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Product Specifications | |
Application | WB, IHC |
Reactivity | Mouse, Rat, Chicken |
Clonality | Polyclonal |
Host | Rabbit |
Immunogen | C-terminal peptide of mouse Pax6 (420-436 aa) |
Gene ID - Human | |
Gene ID - Mouse | |
Gene ID - Rat | |
Formulation | 100 μl volume of PBS containing 50% glycerol, pH 7.2. No preservative is contained. |
Documents & Links for Anti-Pax6 (Mouse) (Mouse) pAb | |
Datasheet | Anti-Pax6 (Mouse) (Mouse) pAb Datasheet |
Documents & Links for Anti-Pax6 (Mouse) (Mouse) pAb | |
Datasheet | Anti-Pax6 (Mouse) (Mouse) pAb Datasheet |
Citations for Anti-Pax6 (Mouse) (Mouse) pAb – 16 Found |
Ma, Tong; Zhang, Qiangqiang; Cai, Yuqun; You, Yan; Rubenstein, John L R; Yang, Zhengang. A subpopulation of dorsal lateral/caudal ganglionic eminence-derived neocortical interneurons expresses the transcription factor Sp8. Cerebral Cortex (New York, N.y. : 1991). 2012;22(9):2120-30. PubMed - Comments: Used in: IHC |
Liu, Ting; Zhao, Yanxia; Tang, Na; Feng, Ruopeng; Yang, Xiaolong; Lu, Nicole; Wen, Jinhua; Li, Lingsong. Pax6 directly down-regulates Pcsk1n expression thereby regulating PC1/3 dependent proinsulin processing. Plos One. 7(10):e46934. PubMed - Comments: Used in: IF |
Li, Xiaosu; Liu, Zhidong; Qiu, Mengsheng; Yang, Zhengang. Sp8 plays a supplementary role to Pax6 in establishing the pMN/p3 domain boundary in the spinal cord. Development (Cambridge, England). 2014;141(14):2875-84. PubMed - Comments: Used in: IHC |
Zhou, Xing; Liu, Fang; Tian, Miao; Xu, Zhejun; Liang, Qifei; Wang, Chunyang; Li, Jiwen; Liu, Zhidong; Tang, Ke; He, Miao; Yang, Zhengang. Transcription factors COUP-TFI and COUP-TFII are required for the production of granule cells in the mouse olfactory bulb. Development (Cambridge, England). 2015;142(9):1593-605. PubMed - Comments: Used in: IHC |
Yamada, Toshiyuki; Nanashima, Naoki; Shimizu, Takeshi; Nakazawa, Yosuke; Nakazawa, Mitsuru; Tsuchida, Shigeki. Establishment of a recessive mutant small-eye rat with lens involution and retinal detachment associated with partial deletion and rearrangement of the Cryba1 gene. The Biochemical Journal. 2015;471(2):293-305. PubMed - Comments: Used in: IHC |
Imaizumi, Kent; Sone, Takefumi; Ibata, Keiji; Fujimori, Koki; Yuzaki, Michisuke; Akamatsu, Wado; Okano, Hideyuki. Controlling the Regional Identity of hPSC-Derived Neurons to Uncover Neuronal Subtype Specificity of Neurological Disease Phenotypes. Stem Cell Reports. 2015;5(6):1010-1022. PubMed - Comments: Used in: ICC |
Maeta, Kazuhiro; Edamatsu, Hironori; Nishihara, Kaori; Ikutomo, Junji; Bilasy, Shymaa E; Kataoka, Tohru. Crucial Role of Rapgef2 and Rapgef6, a Family of Guanine Nucleotide Exchange Factors for Rap1 Small GTPase, in Formation of Apical Surface Adherens Junctions and Neural Progenitor Development in the Mouse Cerebral Cortex. Eneuro. 2016;3(3) PubMed - Comments: Used in: IF |
Fujimura, Kimino; Mitsuhashi, Takayuki; Shibata, Shinsuke; Shimozato, Sachiko; Takahashi, Takao. In Utero Exposure to Valproic Acid Induces Neocortical Dysgenesis via Dysregulation of Neural Progenitor Cell Proliferation/Differentiation. The Journal Of Neuroscience : The Official Journal Of The Society For Neuroscience. 2016;36(42):10908-10919. PubMed - Comments: Used in: IHC |
Ohta, Shigeki; Yaguchi, Tomonori; Okuno, Hironobu; Chneiweiss, Hervé; Kawakami, Yutaka; Okano, Hideyuki. CHD7 promotes proliferation of neural stem cells mediated by MIF. Molecular Brain. 2016;9(1):96. PubMed - Comments: Used in: IHC |
Hatakeyama, Jun; Sato, Haruka; Shimamura, Kenji. Developing guinea pig brain as a model for cortical folding. Development, Growth & Differentiation. 2017;59(4):286-301. PubMed - Comments: Used in: IHC |
Inoue, Yukiko U; Morimoto, Yuki; Hoshino, Mikio; Inoue, Takayoshi. Generation of Pax6-IRES-EGFP knock-in mouse via the cloning-free CRISPR/Cas9 system to reliably visualize neurodevelopmental dynamics. Neuroscience Research. 2018;132:1-7. PubMed - Comments: Used in: IHC |
Yamashita, Wataru; Takahashi, Masanori; Kikkawa, Takako; Gotoh, Hitoshi; Osumi, Noriko; Ono, Katsuhiko; Nomura, Tadashi. Conserved and divergent functions of Pax6 underlie species-specific neurogenic patterns in the developing amniote brain. Development (Cambridge, England). 2018;145(8) PubMed - Comments: Used in: IHC |
Farzanehfar, Parisa; Lu, Shi Sheng; Dey, Anupa; Musiienko, Dharshani; Baagil, Hamzah; Horne, Malcolm K; Aumann, Tim D. Evidence of functional duplicity of Nestin expression in the adult mouse midbrain. Stem Cell Research. 2017;19:82-93. PubMed - Comments: Used in: IHC |
Mitori, Hikaru; Izawa, Takeshi; Kuwamura, Mitsuru; Matsumoto, Masahiro; Yamate, Jyoji. Developing Stage-dependent Retinal Toxicity Induced by l-glutamate in Neonatal Rats. Toxicologic Pathology. 2016;44(8):1137-1145. PubMed - Comments: Used in: IHC |
Nakamura, Takashi; Ueyama, Takehiko; Ninoyu, Yuzuru; Sakaguchi, Hirofumi; Choijookhuu, Narantsog; Hishikawa, Yoshitaka; Kiyonari, Hiroshi; Kohta, Masaaki; Sakahara, Mizuho; de Curtis, Ivan; Kohmura, Eiji; Hisa, Yasuo; Aiba, Atsu; Saito, Naoaki. Novel role of Rac-Mid1 signaling in medial cerebellar development. Development (Cambridge, England). 2017;144(10):1863-1875. PubMed - Comments: Used in: IHC |
Arioka, Yuko; Hirata, Akihiro; Kushima, Itaru; Aleksic, Branko; Mori, Daisuke; Ozaki, Norio. Characterization of a schizophrenia patient with a rare RELN deletion by combining genomic and patient-derived cell analyses. Schizophrenia Research. 2020;216:511-515. PubMed - Comments: Used in: IHC |