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在庫・価格 : 2025年10月06日 00時49分 現在

商品名 商品コード メーカー 包装 価格 在庫 リスト
Anti-Gephyrin, Mouse-Mono(mAb7a(GlyR7a))
データシート
147021 SS2シナプティックシステムズ
Synaptic Systems GmbH
300 μl ¥124,000
(未発注)
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在庫・価格 : 2025年10月06日 00時49分 現在

Anti-Gephyrin, Mouse-Mono(mAb7a(GlyR7a))

  • 商品コード:147021
  • メーカー:SS2
  • 包装:300μl
  • 価格: ¥124,000
  • 在庫:無(未発注)
使用文献
No. 文献情報 備考 参照
1 Li Y et al. Molecular and functional interaction between protocadherin-γC5 and GABAA receptors. J. Neurosci. 2012 Aug;32(34):11780-97
Li Y et al
2012/01/01
application: ICC PubMed
2 Hua Y et al. A readily retrievable pool of synaptic vesicles. Nat. Neurosci. 2011 Jun;14(7):833-9
Hua Y et al
2011/01/01
application: ICC PubMed
3 Notter T et al. A protocol for concurrent high-quality immunohistochemical and biochemical analyses in adult mouse central nervous system. Eur. J. Neurosci. 2014 Jan;39(2):165-75
Notter T et al
2014/01/01
application: IHC, EM PubMed
4 Ohkawa T et al. Identification and characterization of GABA(A) receptor autoantibodies in autoimmune encephalitis. J. Neurosci. 2014 Jun;34(24):8151-63
Ohkawa T et al
2014/01/01
application: ICC, species: rat PubMed
5 Petrini EM et al. Synaptic recruitment of gephyrin regulates surface GABAA receptor dynamics for the expression of inhibitory LTP. Nat Commun 2014 Jun;5:3921
Petrini EM et al
2014/01/01
application: IHC, species: mouse PubMed
6 Fekete CD et al. In vivo clonal overexpression of neuroligin 3 and neuroligin 2 in neurons of the rat cerebral cortex: Differential effects on GABAergic synapses and neuronal migration. J. Comp. Neurol. 2015 Jun;523(9):1359-78
Fekete CD et al
2015/01/01
application: IHC PubMed
7 Fidzinski P et al. KCNQ5 K(+) channels control hippocampal synaptic inhibition and fast network oscillations. Nat Commun 2015 Feb;6:6254
Fidzinski P et al
2015/01/01
application: IHC PubMed
8 Mendoza Schulz A et al. Bassoon-disruption slows vesicle replenishment and induces homeostatic plasticity at a CNS synapse. EMBO J. 2014 Mar;33(5):512-27
Mendoza Schulz A et al
2014/01/01
application: IHC PubMed
9 Flores CE et al. Activity-dependent inhibitory synapse remodeling through gephyrin phosphorylation. Proc. Natl. Acad. Sci. U.S.A. 2015 Jan;112(1):E65-72
Flores CE et al
2015/01/01
application: IHC PubMed
10 Lenz M et al. Repetitive magnetic stimulation induces plasticity of inhibitory synapses. Nat Commun 2016 Jan;7:10020
Lenz M et al
2016/01/01
application: IHC PubMed
11 O'Sullivan GA et al. Forebrain-specific loss of synaptic GABAA receptors results in altered neuronal excitability and synaptic plasticity in mice. Mol. Cell. Neurosci. 2016 Apr;72:101-13
O'Sullivan GA et al
2016/01/01
application: IHC PubMed
12 Gutierrez-Mecinas M et al. Immunostaining for Homer reveals the majority of excitatory synapses in laminae I-III of the mouse spinal dorsal horn. Neuroscience 2016 08;329:171-81
Gutierrez-Mecinas M et al
2016/01/01
application: IHC PubMed
13 Nakamura Y et al. Proteomic Characterization of Inhibitory Synapses Using a Novel pHluorin-tagged γ-Aminobutyric Acid Receptor, Type A (GABAA), α2 Subunit Knock-in Mouse. J. Biol. Chem. 2016 Jun;291(23):12394-407
