BIOMARKERS

Molecular Biopsy of Human Tumors

- a resource for Precision Medicine *

244 related articles for article (PubMed ID: 34872436)

  • 1. Inhibition of PLA2G4E/cPLA2 promotes survival of random skin flaps by alleviating Lysosomal membrane permeabilization-Induced necroptosis.
    Lou J; Wang X; Zhang H; Yu G; Ding J; Zhu X; Li Y; Wu Y; Xu H; Xu H; Gao W; Xiao J; Zhou K
    Autophagy; 2022 Aug; 18(8):1841-1863. PubMed ID: 34872436
    [TBL] [Abstract][Full Text] [Related]  

  • 2. PLA2G4A/cPLA2-mediated lysosomal membrane damage leads to inhibition of autophagy and neurodegeneration after brain trauma.
    Sarkar C; Jones JW; Hegdekar N; Thayer JA; Kumar A; Faden AI; Kane MA; Lipinski MM
    Autophagy; 2020 Mar; 16(3):466-485. PubMed ID: 31238788
    [TBL] [Abstract][Full Text] [Related]  

  • 3. MLKL polymerization-induced lysosomal membrane permeabilization promotes necroptosis.
    Liu S; Perez P; Sun X; Chen K; Fatirkhorani R; Mammadova J; Wang Z
    Cell Death Differ; 2024 Jan; 31(1):40-52. PubMed ID: 37996483
    [TBL] [Abstract][Full Text] [Related]  

  • 4. CAMK2/CaMKII activates MLKL in short-term starvation to facilitate autophagic flux.
    Zhan Q; Jeon J; Li Y; Huang Y; Xiong J; Wang Q; Xu TL; Li Y; Ji FH; Du G; Zhu MX
    Autophagy; 2022 Apr; 18(4):726-744. PubMed ID: 34282994
    [TBL] [Abstract][Full Text] [Related]  

  • 5. Identification of compound CA-5f as a novel late-stage autophagy inhibitor with potent anti-tumor effect against non-small cell lung cancer.
    Zhang L; Qiang P; Yu J; Miao Y; Chen Z; Qu J; Zhao Q; Chen Z; Liu Y; Yao X; Liu B; Cui L; Jing H; Sun G
    Autophagy; 2019 Mar; 15(3):391-406. PubMed ID: 30145925
    [TBL] [Abstract][Full Text] [Related]  

  • 6. Lysosomal damage after spinal cord injury causes accumulation of RIPK1 and RIPK3 proteins and potentiation of necroptosis.
    Liu S; Li Y; Choi HMC; Sarkar C; Koh EY; Wu J; Lipinski MM
    Cell Death Dis; 2018 May; 9(5):476. PubMed ID: 29686269
    [TBL] [Abstract][Full Text] [Related]  

  • 7. DADLE promotes motor function recovery by inhibiting cytosolic phospholipase A
    Chen Y; Zhang H; Jiang L; Cai W; Kuang J; Geng Y; Xu H; Li Y; Yang L; Cai Y; Wang X; Xiao J; Ni W; Zhou K
    Br J Pharmacol; 2024 Mar; 181(5):712-734. PubMed ID: 37766498
    [TBL] [Abstract][Full Text] [Related]  

  • 8. Metformin alleviates hyperglycemia-induced endothelial impairment by downregulating autophagy via the Hedgehog pathway.
    Niu C; Chen Z; Kim KT; Sun J; Xue M; Chen G; Li S; Shen Y; Zhu Z; Wang X; Liang J; Jiang C; Cong W; Jin L; Li X
    Autophagy; 2019 May; 15(5):843-870. PubMed ID: 30653446
    [TBL] [Abstract][Full Text] [Related]  

  • 9. Trehalose induces autophagy via lysosomal-mediated TFEB activation in models of motoneuron degeneration.
    Rusmini P; Cortese K; Crippa V; Cristofani R; Cicardi ME; Ferrari V; Vezzoli G; Tedesco B; Meroni M; Messi E; Piccolella M; Galbiati M; Garrè M; Morelli E; Vaccari T; Poletti A
    Autophagy; 2019 Apr; 15(4):631-651. PubMed ID: 30335591
    [TBL] [Abstract][Full Text] [Related]  

  • 10. TNF-induced necroptosis initiates early autophagy events via RIPK3-dependent AMPK activation, but inhibits late autophagy.
    Wu W; Wang X; Sun Y; Berleth N; Deitersen J; Schlütermann D; Stuhldreier F; Wallot-Hieke N; José Mendiburo M; Cox J; Peter C; Bergmann AK; Stork B
    Autophagy; 2021 Dec; 17(12):3992-4009. PubMed ID: 33779513
    [TBL] [Abstract][Full Text] [Related]  

  • 11. GNS561, a clinical-stage PPT1 inhibitor, is efficient against hepatocellular carcinoma
    Brun S; Bestion E; Raymond E; Bassissi F; Jilkova ZM; Mezouar S; Rachid M; Novello M; Tracz J; Hamaï A; Lalmanach G; Vanderlynden L; Legouffe R; Stauber J; Schubert T; Plach MG; Courcambeck J; Drouot C; Jacquemot G; Serdjebi C; Roth G; Baudoin JP; Ansaldi C; Decaens T; Halfon P
    Autophagy; 2022 Mar; 18(3):678-694. PubMed ID: 34740311
    [TBL] [Abstract][Full Text] [Related]  

