Studien gefunden: 1

In the type 2 diabetes, it has become clear that reactive oxygen species (ROS) cause reduction of glucose uptake by inhibiting the insulin-signaling pathway in muscle cells and adipocytes. We demonstrated that electrolyzed-reduced water (ERW) scavenges ROS and protects DNA from oxidative damage1). Here we found that ERW scavenges ROS in insulin-responsive L6 myotubes and mouse3T3/L1 adipocytes. Uptake of 1-deoxy-D- glucose (2-DOG) into both L6 cells and 3T3/L1 cells was stimulated by ERW in the presence or absence of insulin. This insulin-like activity of ERW was mediated by the activation of PI-3 kinase, resulting in stimulation of translocation of glucose transporter GLUT4 from microsome to plasma membrane. These results suggest that ERW may be useful to improve insulin-independent type 2 diabetes.


Mehr lesen: https://doi.org/10.1007/0-306-46875-1_90

Influence of natural reduced water on relevant tests parameters and reactive oxygen species concentration in blood of 320 diabetes patients in the prospective observation procedure

The study examined changes in the relevant tests parameters of 320 diabetes patients (176 female, 144 male) drinking natural reduced water from the ‚Nordenau Spring‘ in Nordenau, Germany as well as the correlation of these changes with the fluctuation of...

Herkömmliche Membrane

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Keine vollständige Eliminierung über die gesamte Lebensdauer

M

Kurze Haltbarkeit von meist nur pauschal einem Jahr

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Hohes Abwasserverhältnis von 1:2 bis 1:4 Liter

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Anfällig für hohe Partikel- und Belagbelastungen, womit die Lebensdauer sinkt

M

Keine patentierte Technologie und meist Massenware

Evodrop Membrane

N

99.9% effektive Filtration ohne Nachlass

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Wartung nach 10‘000 Litern oder spätestens nach 5 Jahren

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Geringes Abwasserverhältnis von 1:1

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Integrierte Oberflächenstruktur minimiert die Anhaftung von Partikeln und Belägen

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Geschütztes Membranverfahren (Orbital Osmosis®)

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