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

CXCR4 induces memory formation over exhaustion in CAR-T cells to achieve durable leukemia targeting.

CXCR4 可诱导 CAR-T 细胞在耗竭后形成记忆,从而实现持久的白血病靶向治疗。

Itoh-Nakadai Ari, Liang Minggao, Shindo Michiho, Bibi Chen, Tomizawa-Murasawa Mariko, Fujiki Saera, Kaneko Akiko, Kanamaru Emi, Hashimoto Mari, Kajita Hiroshi, Ando Yoshinari, Kojima Miki, Moody Jonathan, Iwasaki Makoto, Takagi Shinsuke, Nakagawa Ryo, Agrawal Saumya, Amitani-Iijima Hanae, Sato Kaori, Sorimachi Yuriko, Suzuki Nahoko, Fukami Takehiro, Hanada Kazuharu, Morita Satoshi, Katsura Kazushige, Matsumoto Takehisa, Kobayashi Maiko, Kato Masahiko, Negishi Yasuyuki, Shirouzu Mikako, Najima Yuho, Takubo Keiyo, Hon Chung Chau, Uchida Naoyuki, Taniguchi Shuichi, Momozawa Yukihide, Carninci Piero, Shultz Leonard D, Saito Yoriko, de Hoon Michiel, Shin Jay W, Ishikawa Fumihiko

ABCA1-Mediated Structural Diversity of HDL Subspecies and Their Proposed Roles in Cardioprotection

ABCA1介导的高密度脂蛋白亚组分结构多样性及其在心脏保护中的作用

Heinecke, Jay W; Segrest, Jere P; Phillips, Michael C; Davidson, W Sean

New Insights into the Bioenergetic and Immunomodulatory Properties of Phospholipases A(2) from Bothrops diporus Venom

对矛头蝮蛇毒液中磷脂酶A(2)的生物能量学和免疫调节特性的新见解

Sasovsky, Daniela J; Oliveira, Ana K; Silva, Dilza Trevisan; Ojeda, Gonzalo A; Almarza, Cristopher; Lomonte, Bruno; Fox, Jay W; Urra, Félix A; Bustillo, Soledad

Electrocardiographic effects of HBI-3000 (sulcardine sulfate), a new drug for termination of atrial fibrillation

HBI-3000(硫酸舒卡定)是一种用于终止房颤的新药,其对心电图的影响

Mason, Jay W; Romano, Suzanne J; Elliott, Gary T; Mendzelevski, Boaz; Stanworth, Stephanie H; Vaglio, Martino; Badilini, Fabio; Gillings, Mireille; Riebman, Jerome B

Evaluation of medical physics resident well-being and satisfaction across multiple residency programs

对多个住院医师培训项目中医学物理住院医师的幸福感和满意度进行评估

Burmeister, Jay W; Biswal, Nrusingh C; Harms, Joseph; Paxton, Adam B; Boggula, Ramesh

Truncating Titin and Lamin A/C Variants in Anthracycline-Induced Cardiomyopathy

蒽环类药物诱发的心肌病中截短的肌联蛋白和层粘蛋白A/C变体

Advani, Pooja P; McPherson, Alyssa D; Reddy, Joseph S; Schneider, Jay W; Baheti, Saurabh; Nguyen, Thien D; Ray, Jordan C; Norton, Nadine

Federated single-cell QTL meta-analysis reveals novel disease mechanisms

联合单细胞QTL荟萃分析揭示了新的疾病机制

Kaptijn, Daniel; Michielsen, Lieke; Neavin, Drew; Ripoll-Cladellas, Aida; Alquicira-Hernández, José; Korshevniuk, Maryna; Lee, Jimmy Tsz Hang; Oelen, Roy; Vochteloo, Martijn; Warmerdam, Robert; Ando, Yoshinari; Ban, Maria; Bayaraa, Odmaa; Berg, Marijn; van Blokland, Irene; Considine, Daniel; Dieng, Mame M; Edahiro, Ryuya; Gordon, M Grace; Groot, Hilde E; van der Harst, Pim; Heinig, Matthias; Hon, Chung-Chau; Idaghdour, Youssef; Kathail, Pooja; de Klein, Niek; Li, Wenchao; Li, Yang; Losert, Corinna; Manikanda, Vinu; Moody, Jonathan; Naeem, Haroon; Mokrab, Younes; Nawijn, Martijn C; Netea, Mihai; Niewold, Jelmer; Okada, Yukinori; Sawcer, Stephen; Soulama, Issiaka; Stegle, Oliver; Tsepilov, Yakov; Park, Woong-Yang; Rajagopalan, Deepa; Shahin, Tala; Shin, Jay W; Trynka, Gosia; Võsa, Urmo; Westra, Harm-Jan; Yazar, Seyhan; Ye, Jimmie; Zhang, Zhenhua; Hemberg, Martin; Mahfouz, Ahmed; Melé, Marta; Powell, Joseph E; Bonder, Marc Jan; Franke, Lude; van der Wijst, Monique G P

Update of the FANTOM web resource: enhancement for studying noncoding genomes

FANTOM网络资源更新:增强对非编码基因组的研究能力

Nobusada, Tomoe; Yip, Chi Wai; Agrawal, Saumya; Severin, Jessica; Abugessaisa, Imad; Hasegawa, Akira; Hon, Chung Chau; Ide, Satoru; Koido, Masaru; Kondo, Atsushi; Masuya, Hiroshi; Oki, Shinya; Tagami, Michihira; Takada, Toyoyuki; Terao, Chikashi; Thalhath, Nishad; Walker, Scott; Yasuzawa, Kayoko; Shin, Jay W; de Hoon, Michiel J L; Carninci, Piero; Kawaji, Hideya; Kasukawa, Takeya

ESC models of autism with copy-number variations reveal cell-type-specific translational vulnerability

具有拷贝数变异的自闭症胚胎干细胞模型揭示了细胞类型特异性的翻译脆弱性

Jun Nomura ,Amila Zuko ,Keiko Kishimoto ,Hiroaki Mutsumine ,Hiroko Maegawa ,Kazumi Fukatsu ,Yoshiko Nomura ,Xiaoxi Liu ,Nobuhiro Nakai ,Tsukasa Kouno ,Jay W Shin ,Toru Takumi

NEUROD1 efficiently converts peripheral blood cells into neurons with partial reprogramming by pluripotency factors.

NEUROD1 能有效将外周血细胞转化为神经元,并可通过多能性因子进行部分重编程

Saito Yoichi, Ishikawa Mitsuru, Ohkuma Mahito, Moody Jonathan, Mabuchi Yo, Sanosaka Tsukasa, Ando Yoshinari, Yamashita Takayuki, Hon Chung Chau, Shin Jay W, Akamatsu Wado, Okano Hideyuki