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36 results on '"Zhong, Fei"'

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1. [Ethanol decreases activation of T lymphocytes in human peripheral blood and increases their apoptosis].

2. Porcine Parvovirus Infection Causes Pig Placenta Tissue Damage Involving Nonstructural Protein 1 (NS1)-Induced Intrinsic ROS/Mitochondria-Mediated Apoptosis.

3. Melatonin, a novel selective ATF-6 inhibitor, induces human hepatoma cell apoptosis through COX-2 downregulation.

4. Novel Protein Disulfide Isomerase Inhibitor with Anticancer Activity in Multiple Myeloma.

5. Melatonin overcomes apoptosis resistance in human hepatocellular carcinoma by targeting survivin and XIAP.

6. Phosphorylation of tau by death-associated protein kinase 1 antagonizes the kinase-induced cell apoptosis.

7. Acidosis promotes Bcl-2 family-mediated evasion of apoptosis: involvement of acid-sensing G protein-coupled receptor Gpr65 signaling to Mek/Erk.

8. Melatonin sensitizes human hepatoma cells to endoplasmic reticulum stress-induced apoptosis.

9. [Non-structural protein NS1 of canine parvovirus induces the apoptosis of cells].

10. Induction of Ca²+-driven apoptosis in chronic lymphocytic leukemia cells by peptide-mediated disruption of Bcl-2-IP3 receptor interaction.

11. Arsenic trioxide inhibits cholangiocarcinoma cell growth and induces apoptosis.

12. The BH4 domain of Bcl-2 inhibits ER calcium release and apoptosis by binding the regulatory and coupling domain of the IP3 receptor.

13. Targeting Bcl-2-IP3 receptor interaction to reverse Bcl-2's inhibition of apoptotic calcium signals.

14. Dexamethasone-induced inositol 1,4,5-trisphosphate receptor elevation in murine lymphoma cells is not required for dexamethasone-mediated calcium elevation and apoptosis.

15. Dexamethasone-induced gene 2 (dig2) is a novel pro-survival stress gene induced rapidly by diverse apoptotic signals.

19. Trifluoromethyl-substituted 3,5-bis(arylidene)-4-piperidones as potential anti-hepatoma and anti-inflammation agents by inhibiting NF-кB activation

20. PML silencing inhibits cell proliferation and induces DNA damage in cultured ovarian cancer cells

21. DAXX promotes ovarian cancer ascites cell proliferation and migration by activating the ERK signaling pathway

22. Discovery of novel NF-кB inhibitor based on scaffold hopping: 1,4,5,6,7,8-hexahydropyrido[4,3-d]pyrimidine

23. Peroxisome proliferator-activated receptor-gamma activation attenuates diabetic cardiomyopathy via regulation of the TGF-β/ERK pathway and epithelial-to-mesenchymal transition

24. Phosphorylation of Tau by Death-Associated Protein Kinase 1 Antagonizes the Kinase-Induced Cell Apoptosis

25. DAXX silencing suppresses mouse ovarian surface epithelial cell growth by inducing senescence and DNA damage

26. Identification of 16,25- O -diacetyl-cucurbitane F and 25- O -acetyl-23,24-dihydrocucurbitacin F as novel anti-cancer chemicals

27. A systematic analysis of genomic changes in Tg2576 mice

28. Acidosis Promotes Bcl-2 Family-mediated Evasion of Apoptosis: INVOLVEMENT OF ACID-SENSING G PROTEIN-COUPLED RECEPTOR GPR65 SIGNALING TO MEK/ERK*

29. PML silencing inhibits cell proliferation and induces DNA damage in cultured ovarian cancer cells.

30. The role of ubiquitin-specific protease 14 ( USP14) in cell adhesion-mediated drug resistance ( CAM- DR) of multiple myeloma cells.

31. Endoplasmic Reticulum Stress–Induced Resistance to Doxorubicin Is Reversed by Paeonol Treatment in Human Hepatocellular Carcinoma Cells

32. Bcl-2 differentially regulates Ca2+ signals according to the strength of T cell receptor activation.

33. Discovery of novel NF-кB inhibitor based on scaffold hopping: 1,4,5,6,7,8-hexahydropyrido[4,3-d]pyrimidine.

34. DAXX promotes ovarian cancer ascites cell proliferation and migration by activating the ERK signaling pathway.

35. Cell adhesion induces overexpression of chromodomain helicase/ATPase DNA binding protein 1-like gene (CHD1L) and contributes to cell adhesion-mediated drug resistance (CAM-DR) in multiple myeloma cells.

36. Discovery of anti-hepatoma agents from 1,4,5,6,7,8-hexahydropyrido[4,3-d]pyrimidine by inhibiting PI3K/AKT/NF-κB pathway activation.

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