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Biomedical subjects

Boris R Minev

Publications and source records attributed to Boris R Minev.

4 recordsLinked to original sources

Preparation of murine B7.1-glycosylphosphatidylinositol and transmembrane-anchored staphylococcal enterotoxin. A dual-anchored tumor cell vaccine and its antitumor effect.

BACKGROUND: The authors have previously reported a tumor cell vaccine modified with superantigen staphylococcal enterotoxin A (SEA) and its antitumor effect. The tumor cell vaccines modified with multiple immune activators frequently elicited stronger immune responses against established tumors than single-modified vaccines. METHODS: The authors explored the effectiveness of a tumor cell vaccine transduced with immune activators, dual-modified using the protein transfer technique. First, a glycosylphosphatidylinositol (GPI)-anchored murine B7.1 (mB7.1-GPI) and a transmembrane-anchored SEA (TM-SEA) were genetically generated. Then, the murine lymphoma EL4 cells were dual modified with the incorporation of mB7.1-GPI and TM-SEA onto the cell surface. Flow cytometry and laser confocal microscopy showed that the incorporation of B7.1 and SEA molecules onto EL4 cells was quite stable. RESULTS: The dual-modified tumor cell vaccine EL4/mB7.1-GPI + TM-SEA elicited significantly stronger antitumor immune responses both in vitro and in vivo when compared with the single-modified tumor cell vaccines EL4/mB7.1-GPI and EL4/TM-SEA. CONCLUSIONS: The results of the current study validated the novel approach for preparing tumor cell vaccines modified with dual immune active molecules using the protein transfer technique, and supported the feasibility and effectiveness of the dual-modified tumor cell vaccine.

Animals↗

Technology evaluation: HSPPC-96, antigenics.

Antigenics is developing HSPPC-96, a vaccine based on heat shock protein for the potential treatment of various cancer indications. The compound is currently undergoing phase III clinical trials for renal cell carcinoma and melanoma.

Animals↗

Melanoma vaccines.

The incidence of malignant melanoma is increasing faster than that of any other malignancy in the United States, and therefore this disease represents a significant health threat now and in the future. The impact of conventional systemic therapy for metastatic melanoma is minimal, with best response rates for conventional therapy nearing only 30% and cure rates well below 10%. This justifies the development of immunotherapy as a new treatment modality for patients with melanoma. This review summarizes the most recent findings and the newest approaches in the design of vaccines for melanoma. The antigens associated with melanoma and their uses in the vaccine development are described. Possible clinical applications of the new vaccines for melanoma and future directions for their development are also discussed.

Adjuvants, Immunologic↗

Vaccines for immunotherapy of breast cancer and prostate cancer: new developments and comparative aspects.

This review summarizes the most recent findings and the newest approaches in the design of vaccines for breast cancer and prostate cancer. The antigens associated with breast cancer and prostate cancer and their use in vaccine development are discussed. We consider the comparative aspects in the new vaccines and focus on their clinical potential. The future directions in designing cancer vaccines are discussed.

Adjuvants, Immunologic↗