this study was designed to develop a novel technical approach based on tumor-associated telomerase activity to detect cytotoxic activity of effector cells of the natural immune system against neoplastic cells. human K562, DAUDI or Raji leukemia cells were co-cultured with NK or LAK effector cells at 37 T for 4 h. target cell killing was evaluated by Cr-51-release assay (CRA) or reduction of telomerase activity (R-TRAP(CTX)) of the target after exposure to effector cells. NK and LAK effector cells tested against K562 target cells at effector/target ratio of 50:1 showed cytotoxicity of 65% and 78%, respectively, with CRA and 51% and 74%, respectively, with R-TRAP(CTX). Incorrect results were obtained with CRA when target cells were admixed with normal fibroblasts, whereas R-TRAP(CTX) was not influenced by the presence of normal cells. control experiments performed with telomerase-negative cells showed that telomerase activity of effector cells was not altered during the cytolytic reaction. moreover, supernatants obtained from effector-target cell co-cultures did not influence telomerase activity of targets. this novel R-TRAP(CTX) method to assay anti-tumor natural and possibly antigen-dependent cell-mediated cytotoxicity appears to provide sensible advantages over classical CRA or gamma-interferon release by effector cells in presence of target cells (ELISPOT), since (a) it furnishes reliable data on effector cell killing against neoplastic cells, even when malignant cells are admixed with normal cells, as frequently occurs in tumor biopsies, not manageable with CRA; (b) it provides an actual measure of target cell killing, not furnished by ELISPOT technique.

Faraoni, I., Cottarelli, A., Giuliani, A., Bonmassar, L., Rossi, L., Bonmassar, E. (2005). A novel telomerase-based approach to detect natural cell-mediated cytotoxic activity against tumor cells in vitro. JOURNAL OF IMMUNOLOGICAL METHODS, 305(2), 162-172 [10.1016/j.jim.2005.07.015].

A novel telomerase-based approach to detect natural cell-mediated cytotoxic activity against tumor cells in vitro

Faraoni, I.
;
2005-01-01

Abstract

this study was designed to develop a novel technical approach based on tumor-associated telomerase activity to detect cytotoxic activity of effector cells of the natural immune system against neoplastic cells. human K562, DAUDI or Raji leukemia cells were co-cultured with NK or LAK effector cells at 37 T for 4 h. target cell killing was evaluated by Cr-51-release assay (CRA) or reduction of telomerase activity (R-TRAP(CTX)) of the target after exposure to effector cells. NK and LAK effector cells tested against K562 target cells at effector/target ratio of 50:1 showed cytotoxicity of 65% and 78%, respectively, with CRA and 51% and 74%, respectively, with R-TRAP(CTX). Incorrect results were obtained with CRA when target cells were admixed with normal fibroblasts, whereas R-TRAP(CTX) was not influenced by the presence of normal cells. control experiments performed with telomerase-negative cells showed that telomerase activity of effector cells was not altered during the cytolytic reaction. moreover, supernatants obtained from effector-target cell co-cultures did not influence telomerase activity of targets. this novel R-TRAP(CTX) method to assay anti-tumor natural and possibly antigen-dependent cell-mediated cytotoxicity appears to provide sensible advantages over classical CRA or gamma-interferon release by effector cells in presence of target cells (ELISPOT), since (a) it furnishes reliable data on effector cell killing against neoplastic cells, even when malignant cells are admixed with normal cells, as frequently occurs in tumor biopsies, not manageable with CRA; (b) it provides an actual measure of target cell killing, not furnished by ELISPOT technique.
2005
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore BIO/14
English
Con Impact Factor ISI
telomerase
natural immunity
cytotoxicity assay
NK
LAK
Faraoni, I., Cottarelli, A., Giuliani, A., Bonmassar, L., Rossi, L., Bonmassar, E. (2005). A novel telomerase-based approach to detect natural cell-mediated cytotoxic activity against tumor cells in vitro. JOURNAL OF IMMUNOLOGICAL METHODS, 305(2), 162-172 [10.1016/j.jim.2005.07.015].
Faraoni, I; Cottarelli, A; Giuliani, A; Bonmassar, L; Rossi, L; Bonmassar, E
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/373165
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