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Prevention and reversible solubilization of advanced glycation and products (AGE) by organic germanium compounds as derivatives of amino acids
Authors:K Nakamura  K Nomoto  K Kariya  Y Nakajima  H Nishimoto  S Uga  M Miyata  T Osawa  S Kawakishi  N Kakimoto
Institution:(1) Molecular Biology Laboratory, Department of Biochemistry, Kitasato University School of Medicine, 1-15-1 Kitasato, 228 Sagamihara, Kanagawa, Japan;(2) Department of Ophthalmology, Kitasato University School of Medicine, 1-15-1 Kitasato, 228 Sagamihara, Kanagawa, Japan;(3) Department of Food Science and Technology, Faculty of Agriculture, Nagoya University, Nagoya, Japan;(4) Asai Germanium Institute, Komae, Setagaya, Tokyo, Japan
Abstract:Summary The amino-carbonyl reaction (The Maillard reaction) of bovine lens crystallin, serum albumin or skin collagen with glucose was investigated to find effective means to prevent the formation of Advanced Glycation End Products (AGE) and induce the reversible solubilization of polymerized glycated proteins. The organic germanium compounds (Ge-132, 373, 385), derivatives of amino acids containing germanium as the linker of framework, were combined by the box titration method to determine the dose that would be most effective, compared with Aminoguanidine-HCl (AMG),agr-tocopherol (VE), and pirenoxine (Catalin-K, CK). Although AMG suppressed the formation of AGE, effective concentrations were higher than 20 mM. Ge-385, when administered by itself at a low dose, induced the reversible solubilization of AGE made from crystallin, and albumin. The addition of any two reagents such as AMG, VE, CK and Ge-132 or 385 together to proteins lessened the effective range, and the peaks of smaller molecules in the profiles of HPLC and PAGE were quite remarkable. Examination was made of the effects of Ge-132 on the eyes of SAM mice, which show senescence accelerated cataracts at a relatively young age. The prevention of cataract-genesis and induction of reversible transparency of turbid lenses became evident following the administration of Ge-132 to the eyes 4 times a day. The mode of action of organic germanium compounds was demonstrated quite capable of disconnecting the sugar-parts from AGE by decarbonylation, resulting in the formation of glucosone and amino residues, and further leading subsequently to fewer AGE.Abbreviations used in this paper: BLC bovine lens crystallin; BSA bovine serum albumin; AsCol acid soluble bovine skin collagen type III; AGE advanced glycation end products; Ge-132 2-Carboxyethylgermanium sesquioxide, Ge-373 2-Carboxy-2-amino-6-phenyl germanium sesquioxide; Ge-385 2-Carboxy-ethyl-2-aminogermanium sesquioxide; AMG or AG aminoguanidine-HCl; V. E. vitamin E oragr-tocopherol; CK 1-Hydroxy-5-oxo-5H-pyrido 3, 2-a] phenoxazine-3-carboxylic acid or catalin-K or pirenoxine; PACE polyacrylamide gel electrophoresis; SAM senescence accelerated mouse; HPLC high pressure liquid chromatography; SDS sodium laurylsulfate; FT fructose-p-toluidine.
Keywords:Amino acids  The Maillard reaction  Advanced glycation end products (AGE)  Reversible solubilization  Organic germanium compounds  Decarbonylation
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