Nakamura Y et al
2016/01/01
application: ICC PubMed
14 Saito A et al. Early postnatal GABAA receptor modulation reverses deficits in neuronal maturation in a conditional neurodevelopmental mouse model of DISC1. Mol. Psychiatry 2016 10;21(10):1449-59
Saito A et al
2016/01/01
application: IHC PubMed
15 Kumar SS et al. Hyperexcitability, interneurons, and loss of GABAergic synapses in entorhinal cortex in a model of temporal lobe epilepsy. J. Neurosci. 2006 Apr;26(17):4613-23
Kumar SS et al
2006/01/01
application: IHC, species: rat PubMed
16 Li J et al. Molecular Dissection of Neuroligin 2 and Slitrk3 Reveals an Essential Framework for GABAergic Synapse Development. Neuron 2017 Nov;96(4):808-826.e8
Li J et al
2017/01/01
application: WB, ICC PubMed
17 Glebov OO et al. Nanoscale Structural Plasticity of the Active Zone Matrix Modulates Presynaptic Function. Cell Rep 2017 03;18(11):2715-2728
Glebov OO et al
2017/01/01
application: ICC PubMed
18 Takahashi H et al. Postsynaptic TrkC and presynaptic PTPσ function as a bidirectional excitatory synaptic organizing complex. Neuron 2011 Jan;69(2):287-303
Takahashi H et al
2011/01/01
application: IHC, species: mouse, rat PubMed
19 Aroeira RI et al. Age-related changes of glycine receptor at the rat hippocampus: from the embryo to the adult. J. Neurochem. 2011 Aug;118(3):339-53
Aroeira RI et al
2011/01/01
application: IHC, species: rat PubMed
20 Xia M et al. DISC1, astrocytes and neuronal maturation: a possible mechanistic link with implications for mental disorders. J. Neurochem. 2016 08;138(4):518-24
Xia M et al
2016/01/01
application: ICC, species: mouse PubMed
21 Chugh D et al. Brain inflammation induces post-synaptic changes during early synapse formation in adult-born hippocampal neurons. Exp. Neurol. 2013 Dec;250:176-88
Chugh D et al
2013/01/01
application: IHC, species: mouse PubMed
22 Abbott CJ et al. Amacrine and bipolar inputs to midget and parasol ganglion cells in marmoset retina. Vis. Neurosci. 2012 May;29(3):157-68
Abbott CJ et al
2012/01/01
application: IHC, species: marmoset PubMed
23 Stephan AH et al. A dramatic increase of C1q protein in the CNS during normal aging. J. Neurosci. 2013 Aug;33(33):13460-74
Stephan AH et al
2013/01/01
application: IHC, species: mouse PubMed
24 Mart鱈nez-Cu辿 C et al. Reducing GABAA α5 receptor-mediated inhibition rescues functional and neuromorphological deficits in a mouse model of down syndrome. J. Neurosci. 2013 Feb;33(9):3953-66
Mart鱈nez-Cu辿 C et al
2013/01/01
application: IHC, species: mouse PubMed
25 Virtanen MA et al. Development of inhibitory synaptic inputs on layer 2/3 pyramidal neurons in the rat medial prefrontal cortex. Brain Struct Funct 2018 May;223(4):1999-2012
Virtanen MA et al
2018/01/01
application: IHC, species: rat PubMed
26 Bae JY et al. Extrasynaptic homomeric glycine receptors in neurons of the rat trigeminal mesencephalic nucleus. Brain Struct Funct 2018 Jun;223(5):2259-2268
Bae JY et al
2018/01/01
application: IHC, EM, species: rat PubMed
27 Koh S et al. Subretinal Human Umbilical Tissue-Derived Cell Transplantation Preserves Retinal Synaptic Connectivity and Attenuates Müller Glial Reactivity. J. Neurosci. 2018 Mar;38(12):2923-2943
