Literature DB >> 6977616

Augmentation of the anti-tumor therapeutic efficacy of long-term cultured T lymphocytes by in vivo administration of purified interleukin 2.

M A Cheever, P D Greenberg, A Fefer, S Gillis.   

Abstract

Spleen cells from C57BL/6 mice immunized in vivo with a syngeneic Friend virus-induced leukemia, FBL-3, were specifically activated by culture for 7 d with FBL-3, then nonspecifically induced to proliferate in vitro for 12 d by addition of supernatants from concanavalin A-stimulated lymphocytes containing interleukin 2 (IL-2). Such long-term cultured T lymphocytes have previously been shown to specifically lyse FBL-3 and to mediate specific adoptive therapy of advanced disseminated FBL-3 when used as an adjunct to cyclophosphamide (CY) in adoptive chemoimmunotherapy. Because the cultured cells are dependent upon IL-2 for proliferation and survival in vitro, their efficacy in vivo is potentially limited by the availability of endogenous IL-2. Thus, the aim of the current study was to determine whether exogenously administered purified IL-2 could augment the in vivo efficacy of long-term cultured T lymphocytes. Purified IL-2 alone or as an adjunct to CY as ineffective in tumor therapy. However, IL-2 was extremely effective in augmenting the efficacy of IL-2-dependent long-term cultured T lymphocytes in adoptive chemoimmunotherapy. The mechanism by which IL-2 functions in vivo is presumably by promoting in vivo growth and/or survival of adoptively transferred cells. This assumption was supported by the findings that IL-2 did not enhance the modest therapeutic efficacy of irradiated long-term cultured cells that were incapable of proliferating in the host and was ineffective in augmenting the in vivo efficacy of noncultured immune cells that are not immediately dependent upon exogenous IL-2 for survival.

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Year:  1982        PMID: 6977616      PMCID: PMC2186656          DOI: 10.1084/jem.155.4.968

Source DB:  PubMed          Journal:  J Exp Med        ISSN: 0022-1007            Impact factor:   14.307


  37 in total

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Journal:  Nature       Date:  1977-07-14       Impact factor: 49.962

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Journal:  Nature       Date:  1979-08-23       Impact factor: 49.962

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Authors:  K A Smith; S Gillis; P E Baker; D McKenzie; F W Ruscetti
Journal:  Ann N Y Acad Sci       Date:  1979       Impact factor: 5.691

Review 4.  Passive immunotherapy of cancer in animals and man.

Authors:  S A Rosenberg; W D Terry
Journal:  Adv Cancer Res       Date:  1977       Impact factor: 6.242

Review 5.  Lymphocyte-mediated cytotoxicity and blocking serum activity to tumor antigens.

Authors:  K E Hellström; I Hellström
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Authors:  C C Ting; G Shiu; D Rodrigues; R B Herberman
Journal:  Cancer Res       Date:  1974-07       Impact factor: 12.701

7.  T cell growth factor: parameters of production and a quantitative microassay for activity.

Authors:  S Gillis; M M Ferm; W Ou; K A Smith
Journal:  J Immunol       Date:  1978-06       Impact factor: 5.422

8.  Immunotherapy of lethal metastases by lymphocytes sensitized against tumor cells in vitro.

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Journal:  J Natl Cancer Inst       Date:  1975-03       Impact factor: 13.506

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Authors:  D Y Mochizuki; J Watson; S Gillis
Journal:  J Immunol Methods       Date:  1980       Impact factor: 2.303

10.  Specificity of adoptive chemoimmunotherapy of established syngeneic tumors.

Authors:  M A Cheever; P D Greenberg; A Fefer
Journal:  J Immunol       Date:  1980-08       Impact factor: 5.422

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  65 in total

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2.  Adoptive immunotherapy using lymphokine-activated killer (LAK) cells and interleukin-2 for recurrent malignant primary brain tumors.

Authors:  S K Sankhla; J S Nadkarni; S N Bhagwati
Journal:  J Neurooncol       Date:  1996-02       Impact factor: 4.130

Review 3.  Advances in the treatment of metastatic melanoma: adoptive T-cell therapy.

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Review 4.  Sinks, suppressors and antigen presenters: how lymphodepletion enhances T cell-mediated tumor immunotherapy.

Authors:  Christopher A Klebanoff; Hung T Khong; Paul A Antony; Douglas C Palmer; Nicholas P Restifo
Journal:  Trends Immunol       Date:  2005-02       Impact factor: 16.687

5.  CD4+ Th1 cells promote CD8+ Tc1 cell survival, memory response, tumor localization and therapy by targeted delivery of interleukin 2 via acquired pMHC I complexes.

Authors:  Hui Huang; Siguo Hao; Fang Li; Zhenmin Ye; Junbao Yang; Jim Xiang
Journal:  Immunology       Date:  2007-02       Impact factor: 7.397

6.  Improved therapeutic effects of interleukin 2 after the accumulation of lymphokine-activated killer cells in tumor tissue of mice previously treated with cyclophosphamide.

Authors:  M Hosokawa; Y Sawamura; T Morikage; F Okada; Z Y Xu; K Morikawa; K Itoh; H Kobayashi
Journal:  Cancer Immunol Immunother       Date:  1988       Impact factor: 6.968

7.  A phase I trial of intraperitoneal recombinant interleukin 2 in patients with ovarian carcinoma.

Authors:  P B Chapman; J E Kolitz; T B Hakes; J L Gabrilove; K Welte; V J Merluzzi; A Engert; E C Bradley; M Konrad; R Mertelsmann
Journal:  Invest New Drugs       Date:  1988-09       Impact factor: 3.850

8.  Responses of killer cells in head and neck cancer patients.

Authors:  S Fujieda; H Saito; T Hoshino
Journal:  Eur Arch Otorhinolaryngol       Date:  1990       Impact factor: 2.503

9.  In vivo and in vitro administration of interleukin 2-containing preparation reverses T-cell unresponsiveness in Mycobacterium bovis BCG-infected mice.

Authors:  V Colizzi
Journal:  Infect Immun       Date:  1984-07       Impact factor: 3.441

10.  Antibodies of predetermined specificity against chemically synthesized peptides of human interleukin 2.

Authors:  A Altman; J M Cardenas; R A Houghten; F J Dixon; A N Theofilopoulos
Journal:  Proc Natl Acad Sci U S A       Date:  1984-04       Impact factor: 11.205

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