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Enhancement of cancer radiation therapy by use of adenovirus-mediated secretable glucose-regulated protein 94/gp96 expression.

Publication ,  Journal Article
Liu, S; Wang, H; Yang, Z; Kon, T; Zhu, J; Cao, Y; Li, F; Kirkpatrick, J; Nicchitta, CV; Li, C-Y
Published in: Cancer Res
October 15, 2005

Tumor-derived glucose-regulated protein 94 (GRP94/gp96) has shown great promise as a tumor vaccine. However, current protein-based approaches require the availability of large quantities of tumor tissue, which are often not possible. In addition, the efficacy of immunotherapy is often not ideal when used alone. In this study, we explored the therapeutic efficacy of a combined GRP94/gp96-based genetic immunotherapy and radiation therapy strategy in the weakly immunogenic and highly metastatic 4T1 murine mammary cancer model. An adenovirus encoding a modified, secretable form of GRP94 gene (AdsGRP94) was constructed and evaluated in various antitumor experiments. Lethally irradiated, virus-infected cells were used as vaccines. Adenoviral vectors were also injected directly into tumors in conjunction with tumor irradiation. Vaccination with lethally irradiated, AdsGRP94-infected 4T1 cells completely prevented subsequent tumor growth from challenge inoculations of as many as 10(7) cells per mouse. In established tumor models, vaccinations alone had minimal effect on local and metastatic tumor growth. However, when vaccination was combined with radiation therapy and i.t. AdsGRP94 injections, local tumor growth and pulmonary metastasis were markedly inhibited. In some cases, complete tumor regression was observed. In these cases, the mice were resistant to subsequent tumor challenge and remain tumor free up to 10 months after initial therapy. Our results indicate that combined AdsGRP94-based immunotherapy and radiation therapy may be a potentially effective strategy for cancer treatment.

Duke Scholars

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Published In

Cancer Res

DOI

ISSN

0008-5472

Publication Date

October 15, 2005

Volume

65

Issue

20

Start / End Page

9126 / 9131

Location

United States

Related Subject Headings

  • Vaccination
  • Oncology & Carcinogenesis
  • Mice, Inbred BALB C
  • Mice
  • Membrane Proteins
  • Mammary Neoplasms, Experimental
  • Interferon-gamma
  • HSP70 Heat-Shock Proteins
  • Genetic Therapy
  • Female
 

Citation

APA
Chicago
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MLA
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Liu, S., Wang, H., Yang, Z., Kon, T., Zhu, J., Cao, Y., … Li, C.-Y. (2005). Enhancement of cancer radiation therapy by use of adenovirus-mediated secretable glucose-regulated protein 94/gp96 expression. Cancer Res, 65(20), 9126–9131. https://doi.org/10.1158/0008-5472.CAN-05-0945
Liu, Shanling, He Wang, Zhonghui Yang, Takashi Kon, Jiangao Zhu, Yiting Cao, Fang Li, John Kirkpatrick, Christopher V. Nicchitta, and Chuan-Yuan Li. “Enhancement of cancer radiation therapy by use of adenovirus-mediated secretable glucose-regulated protein 94/gp96 expression.Cancer Res 65, no. 20 (October 15, 2005): 9126–31. https://doi.org/10.1158/0008-5472.CAN-05-0945.
Liu S, Wang H, Yang Z, Kon T, Zhu J, Cao Y, et al. Enhancement of cancer radiation therapy by use of adenovirus-mediated secretable glucose-regulated protein 94/gp96 expression. Cancer Res. 2005 Oct 15;65(20):9126–31.
Liu, Shanling, et al. “Enhancement of cancer radiation therapy by use of adenovirus-mediated secretable glucose-regulated protein 94/gp96 expression.Cancer Res, vol. 65, no. 20, Oct. 2005, pp. 9126–31. Pubmed, doi:10.1158/0008-5472.CAN-05-0945.
Liu S, Wang H, Yang Z, Kon T, Zhu J, Cao Y, Li F, Kirkpatrick J, Nicchitta CV, Li C-Y. Enhancement of cancer radiation therapy by use of adenovirus-mediated secretable glucose-regulated protein 94/gp96 expression. Cancer Res. 2005 Oct 15;65(20):9126–9131.

Published In

Cancer Res

DOI

ISSN

0008-5472

Publication Date

October 15, 2005

Volume

65

Issue

20

Start / End Page

9126 / 9131

Location

United States

Related Subject Headings

  • Vaccination
  • Oncology & Carcinogenesis
  • Mice, Inbred BALB C
  • Mice
  • Membrane Proteins
  • Mammary Neoplasms, Experimental
  • Interferon-gamma
  • HSP70 Heat-Shock Proteins
  • Genetic Therapy
  • Female