Koh S et al
2018/01/01
application: IHC, species: rat PubMed
28 He HY et al. Excitatory synaptic dysfunction cell-autonomously decreases inhibitory inputs and disrupts structural and functional plasticity. Nat Commun 2018 07;9(1):2893
He HY et al
2018/01/01
application: IHC, species: frog PubMed
29 Zhang P et al. Heparan Sulfate Organizes Neuronal Synapses through Neurexin Partnerships. Cell 2018 Sep;174(6):1450-1464.e23
Zhang P et al
2018/01/01
application: ICC, species: rat PubMed
30 Abraira VE et al. The Cellular and Synaptic Architecture of the Mechanosensory Dorsal Horn. Cell 2017 Jan;168(1-2):295-310.e19
Abraira VE et al
2017/01/01
application: IHC, species: mouse PubMed
31 Okamoto K et al. GABAergic malfunction in the anterior cingulate cortex underlying maternal immune activation-induced social deficits. J. Neuroimmunol. 2018 Aug;321:92-96
Okamoto K et al
2018/01/01
application: IHC, species: mouse PubMed
32 Fekete CD et al. In vivo transgenic expression of collybistin in neurons of the rat cerebral cortex. J. Comp. Neurol. 2017 Apr;525(5):1291-1311
Fekete CD et al
2017/01/01
application: IHC, species: rat PubMed
33 Handara G et al. The role of agrin, Lrp4 and MuSK during dendritic arborization and synaptogenesis in cultured embryonic CNS neurons. Dev. Biol. 2019 Jan;445(1):54-67
Handara G et al
2019/01/01
application: ICC, species: mouse PubMed
34 Fossati G et al. Pentraxin 3 regulates synaptic function by inducing AMPA receptor clustering via ECM remodeling and β1-integrin. EMBO J. 2019 Jan;38(1)
Fossati G et al
2019/01/01
application: ICC, species: mouse PubMed
35 Wang HC et al. Glycine receptors expression in rat spinal cord and dorsal root ganglion in prostaglandin E2 intrathecal injection models. BMC Neurosci 2018 Nov;19(1):72
Wang HC et al
2018/01/01
application: IHC, species: rat PubMed
36 Linsalata AE et al. Electron tomography on γ-aminobutyric acid-ergic synapses reveals a discontinuous postsynaptic network of filaments. J Comp Neurol 2014 Mar;522(4):921-36
Linsalata AE et al
2014/01/01
PubMed
37 Binda CS et al. Sorting nexin 27 rescues neuroligin 2 from lysosomal degradation to control inhibitory synapse number. Biochem J 2019 01;476(2):293-306
Binda CS et al
2019/01/01
PubMed
38 Bragina L et al. Expression of Neurofilament Subunits at Neocortical Glutamatergic and GABAergic Synapses. Front Neuroanat 2018;12:74
Bragina L et al
2018/01/01
PubMed
39 Ripamonti S et al. Transient oxytocin signaling primes the development and function of excitatory hippocampal neurons. Elife 2017 02;6
Ripamonti S et al
2017/01/01
PubMed
40 Jackson J et al. Altered synaptic properties during integration of adult-born hippocampal neurons following a seizure insult. PLoS One 2012;7(4):e35557
Jackson J et al
2012/01/01
PubMed
41 Fr端h S et al. Neuronal Dystroglycan Is Necessary for Formation and Maintenance of Functional CCK-Positive Basket Cell Terminals on Pyramidal Cells. J Neurosci 2016 10;36(40):10296-10313
Fr端h S et al
2016/01/01
PubMed
42 Boccalaro IL et al. Cell type-specific distribution of GABA<sub>A</sub> receptor subtypes in the mouse dorsal striatum. J Comp Neurol 2019 08;527(12):2030-2046
