Herein, a new Ugi multicomponent reaction strategy is described to enhance activity and solubility of the chemotherapeutic drug chlorambucil through its conjugation to poly(amidoamine) (PAMAM-NH 2 ) dendrimers with the simultaneous introduction of lipidic (i-Pr) and cationic (-NH 2 ) or anionic (-COOH) groups. Standard viability assays were used to evaluate the anticancer potential of the water-soluble dendrimers against PC-3 prostate and HT-29 colon cancer cell lines, as well as non-cancerous mouse NIH3T3 fibroblasts. It could be demonstrated that the anticancer activity against PC-3 cells was considerably improved when both chlorambucil and -NH 2 (cationic) groups were present on the dendrimer surface (1b). Additionally, this dendrimer showed activity only against the prostate cancer cells (PC-3), while it did not affect colon cancer cells and fibroblasts significantly. The cationic chlorambucil-dendrimer 1b blocks PC-3 cells in the G2/M phase and induces caspase independent apoptosis.
CITATION STYLE
Seixas, N., Ravanello, B. B., Morgan, I., Kaluderovic, G. N., & Wessjohann, L. A. (2019). Chlorambucil conjugated ugi dendrimers with pamam-nh 2 core and evaluation of their anticancer activity. Pharmaceutics, 11(2). https://doi.org/10.3390/pharmaceutics11020059
Mendeley helps you to discover research relevant for your work.