Combinatorial anticancer effects of curcumin and 5-fluorouracil loaded thiolated chitosan nanoparticles towards colon cancer treatment |
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Authors: | A. Anitha N. DeepaK.P. Chennazhi Vinoth-Kumar LakshmananR. Jayakumar |
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Affiliation: | Amrita Centre for Nanosciences and Molecular Medicine, Amrita Institute of Medical Sciences and Research Centre, Amrita Vishwa Vidyapeetham University, Kochi 682041, India |
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Abstract: | BackgroundEvaluation of the combinatorial anticancer effects of curcumin/5-fluorouracil loaded thiolated chitosan nanoparticles (CRC-TCS-NPs/5-FU-TCS-NPs) on colon cancer cells and the analysis of pharmacokinetics and biodistribution of CRC-TCS-NPs/5-FU-TCS-NPs in a mouse model.MethodsCRC-TCS-NPs/5-FU-TCS-NPs were developed by ionic cross-linking. The in vitro combinatorial anticancer effect of the nanomedicine was proven by different assays. Further the pharmacokinetics and biodistribution analyses were performed in Swiss Albino mouse using HPLC.ResultsThe 5-FU-TCS-NPs (size: 150 ± 40 nm, zeta potential: + 48.2 ± 5 mV) and CRC-TCS-NPs (size: 150 ± 20 nm, zeta potential: + 35.7 ± 3 mV) were proven to be compatible with blood. The in vitro drug release studies at pH 4.5 and 7.4 showed a sustained release profile over a period of 4 days, where both the systems exhibited a higher release in acidic pH. The in vitro combinatorial anticancer effects in colon cancer (HT29) cells using MTT, live/dead, mitochondrial membrane potential and cell cycle analysis measurements confirmed the enhanced anticancer effects (2.5 to 3 fold). The pharmacokinetic studies confirmed the improved plasma concentrations of 5-FU and CRC up to 72 h, unlike bare CRC and 5-FU.ConclusionsTo conclude, the combination of 5-FU-TCS-NPs and CRC-TCS-NPs showed enhanced anticancer effects on colon cancer cells in vitro and improved the bioavailability of the drugs in vivo.General significanceThe enhanced anticancer effects of combinatorial nanomedicine are advantageous in terms of reduction in the dosage of 5-FU, thereby improving the chemotherapeutic efficacy and patient compliance of colorectal cancer cases. |
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Keywords: | 5-FU, 5-fluorouracil CRC, curcumin TCS, thiolated chitosan FT-IR, Fourier transform infrared spectroscopy DDA, degree of deacetylation DLS, dynamic light scattering PBS, phosphate buffered saline SEM, scanning electron microscope FBS, fetal bovine serum RPM I, Roswell Park Memorial Institute medium HPLC, high pressure liquid chromatography EPR, enhanced permeability and retention effect NPs, nanoparticles BSA, bovine serum albumin 5-FU-TCS-NPs, 5-fluorouracil loaded thiolated chitosan nanoparticles CRC-TCS-NPs, curcumin loaded thiolated chitosan nanoparticles MTT, [3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl tetrazolium bromide] Rh 123, rhodamine 123 PI, propidium iodide RNase, ribonuclease Hb, hemoglobin PT, prothrombin time aPTT, activated partial thromboplastin time PPP, platelet poor plasma Mw, molecular weight TPP, pentasodium tripolyphosphate CO2, carbon dioxide EDTA, ethylene diamine tetra acetic acid OD, optical density JC-1, 5,5&prime ,6,6&prime -tetraethylbenzidazolylcarbocyanine iodide AUC, area under the curve ACD, acid citrate dextrose H and E, Harris's Hematoxylin and Eosin FdUMP, fluorodeoxyuridine monophosphate FdUTP, fluoro-deoxyuridine triphosphate FUTP, fluorouridine triphosphate DNA, deoxyribonucleic acid RNA, ribonucleic acid COX-2, cyclooxygenase-2 pH, potenz hydrogen HT29, human colon adenocarcinoma IEC 6, mouse intestinal epithelial cells |
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