Boccalaro IL et al
2019/01/01
PubMed
43 Nakamoto C et al. Expression mapping, quantification, and complex formation of GluD1 and GluD2 glutamate receptors in adult mouse brain. J Comp Neurol 2020 04;528(6):1003-1027
Nakamoto C et al
2020/01/01
PubMed
44 Miralles CP et al. Expression of protocadherin-&#x3B3;C4 protein in the rat brain. J Comp Neurol 2020 04;528(5):840-864
Miralles CP et al
2020/01/01
PubMed
45 Sullivan CS et al. Developmental Regulation of Basket Interneuron Synapses and Behavior through NCAM in Mouse Prefrontal Cortex. Cereb Cortex 2020 06;30(8):4689-4707
Sullivan CS et al
2020/01/01
PubMed
46 Geisler S et al. Presynaptic &#x3B1;<sub>2</sub>&#x3B4;-2 Calcium Channel Subunits Regulate Postsynaptic GABA<sub>A</sub> Receptor Abundance and Axonal Wiring. J Neurosci 2019 04;39(14):2581-2605
Geisler S et al
2019/01/01
PubMed
47 Nakamura Y et al. Phosphorylation on Ser-359 of the &#x3B1;2 subunit in GABA type A receptors down-regulates their density at inhibitory synapses. J Biol Chem 2020 08;295(35):12330-12342
Nakamura Y et al
2020/01/01
PubMed
48 Cong Q et al. The endogenous neuronal complement inhibitor SRPX2 protects against complement-mediated synapse elimination during development. Nat Neurosci 2020 09;23(9):1067-1078
Cong Q et al
2020/01/01
PubMed
49 Holderith N et al. A High-Resolution Method for Quantitative Molecular Analysis of Functionally Characterized Individual Synapses. Cell Rep 2020 07;32(4):107968
Holderith N et al
2020/01/01
PubMed
50 Simonetti M et al. Spinal Wnt5a Plays a Key Role in Spinal Dendritic Spine Remodeling in Neuropathic and Inflammatory Pain Models and in the Proalgesic Effects of Peripheral Wnt3a. J Neurosci 2020 08;40(35):6664-6677
Simonetti M et al
2020/01/01
PubMed
51 Alten B et al. Role of Aberrant Spontaneous Neurotransmission in SNAP25-Associated Encephalopathies. Neuron 2021 01;109(1):59-72.e5
Alten B et al
2021/01/01
PubMed
52 Kriebel M et al. Interference With Complex IV as a Model of Age-Related Decline in Synaptic Connectivity. Front Mol Neurosci 2020;13:43
Kriebel M et al
2020/01/01
PubMed
53 Boccalaro IL et al. Dopamine depletion induces neuron-specific alterations of GABAergic transmission in the mouse striatum. Eur J Neurosci 2020 09;52(5):3353-3374
Boccalaro IL et al
2020/01/01
PubMed
54 Vagnozzi AN et al. Phrenic-specific transcriptional programs shape respiratory motor output. Elife 2020 01;9
Vagnozzi AN et al
2020/01/01
PubMed
55 Tossell K et al. Tonic GABAergic inhibition, via GABA<sub>A</sub> receptors containing &#x3B1;&#x3B2;&#x190; subunits, regulates excitability of ventral tegmental area dopamine neurons. Eur J Neurosci 2021 03;53(6):1722-1737
Tossell K et al
2021/01/01
PubMed
56 Emperador-Melero J et al. Intact synapse structure and function after combined knockout of PTP&#x3B4;, PTP&#x3C3;, and LAR. Elife 2021 03;10
Emperador-Melero J et al
2021/01/01
PubMed
57 Cser辿p C et al. Microglia monitor and protect neuronal function through specialized somatic purinergic junctions. Science 2020 01;367(6477):528-537
Cser辿p C et al
2020/01/01
PubMed
58 Amegandjin CA et al. Sensitive period for rescuing parvalbumin interneurons connectivity and social behavior deficits caused by TSC1 loss. Nat Commun 2021 06;12(1):3653
