CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Cordyceps Militaris

  • Effect of Polysaccharide from Cordyceps militaris (Ascomycetes) on Physical Fatigue Induced by Forced Swimming.

    facebook Share on Facebook
    Abstract Title:

    Effect of Polysaccharide from Cordyceps militaris (Ascomycetes) on Physical Fatigue Induced by Forced Swimming.

    Abstract Source:

    Int J Med Mushrooms. 2016 ;18(12):1083-1092. PMID: 28094746

    Abstract Author(s):

    Yan-Feng Xu

    Article Affiliation:

    Yan-Feng Xu

    Abstract:

    Cordyceps militaris is the one of the most important medicinal mushrooms, widely used in East Asian countries. Polysaccharide is considered to be the principal active component in C. militaris and has a wide range of biological and pharmacological properties. This study was undertaken to investigate the effect of polysaccharide from C. militaris (PCM) on physical fatigue induced in animals through a forced swimming test. The mice were divided into 4 groups receiving 28 days' treatment with drinking water (exercise control) or low-, medium-, and high-dose PCM (40, 80, and 160 mg/kg/day, respectively). After 28 days, the mice were subjected to the forced swimming test; the exhaustive swimming time was measured and fatigue-related biochemical parameters, including serum lactic acid, urea nitrogen, creatine kinase, alanine aminotransferase, aspartate aminotransferase, superoxide dismutase, glutathi- one peroxidase, catalase, malondialdehyde, liver glycogen, and muscle glycogen, were analyzed. The results showed that PCM could significantly prolong the exhaustive swimming time of mice; decrease concentrations of serum lactic acid, urea nitrogen, creatine kinase, aspartate aminotransferase, alanine aminotransferase, and malondialdehyde; and increase liver and muscle glycogen contents and the concentrations of serum superoxide dismutase, glutathione per- oxidase, and catalase. The data suggest that PCM has an antifatigue effect, and it might become a new functional food or medicine for fatigue resistance.

  • Tissue invasion and metastasis: Molecular, biological and clinical perspectives📎

    facebook Share on Facebook
    Abstract Title:

    Tissue invasion and metastasis: Molecular, biological and clinical perspectives.

    Abstract Source:

    Semin Cancer Biol. 2015 Apr 9. Epub 2015 Apr 9. PMID: 25865774

    Abstract Author(s):

    W G Jiang, A J Sanders, M Katoh, H Ungefroren, F Gieseler, M Prince, S K Thompson, M Zollo, D Spano, P Dhawan, D Sliva, P R Subbarayan, M Sarkar, K Honoki, H Fujii, A G Georgakilas, A Amedei, E Niccolai, A Amin, S S Ashraf, L Ye, W G Helferich, X Yang, C S Boosani, G Guha, M R Ciriolo, K Aquilano, S Chen, A S Azmi, W N Keith, A Bilsland, D Bhakta, D Halicka, S Nowsheen, F Pantano, D Santini

    Article Affiliation:

    W G Jiang

    Abstract:

    Cancer is a key health issue across the world, causing substantial patient morbidity and mortality. Patient prognosis is tightly linked with metastatic dissemination of the disease to distant sites, with metastatic diseases accounting for a vast percentage of cancer patient mortality. While advances in this area have been made, the process of cancer metastasis and the factors governing cancer spread and establishment at secondary locations is still poorly understood. The current article summarizes recent progress in this area of research, both in the understanding of the underlying biological processes and in the therapeutic strategies for the management of metastasis. This review lists the disruption of E-cadherin and tight junctions, key signaling pathways, including urokinase type plasminogen activator (uPA), phosphatidylinositol 3-kinase/v-akt murine thymoma viral oncogene (PI3K/AKT), focal adhesion kinase (FAK),β-catenin/zinc finger E-box binding homeobox 1 (ZEB-1) and transforming growth factor beta (TGF-β), together with inactivation of activator protein-1 (AP-1) and suppression of matrix metalloproteinase-9 (MMP-9) activity as key targets and the use of phytochemicals, or natural products, such as those from Agaricus blazei, Albatrellus confluens, Cordyceps militaris, Ganoderma lucidum, Poria cocos and Silybum marianum, together with diet derived fatty acids gamma linolenic acid (GLA) and eicosapentanoic acid (EPA) and inhibitory compounds as useful approaches to target tissue invasion and metastasis as well as other hallmark areas of cancer. Together, these strategies could represent new, inexpensive, low toxicity strategies to aid in the management of cancer metastasis as well as having holistic effects against other cancer hallmarks.