The purpose of this chapter is to illustrate how tracer experiments can be designed to quantify metabolic fluxes. We will review the principles of tracer experimental design by describing the metabolic system under study by a compartmental model with a single pool accessible for measurement (usually plasma) that exchanges with a network of inaccessible pools. We will introduce the notion of tracee (i.e., the endogenous substance under study) versus tracer (i.e., a radioactive or a stable isotope that is administered exogenously and has, at least ideally, the same metabolic fate as the tracee). We will explain how tracer administration allows one to generate dynamic data that help in quantifying the metabolic fluxes of the tracee. Finally, we will illustrate the main approaches to the design of the format of tracer administration under steady- and nonsteady-state conditions.

Tracer Experiment Design for Metabolic Fluxes Estimation in Steady and Nonsteady State / A. Caumo, C. Cobelli - In: Modelling Methodology for Physiology and Medicine / [a cura di] E. Carson, C. Cobelli. - [s.l] : Elsevier Science, 2013 Dec. - ISBN 9780124115576. - pp. 207-230 [10.1016/B978-0-12-411557-6.00010-0]

Tracer Experiment Design for Metabolic Fluxes Estimation in Steady and Nonsteady State

A. Caumo
Primo
;
2013

Abstract

The purpose of this chapter is to illustrate how tracer experiments can be designed to quantify metabolic fluxes. We will review the principles of tracer experimental design by describing the metabolic system under study by a compartmental model with a single pool accessible for measurement (usually plasma) that exchanges with a network of inaccessible pools. We will introduce the notion of tracee (i.e., the endogenous substance under study) versus tracer (i.e., a radioactive or a stable isotope that is administered exogenously and has, at least ideally, the same metabolic fate as the tracee). We will explain how tracer administration allows one to generate dynamic data that help in quantifying the metabolic fluxes of the tracee. Finally, we will illustrate the main approaches to the design of the format of tracer administration under steady- and nonsteady-state conditions.
mathematical model; tracer; turnover; compartmental model; metabolic system; Nonsteady state; steady state; tracee
Settore ING-INF/06 - Bioingegneria Elettronica e Informatica
dic-2013
Book Part (author)
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/232383
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