Neural stem cell line 1464R is a spontaneously immortalized cell line obtained from brain stem cultures of adult male Fischer 344 rats. It can be cultured for a long period of time and maintained without morphological changes even after repeated passaging. In the presence of retinoic acid, 1464R cells stop dividing and differentiate mainly into tubulin beta-III (TuJ1)-positive neurons. They also differentiate into GFAP-positive astrocytes and O4-positive oligodendrocytes as glial cell lineages. This product was established by Professor Kazuhiko Watabe of the Laboratory of Molecular Neurobiology, Kyorin University School of Health Sciences, and is sold under license from the Tokyo Metropolitan Institute of Medical Science.


Documents & Links for Rat neuronal stem cell line 1464R
Datasheet Rat neuronal stem cell line 1464R Datasheet (English)
Datasheet Rat neuronal stem cell line 1464R Datasheet (Japanese)
Purchase Agreement Direct Shipment and Fees Authorization

Documents & Links for Rat neuronal stem cell line 1464R
Datasheet Rat neuronal stem cell line 1464R Datasheet (English)
Datasheet Rat neuronal stem cell line 1464R Datasheet (Japanese)
Purchase Agreement Direct Shipment and Fees Authorization
Citations for Rat neuronal stem cell line 1464R – 6 Found
Watabe, Kazuhiko; Akiyama, Keiko; Kawakami, Emiko; Ishii, Tomohiro; Endo, Kentaro; Yanagisawa, Hiroko; Sango, Kazunori; Tsukamoto, Masami. Adenoviral expression of TDP-43 and FUS genes and shRNAs for protein degradation pathways in rodent motoneurons in vitro and in vivo. Neuropathology : Official Journal Of The Japanese Society Of Neuropathology. 2014;34(1):83-98.  PubMed
Ishii, Tomohiro; Kawakami, Emiko; Endo, Kentaro; Misawa, Hidemi; Watabe, Kazuhiko. Myelinating cocultures of rodent stem cell line-derived neurons and immortalized Schwann cells. Neuropathology : Official Journal Of The Japanese Society Of Neuropathology. 2017;37(5):475-481.  PubMed
Ishii, Tomohiro; Kawakami, Emiko; Endo, Kentaro; Misawa, Hidemi; Watabe, Kazuhiko. Formation and spreading of TDP-43 aggregates in cultured neuronal and glial cells demonstrated by time-lapse imaging. Plos One. 12(6):e0179375.  PubMed
Watabe, Kazuhiko; Kato, Yoichiro; Sakuma, Miho; Murata, Makiko; Niida-Kawaguchi, Motoko; Takemura, Taro; Hanagata, Nobutaka; Tada, Mari; Kakita, Akiyoshi; Shibata, Noriyuki. Praja1 RING-finger E3 ubiquitin ligase suppresses neuronal cytoplasmic TDP-43 aggregate formation. Neuropathology : Official Journal Of The Japanese Society Of Neuropathology. 2020;40(6):570-586.  PubMed
Watabe, Kazuhiko; Niida-Kawaguchi, Motoko; Tada, Mari; Kato, Yoichiro; Murata, Makiko; Tanji, Kunikazu; Wakabayashi, Koichi; Yamada, Mitsunori; Kakita, Akiyoshi; Shibata, Noriyuki. Praja1 RING-finger E3 ubiquitin ligase is a common suppressor of neurodegenerative disease-associated protein aggregation. Neuropathology : Official Journal Of The Japanese Society Of Neuropathology. 2022;42(6):488-504.  PubMed
Soejima-Kusunoki, Aki; Okada, Kinya; Saito, Ryuta; Watabe, Kazuhiko. The Protective Effect of Edaravone on TDP-43 Plus Oxidative Stress-Induced Neurotoxicity in Neuronal Cells: Analysis of Its Neuroprotective Mechanisms Using RNA Sequencing. Pharmaceuticals (Basel, Switzerland). 2022;15(7)  PubMed


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