Produktbeschreibung
beschreibung
Physiologische Wirkungen
- Unterstützt Energie und Vitalität
- Stärkt die körpereigenen Abwehrkräfte
- Verbessert Ausdauer und Regenerationsfähigkeit
Inhaltsstoffe
- Cordyceps sinensis (ganzer Pilz), standardisiert auf Cordycepin und Polysaccharide – AUS BIOLOGISCHEM ANBAU (IT BIO 006)
- Pflanzliche Kapsel: Hydroxypropylmethylcellulose
Standardisiert auf > 30 % 1,3–1,6 Beta-Glucane
| Durchschnittlicher Gehalt der charakteristischen Inhaltsstoffe | pro Tagesdosis (2 Kapseln) |
|---|---|
| Cordyceps sinensis (ganzer Pilz) | 1000 mg |
| davon Cordycepin | 10 mg |
| davon Polysaccharide | 300 mg |
Anwendung
1–2 Kapseln täglich, vorzugsweise zwischen den Mahlzeiten einnehmen
Format
Packung mit 90 Kapseln
Hinweise
- Glutenfrei
- Ohne Gentechnik (GMO-frei)
- Zutaten aus biologischem Anbau – Made in Europe
- Eingetragen im Nahrungsergänzungsmittelregister des Gesundheitsministeriums: Code 143777
- EAN-Code: 8059173430208
- Paraf-Code: 983301298
Literatur
- Zhang Da-wei, et al. Cordycepin (3-deoxyadenosine) down-regulates the proinflammatory cytokines in inflammation – induced osteoporosis model. Inflammation 37.4 (2014): 1044-1049.
- Zhang Da-wei, et al. Osteoprotective effect of cordycepin on estrogen deficiency-induced osteoporosis in vitro and in vivo. BioMed research international 2015 (2015).
- Ashraf, S., et al. OP0183 Cordycepin, a novel compound, reduces knee joint pathology and pain in the monosodium iodoacetate (MIA) rat model of osteoarthritis (2017): 127-128.
- KM Siu, et al. Pharmacological basis of ‘Yin-nourishing’ and ‘Yang-invigorating’ actions of Cordyceps, a Chinese tonifying herb. Life Sci, December 10, 2004; 76(4): 385-95
- Li Y. et al. Clinical application of Cordyceps sinensis on immunosoppressive therapy in renal transplantation. Transplantation proceedings 2009 Vol 41 (5) 1565-1569
- Li FH, et al. Effects of corydyceps polysaccharide on liver fibrosis induced by DMN in rats. China Journal Of Chinese Materia Medica, 2006 Dec; Vol. 31 (23), pp. 1968-71
- Tuli Hardeep S., et al. Cordycepin: a bioactive metabolite with therapeutic potential. Life Sciences 93.23 (2013): 863-869.
- Lee Young-Rae, et al. Cordycepin inhibits UVB-induced matrix metalloproteinase expression by suppressing the NF-B pathway in human dermal fibroblasts. Experimental & molecular medicine 41.8 (2009): 548.
- Shin, S, et al. Cordycepin suppresses expression of diabetes regulating genes by inhibition of lipopolysaccharide-induced inflammation in macrophages. Immune network 9.3 (2009): 98-105.
- Shin, Seulmee, et al. Role of cordycepin and adenosine on the phenotypic switch of macrophages via induced anti-inflammatory cytokines. Immune network 9.6 (2009): 255-264.
- Ramesh Thiyagarajan, et al. Cordycepin (3-deoxyadenosine) attenuates age-related oxidative stress and ameliorates antioxidant capacity in rats. Experimental gerontology 47.12 (2012): 979-987
- Hsu CC, et al. In vivo and in vitro stimulatory effects of Cordyceps sinensis on testosterone production in mouse Leydig cells. Life Sci. 2003 Sep 5;73(16):2127-36
- Chen YC, et al., Functional study of Cordyceps sinensis and cordycepin in male reproduction: A review. J Food Drug Anal. 2017 Jan;25(1):197-205.
- Chang Y. et al., Effect of Cordyceps militaris supplementation on sperm production, sperm motility and hormones in Sprague- Dawley rats. Am J Chin Med. 2008;36(5):849-59






