CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Micotherapy

  • Triterpenoids from Ganoderma lucidum and Their Potential Anti-inflammatory Effects📎

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    Abstract Title:

    Triterpenoids from Ganoderma lucidum and Their Potential Anti-inflammatory Effects.

    Abstract Source:

    J Agric Food Chem. 2019 May 8 ;67(18):5147-5158. Epub 2019 Apr 24. PMID: 30995041

    Abstract Author(s):

    Yan-Li Wu, Fei Han, Shan-Shan Luan, Rui Ai, Peng Zhang, Hua Li, Li-Xia Chen

    Article Affiliation:

    Yan-Li Wu

    Abstract:

    Ganoderma lucidum, as food, tea, dietary supplement, and medicine, is widely used in China and Eastern Asian countries. In order to discover its anti-inflammatory constituents and provide some references for the usage of G. lucidum and G. sinense, two official species in China, the fruiting bodies of G. lucidum were studied, leading to the isolation of six new triterpenoids (1-6) and 27 known analogues (7-33). Compound 4 exhibited the most potent inhibition on nitric oxide (NO) production induced by lipopolysaccharide (LPS) in RAW264.7 macrophage cells. The production of IL-6 and IL-1β, as well as the expression of iNOS, COX-2, and NF-κB were dose-dependently reduced by 4. The phosphorylations of IκBα and IKKβ in LPS-induced macrophage cells were blocked by 4. Therefore, 4 could be used as a potential anti-inflammatory candidate and the total triterpenoids might be developed as value-added functional food for the prevention of inflammation. In combination of previous studies, it should be cautious for the interchangeable usage of G. lucidum and G. sinense.

  • Triterpenoids from Inonotus obliquus and their antitumor activities.

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    Abstract Title:

    Triterpenoids from Inonotus obliquus and their antitumor activities.

    Abstract Source:

    Fitoterapia. 2015 Mar ;101:34-40. Epub 2014 Dec 24. PMID: 25542686

    Abstract Author(s):

    Fenqin Zhao, Qinqin Mai, Jianghao Ma, Mei Xu, Xue Wang, Tiantian Cui, Feng Qiu, Guang Han

    Article Affiliation:

    Fenqin Zhao

    Abstract:

    Three new lanostane-type triterpenes, inonotusanes A-C (1-3), and a new naturally occurring one, 3β-hydroxy-25,26,27-trinorlanosta-8,22E-dien-24-oic acid (4), together with sixteen known triterpenoids (5-20), including 13 lanostane derivatives, 2 lupanes and 1 oleanane-type triterpene were isolated from the sclerotia of Inonotus obliquus. Their structures were elucidated by 1D and 2D NMR spectroscopy and HRMS. Compounds 6, 8, 18 and 20 exhibited strong cytotoxicity against A549 tumor cell lines, with IC50 values of 2.34, 1.63, 8.39 and 5.39μM, respectively. Seven compounds (3, 9, 10, 12, 18-20) exhibited moderate cytotoxicity against A549, HT29, Hela or L1210 tumor cell lines.

  • Two-sided effect of Cordyceps sinensis on dendritic cells in different physiological stages.

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    Abstract Title:

    Two-sided effect of Cordyceps sinensis on dendritic cells in different physiological stages.

    Abstract Source:

    J Leukoc Biol. 2009 Jun;85(6):987-95. Epub 2009 Mar 4. PMID: 19261928

    Abstract Author(s):

    Chia-Yang Li, Chi-Shiun Chiang, Min-Lung Tsai, Ruey-Shyang Hseu, Wun-Yi Shu, Chun-Yu Chuang, Yuh-Chang Sun, Yuan-Shiun Chang, Jaung-Geng Lin, Chih-Sheng Chen, Ching-Lung Huang, Ian C Hsu

    Abstract:

    Cordyceps sinensis (CS), a Chinese tonifying herb, has been widely used for centuries in Asian countries as a medicine and a health supplement. Although ample evidence indicates that CS can modulate immune responses, the functional effect of CS on dendritic cells (DCs) is still unclear. This study examines how CS affects human monocyte-derived DCs in two physiological states: naïve and LPS-induced inflammatory. Our experimental results demonstrate that CS acts as an activator and maturation inducer of immature DCs by stimulating the expression of costimulatory molecules and proinflammatory cytokines by DCs, enhancing the DC-induced, allogeneic T cell proliferation, and reducing the endocytic ability of DCs. In contrast, CS suppresses the LPS-induced, inflammatory response by decreasing the LPS-induced expression of costimulatory molecules and proinflammatory cytokines by DCs. CS also suppresses the LPS-induced, DC-elicited, allogeneic T cell proliferation and shifts the LPS-activated, DC-driven Th1 response toward a Th2 response. These results demonstrate that CS differentially regulates the DC activities according to the presence or absence of the inflammatory signs. Restated, with the lack of an ongoing inflammatory environment, CS primes DCs toward a Th1-type immunity, whereas in a potential inflammatory reaction, CS balances the over-reactivity of elicited Th1 immunity. This investigation illustrates the Yin-Yang balancing effects of CS as a medicine and a health supplement.

