and 5-HT6 receptor activation.To study the 5-HT6 receptor related mechanisms of YL-0919,the competitive immunofluorescence assay were used to examine the cAMP level in h5-HT6 receptor-expressed in the Hela cells Results:①Radioligand competitive binding experiments showed that YL-0919 had high binding affinity with 5-HT6 receptors in the rat striatum,the CHO cells transiently expressed the h5-HT6 receptor and the Hela cells stably expressed the h5-HT6 receptor,with Ki of 10.72,14.76 and 28.12 nM respectively;[35S]-GTPγS showed full agonist characteristics of YL-0919 in striatum and cells,with EC50 of 71.23,64.73 and 52.92 nM respectively,and the maximum efficiency(Emax)reached 100%which is the same to the 5-HT6 receptor agonist WAY208466,suggesting that YL-0919 is a full 5-HT6 receptor agonist.②Cognitive-related behavioral tests showed that subchronic oral administration of YL-0919(1.25~2.5 mg·kg-1)could significantly increase the recognition index in NOR,the entries and duration in the target quadrant,the entries crossing the platform in WMW,shortened the first time crossing the platform in MWM and the step-down latency in SD,suggesting the cognitionenhancing effects of YL-0919;compared with Vilazodone,the partial agonist of 5-HT1A receptor and 5-HT reuptake inhibitor,which of no such functions;Further study showed that 5-HT6 receptor antagonist SB271046(10 mg·kg-1)completely blocked the cognition-enhancing effects of YL-0919 without affecting the cognitive activity itself,suggesting that 5-HT6 receptor activation might be its underlying mechanisms;③Mechanism study found that YL-0919 could significantly increase cAMP levels in the Hela cells stably-expressed the h5-HT6 receptor,which could be dose-dependent blocked by SB271046.Conclusion:YL-0919 is a full agonist of 5-HT6 receptor.YL-0919 showed significant cognition-enhancing effects in various kinds of animal models,and its underlying important mechanism might be activating 5-HT6 receptor.In addition,enhancing downstream cAMP-CREB signaling pathway of 5-HT6 receptor might at least partially mediate the above process.Moreover,5-HT6 receptor activation might also be one of the mechanisms of antidepressant-and anxiolytic-like effects of YL-0919.In conclusion,this study confirmed the 5-HT6 receptor-related mechanisms of YL-0919,the 1.1 types of antidepressants,laying the experimental foundation for developing novel antidepressants with cognition-enhancing effects.
基金supported by the National Natural Science Foundation of China(81971058,82371226,82101295,82301398)the National Funded Postdoctoral Researcher Program(GZC20233585)The Boost Plan of Xijing Hospital(XJZT24QN25,XJZT25CX22).
文摘Neuropathic pain,often featuring allodynia,imposes significant physical and psychological burdens on patients,with limited treatments due to unclear central mechanisms.Addressing this challenge remains a crucial unsolved issue in pain medicine.Our previous study,using protein kinase C gamma(PKCγ)-tdTomato mice,highlights the spinal feedforward inhibitory circuit involving PKCγ neurons in gating neuropathic allodynia.However,the regulatory mechanisms governing this circuit necessitate further elucidation.We used diverse transgenic mice and advanced techniques to uncover the regulatory role of the descending serotonin(5-HT)facilitation system on spinal PKCγ neurons.Our findings revealed that 5-HT neurons from the rostral ventromedial medulla hyperpolarize spinal inhibitory interneurons via 5-HT_(2C) receptors,disinhibiting the feedforward inhibitory circuit involving PKCγ neurons and exacerbating allodynia.Inhibiting spinal 5-HT_(2C) receptors restored the feedforward inhibitory circuit,effectively preventing neuropathic allodynia.These insights offer promising therapeutic targets for neuropathic allodynia management,emphasizing the potential of spinal 5-HT_(2C) receptors as a novel avenue for intervention.
基金National Natural Science Foundation of China(Grant No.30772556 and 30640070)Research Fund of Janssen Research Council and the‘985'Project in Peking University.
文摘It has been reported that augmentative effect of tetrandrine on pentobarbital hypnosis in mice may be related to serotonergic system. The present study was undertaken to investigate the interaction of tetrandrine and different 5-HT receptors on pentobarbital-induced sleep by using the loss-of-righting reflex method. The results showed that augmentative effect of tetrandrine on pentobarbital hypnosis in mice were potentiated by the p-MPPI (5-HT1A receptor antagonist) (1 mg/kg, i.p.) and ketanserin (5-HT2A/2C receptor antagonist) (1.5 mg/kg, i.p.), respectively. Pretreatment with either 8-OH-DPAT (5-HT1A receptor agonist) (0.1 mg/kg, s.c.) or DOI (5-HT2A/2C receptor agonist) (0.2 mg/kg, i.p.) significantly decreased pentobarbital-induced sleep time, and tetrandrine (60 mg/kg, i.g.) significantly reversed this effect. These results suggest that both the 5-HTLA and 5-HT2A/2C subfamily may be involved in the potentiating mechanism of tetrandrine's effects on pantobarbital hypnosis.
文摘5-HT1A receptor is a crucial therapeutic target for the treatment of anxiety, depression, pain, etc. Design and preparation of potent 5-HT1A receptor ligands for drug discovery has attracted extensive attention in the past few years. In this paper, a three dimensional model of human 5-HT1A receptor was constructed by means of homology modeling. And the docking of MP349 to the receptor suggested a reliable binding mode for 5-HT1A receptor ligand. Based on this ligand-receptor binding mode, an elaborate receptor structure based pharmacophore model was established, which revealed many important features responsible for ligand and 5-HT1A receptor interactions. A virtual screening experiment verified the ability of this pharmacophore model to discover true 5-HT1A receptor ligand. The results of this research would provide important information for further optimizations of 5-HT1A receptor ligands and guide related new lead discoveries.