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Predictive Biomarkers for Response to Exercise

TLDR
In this article, a set of biomarkers have been identified that allow one to predict subjects who will respond to an exercise regime in terms of cardiorespiratory fitness as assessed by maximal oxygen uptake.
Abstract
A set of biomarkers have been identified that allows one to predict subjects who will respond to an exercise regime in term of cardiorespiratory fitness as assessed by maximal oxygen uptake. These predictions may be used, for example, to predict risk of cardiovascular disease, to design a more effective program for cardiac rehabilitation, to predict capacity for athletic performance or physically demanding occupation, and to predict ability to maintain functional capacity with aging using exercise.

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Genetic biomarker profiles for endurance sport suitability

TL;DR: In this paper, in vitro methods for determining the fitness of a subject based on the determination of the expression levels of different genes were used to select a subject as having a fitness level suitable to participate in an endurance sport.
Patent

Composition and kit for predicting sensitivity to exercise and method using same

TL;DR: In this paper, a combination of a polynucleotide capable of detecting a single nucleotide polymorphism marker and a method for providing information for predicting or diagnosing sensitivity of a subject to exercise was used to predict the degree of decrease in body mass index with the exercise of the subject.
References
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Physiogenomic method for predicting effects of exercise

TL;DR: In this paper, the use of genetic variants of associated marker genes to predict an individual's response to exercise was proposed for developing personalized fitness regimens to optimize physiological response, which can be used for developing a personalized fitness regimen.
Patent

Multiple SNP for diagnosing cardiovascular disease, microarray and kit comprising the same, and method of diagnosing cardiovascular disease using the same

TL;DR: In this paper, a multiple single nucleotide polymorphism (multi-SNP) marker for cardiovascular disease diagnosis and a method of diagnosing cardiovascular disease are provided, and sets of polynucleotides, a microarray, and a kit including the microarray are provided.
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