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2. Characteristics of the effector cells mediating cytotoxicity against antibody-coated target cells. III. Ultrastructural studies. Penfold PL; Greenberg AH; Roitt IM Clin Exp Immunol; 1976 Jan; 23(1):91-7. PubMed ID: 1261093 [TBL] [Abstract][Full Text] [Related]
3. Lymphocyte activation. IV. The ultrastructural pattern of the response of mouse T and B cells to mitogenic stimulation in vitro. Janossy G; Shohat M; Greaves MF; Dourmashkin RR Immunology; 1973 Feb; 24(2):211-27. PubMed ID: 4540356 [TBL] [Abstract][Full Text] [Related]
4. Functional heterogeneity of murine lymphoid cells. I. Responsiveness to and surface binding of concanavalin A and phytohemagglutinin. Stobo JD; Rosenthal AS; Paul WE J Immunol; 1972 Jan; 108(1):1-17. PubMed ID: 5010393 [No Abstract] [Full Text] [Related]
6. Phagocytosis and peroxidase release by seabream (Sparus aurata L.) leucocytes in response to yeast cells. RodrÃguez A; Esteban MA; Meseguer J Anat Rec A Discov Mol Cell Evol Biol; 2003 May; 272(1):415-23. PubMed ID: 12704699 [TBL] [Abstract][Full Text] [Related]
7. Competition between phytohemagglutinin & Concanavalin for a common receptor on murine lymphoid cell surface. Ray PK; Sundaram K Indian J Exp Biol; 1974 Nov; 12(6):528-30. PubMed ID: 4478091 [No Abstract] [Full Text] [Related]
8. Peanut agglutinin, a new mitogen that binds to galactosyl sites exposed after neuraminidase treatment. Novogrodsky A; Lotan R; Ravid A; Sharon N J Immunol; 1975 Nov; 115(5):1243-8. PubMed ID: 1176775 [TBL] [Abstract][Full Text] [Related]
9. Ultrastructural visualisation of carbohydrate groups in the surface coating of hamster alveolar macrophages and pneumonocytes. Meban C J Anat; 1986 Jun; 146():131-9. PubMed ID: 2447050 [TBL] [Abstract][Full Text] [Related]
10. Methodological approaches to the study of carbohydrate surface receptore on macrophages and tumor cells. Wollweber L; Fritsch S Neoplasma; 1975; 22(2):157-62. PubMed ID: 1161111 [TBL] [Abstract][Full Text] [Related]
11. Ultrastructure and cytochemistry of bone marrow granulocytes in culture. Parmley RT; Ogawa M; Spicer SS; Wright NJ Exp Hematol; 1976 Mar; 4(2):75-89. PubMed ID: 1267962 [TBL] [Abstract][Full Text] [Related]
12. Ultrastructure and cytochemistry of the cell surface of eosinophils. Pimenta PF; De Souza W J Submicrosc Cytol; 1982 Apr; 14(2):227-37. PubMed ID: 6176720 [TBL] [Abstract][Full Text] [Related]
13. Ultrastructural histopathology of experimental Haemophilus influenzae type B. Meningitis in the infant rat. I. Leukocytes of the spinal leptomeninges. Merchant RE; Willard JE; Daum RS J Submicrosc Cytol; 1981 Oct; 13(4):501-14. PubMed ID: 6977648 [TBL] [Abstract][Full Text] [Related]
14. Necrotaxis: a scanning and transmission electron microscopy study. Vethamany VG; Vethamany SK; Bessis M Nouv Rev Fr Hematol; 1975; 15(1):83-98. PubMed ID: 126426 [TBL] [Abstract][Full Text] [Related]
16. Concanavalin A receptor sites on lymph node cells in vivo and in vitro. Sun DC; Leak LV Anat Rec; 1982 Sep; 204(1):69-82. PubMed ID: 6293343 [TBL] [Abstract][Full Text] [Related]
17. Changes occurring on the surface of mouse T cells during concanavalin A-induced lymphoblastic transformation. Kierszenbaum F; Budzko DB Immunology; 1979 Dec; 38(4):827-34. PubMed ID: 391704 [TBL] [Abstract][Full Text] [Related]
18. Hapten-antibody conjugates as probes of the lymphocyte surface. Wofsy L Scan Electron Microsc; 1979; (3):565-72. PubMed ID: 392715 [TBL] [Abstract][Full Text] [Related]
19. Thy-1 positive tingible body macrophages (TBM) in mouse lymph nodes. Smith JP; Kosco MH; Tew JG; Szakal AK Anat Rec; 1988 Dec; 222(4):380-90. PubMed ID: 2465705 [TBL] [Abstract][Full Text] [Related]
20. Phagocytosis of Herpetomonas samuelpessoai by mouse peritoneal macrophages: effect of lidocaine, concanavalin A and carbohydrates. Oda LM; Alviano CS; Angluster J; De Souza W J Submicrosc Cytol; 1982 Apr; 14(2):313-22. PubMed ID: 7077713 [TBL] [Abstract][Full Text] [Related] [Next] [New Search]