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T-cell responses against tyrosinase 368-376(370D) peptide in HLA*A0201+ melanoma patients: randomized trial comparing incomplete Freund's adjuvant, granulocyte macrophage colony-stimulating factor, and QS-21 as immunological adjuvants.

Author(s): Schaed SG, Klimek VM, Panageas KS, Musselli CM, Butterworth L, Hwu WJ, Livingston PO, Williams L, Lewis JJ, Houghton AN, Chapman PB

Affiliation(s): Swim Across America Laboratory of Tumor Immunology, Memorial Sloan-Kettering Cancer Center, New York, New York 10021, USA.

Publication date & source: 2002-05, Clin Cancer Res., 8(5):967-72.

Publication type: Clinical Trial; Randomized Controlled Trial

We conducted a randomized trial in HLA*A0201+ patientswith American Joint Committee on Cancer stage III or IV melanoma immunized with tyrosinase 368-376(370D) peptide and gp100 209-217(210M) peptide to compare the potency of three different adjuvants. Patients received 3 monthly immunizations with 500 microg of each peptide either with incomplete Freund's adjuvant (IFA), QS-21, or granulocyte macrophage colony-stimulating factor (GM-CSF). The primary end point was induction of IFN-gamma release by CD8+ T cells against tyrosinase and gp100 peptides measured by enzyme-linked immunospot assays without in vitro prestimulation measured pretreatment, 2 and 8 weeks after the third vaccination. Four of 9 and 4 of 8 patients immunized using QS-21 and GM-CSF, respectively, developed increased frequencies of CD8+ T cells against tyrosinase 370D peptide compared with 0 of 9 patients immunized using IFA (P = 0.045). T-cell responses against a gp100-related peptide showed similar results, but their relevance to T-cell reactivity against native gp100 209-217 is uncertain. These results show that: (a) QS-21 and GM-CSF are superior to IFA as immunological adjuvants for vaccination against tyrosinase 370D peptide; and (b) with appropriate adjuvants, increased frequencies of peptide-specific T cells after vaccination can be detected by enzyme-linked immunospot without prolonged prestimulation in vitro.

Page last updated: 2006-01-31

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