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1. Changes of liver-resident NK cells during liver regeneration in rats

2. Human B Cells Mediate Innate Anti-Cancer Cytotoxicity Through Concurrent Engagement of Multiple TNF Superfamily Ligands.

3. Development of flow cytometry assays for measuring cell-membrane enzyme activity on individual cells.

4. ADAM10 Sheddase Activity is a Potential Lung-Cancer Biomarker.

5. Modification of proteolytic activity matrix analysis (PrAMA) to measure ADAM10 and ADAM17 sheddase activities in cell and tissue lysates.

6. Soluble TNF Regulates TACE via AP-2α Transcription Factor in Mouse Dendritic Cells.

7. Inhibition of Soluble Tumor Necrosis Factor Prevents Chemically Induced Carcinogenesis in Mice.

8. Dendritic-cell exosomes cross-present Toll-like receptor-ligands and activate bystander dendritic cells.

9. Suppression of natural killer-cell and dendritic-cell apoptotic tumoricidal activity in patients with head and neck cancer.

10. Dendritic cell exosomes directly kill tumor cells and activate natural killer cells via TNF superfamily ligands.

11. Adenovirus-engineered human dendritic cells induce natural killer cell chemotaxis via CXCL8/IL-8 and CXCL10/IP-10.

12. Role of TNF superfamily ligands in innate immunity.

13. Acupuncture May Stimulate Anticancer Immunity via Activation of Natural Killer Cells.

14. Virally infected and matured human dendritic cells activate natural killer cells via cooperative activity of plasma membrane-bound TNF and IL-15.

15. Sheddase activity of tumor necrosis factor-alpha converting enzyme is increased and prognostically valuable in head and neck cancer.

16. The endothelial cell-produced antiangiogenic cytokine vascular endothelial growth inhibitor induces dendritic cell maturation.

17. Essential role of the TNF-TNFR2 cognate interaction in mouse dendritic cell-natural killer cell crosstalk.

18. Dendritic cells and natural killer cells interact via multiple TNF family molecules.

19. A novel epitope of N-CAM defines precursors of human adherent NK cells.

20. Intratumoral delivery of dendritic cells engineered to secrete both interleukin (IL)-12 and IL-18 effectively treats local and distant disease in association with broadly reactive Tc1-type immunity.

21. Innate direct anticancer effector function of human immature dendritic cells. II. Role of TNF, lymphotoxin-alpha(1)beta(2), Fas ligand, and TNF-related apoptosis-inducing ligand.

22. Innate direct anticancer effector function of human immature dendritic cells. I. Involvement of an apoptosis-inducing pathway.

23. Measurement of NK activity by the microcytotoxicity assay (MCA): a new application for an old assay.

24. Role of TNF family ligands in antitumor activity of natural killer cells.

25. Blood monocytes and tumor-associated macrophages in human cancer: differences in activation levels.

26. Inhibition of apoptosis in human tumour cells by the tumour-associated serpin, SCC antigen-1.

27. Constitutive expression and role of the TNF family ligands in apoptotic killing of tumor cells by human NK cells.

28. Expansion of functional NK cells in multiple tissue compartments of mice treated with Flt3-ligand: implications for anti-cancer and anti-viral therapy.

29. Human tumor antigen-specific T lymphocytes and interleukin-2-activated natural killer cells: comparisons of antitumor effects in vitro and in vivo.

30. Absence of B7.1-CD28/CTLA-4-mediated co-stimulation in human NK cells.

31. Natural killer cells and tumor therapy.

32. The in vivo effect of hepatotrophic factors augmenter of liver regeneration, hepatocyte growth factor, and insulin-like growth factor-II on liver natural killer cell functions.

33. Nonsecretory apoptotic killing by human NK cells.

34. Antitumor Functions of Natural Killer Cells and Control of Metastases

35. Elimination of established liver metastases by human interleukin 2-activated natural killer cells after locoregional or systemic adoptive transfer.

36. Changes of liver-resident NK cells during liver regeneration in rats.

37. Antitumor activities of subsets of human IL-2-activated natural killer cells in solid tissues.

38. Immunotherapy of liver metastases of human gastric carcinoma with interleukin 2-activated natural killer cells.

39. Phenotypic and functional characteristics of human A-NK cells.

40. Distinct phenotypic and functional characteristics of human natural killer cells obtained by rapid interleukin 2-induced adherence to plastic.

41. Rapid Il-2-induced adherence of human natural killer cells. Expression of mRNA for cytokines and IL-2 receptors in adherent NK cells.

42. Lymphokine-activated killer cells in rats: analysis of progenitor and effector cell phenotype and relationship to natural killer cells.

43. Studies on lymphokine activated killer cells in the rat: analysis of precursor and effector cell phenotype and relationship to natural killer cells.

44. Enhanced antimetastatic activity of lymphokine-activated killer cells purified and expanded by their adherence to plastic.

45. Lymphokine-activated killer cells in rats: analysis of tissue and strain distribution, ontogeny, and target specificity.

46. Monoclonal antibody to a triggering structure expressed on rat natural killer cells and adherent lymphokine-activated killer cells.

47. Generation and characterization of purified adherent lymphokine-activated killer cells in mice.

48. Lymphokine-activated killer cells in rats. IV. Developmental relationships among large agranular lymphocytes, large granular lymphocytes, and lymphokine-activated killer cells.

49. In vivo distribution and tissue localization of highly purified rat lymphokine-activated killer (LAK) cells.

50. Lymphokine-activated killer cells in rats. III. A simple method for the purification of large granular lymphocytes and their rapid expansion and conversion into lymphokine-activated killer cells.

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