  • Vitamin B12 is the active corrinoid produced in cultivated white button mushrooms (Agaricus bisporus).

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    Abstract Title:

    Vitamin B12 is the active corrinoid produced in cultivated white button mushrooms (Agaricus bisporus).

    Abstract Source:

    J Agric Food Chem. 2009 Jul 22;57(14):6327-33. PMID: 19552428

    Abstract Author(s):

    Sundar Rao Koyyalamudi, Sang-Chul Jeong, Kai Yip Cho, Gerald Pang

    Article Affiliation:

    Centre for Plant and Food Science, College of Health and Science, University of Western Sydney, Locked Bag 1797, Penrith South DC, NSW 1797, Australia.

    Abstract:

    Analysis of vitamin B(12) in freshly harvested white button mushrooms ( Agaricus bisporus ) from five farms was performed by affinity chromatography and HPLC-ESI-MS techniques. The vitamin B(12) concentrations obtained varied from farm to farm, with higher concentrations of vitamin B(12) detected in outer peel than in cap, stalk, or flesh, suggesting that the vitamin B(12) is probably bacteria-derived. High concentrations of vitamin B(12) were also detected in the flush mushrooms including cups and flats. HPLC and mass spectrometry showed vitamin B(12) retention time and mass spectra identical to those of the standard vitamin B(12) and those of food products including beef, beef liver, salmon, egg, and milk but not of the pseudovitamin B(12), an inactive corrinoid in humans. The results suggest that the consumer may benefit from the consumption of mushroom to increase intake of this vitamin in the diet.

  • Vitamin D4 in mushrooms📎

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    Abstract Title:

    Vitamin D4 in mushrooms.

    Abstract Source:

    PLoS One. 2012 ;7(8):e40702. Epub 2012 Aug 3. PMID: 22870201

    Abstract Author(s):

    Katherine M Phillips, Ronald L Horst, Nicholas J Koszewski, Ryan R Simon

    Article Affiliation:

    Katherine M Phillips

    Abstract:

    An unknown vitamin D compound was observed in the HPLC-UV chromatogram of edible mushrooms in the course of analyzing vitamin D(2) as part of a food composition study and confirmed by liquid chromatography-mass spectrometry to be vitamin D(4) (22-dihydroergocalciferol). Vitamin D(4) was quantified by HPLC with UV detection, with vitamin [(3)H] itamin D(3) as an internal standard. White button, crimini, portabella, enoki, shiitake, maitake, oyster, morel, chanterelle, and UV-treated portabella mushrooms were analyzed, as four composites each of a total of 71 samples from U.S. retail suppliers and producers. Vitamin D(4) was present (>0.1µg/100 g) in a total of 18 composites and in at least one composite of each mushroom type except white button. The level was highest in samples with known UV exposure: vitamin D enhanced portabella, and maitake mushrooms from one supplier (0.2-7.0 and 22.5-35.4 µg/100 g, respectively). Other mushrooms had detectable vitamin D(4) in some but not all samples. In one composite of oyster mushrooms the vitamin D(4) content was more than twice that of D(2) (6.29 vs. 2.59 µg/100 g). Vitamin D(4) exceeded 2 µg/100 g in the morel and chanterelle mushroom samples that contained D(4), but was undetectable in two morel samples. The vitamin D(4) precursor 22,23-dihydroergosterol was found in all composites (4.49-16.5 mg/100 g). Vitamin D(4) should be expected to occur in mushrooms exposed to UV light, such as commercially produced vitamin D enhanced products, wild grown mushrooms or other mushrooms receiving incidental exposure. Because vitamin D(4) coeluted with D(3) in the routine HPLC analysis of vitamin D(2) and an alternate mobile phase was necessary for resolution, researchers analyzing vitamin D(2) in mushrooms and using D(3) as an internal standard should verify that the system willresolve vitamins D(3) and D(4).

