生命科学资讯
生物技术与制药领域的最新动态
T cells store lipids and die in rheumatoid arthritis joints
巨型DNA病毒编码真核生物标志性翻译起始复合体
Giant DNA viruses encode a hallmark translation initiation complex of eukaryotic life
细胞周期依赖性信号调控果蝇中枢脑神经干细胞的时间模式形成
Cell cycle-dependent cues regulate temporal patterning of the Drosophila central brain neural stem cells
细胞疗法公司拟募资9200万美元,有望终结东京生物科技IPO荒。
Cell therapy company hopes to end Tokyo biotech IPO drought with $92M offering
细胞外基质感知调控肿瘤内自噬通量的异质性
Extracellular matrix sensing regulates intratumoral heterogeneity of autophagic flux
单细胞时间序列图谱揭示内皮细胞胚胎发育过程
A single-cell time-series atlas of endothelial cell embryonic development
选择最佳细胞疗法制造平台
Selecting the optimal cell therapy manufacturing platform
深度神经网络用于移动和变形神经系统中的细胞注册与标注
Deep neural networks to register and annotate cells in moving and deforming nervous systems
SETDB1通过在小鼠胚胎中消除MERVL驱动的二细胞全能性转录程序,实现胚胎发育超越卵裂阶段。
SETDB1 enables development beyond cleavage stages by extinguishing the MERVL-driven two-cell totipotency transcriptional program in the mouse embryo
CLIM-TIME技术识别T细胞疗法应答的转移性微环境调节因子
CLIM-TIME identifies metastatic microenvironment modulators for T cell therapy response
临床试验中单次溶瘤病毒治疗后,T细胞对胶质母细胞瘤的持续活化和细胞毒性增强
Persistent T cell activation and cytotoxicity against glioblastoma following single oncolytic virus treatment in a clinical trial
肿瘤、免疫和神经细胞参与癌症恶病质过程
Tumor, immune and neural cells are involved in cancer cachexia
Cdc42与伴侣蛋白Ydj1相互作用,增强其在酵母不对称细胞分裂和衰老过程中的稳定性与分配。
Cdc42 interacts with chaperone Ydj1 to enhance its stability and partitioning during asymmetric cell division and aging in yeast
礼来公司24亿美元押注现货细胞疗法,彰显大型药企战略转型趋势。
Lilly’s $2.4B bet on off-the-shelf cell therapy is part of a wider Big Pharma shift
单细胞图谱揭示t(8;21)急性髓系白血病中与年龄相关的基因调控网络
Single-cell atlas of AML reveals age-related gene regulatory networks in t(8;21) AML
行星微生物组结构及跨异质生境的全能驱动基因流
Planetary microbiome structure and generalist-driven gene flow across disparate habitats
CUL5 E3泛素连接酶通过抑制自噬调控膀胱癌细胞逃避CD8<sup>+</sup> T细胞介导的杀伤作用
CUL5 E3 ubiquitin ligase regulates the evasion of bladder cancer cells to CD8+ T cell-mediated killing by inhibiting autophagy
应对细胞与基因疗法供应链的复杂性
Navigating the complexities of Cell and Gene Therapy supply chains
小鼠骨骼肌卫星细胞利用肌腱生成基因<i>Scleraxis</i>指导再生
Mouse skeletal muscle satellite cells co-opt the tenogenic gene Scleraxis to instruct regeneration