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  1.  18
    Models for human porphyrias: Have animals in the wild been overlooked?Ana Carolina Oliveira Neves & Ismael Galván - 2020 - Bioessays 42 (12):2000155.
    Humans accumulate porphyrins in the body mostly during the course of porphyrias, diseases caused by defects in the enzymes of the heme biosynthesis pathway and that produce acute attacks, skin lesions and liver cancer. In contrast, some wild mammals and birds are adapted to accumulate porphyrins without injurious consequences. Here we propose viewing such physiological adaptations as potential solutions to human porphyrias, and suggest certain wild animals as models. Given the enzymatic activity and/or the patterns of porphyrin excretion and accumulation, (...)
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  2.  19
    Has removal of excess cysteine led to the evolution of pheomelanin?Ismael Galván, Ghanem Ghanem & Anders P. Møller - 2012 - Bioessays 34 (7):565-568.
    Graphical AbstractPheomelanogenesis may have evolved as an excretory mechanism to remove excess cysteine, and in humans this might potentially confer a greater ability to avoid disease such as Parkinson's and Alzheimer's disease, in which excess cysteine is a contributory cause.
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  3.  6
    Isotope effects on radical pair performance in cryptochrome: A new hypothesis for the evolution of animal migration.Ismael Galván, Abbas Hassasfar, Betony Adams & Francesco Petruccione - 2024 - Bioessays 46 (1):2300152.
    Mechanisms occurring at the atomic level are now known to drive processes essential for life, as revealed by quantum effects on biochemical reactions. Some macroscopic characteristics of organisms may thus show an atomic imprint, which may be transferred across organisms and affect their evolution. This possibility is considered here for the first time, with the aim of elucidating the appearance of an animal innovation with an unclear evolutionary origin: migratory behaviour. This trait may be mediated by a radical pair (RP) (...)
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    Evolutionary physiology at 30+: Has the promise been fulfilled?Ismael Galván, Tonia S. Schwartz & Theodore Garland - 2022 - Bioessays 44 (1):2100167.
    Three decades ago, interactions between evolutionary biology and physiology gave rise to evolutionary physiology. This caused comparative physiologists to improve their research methods by incorporating evolutionary thinking. Simultaneously, evolutionary biologists began focusing more on physiological mechanisms that may help to explain constraints on and trade‐offs during microevolutionary processes, as well as macroevolutionary patterns in physiological diversity. Here we argue that evolutionary physiology has yet to reach its full potential, and propose new avenues that may lead to unexpected advances. Viewing physiological (...)
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