New cytotoxic butyltin complexes with 2-sulfobenzoic acid: Molecular interaction with lipid bilayers and DNA as well as in vitro anticancer activity

2016 
Abstract New butyltin complexes with 2-sulfobenzoic acid: [Sn(C 4 H 9 ) 2 {O 3 SC 6 H 4 COO-2}(H 2 O)]·(C 2 H 5 OH) (DBTsbz), [Sn(C 4 H 9 ) 3 {O 3 SC 6 H 4 COOH-2}] (TBTsbz) and [Sn 2 (C 4 H 9 ) 6 {μ-O 3 SC 6 H 4 COO-2}] (DTBTsbz) are very effective cytotoxic agents against tumor cells. The molecular interaction of these complexes with lipid membranes and DNA has been investigated. The IR spectra and changes of 1 H, 13 C chemical shifts suggest that SO 3 and COO groups of 2-sulfobenzoato ligand interact with O atom of glycerin fragment of DPPC. Moreover, the compounds form Sn–OP bonds with phosphate groups of DPPC, which was shown by the lower frequency shift of the ν s (PO 2 − ) and ν as (PO 2 − ) band, by change of 31 P NMR signals and by DFT calculation. Another possibility is the interaction of the phosphate group of DPPC owing to formation of hydrogen bond O–H…O–P between water molecule coordinated to Sn and oxygen atom from the phosphate group. Using TCSPC-FCS we characterized DNA supramolecular assemblies' formation upon increasing TBTsbz, DTBTsbz and DBTsbz concentration. Diffusion time, lifetime and particle number changes are altered systematically with increasing C comp /C DNAbp ratio in following effectiveness order DBTsbz > TBTsbz > DTBTsbz. From those parameters we can conclude that all these compounds lead to a change of DNA winding, strand but not to DNA compaction. Investigated compounds show very high cytotoxic activity against cancer cell lines. All compounds exhibit efficient in vitro antitumor activity toward Jurkat (T-cell leukemia), CL-1 (T-lymphoblastoid cell line), GL-1 (B cell lymphoma cell line) and D-17 (canine osteosarcoma). The DBTsbz is more effective then carboplatin against canine osteosarcoma.
    • Correction
    • Source
    • Cite
    • Save
    • Machine Reading By IdeaReader
    29
    References
    10
    Citations
    NaN
    KQI
    []