日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

GlycoChat Uncovers Glycan-Lectin Circuits in the Tumor Microenvironment of Pancreatic Cancer.

GlycoChat 揭示了胰腺癌肿瘤微环境中的聚糖-凝集素回路。

Anh Dinh Xuan Tuan, Keisham Sunanda, Burramsetty Arun, Oinam Lalhaba, Kumano Koichiro, Kuno Akihiro, Shimomura Osamu, Oda Tatsuya, Tateno Hiroaki

Optimizing CRISPR precision in mouse embryos via microhomology-mediated end joining-dominant targeting

通过微同源介导的末端连接主导靶向优化小鼠胚胎中 CRISPR 的精确性

Lkhagvadorj, Khanui; Okamura, Eiichi; Taki, Taito; Suzuki, Hayate; Kuno, Akihiro; Itoh, Yasushi; Mizuno, Seiya; Woltjen, Knut; Ema, Masatsugu

KOnezumi-AID: Automation Software for Efficient Multiplex Gene Knockout Using Target-AID

KOnezumi-AID:基于Target-AID的高效多重基因敲除自动化软件

Taki, Taito; Morimoto, Kento; Mizuno, Seiya; Kuno, Akihiro

Early reactivation of clustered genes on the inactive X chromosome during somatic cell reprogramming

体细胞重编程过程中失活X染色体上基因簇的早期重新激活

Aizawa, Shiho; Nishimura, Ken; Mondejar, Gonzalo Seminario; Kumar, Arun; Bui, Phuong Linh; Tran, Yen Thi Hai; Kuno, Akihiro; Muratani, Masafumi; Kobayashi, Shin; Nabekura, Tsukasa; Shibuya, Akira; Sugihara, Eiji; Sato, Taka-Aki; Fukuda, Aya; Hayashi, Yohei; Hisatake, Koji

Locus-Specific Isolation of the Nanog Chromatin Identifies Regulators Relevant to Pluripotency of Mouse Embryonic Stem Cells and Reprogramming of Somatic Cells

基因位点特异性分离Nanog染色质,鉴定出与小鼠胚胎干细胞多能性和体细胞重编程相关的调控因子

Burramsetty, Arun Kumar; Nishimura, Ken; Kishimoto, Takumi; Hamzah, Muhammad; Kuno, Akihiro; Fukuda, Aya; Hisatake, Koji

MafB Maintains β-Cell Identity under MafA-Deficient Conditions

在 MafA 缺陷条件下,MafB 维持 β 细胞的特性

Deng, Zhaobin; Kuno, Akihiro; Ojima, Masami; Takahashi, Satoru

Mathematical analysis of the effect of portal vein cells on biliary epithelial cell differentiation through the Delta-Notch signaling pathway

通过Delta-Notch信号通路对门静脉细胞影响胆管上皮细胞分化的数学分析

Yoshihara, Masaharu; Nishino, Teppei; Yadav, Manoj Kumar; Kuno, Akihiro; Nagata, Takeshi; Ando, Hiroyasu; Takahashi, Satoru

An Inducible Diabetes Mellitus Murine Model Based on MafB Conditional Knockout under MafA-Deficient Condition

基于MafB条件性敲除和MafA缺陷条件下的诱导型糖尿病小鼠模型

Deng, Zhaobin; Matsumoto, Yuka; Kuno, Akihiro; Ojima, Masami; Xiafukaiti, Gulibaikelamu; Takahashi, Satoru

Uncovering the role of MAFB in glucagon production and secretion in pancreatic α-cells using a new α-cell-specific Mafb conditional knockout mouse model.

利用新的α细胞特异性Mafb条件性敲除小鼠模型,揭示MAFB在胰腺α细胞中胰高血糖素产生和分泌中的作用

Chang Yu-Hsin, Katoh Megumi C, Abdellatif Ahmed M, Xiafukaiti Guli, Elzeftawy Abdelaziz, Ojima Masami, Mizuno Seiya, Kuno Akihiro, Takahashi Satoru

MafB Is Important for Pancreatic β-Cell Maintenance under a MafA-Deficient Condition

在 MafA 缺乏的情况下,MafB 对胰岛 β 细胞的维持至关重要。

Xiafukaiti, Gulibaikelamu; Maimaiti, Shayida; Ogata, Kiyohito; Kuno, Akihiro; Kudo, Takashi; Shawki, Hossam H; Oishi, Hisashi; Takahashi, Satoru