コンテンツへスキップ
Merck
  • Vanadium(V) and -(IV) complexes of anionic polysaccharides: Controlled release pharmaceutical formulations and models of vanadium biotransformation products.

Vanadium(V) and -(IV) complexes of anionic polysaccharides: Controlled release pharmaceutical formulations and models of vanadium biotransformation products.

Journal of inorganic biochemistry (2015-05-11)
Lauren E Kremer, Andrew I McLeod, Jade B Aitken, Aviva Levina, Peter A Lay
要旨

Uncontrolled reactions in biological media are a main obstacle for clinical translation of V-based anti-diabetic or anti-cancer pro-drugs. We investigated the use of controlled-release pharmaceutical formulations to ameliorate this issue with a series of V(V) and (IV) complexes of anionic polysaccharides. Carboxymethyl cellulose, xanthan gum, or alginic acid formulations were prepared by the reactions of [VO4](3-) with one or two molar equivalents of biological reductants, L-ascorbic acid (AA) or L-cysteine (Cys), in the presence of excess polysaccharide at pH~7 or pH~4. XANES studies with the use of a previously developed library of model V(V), V(IV) and V(III) complexes showed that reactions in the presence of AA led mostly to the mixtures of five- and six-coordinate V(IV) species, while the reactions in the presence of Cys led predominantly to the mixtures of five- and six-coordinate V(V) species. The XANES spectra of some of these samples closely matched those reported previously for [VO4](3-) biotransformation products in isolated blood plasma, red blood cells, or cultured adipocytes, which supports the hypothesis that modified polysaccharides are major binders of V(V) and V(IV) in biological systems. Studies by EPR spectroscopy suggested predominant V(IV)-carboxylato binding in complexes with polysaccharides. One of the isolated products (a V(IV)-alginato complex) showed selective release of low-molecular-mass V species at pH~8, but not at pH~2, which makes it a promising lead for the development of V-containing formulations for oral administration that are stable in the stomach, but release the active ingredient in the intestines.

材料
製品番号
ブランド
製品内容

Sigma-Aldrich
硝酸, 70%, purified by redistillation, ≥99.999% trace metals basis
Sigma-Aldrich
キサンタンガム from Xanthomonas campestris
Sigma-Aldrich
カルボキシメチルセルロース ナトリウム塩, Medium viscosity
Sigma-Aldrich
硝酸, JIS special grade, 60.0-61.0%, density: 1.38
Sigma-Aldrich
硝酸, ACS reagent, ≥90.0%
Sigma-Aldrich
硝酸, 60.0-62.0%, suitable for determination of toxic metals, density: 1.38
Sigma-Aldrich
硝酸, SAJ first grade, 60.0-62.0%, density: 1.38
Sigma-Aldrich
硝酸, 1 M
Sigma-Aldrich
硝酸, JIS special grade, 69.0-70.0%, density: 1.42
Sigma-Aldrich
硝酸, SAJ first grade, 69-70%, density: 1.42
Sigma-Aldrich
硝酸, 0.1 M
Sigma-Aldrich
硝酸, JIS special grade, ≥97.0%, fuming, density: 1.52
Sigma-Aldrich
硝酸, 60.0-62.0%, SAJ super special grade, density: 1.38
Sigma-Aldrich
Nitric-14N acid solution, ~10 N in H2O, 99.99 atom % 14N
Sigma-Aldrich
硝酸, SAJ first grade, 65.0-66.0%, density: 1.40
Sigma-Aldrich
硝酸, JIS special grade, 65.0-66.0%, density: 1.40
Sigma-Aldrich
硝酸, SAJ first grade, ≥97.0%, fuming, density: 1.52
Sigma-Aldrich
硝酸, SAJ first grade, 90.0-94.0%, fuming, density: 1.50
Sigma-Aldrich
硝酸, JIS special grade, 90.0-94.0%, fuming, density: 1.50