We are improving our search experience. To check which content you have full access to, or for advanced search, go back to the old search.

Search

Please fill in this field.

Search Results

Showing 81-100 of 9,185 results
  1. Sponging of five tumour suppressor miRNAs by lncRNA-KCNQ1OT1 activates BMPR1A/BMPR1B-ACVR2A/ACVR2B signalling and promotes chemoresistance in hepatocellular carcinoma

    Diverse mechanisms have been established to understand the chemoresistance of hepatocellular carcinoma (HCC), but the contribution of non-coding RNAs...

    Swagata Majumdar, Anannya Chakraborty, ... Soma Banerjee in Cell Death Discovery
    Article Open access 08 June 2024
  2. Deacetylated MDH1 and IDH1 aggravates PANoptosis in acute liver failure through endoplasmic reticulum stress signaling

    Acute liver failure (ALF) is a disease with a high mortality rate and poor prognosis, whose pathogenesis is not fully understood. PANoptosis is a...

    Chunxia Shi, Yukun Wang, ... Zuojiong Gong in Cell Death Discovery
    Article Open access 08 June 2024
  3. An oncogenic role of lncRNA SNHG1 promotes ATG7 expression and autophagy involving tumor progression and sunitinib resistance of Renal Cell Carcinoma

    Renal cell carcinoma (RCC) is a malignant tumor with high incidence in adult kidney. Long non-coding RNAs (lncRNAs) have recently been recognized as...

    Pei Tian, **xing Wei, ... Chaohong He in Cell Death Discovery
    Article Open access 08 June 2024
  4. The Caspase-Activated DNase drives inflammation and contributes to defense against viral infection

    Mitochondria react to infection with sub-lethal signals in the apoptosis pathway. Mitochondrial signals can be inflammatory but mechanisms are only...

    Abdul Moeed, Nico Thilmany, ... Georg Häcker in Cell Death & Differentiation
    Article Open access 07 June 2024
  5. IRGM/Irgm1 increases autophagy to inhibit activation of NLRP3 inflammasome in inflammatory injury induced acute liver failure

    Immune-related GTPase M (IRGM) induces autophagy and suppresses inflammation, but its putative role and signaling mechanism remain undefined in the...

    **ng Zhang, Yangyang Hu, ... Caiyan Zhao in Cell Death Discovery
    Article Open access 07 June 2024
  6. ZBP1 causes inflammation by inducing RIPK3-mediated necroptosis and RIPK1 kinase activity-independent apoptosis

    Z-DNA binding protein 1 (ZBP1) has important functions in anti-viral immunity and in the regulation of inflammatory responses. ZBP1 induces...

    Lioba Koerner, Laurens Wachsmuth, ... Manolis Pasparakis in Cell Death & Differentiation
    Article Open access 07 June 2024
  7. Structural basis for recognition of 26RFa by the pyroglutamylated RFamide peptide receptor

    The neuropeptide 26RFa, a member of the RF-amide peptide family, activates the pyroglutamylated RF-amide peptide receptor (QRFPR), a class A GPCR....

    Sanshan **, Shimeng Guo, ... Yi Jiang in Cell Discovery
    Article Open access 04 June 2024
  8. Specialized Tfh cell subsets driving type-1 and type-2 humoral responses in lymphoid tissue

    Effective antibody responses are essential to generate protective humoral immunity. Different inflammatory signals polarize T cells towards...

    Saumya Kumar, Afonso P. Basto, ... Luis Graca in Cell Discovery
    Article Open access 04 June 2024
  9. Nurturing gut health: role of m6A RNA methylation in upholding the intestinal barrier

    The intestinal lumen acts as a critical interface connecting the external environment with the body’s internal state. It’s essential to prevent the...

    Shuaijie Wang, Yuzhong Yang, ... Xuemei Zhang in Cell Death Discovery
    Article Open access 03 June 2024
  10. Ru(II)-based complexes containing 2-thiouracil derivatives suppress liver cancer stem cells by targeting NF-κB and Akt/mTOR signaling

    Cancer stem cells (CSCs) are defined as a rare population of cancer cells related to tumor initiation and maintenance. These cells are primarily...

    Larissa M. Bomfim, Sara P. Neves, ... Daniel P. Bezerra in Cell Death Discovery
    Article Open access 03 June 2024
  11. Regulation of cardiac ferroptosis in diabetic human heart failure: uncovering molecular pathways and key targets

    Diabetes significantly increases the risk of heart failure by inducing myocardial cell death, potentially through ferroptosis—an iron-dependent,...

    Flobater I. Gawargi, Paras K. Mishra in Cell Death Discovery
    Article Open access 01 June 2024
  12. Mechanism and role of nuclear laminin B1 in cell senescence and malignant tumors

    Nuclear lamin B1 (LMNB1) is a member of the nuclear lamin protein family. LMNB1 can maintain and ensure the stability of nuclear structure and...

    Tingcong Lv, Cong Wang, ... Zhe Fan in Cell Death Discovery
    Article Open access 01 June 2024
  13. Peroxiredoxin I and II as novel therapeutic molecular targets in cervical cancer treatment through regulation of endoplasmic reticulum stress induced by bleomycin

    Cervical cancer, significantly affecting women worldwide, often involves treatment with bleomycin, an anticancer agent targeting breast, ovarian, and...

    Hu-Nan Sun, Da-Yu Ma, ... Taeho Kwon in Cell Death Discovery
    Article Open access 31 May 2024
  14. Publisher Correction: SGF29 nuclear condensates reinforce cellular aging

    Kaowen Yan, Qianzhao Ji, ... Guang-Hui Liu in Cell Discovery
    Article Open access 30 May 2024
  15. BRD9 regulates normal human hematopoietic stem cell function and lineage differentiation

    Bromodomain containing protein 9 (BRD9), a member of the non-canonical BRG1/BRM-associated factor (ncBAF) chromatin remodeling complex, has been...

    Swati Garg, Wei Ni, ... James D. Griffin in Cell Death & Differentiation
    Article Open access 30 May 2024
  16. C9orf72 controls hepatic lipid metabolism by regulating SREBP1 transport

    Sterol regulatory element binding transcription factors (SREBPs) play a crucial role in lipid homeostasis. They are processed and transported to the...

    Yachen Wu, Wenzhong Zheng, ... Shi Chen in Cell Death & Differentiation
    Article 30 May 2024
  17. PD-L2 drives resistance to EGFR-TKIs: dynamic changes of the tumor immune environment and targeted therapy

    There is a lack of effective treatments to overcome resistance to EGFR-TKIs in EGFR mutant tumors. A deeper understanding of resistance mechanisms...

    Simeng Wang, Dongliang Su, ... Chunfu Wu in Cell Death & Differentiation
    Article 30 May 2024
Did you find what you were looking for? Share feedback.