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1.
Biochemistry (Mosc) ; 84(Suppl 1): S124-S143, 2019 Jan.
Article in English | MEDLINE | ID: mdl-31213199

ABSTRACT

Diabetes mellitus is a metabolic disorder characterized by chronic hyperglycemia accompanied by the disruption of carbohydrate, lipid, and proteins metabolism and development of long-term microvascular, macrovascular, and neuropathic changes. This review presents the results of spectroscopic studies on the glycation of tissues and cell proteins in organisms with naturally developing and model diabetes and in vitro glycated samples in a wide range of electromagnetic waves, from visible light to terahertz radiation. Experiments on the refractometric measurements of glycated and oxygenated hemoglobin in broad wavelength and temperature ranges using digital holographic microscopy and diffraction tomography are discussed, as well as possible application of these methods in the diabetes diagnostics. It is shown that the development and implementation of multimodal approaches based on a combination of phase diagnostics with other methods is another promising direction in the diabetes diagnostics. The possibilities of using optical clearing agents for monitoring the diffusion of substances in the glycated tissues and blood flow dynamics in the pancreas of animals with induced diabetes have also been analyzed.


Subject(s)
Diabetes Mellitus/diagnostic imaging , Glycated Hemoglobin/ultrastructure , Animals , Blood Flow Velocity , Glycosylation , Holography/methods , Humans , Microscopy/methods , Spectrophotometry, Infrared/methods , Terahertz Spectroscopy/methods , Tomography/methods
2.
Biomed Opt Express ; 9(3): 1198-1215, 2018 Mar 01.
Article in English | MEDLINE | ID: mdl-29541513

ABSTRACT

The optical clearing method has been widely used for different spectral ranges where it provides tissue transparency. In this work, we observed the enhanced penetration of the terahertz waves inside biological samples (skin, kidney, and cornea) treated with glycerol solutions inducing changes of optical and dielectric properties. It was supported by the observed trend of free-to-bound water ratio measured by the nuclear magnetic resonance (NMR) method. The terahertz clearing efficiency was found to be less for diabetic samples than for normal ones. Results of the numerical simulation proved that pulse deformation is due to bigger penetration depth caused by the reduction of absorption and refraction at optical clearing.

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