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

Retraction: Fexuprazan safeguards the esophagus from hydrochloric acid-induced damage by suppressing NLRP1/Caspase-1/GSDMD pyroptotic pathway

撤稿:非索拉赞通过抑制 NLRP1/Caspase-1/GSDMD 细胞焦亡通路保护食管免受盐酸损伤。

Frontiers Editorial Office

Retraction: Pigment epithelium-derived factor promotes the growth and migration of human esophageal squamous cell carcinoma

撤稿:色素上皮衍生因子促进人食管鳞状细胞癌的生长和迁移

Office, Frontiers Editorial

Correction: The impact of sarcopenia on prognosis and fruquintinib efficacy in advanced colorectal cancer: a retrospective and mendelian randomization study

更正:肌少症对晚期结直肠癌预后及呋喹替尼疗效的影响:一项回顾性孟德尔随机化研究

Frontiers Production Office

Retraction: USP22 protects against myocardial ischemia-reperfusion injury via the SIRT1-p53/SLC7A11-dependent inhibition of ferroptosis-induced cardiomyocyte death

撤稿:USP22 通过 SIRT1-p53/SLC7A11 依赖性抑制铁死亡诱导的心肌细胞死亡,从而保护心肌免受缺血再灌注损伤

Frontiers Editorial Office

Correction: Analysis of the twelve cases of immune-related myocarditis caused by cadonilimab

更正:对卡多尼利单抗引起的12例免疫相关性心肌炎病例的分析

Production Office, Frontiers

Retraction: Autoantibodies in renal diseases - clinical significance and recent developments in serological detection

撤稿:肾脏疾病中的自身抗体——临床意义及血清学检测的最新进展

Office, Frontiers Editorial

Retraction: Experimental and theoretical investigations of Erbium complex: DNA/BSA interaction, anticancer and antibacterial studies

撤稿:铒配合物的实验和理论研究:DNA/BSA相互作用、抗癌和抗菌研究

Frontiers Editorial Office

Retraction: Dual-phenotype hepatocellular carcinoma: correlation of MRI features with other primary hepatocellular carcinoma and differential diagnosis

撤稿:双表型肝细胞癌:MRI特征与其他原发性肝细胞癌的相关性及鉴别诊断

Frontiers Editorial Office

Erratum: A multiplex inhalation platform to model in situ like aerosol delivery in a breathing lung-on-chip

更正:用于模拟芯片呼吸肺中原位气溶胶输送的多通道吸入平台

Frontiers Production Office

Erratum: A reversible cell penetrating peptide-cargo linkage allows dissection of cell penetrating peptide- and cargo-dependent effects on internalization and identifies new functionalities of putative endolytic peptides

勘误:可逆的细胞穿透肽-货物连接能够解析细胞穿透肽和货物对内吞作用的影响,并揭示假定的内溶肽的新功能。

Frontiers Production Office