Corrigendum to "Optimizing phage elution for biopanning of plastic materials" [Biochem. Biophys. Res. Commun. 829 (2026) 154187] [0.03%]
关于“用于塑料材料生物盘的噬菌体释放优化”的勘误[Biochem. Biophys. Res. Commun. 829 (2026) 154187]
Nanna Miang Lyngsø,Daniel Erik Otzen
Nanna Miang Lyngsø
Corrigendum to "Reprogramming tumor angiogenesis in breast cancer: Mechanisms, challenges, and future directions" [Biochem. Biophys. Res. Commun. 831 (2026) 154292] [0.03%]
关于“乳腺癌肿瘤血管生成的重新编程:机制、挑战及未来方向”的勘误[Biochem. Biophys. Res. Commun. 831 (2026) 154292]
Barnalee Mishra,Suryendu Saha,Kavita Kumari et al.
Barnalee Mishra et al.
Neurons in rat suprachiasmatic nucleus exhibit variable ultradian cycles and retain the rhythmic firing patterns entrained by periodic stimuli [0.03%]
大鼠视交叉上核神经元表现出可变的超周期循环并保留了周期性刺激下的节律放电模式
Huimeng Song,Pan Shao,Xuexia Li et al.
Huimeng Song et al.
The suprachiasmatic nucleus (SCN) of the hypothalamus serves as the master circadian pacemaker that synchronizes internal rhythms with the environmental light-dark (LD) cycle. Although SCN spike activity is crucial for maintaining circadian...
Multifunctional nanobiocomposite hydrogels for diabetic wound healing: Synergistic mechanisms, design principles, and translational barriers [0.03%]
用于糖尿病伤口愈合的纳米生物复合水凝胶:协同机制、设计原理和转化障碍
Mine Karayel Kurk,Nefise Akcelik
Mine Karayel Kurk
Persistent inflammation, polymicrobial biofilm colonization, and impaired re-epithelialization characterize the chronic and treatment-resistant nature of diabetic wounds. Conventional treatment strategies often fail to adequately address th...
Changes in lncRNA NORAD expression reflect stiffness-associated phenotypic alterations in human chondrocytes [0.03%]
人类软骨细胞 stiffness 相关表型改变反映长链非编码 RNA NORAD 的变化
Kyoung-Mi Lee,Seongyun Choi,Su-Eun Yang et al.
Kyoung-Mi Lee et al.
Extracellular matrix-derived mechanical signals play an important role in maintaining chondrocyte homeostasis, and their disruption has been implicated in osteoarthritis progression. Here, we investigated whether the long non-coding RNA NOR...
Gain-of-function mutation of type 2 ryanodine receptor attenuates dopaminergic neuron development associated with Ca2+ overload-triggered oxidative damage in mitochondria [0.03%]
钙超载诱发的线粒体氧化损伤参与Ryanodine受体2基因激活突变抑制多巴胺神经元发育的作用及机制研究
Yosuke Ito,Shuangshan Dong,Hiroki Kato et al.
Yosuke Ito et al.
Type 2 ryanodine receptor (RyR2), a Ca2+ release channel located in the endoplasmic reticulum (ER) membrane, expresses catecholamine-induced polymorphic ventricular tachycardia (CPVT), and is a potential risk factor of autism spectrum disor...
Overexpression of the POZ-ZF protein Kaiso promotes intestinal tumorigenesis in murine models [0.03%]
POZ-ZF蛋白Kaiso过表达可促进小鼠模型肠道肿瘤发生发展
Lindyann R Lessey,Geoffrey A Wood,Hanad Adan et al.
Lindyann R Lessey et al.
Over the past decade, several emerging roles for the transcription factor Kaiso in signaling and tumorigenesis have been unveiled. Intestinal-specific Kaiso overexpression induced chronic intestinal inflammation and potentiated intestinal t...
PIP4K2A depletion suppresses AKT signaling and enhances chemotherapy sensitivity in T-cell lymphoblastic lymphoma cells [0.03%]
PIPK4A缺失可抑制AKT信号传导并提高化疗药物对T细胞淋巴母细胞淋巴瘤的敏感性
Song Chen,Zunyu He,Ya Ha
Song Chen
T-cell lymphoblastic lymphoma (T-LBL) is an aggressive malignancy of immature T cells characterized by rapid proliferation and frequent activation of pro-survival pathways such as PI3K/AKT/mTORC1 signaling. Although multi-agent chemotherapy...
Omega-3 fatty acids mitigate methamphetamine-induced pulmonary oxidative stress, antioxidant depletion, neutrophilic inflammation, caspase-3 apoptosis, and bioenergetic dysfunction in male Wistar rats [0.03%]
ω-3脂肪酸可缓解安非他命致雄性Wistar大鼠肺氧化应激、抗氧化功能耗竭、中性粒细胞浸润、半胱天冬酶-3凋亡及生物能量学障碍
Ayodeji Folorunsho Ajayi,Oyedayo Phillips Akano,Ubong Edem David et al.
Ayodeji Folorunsho Ajayi et al.
Background: Methamphetamine (METH) is a widely misused psychostimulant whose pulmonary toxicity is poorly characterised. Omega-3 fatty acids (Omega-3 FAs) are nutritional lipids with established antioxidant and anti-infla...
The de-UFMylating enzyme UFSP2 drives vascular smooth muscle cells phenotypic switching by sustaining the TCF21/ERK pro-survival pathway [0.03%]
去泛素化酶UFSP2通过维持TCF21/ERK促存活通路驱动血管平滑肌细胞表型转换
Jie Wang,Kaicheng Liu,Wendi Li et al.
Jie Wang et al.
Background and aims: To investigate the role of the de-UFMylating enzyme UFSP2, in regulating the phenotypic switching of vascular smooth muscle cells (VSMCs), a critical event in atherosclerosis. ...