  • 12. VCP maintains lysosomal homeostasis and TFEB activity in differentiated skeletal muscle.
    Arhzaouy K; Papadopoulos C; Schulze N; Pittman SK; Meyer H; Weihl CC
    Autophagy; 2019 Jun; 15(6):1082-1099. PubMed ID: 30654731
    [TBL] [Abstract][Full Text] [Related]  

  • 13. Autophagy activation, lipotoxicity and lysosomal membrane permeabilization synergize to promote pimozide- and loperamide-induced glioma cell death.
    Meyer N; Henkel L; Linder B; Zielke S; Tascher G; Trautmann S; Geisslinger G; Münch C; Fulda S; Tegeder I; Kögel D
    Autophagy; 2021 Nov; 17(11):3424-3443. PubMed ID: 33461384
    [TBL] [Abstract][Full Text] [Related]  

  • 14. Enzyme replacement therapy with recombinant pro-CTSD (cathepsin D) corrects defective proteolysis and autophagy in neuronal ceroid lipofuscinosis.
    Marques ARA; Di Spiezio A; Thießen N; Schmidt L; Grötzinger J; Lüllmann-Rauch R; Damme M; Storck SE; Pietrzik CU; Fogh J; Bär J; Mikhaylova M; Glatzel M; Bassal M; Bartsch U; Saftig P
    Autophagy; 2020 May; 16(5):811-825. PubMed ID: 31282275
    [TBL] [Abstract][Full Text] [Related]  

  • 15. cPLA2 activation contributes to lysosomal defects leading to impairment of autophagy after spinal cord injury.
    Li Y; Jones JW; M C Choi H; Sarkar C; Kane MA; Koh EY; Lipinski MM; Wu J
    Cell Death Dis; 2019 Jul; 10(7):531. PubMed ID: 31296844
    [TBL] [Abstract][Full Text] [Related]  

  • 16. Puerarin enhances TFEB-mediated autophagy and attenuates ROS-induced pyroptosis after ischemic injury of random-pattern skin flaps.
    Lai Y; Yang N; Shi D; Ma X; Huang Y; Lu J; Zhang X; Zhou H; Gao W; Mao C; Wang L
    Eur J Pharmacol; 2024 Jul; 974():176621. PubMed ID: 38679118
    [TBL] [Abstract][Full Text] [Related]  

  • 17. Receptor-Interacting Protein Kinase 3 (RIPK3) inhibits autophagic flux during necroptosis in intestinal epithelial cells.
    Otsubo K; Maeyashiki C; Nibe Y; Tamura A; Aonuma E; Matsuda H; Kobayashi M; Onizawa M; Nemoto Y; Nagaishi T; Okamoto R; Tsuchiya K; Nakamura T; Torii S; Itakura E; Watanabe M; Oshima S
    FEBS Lett; 2020 May; 594(10):1586-1595. PubMed ID: 31997355
    [TBL] [Abstract][Full Text] [Related]  

  • 18. Eicosapentaenoic acid attenuates renal lipotoxicity by restoring autophagic flux.
    Yamamoto T; Takabatake Y; Minami S; Sakai S; Fujimura R; Takahashi A; Namba-Hamano T; Matsuda J; Kimura T; Matsui I; Kaimori JY; Takeda H; Takahashi M; Izumi Y; Bamba T; Matsusaka T; Niimura F; Yanagita M; Isaka Y
    Autophagy; 2021 Jul; 17(7):1700-1713. PubMed ID: 32546086
    [TBL] [Abstract][Full Text] [Related]  

  • 19. Docosahexanoic acid antagonizes TNF-α-induced necroptosis by attenuating oxidative stress, ceramide production, lysosomal dysfunction, and autophagic features.
    Pacheco FJ; Almaguel FG; Evans W; Rios-Colon L; Filippov V; Leoh LS; Rook-Arena E; Mediavilla-Varela M; De Leon M; Casiano CA
    Inflamm Res; 2014 Oct; 63(10):859-71. PubMed ID: 25095742
    [TBL] [Abstract][Full Text] [Related]  

  • 20. Metabolic effects of RUBCN/Rubicon deficiency in kidney proximal tubular epithelial cells.
    Matsuda J; Takahashi A; Takabatake Y; Sakai S; Minami S; Yamamoto T; Fujimura R; Namba-Hamano T; Yonishi H; Nakamura J; Kimura T; Kaimori JY; Matsui I; Takahashi M; Nakao M; Izumi Y; Bamba T; Matsusaka T; Niimura F; Yanagita M; Yoshimori T; Isaka Y
    Autophagy; 2020 Oct; 16(10):1889-1904. PubMed ID: 31944172
    [TBL] [Abstract][Full Text] [Related]  

    [Next]    [New Search]
    of 13.