  • White button mushroom phytochemicals inhibit aromatase activity and breast cancer cell proliferation📎

    Abstract Title:

    White button mushroom phytochemicals inhibit aromatase activity and breast cancer cell proliferation.

    Abstract Source:

    J Nutr. 2001 Dec;131(12):3288-93. PMID: 11739882

    Abstract Author(s):

    B J Grube, E T Eng, Y C Kao, A Kwon, S Chen

    Abstract:

    Estrogen is a major factor in the development of breast cancer. In situ estrogen production by aromatase/estrogen synthetase in breast cancer plays a dominant role in tumor proliferation. Because natural compounds such as flavones and isoflavones have been shown to be inhibitors of aromatase, it is thought that vegetables that contain these phytochemicals can inhibit aromatase activity and suppress breast cancer cell proliferation. Heat-stable extracts were prepared from vegetables and screened for their ability to inhibit aromatase activity in a human placental microsome assay. The white button mushroom (species Agaricus bisporus) suppressed aromatase activity dose dependently. Enzyme kinetics demonstrated mixed inhibition, suggesting the presence of multiple inhibitors or more than one inhibitory mechanism. "In cell" aromatase activity and cell proliferation were measured using MCF-7aro, an aromatase-transfected breast cancer cell line. Phytochemicals in the mushroom aqueous extract inhibited aromatase activity and proliferation of MCF-7aro cells. These results suggest that diets high in mushrooms may modulate the aromatase activity and function in chemoprevention in postmenopausal women by reducing the in situ production of estrogen.

  • Wolf Extract Ameliorates Hepatic Steatosis through Regulation of Lipid Metabolism, Inhibition of ER Stress, and Activation of Autophagy via AMPK Activation📎

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    Abstract Title:

    Wolf Extract Ameliorates Hepatic Steatosis through Regulation of Lipid Metabolism, Inhibition of ER Stress, and Activation of Autophagy via AMPK Activation.

    Abstract Source:

    Int J Mol Sci. 2019 Sep 27 ;20(19). Epub 2019 Sep 27. PMID: 31569635

    Abstract Author(s):

    Ji-Hyun Kim, Hyun A Sim, Dae Young Jung, Eun Yeong Lim, Yun Tai Kim, Byung Joo Kim, Myeong Ho Jung

    Article Affiliation:

    Ji-Hyun Kim

    Abstract:

    Wolf (PCW) is an edible, pharmaceutical mushroom with remarkable biological properties including anti-tumor, anti-inflammation, anti-oxidation, anti-ageing, and anti-diabetic effects. In the current study, we investigated the effects of PCW extract on hepatic steatosis under in vitro and in vivo conditions, and elucidated the underlying mechanisms. In this study, a mixture of HepG2 cells treated with free fatty acid (FFA)-palmitic and oleic acid-and high-fat diet (HFD)-fed obese mice were used; in this background, the triglyceride (TG) levels in HepG2 cells and mice liver were measured, and the expression levels of genes associated with lipogenesis, fatty acid oxidation, endoplasmic reticulum (ER) stress, and autophagy were determined. Treatment of HepG2 cells with FFA enhanced intracellular TG levels in HepG2 cells, but co-treatment with PCW significantly attenuated the TG levels. Notably, PCW significantly enhanced the phosphorylation of AMP-activated protein kinase (AMPK), acetyl-CoA carboxylase (ACC), and sterol regulatory element-binding protein-1c (SREBP-1c) in FFA-treated HepG2 cells. PCW downregulated the expression of lipogenesis-related genes, but upregulated the expression of genes associated with fatty acid oxidation. Further, PCW inhibited FFA-induced expression of ER stress markers and induced autophagy proteins. However, inhibition of AMPK significantly attenuated the beneficial effects of PCW in HepG2 cells. Moreover, PCW efficiently decreased HFD-induced hepatic TG accumulation in vivo and increased the phosphorylation of hepatic AMPK. Three compounds present in PCW including poricoic acid, pachymic acid, and ergosterol, significantly decreased FFA-induced increase in intracellular TG levels, consistent with increased AMPK phosphorylation, suggesting that poricoic acid, pachymic acid, and ergosterol are responsible for PCW-mediated amelioration of hepatic steatosis. Taken together, these results demonstrated that PCW ameliorates hepatic steatosis through the regulation of lipid metabolism, inhibition of ER stress, and activation of autophagy in an AMPK-dependent manner. This suggested that PCW can be potentially used for the treatment of hepatic steatosis.

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