Amegandjin CA et al
2021/01/01
PubMed
59 Jeckel P et al. Autism Spectrum Disorder Risk Factor Met Regulates the Organization of Inhibitory Synapses. Front Mol Neurosci 2021;14:659856
Jeckel P et al
2021/01/01
PubMed
  • No.: 1
  • 文献情報:
    Li Y et al. Molecular and functional interaction between protocadherin-&#x3B3;C5 and GABAA receptors. J. Neurosci. 2012 Aug;32(34):11780-97
    Li Y et al
    2012/01/01
  • 備考:
    application: ICC
  • 参照:
    PubMed
  • No.: 2
  • 文献情報:
    Hua Y et al. A readily retrievable pool of synaptic vesicles. Nat. Neurosci. 2011 Jun;14(7):833-9
    Hua Y et al
    2011/01/01
  • 備考:
    application: ICC
  • 参照:
    PubMed
  • No.: 3
  • 文献情報:
    Notter T et al. A protocol for concurrent high-quality immunohistochemical and biochemical analyses in adult mouse central nervous system. Eur. J. Neurosci. 2014 Jan;39(2):165-75
    Notter T et al
    2014/01/01
  • 備考:
    application: IHC, EM
  • 参照:
    PubMed
  • No.: 4
  • 文献情報:
    Ohkawa T et al. Identification and characterization of GABA(A) receptor autoantibodies in autoimmune encephalitis. J. Neurosci. 2014 Jun;34(24):8151-63
    Ohkawa T et al
    2014/01/01
  • 備考:
    application: ICC, species: rat
  • 参照:
    PubMed
  • No.: 5
  • 文献情報:
    Petrini EM et al. Synaptic recruitment of gephyrin regulates surface GABAA receptor dynamics for the expression of inhibitory LTP. Nat Commun 2014 Jun;5:3921
    Petrini EM et al
    2014/01/01
  • 備考:
    application: IHC, species: mouse
  • 参照:
    PubMed
  • No.: 6
  • 文献情報:
    Fekete CD et al. In vivo clonal overexpression of neuroligin 3 and neuroligin 2 in neurons of the rat cerebral cortex: Differential effects on GABAergic synapses and neuronal migration. J. Comp. Neurol. 2015 Jun;523(9):1359-78
    Fekete CD et al
    2015/01/01
  • 備考:
    application: IHC
  • 参照:
    PubMed
  • No.: 7
  • 文献情報:
    Fidzinski P et al. KCNQ5 K(+) channels control hippocampal synaptic inhibition and fast network oscillations. Nat Commun 2015 Feb;6:6254
    Fidzinski P et al
    2015/01/01
  • 備考:
    application: IHC
  • 参照:
    PubMed
  • No.: 8
  • 文献情報:
    Mendoza Schulz A et al. Bassoon-disruption slows vesicle replenishment and induces homeostatic plasticity at a CNS synapse. EMBO J. 2014 Mar;33(5):512-27
    Mendoza Schulz A et al
    2014/01/01
  • 備考:
    application: IHC
  • 参照:
    PubMed
  • No.: 9
  • 文献情報:
    Flores CE et al. Activity-dependent inhibitory synapse remodeling through gephyrin phosphorylation. Proc. Natl. Acad. Sci. U.S.A. 2015 Jan;112(1):E65-72
    Flores CE et al
    2015/01/01
  • 備考:
    application: IHC
  • 参照:
    PubMed
  • No.: 10
  • 文献情報:
    Lenz M et al. Repetitive magnetic stimulation induces plasticity of inhibitory synapses. Nat Commun 2016 Jan;7:10020
    Lenz M et al
    2016/01/01
  • 備考:
    application: IHC
  • 参照:
    PubMed
  • No.: 11
  • 文献情報:
    O&#39;Sullivan GA et al. Forebrain-specific loss of synaptic GABAA receptors results in altered neuronal excitability and synaptic plasticity in mice. Mol. Cell. Neurosci. 2016 Apr;72:101-13
    O&#39;Sullivan GA et al
    2016/01/01
  • 備考:
    application: IHC
