THEORETICAL STUDIES OF CHANGES IN PROPERTIES OF 5-FLUORO-2-DEOXYURIDINE (FUDR) ANTICANCER DRUG BY ADSORPTION ON BORON NITRIDE NANOTUBE (5, 5-11)
Authors
Abstract:
Background & Aims: Drugs are highly active due to their many functional groups and can be easily destroyed by stomach acid and excreted before reaching target tissue. Thus, by encapsulating, a sheath is placed around drug to reduce reactivity of the drug due to stereo electronic resonance with nanotube and consequently drug stays longer in body. As a result, you can consume a smaller dose of drug and reduce its side effects. Materials & Methods: In this study, boron nitride nanotubes (n = 5, m = 5) with 11 angstroms length were used to compare effects of encapsulation anticancer drug 5-Fluoro-2-deoxyuridine(FUDR) with this nanotube. Using Density Functional Theory (DFT) and at theoretical level of M06-2X / 6-31G *, structure of drug, BNNT (5,5-11), and Nano - Drug System were optimized. Results: Using the structures optimized, spatial parameters, HOMO-LUMO orbitals, graphs of density of states (DOS), Natural Bond Orbital (NBO), electronic properties, parameters of atoms in molecules (AIM ), and Molecular Electrostatic Potential(MEP) were discussed and results were analyzed. Conclusion: The NBO and AIM results, absorption energy, and thermodynamic functions indicate that drug adsorption by nanotube process is desirable. Many drugs have low solubility in water and when placed in presence of a polarized substrate such as boron nitride nanotube, a high solubility drug complex is formed through hydrogen bonds with that substrate, which increases solubility of drug and reduces drug accumulation and toxicity in the body.
similar resources
Adsorption Properties of Hydrogen on H-Capped (5, 5) Boron Nitride Nanotube (BNNT) Through Density Functional Theory
The density functional theory (DFT) has been used to simultaneously investigate physic/chemisorption properties of hydrogen on the (5, 5) boron nitride nanotube (BNNT). Geometry optimizations were carried out at B3LYP/6-31G* level of theory using Gaussian 98 suites of program. Physisorption of H outside 2 the BNNT with a vertical orientation to the tube axis above a nitrogen atom is the most st...
full textTheoretical study of functionalized single-walled carbon nanotube (5, 5) with Mitoxantrone drug
Objective(s): First principles calculations were performed to study four multiple sclerosis drugs namely, Ampyra, Fingolimod, Mitoxantrone and Eliprodil in gas and liquid phases using Density Functional Theory (DFT). Computational chemistry simulations were carried out to compare calculated quantum chemical parameters for Ampyra, Fingolimod, Mitoxantrone and Eliprodil. Materials and Methods: Al...
full textComparison of theoretical effects of encapsulation floxuridine anticancer drug with boron nitride nanotube and carbon nanotube with NBO and QTAIM studies
Background: The purpose of using nano-carriers for drugs delivery, such as nanotubes, is slow release of drug and reducing side effects of drugs. Drugs are very active due to their many functional groups. Therefore, reactivity of drug is reduced by being in nanotube field due to electronic resonance of drug with nanotube and it stays longer in body. As a result, less amount of drug is used and ...
full textSulfonyl-containing nucleoside phosphotriesters and phosphoramidates as novel anticancer prodrugs of 5-fluoro-2'-deoxyuridine 5'-monophosphate (FdUMP).
A series of sulfonyl-containing 5-fluoro-2'-deoxyuridine (FdU) phosphotriester and phosphoramidate analogues were designed and synthesized as anticancer prodrugs of FdUMP. Stability studies have demonstrated that these compounds underwent pH dependent beta-elimination to liberate the corresponding nucleotide species with half-lives in the range of 0.33-12.23 h under model physiological conditio...
full textEvaluation of (5R,6R)-5-Bromo-6-Ethoxy-5-Ethyl-5,6-Dihydro-2\'- Deoxyuridine as a Brain-Targeted Prodrug of 5-Ethyl-2\'- Deoxyuridine
(+)-Trans-(5R,6R)-5-bromo-6-ethoxy-5-ethyl-5,6-dihydro-2'-deoxyuridine [(5R,6R)-BEEDU], a potential brain-targeted prodrug of 5-ethyl-2'-deoxyuridine (EDU), was synthesized by the regiospecific addition of BrOEt to the 5,6-olefinic bond of EDU. (5R,6R)-BEEDU is more lipophilic (log P = 0.04) than EDU (log P = -1.09). In vitro incubation of (5R,6R)-BEEDU with rat whole blood and brain homogena...
full textA clinical-pharmacological evaluation of hepatic arterial infusions of 5-fluoro-2'-deoxyuridine and 5-fluorouracil.
We have attempted to evaluate the degree to which hepatic arterial infusion of 5-fluoro-2 -deoxyuridine (FdUrd) or 5-fluorouracil produces higher hepatic and lower systemic drug concentrations than are achieved with corresponding peripheral venous infusions. Hepatic arterial catheters were placed for therapy in 15 patients with primary or metastatic liver cancer. Temporary he patic venous cathe...
full textMy Resources
Journal title
volume 31 issue 4
pages 240- 254
publication date 2020-06
By following a journal you will be notified via email when a new issue of this journal is published.
No Keywords
Hosted on Doprax cloud platform doprax.com
copyright © 2015-2023