Synthesis, characterization, and assessment of cytotoxic, antiproliferative, and antiangiogenic effects of a novel procainamide hydrochloride-poly (maleic anhydride-co-styrene) conjugate
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Date
2012Author
Karahan, Mesut
Karakus, Gulderen
Yaglioglu, Ayse
Yenidunya, Ali Fazil
Akin Polat, Zubeyde
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Poly(maleic anhydride-co-styrene) (MAST) was synthesized by a free-radical polymerization
reaction. A bioactive molecule, procainamide hydrochloride (PH), was then conjugated
to MAST. The conjugation product was named as MAST/PH. Structural characterization of
MAST and MAST/PH was carried out by Fourier Transform Infrared and Nuclear Magnetic
Resonance spectroscopy. Their molecular weights were determined by size-exclusion
chromatography. A mechanism was then suggested for the conjugation reaction. The results
of the cytotoxicity assay, employing a mouse fibroblast cell line (L929), indicated that
MAST/PH had no cytotoxicity at concentrations 662 μgmL 1 (p > 0.05). Antiproliferative
activities of MAST/PH and PH were determined by the BrdU cell proliferation ELISA
assay, using C6 and HeLa cell lines. In the experiment, two anticancer chemotherapy
drugs, cisplatin and 5-fluorouracil, were included as positive control. Antiproliferative
activity results demonstrated that MAST/PH yielded the highest suppression profile
(approximately 42%) at 20 μg/ml, while free PH exerted the same activity at 100 μg/ml.
Interestingly, both MAST/PH and PH suppressed the proliferation of only one of
the cell lines, C6 cells. Both cisplatin and 5-fluorouracil yielded approximately 60%
antiproliferative activity on C6 cells at 20 and 100 μg/ml concentrations. Antiangiogenic
capacity of both MAST and MAST/PH was also investigated by using the chicken
chorioallantoic membrane assay. Results obtained indicated that while MAST/PH could be
included into the category of good antiangiogenic substances, the activity score of MAST
was within the weak category.
URI
http://earsiv.uskudar.edu.tr/xmlui/handle/123456789/259http://www.ncbi.nlm.nih.gov/pubmed/23713427