Tissue sodium excess is not hypertonic and reflects extracellular volume expansion.

Rossitto, Giacomo; Mary, Sheon; Chen, Jun Yu; Boder, Philipp; Chew, Khai Syuen; Neves, Karla B; Alves, Rheure L; Montezano, Augusto C et al. · Nat Commun · 2020

Level V

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Abstract

Our understanding of Na<sup>+</sup> homeostasis has recently been reshaped by the notion of skin as a depot for Na<sup>+</sup> accumulation in multiple cardiovascular diseases and risk factors. The proposed water-independent nature of tissue Na<sup>+</sup> could induce local pathogenic changes, but lacks firm demonstration. Here, we show that tissue Na<sup>+</sup> excess upon high Na<sup>+</sup> intake is a systemic, rather than skin-specific, phenomenon reflecting architectural changes, i.e. a shift in the extracellular-to-intracellular compartments, due to a reduction of the intracellular or accumulation of water-paralleled Na<sup>+</sup> in the extracellular space. We also demonstrate that this accumulation is unlikely to justify the observed development of experimental hypertension if it were water-independent. Finally, we show that this isotonic skin Na<sup>+</sup> excess, reflecting subclinical oedema, occurs in hypertensive patients and in association with aging. The implications of our findings, questioning previous assumptions but also reinforcing the importance of tissue Na<sup>+</sup> excess, are both mechanistic and clinical.

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