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[Fractionation of carbon isotopes in human atherosclerotic tissues].

Kaznacheev Vp, Doil'nitsyn Ef, Gabuda Sp, A F Rzhavin, N G Malikov

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Abstract

A decrease in heavy carbon isotope 13C content has been detected in atherosclerotically-altered aortic tissues. An extent of the isotope shift is increased with the intensification of sclerotic process in different regions of the aorta and depends on the patient's age. To explain the observed effect of isotope 13C content decrease in the altered aortic tissues it was suggested that the rates of biochemical conversions become considerably higher in sclerotically-altered tissues.

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What this paper is about

A decrease in heavy carbon isotope 13C content has been detected in atherosclerotically-altered aortic tissues. An extent of the isotope shift is increased with the intensification of sclerotic process in different regions of the aorta and depends on the patient's age. To explain the observed effect of isotope 13C content decrease in the altered aortic tissues it was suggested that the rates of biochemical conversions become considerably higher in sclerotically-altered tissues.

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Available abstract

A decrease in heavy carbon isotope 13C content has been detected in atherosclerotically-altered aortic tissues. An extent of the isotope shift is increased with the intensification of sclerotic process in different regions of the aorta and depends on the patient's age. To explain the observed effect of isotope 13C content decrease in the altered aortic tissues it was suggested that the rates of biochemical conversions become considerably higher in sclerotically-altered tissues.

Key concepts: Isotope, Isotopes of carbon, Aorta, Chemistry, Fractionation, Carbon fibers, δ13C, Radiochemistry

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[Fractionation of carbon isotopes in human atherosclerotic tissues]. — Research Paper | ScholarLens