  • 参照:
    PubMed
  • No.: 12
  • 文献情報:
    Gutierrez-Mecinas M et al. Immunostaining for Homer reveals the majority of excitatory synapses in laminae I-III of the mouse spinal dorsal horn. Neuroscience 2016 08;329:171-81
    Gutierrez-Mecinas M et al
    2016/01/01
  • 備考:
    application: IHC
  • 参照:
    PubMed
  • No.: 13
  • 文献情報:
    Nakamura Y et al. Proteomic Characterization of Inhibitory Synapses Using a Novel pHluorin-tagged &#x3B3;-Aminobutyric Acid Receptor, Type A (GABAA), &#x3B1;2 Subunit Knock-in Mouse. J. Biol. Chem. 2016 Jun;291(23):12394-407
    Nakamura Y et al
    2016/01/01
  • 備考:
    application: ICC
  • 参照:
    PubMed
  • No.: 14
  • 文献情報:
    Saito A et al. Early postnatal GABAA receptor modulation reverses deficits in neuronal maturation in a conditional neurodevelopmental mouse model of DISC1. Mol. Psychiatry 2016 10;21(10):1449-59
    Saito A et al
    2016/01/01
  • 備考:
    application: IHC
  • 参照:
    PubMed
  • No.: 15
  • 文献情報:
    Kumar SS et al. Hyperexcitability, interneurons, and loss of GABAergic synapses in entorhinal cortex in a model of temporal lobe epilepsy. J. Neurosci. 2006 Apr;26(17):4613-23
    Kumar SS et al
    2006/01/01
  • 備考:
    application: IHC, species: rat
  • 参照:
    PubMed
  • No.: 16
  • 文献情報:
    Li J et al. Molecular Dissection of Neuroligin 2 and Slitrk3 Reveals an Essential Framework for GABAergic Synapse Development. Neuron 2017 Nov;96(4):808-826.e8
    Li J et al
    2017/01/01
  • 備考:
    application: WB, ICC
  • 参照:
    PubMed
  • No.: 17
  • 文献情報:
    Glebov OO et al. Nanoscale Structural Plasticity of the Active Zone Matrix Modulates Presynaptic Function. Cell Rep 2017 03;18(11):2715-2728
    Glebov OO et al
    2017/01/01
  • 備考:
    application: ICC
  • 参照:
    PubMed
  • No.: 18
  • 文献情報:
    Takahashi H et al. Postsynaptic TrkC and presynaptic PTP&#x3C3; function as a bidirectional excitatory synaptic organizing complex. Neuron 2011 Jan;69(2):287-303
    Takahashi H et al
    2011/01/01
  • 備考:
    application: IHC, species: mouse, rat
  • 参照:
    PubMed
  • No.: 19
  • 文献情報:
    Aroeira RI et al. Age-related changes of glycine receptor at the rat hippocampus: from the embryo to the adult. J. Neurochem. 2011 Aug;118(3):339-53
    Aroeira RI et al
    2011/01/01
  • 備考:
    application: IHC, species: rat
  • 参照:
    PubMed
  • No.: 20
  • 文献情報:
    Xia M et al. DISC1, astrocytes and neuronal maturation: a possible mechanistic link with implications for mental disorders. J. Neurochem. 2016 08;138(4):518-24
    Xia M et al
    2016/01/01
  • 備考:
    application: ICC, species: mouse
  • 参照:
    PubMed
  • No.: 21
  • 文献情報:
    Chugh D et al. Brain inflammation induces post-synaptic changes during early synapse formation in adult-born hippocampal neurons. Exp. Neurol. 2013 Dec;250:176-88
    Chugh D et al
    2013/01/01
  • 備考:
    application: IHC, species: mouse
  • 参照:
    PubMed
  • No.: 22
  • 文献情報:
    Abbott CJ et al. Amacrine and bipolar inputs to midget and parasol ganglion cells in marmoset retina. Vis. Neurosci. 2012 May;29(3):157-68
    Abbott CJ et al
    2012/01/01
  • 備考:
    application: IHC, species: marmoset
  • 参照:
    PubMed
  • No.: 23
