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Advanced glycation end products (AGEs) are proteins or lipids that become glycated as a result of exposure to sugars. [1] They are a bio-marker implicated in aging and the development, or worsening, of many degenerative diseases , such as diabetes , atherosclerosis , chronic kidney disease , and Alzheimer's disease .
This is an accepted version of this page This is the latest accepted revision, reviewed on 30 December 2024. Preparing food using heat This article is about the preparation of food specifically via heat. For a general outline, see Outline of food preparation. For varied styles of international food, see Cuisine. Not to be confused with Coking. A man cooking in a restaurant kitchen, Morocco ...
Glycation is the non-enzymatic process responsible for many (e.g. micro and macrovascular) complications in diabetes mellitus and is implicated in some diseases and in aging. [2] [3] [4] Glycation end products are believed to play a causative role in the vascular complications of diabetes mellitus. [5]
A diet high in plant fibre was recommended by James Anderson. [34] This may be understood as continuation of the work of Denis Burkitt and Hugh Trowell on dietary fibre, [35] which may be understood as a continuation of the work of Price. [36] It is still recommended that people with diabetes consume a diet that is high in dietary fiber.
Fructosamines are compounds that result from glycation reactions between glucose and a primary amine, followed by isomerization via the Amadori rearrangement.Biologically, fructosamines are recognized by fructosamine-3-kinase, which may trigger the degradation of advanced glycation end-products (though the true clinical significance of this pathway is unclear).
3-Deoxyglucosone (3DG) is a sugar that is notable because it is a marker for diabetes. 3DG reacts with protein to form advanced glycation end-products (AGEs), which contribute to diseases such as the vascular complications of diabetes, atherosclerosis, hypertension, Alzheimer's disease, inflammation, and aging.
Schematic of the relation between an immunoglobulin and RAGE Schematic of the RAGE gene and its products. RAGE (receptor for advanced glycation endproducts), also called AGER, is a 35 kilodalton transmembrane receptor [5] of the immunoglobulin super family which was first characterized in 1992 by Neeper et al. [6] Its name comes from its ability to bind advanced glycation endproducts (), which ...
Methylglyoxal is involved in the formation of advanced glycation end products (AGEs). [4] In this process, methylglyoxal reacts with free amino groups of lysine and arginine and with thiol groups of cysteine forming AGEs. Histones are also heavily susceptible to modification by methylglyoxal and these modifications are elevated in breast cancer ...
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