Estudios encontraron: 1

Acute oxidative stress induced by ischemia-reperfusion or inflammation causes serious damage to tissues, and persistent oxidative stress is accepted as one of the causes of many common diseases including cancer. We show here that hydrogen (H(2)) has potential as an antioxidant in preventive and therapeutic applications. We induced acute oxidative stress in cultured cells by three independent methods. H(2) selectively reduced the hydroxyl radical, the most cytotoxic of reactive oxygen species (ROS), and effectively protected cells; however, H(2) did not react with other ROS, which possess physiological roles. We used an acute rat model in which oxidative stress damage was induced in the brain by focal ischemia and reperfusion. The inhalation of H(2) gas markedly suppressed brain injury by buffering the effects of oxidative stress. Thus H(2) can be used as an effective antioxidant therapy; owing to its ability to rapidly diffuse across membranes, it can reach and react with cytotoxic ROS and thus protect against oxidative damage.


Mehr lesen: https://doi.org/10.1038/nm1577

Membranas convencionales

M

No se elimina por completo durante toda la vida útil

M

Corta vida útil, normalmente solo un año en general.

M

Alta proporción de aguas residuales de 1:2 a 1:4 litros

M

Sensible a altas cargas de partículas y sedimentos, lo que reduce su vida útil.

M

No es una tecnología patentada y, en su mayoría, se trata de productos fabricados en serie.

Membrana Evodrop

N

99,9% de filtración efectiva sin reducción

N

Mantenimiento cada 10 000 litros o, como muy tarde, cada 5 años

N

Baja proporción de aguas residuales de 1:1

N

La estructura integrada de la superficie minimiza la adherencia de partículas y depósitos.

N

Proceso de membrana protegida (Orbital Osmosis®)

Evodrop utiliza la base de datos IP2Location LITE para la geolocalización de IP .