  • 文献情報:
    Stephan AH et al. A dramatic increase of C1q protein in the CNS during normal aging. J. Neurosci. 2013 Aug;33(33):13460-74
    Stephan AH et al
    2013/01/01
  • 備考:
    application: IHC, species: mouse
  • 参照:
    PubMed
  • No.: 24
  • 文献情報:
    Mart鱈nez-Cu辿 C et al. Reducing GABAA &#x3B1;5 receptor-mediated inhibition rescues functional and neuromorphological deficits in a mouse model of down syndrome. J. Neurosci. 2013 Feb;33(9):3953-66
    Mart鱈nez-Cu辿 C et al
    2013/01/01
  • 備考:
    application: IHC, species: mouse
  • 参照:
    PubMed
  • No.: 25
  • 文献情報:
    Virtanen MA et al. Development of inhibitory synaptic inputs on layer 2/3 pyramidal neurons in the rat medial prefrontal cortex. Brain Struct Funct 2018 May;223(4):1999-2012
    Virtanen MA et al
    2018/01/01
  • 備考:
    application: IHC, species: rat
  • 参照:
    PubMed
  • No.: 26
  • 文献情報:
    Bae JY et al. Extrasynaptic homomeric glycine receptors in neurons of the rat trigeminal mesencephalic nucleus. Brain Struct Funct 2018 Jun;223(5):2259-2268
    Bae JY et al
    2018/01/01
  • 備考:
    application: IHC, EM, species: rat
  • 参照:
    PubMed
  • No.: 27
  • 文献情報:
    Koh S et al. Subretinal Human Umbilical Tissue-Derived Cell Transplantation Preserves Retinal Synaptic Connectivity and Attenuates M&#xFC;ller Glial Reactivity. J. Neurosci. 2018 Mar;38(12):2923-2943
    Koh S et al
    2018/01/01
  • 備考:
    application: IHC, species: rat
  • 参照:
    PubMed
  • No.: 28
  • 文献情報:
    He HY et al. Excitatory synaptic dysfunction cell-autonomously decreases inhibitory inputs and disrupts structural and functional plasticity. Nat Commun 2018 07;9(1):2893
    He HY et al
    2018/01/01
  • 備考:
    application: IHC, species: frog
  • 参照:
    PubMed
  • No.: 29
  • 文献情報:
    Zhang P et al. Heparan Sulfate Organizes Neuronal Synapses through Neurexin Partnerships. Cell 2018 Sep;174(6):1450-1464.e23
    Zhang P et al
    2018/01/01
  • 備考:
    application: ICC, species: rat
  • 参照:
    PubMed
  • No.: 30
  • 文献情報:
    Abraira VE et al. The Cellular and Synaptic Architecture of the Mechanosensory Dorsal Horn. Cell 2017 Jan;168(1-2):295-310.e19
    Abraira VE et al
    2017/01/01
  • 備考:
    application: IHC, species: mouse
  • 参照:
    PubMed
  • No.: 31
  • 文献情報:
    Okamoto K et al. GABAergic malfunction in the anterior cingulate cortex underlying maternal immune activation-induced social deficits. J. Neuroimmunol. 2018 Aug;321:92-96
    Okamoto K et al
    2018/01/01
  • 備考:
    application: IHC, species: mouse
  • 参照:
    PubMed
  • No.: 32
  • 文献情報:
    Fekete CD et al. In vivo transgenic expression of collybistin in neurons of the rat cerebral cortex. J. Comp. Neurol. 2017 Apr;525(5):1291-1311
    Fekete CD et al
    2017/01/01
  • 備考:
    application: IHC, species: rat
  • 参照:
    PubMed
  • No.: 33
  • 文献情報:
    Handara G et al. The role of agrin, Lrp4 and MuSK during dendritic arborization and synaptogenesis in cultured embryonic CNS neurons. Dev. Biol. 2019 Jan;445(1):54-67
    Handara G et al
    2019/01/01
  • 備考:
    application: ICC, species: mouse
  • 参照:
    PubMed
  • No.: 34
  • 文献情報:
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