| Literature DB >> 25670999 |
Manuel Johannes1, Maximilian Reindl1, Bastian Gerlitzki2, Edgar Schmitt2, Anja Hoffmann-Röder1.
Abstract
The development of selective anticancer vaccines that provide enhanced protection against tumor recurrence and metastasis has been the subject of intense research in the scientific community. The tumor-associated glycoprotein MUC1 represents a well-established target for cancer immunotherapy and has been used for the construction of various synthetic vaccine candidates. However, many of these vaccine prototypes suffer from an inherent low immunogenicity and are susceptible to rapid in vivo degradation. To overcome these drawbacks, novel fluorinated MUC1 glycopeptide-BSA/TTox conjugate vaccines have been prepared. Immunization of mice with the 4'F-TF-MUC1-TTox conjugate resulted in strong immune responses overriding the natural tolerance against MUC1 and producing selective IgG antibodies that are cross-reactive with native MUC1 epitopes on MCF-7 human cancer cells.Entities:
Keywords: MUC1; TACA; cancer immunotherapy; fluorinated carbohydrates; glycoconjugates
Year: 2015 PMID: 25670999 PMCID: PMC4311645 DOI: 10.3762/bjoc.11.15
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1Reagents and conditions: (A) p-thiocresol, BF3∙Et2O, CH2Cl2, 24 h, rt, 81%; (B) i) NaOMe, MeOH, 12 h, rt; ii) benzaldehyde dimethylacetal, p-TsOH, DMF/MeCN 1:1, 18 h; 60 °C; iii) Ac2O, 4-DMAP, pyridine, 12 h, rt, 85% (3 steps); (C) i) aq 80% AcOH, 3 h, 90 °C; ii) TrtCl, 4-DMAP, pyridine, 24 h, 50 °C, 83% (2 steps); (D) i) Tf2O, pyridine, CH2Cl2, 2 h, 0 °C; ii) TBAF, MS 4 Å, THF, 3 h, rt, 70% (2 steps); iii) aq 80% AcOH, 4 h, 90 °C; iv) Ac2O, pyridine, 4-DMAP, 12 h, rt, 78% (2 steps); (E) AgOTf, NIS, MS 4 Å, 24 h, 0 °C, 80%; (F) i) NaHSO4-SiO2, CH2Cl2/MeOH 4:1, rt, 18 h, 90%; ii) Ac2O, pyridine, 12 h, rt, 96%; iii) TFA, H2O, 2.5 h, rt, 98%.
Figure 1Degradation of 4’F-TF antigen derivative 12 and its natural (synthetic) congener 13 by β-galactosidase from bovine testes. The amounts of intact disaccharide and the evolving degradation product 15 were quantified by HPLC and expressed as a percentage of the corresponding value observed before exposure to enzyme digestion (t = 0); (A): β-cyclodextrin, MES buffer pH 4.5, 25 °C.
Scheme 2Reagents and conditions: (A) aq Na2CO3, pH 8.0, EtOH/H2O (1:1); (B) aq Na2HPO4, pH 9.5, 5 d.
Figure 2ELISA of the antiserum of mouse 2 induced by 4’F-TF-Thr6-MUC1(20)-TTox vaccine 18b; coat: 5 µg/mL 4’F-TF-Thr6-MUC1(20)-BSA 18a (for more details cf. Supporting Information File 1). Animals’ experiments were performed in accordance with institutional guidelines approved by Johannes Gutenberg-Universität Mainz and Landesuntersuchungsamt Koblenz.
Figure 3Determination of the isotypes of the antibodies induced by 4’F-TF-Thr6-MUC1(20)-TTox vaccine 18b (antiserum of mice 2; for more details cf. Supporting Information File 1).
Figure 4FACS analysis of the binding of MCF-7 tumor cells by the antiserum of mouse 2 induced by vaccination with 18b: cells treated with buffer solution (top); MCF-7 cells treated with antiserum of mouse 2 (bottom); fluorescence intensity (y-axis) vs counts of cells (x-axis).