Literature DB >> 10340547

Enhanced therapeutic efficacy of tumor RNA-pulsed dendritic cells after genetic modification with lymphotactin.

W Zhang1, L He, Z Yuan, Z Xie, J Wang, H Hamada, X Cao.   

Abstract

Pulsing dendritic cells (DCs) with tumor cell-derived mRNA is regarded as an attractive alternative in the development of DC-based tumor vaccines. Our aim is to improve the therapeutic efficacy of DC-based tumor RNA vaccines by augmenting the preferential chemotaxis of DCs to T cells. Mouse bone marrow-derived DCs were genetically modified with lymphotactin (Lptn) by adenovirus vector, which conferred on DCs preferential chemotaxis to CD4+ and CD8+ T cells (Cao et al., 1998). Lptn gene-modified DCs (Lptn-DCs) were pulsed with tumor mRNA and used for vaccination in the tumor models of 3LL lung carcinoma and B16 melanoma. In both tumor models, immunization with 4 X 10(4) tumor RNA-pulsed Lptn-DCs induced more potent CTL activity, compared with their counterparts, specifically against tumor cells and Mut1 or tyrosinase-related protein 2 (TRP-2) peptide-pulsed RMA-S cells, and rendered the immunized mice resistant to tumor challenge much more effectively. CD8+ T cells were necessary and sufficient to generate the protection of Lptn-DC-based RNA tumor vaccines, and CD4+ T cells were required for the induction of tumor rejection. In the preestablished 3LL and B16 tumor models, vaccination with DC-based or LacZ-DC-based tumor RNA vaccines (2 X 10(5) cells) could reduce pulmonary metastasis and extend survival of tumor-bearing mice, but was less effective than the Lptn-DC counterpart (with 60-80% mice surviving). When the immunizing dose was decreased to 4 X 10(4) cells, Lptn-DC-based tumor vaccines rather than their counterparts were still significantly effective. Our studies provide a potential strategy to improve the efficacy of DC-based vaccines, and a new approach to immunological intervention by chemokines.

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Year:  1999        PMID: 10340547     DOI: 10.1089/10430349950018148

Source DB:  PubMed          Journal:  Hum Gene Ther        ISSN: 1043-0342            Impact factor:   5.695


  9 in total

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3.  Therapy of established tumour with a hybrid cellular vaccine generated by using granulocyte-macrophage colony-stimulating factor genetically modified dendritic cells.

Authors:  X Cao; W Zhang; J Wang; M Zhang; X Huang; H Hamada; W Chen
Journal:  Immunology       Date:  1999-08       Impact factor: 7.397

4.  Structure-function guided modeling of chemokine-GPCR specificity for the chemokine XCL1 and its receptor XCR1.

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5.  Dendritic cells transfected with hepatocellular carcinoma (HCC) total RNA induce specific immune responses against HCC in vitro and in vivo.

Authors:  B H Xie; J Y Yang; H P Li; B Zhang; W Chen; B Zhou; B G Peng; L J Liang; Q He
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6.  Expression of the T-cell chemoattractant chemokine lymphotactin in Crohn's disease.

Authors:  P Middel; P Thelen; S Blaschke; F Polzien; K Reich; V Blaschke; A Wrede; K M Hummel; B Gunawan; H J Radzun
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7.  CpG-ODN-stimulated dendritic cells act as a potent adjuvant for E7 protein delivery to induce antigen-specific antitumour immunity in a HPV 16 E7-associated animal tumour model.

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8.  Trial watch: Dendritic cell-based interventions for cancer therapy.

Authors:  Lorenzo Galluzzi; Laura Senovilla; Erika Vacchelli; Alexander Eggermont; Wolf Hervé Fridman; Jerome Galon; Catherine Sautès-Fridman; Eric Tartour; Laurence Zitvogel; Guido Kroemer
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9.  Antitumor Vaccines Based on Dendritic Cells: From Experiments using Animal Tumor Models to Clinical Trials.

Authors:  O V Markov; N L Mironova; V V Vlassov; M A Zenkova
Journal:  Acta Naturae       Date:  2017 Jul-Sep       Impact factor: 1.845

  9 in total

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