CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Immunomodulatory

  • Influence of Hesperidin on Systemic Immunity of Rats Following an Intensive Training and Exhausting Exercise. 📎

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    Abstract Title:

    Influence of Hesperidin on Systemic Immunity of Rats Following an Intensive Training and Exhausting Exercise.

    Abstract Source:

    Nutrients. 2020 May 1 ;12(5). Epub 2020 May 1. PMID: 32369998

    Abstract Author(s):

    Patricia Ruiz-Iglesias, Sheila Estruel-Amades, Mariona Camps-Bossacoma, Malén Massot-Cladera, Àngels Franch, Francisco J Pérez-Cano, Margarida Castell

    Article Affiliation:

    Patricia Ruiz-Iglesias

    Abstract:

    Intensive training and exhausting exercise can disrupt innate and acquired immunity. The flavanone hesperidin has shown immunomodulatory properties in physiological and some pathological conditions, and positive effects on exercise-induced oxidative stress. Nevertheless, it remains uncertain whether it also prevents exhausting exercise-induced immune alterations. The aim of this study was to establish the effect of oral hesperidin supplementation on the systemic immune system in rats following an intensive training and exhausting exercise. For this purpose, female Wistar rats were randomized into an intensive training group or a sedentary group. Intensive training was induced by running in a treadmill 5 days per week (including two exhausting tests) for five weeks. Throughout the training period, 200 mg/kg of hesperidin or vehicle was administered by oral gavage three times per week. At the end, blood, thymus, spleen and macrophages were collected before, immediately after and 24 h after an additional final exhaustion test. Hesperidin supplementation enhanced natural killer cell cytotoxicity and the proportion of phagocytic monocytes, attenuated the secretion of cytokines by stimulated macrophages, prevented the leukocytosis induced by exhaustion and increased the proportion of T helper cells in the thymus, blood and spleen. These results suggest that hesperidin can prevent exhausting exercise-induced immune alterations.

  • Inhibitory effect of MD-Fraction on tumor metastasis: involvement of NK cell activation and suppression of intercellular adhesion molecule (ICAM)-1 expression in lung vascular endothelial cells📎

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    Abstract Title:

    Inhibitory effect of MD-Fraction on tumor metastasis: involvement of NK cell activation and suppression of intercellular adhesion molecule (ICAM)-1 expression in lung vascular endothelial cells.

    Abstract Source:

    Biol Pharm Bull. 2008 Jun;31(6):1104-8. PMID: 18520039

    Abstract Author(s):

    Yuki Masuda, Yukihito Murata, Masahiko Hayashi, Hiroaki Nanba

    Abstract:

    The anti-metastatic activity of MD-Fraction extracted from the maitake mushroom (Grifola frondosa) was examined in an experimental murine model of lung metastasis. Intraperitoneal administration of MD-Fraction 2 d before tumor implantation significantly inhibited lung metastasis of colon-26 carcinoma and B16/BL6 melanoma cells. In this model, MD-Fraction enhanced IL-12 production from antigen presenting cells (APCs). MD-Fraction treatment activated NK cells and increased cytotoxicity against YAC-1 and colon-26 carcinoma cells. Furthermore, the depletion of NK cells with anti-asialo GM1 abolished the inhibitory effect of MD-Fraction on lung metastasis of colon-26 cells. Ex vivo, B16/BL6 cell adhesion to LPS-activated murine lung vascular endothelial cells was inhibited by MD-Fraction and anti-intercellular adhesion molecule (ICAM)-1 antibody. These results suggest that MD-Fraction inhibits tumor metastasis by activating NK cells and APCs, and by suppressing of ICAM-1 leading to the inhibition of tumor cell adhesion to vascular endothelial cells.

  • Interleukin 2-regulated in vitro antibody production following a single spinal manipulative treatment in normal subjects📎

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    Abstract Title:

    Interleukin 2-regulated in vitro antibody production following a single spinal manipulative treatment in normal subjects.

    Abstract Source:

    Chiropr Osteopat. 2010 ;18:26. Epub 2010 Sep 8. PMID: 20825650

    Abstract Author(s):

    Julita A Teodorczyk-Injeyan, Marion McGregor, Richard Ruegg, H Stephen Injeyan

    Article Affiliation:
    Abstract:

    UNLABELLED:

    BACKGROUND:Our recent investigations have demonstrated that cell cultures from subjects, who received a single spinal manipulative treatment in the upper thoracic spine, show increased capacity for the production of the key immunoregulatory cytokine, interleukin-2. However, it has not been determined if such changes influence the response of the immune effector cells. Thus, the purpose of the present study was to determine whether, in the same subjects, spinal manipulation-related augmentation of the in vitro interleukin-2 synthesis is associated with the modulation of interleukin 2-dependent and/or interleukin-2-induced humoral immune response (antibody synthesis).

    METHODS:A total of seventy-four age and sex-matched healthy asymptomatic subjects were studied. The subjects were assigned randomly to: venipuncture control (n = 22), spinal manipulative treatment without cavitation (n = 25) or spinal manipulative treatment associated with cavitation (n = 27) groups. Heparinized blood samples were obtained from the subjects before (baseline) and then at 20 minutes and 2 hours post-treatment. Immunoglobulin (antibody) synthesis was induced in cultures of peripheral blood mononuclear cells by stimulation with conventional pokeweed mitogen or by application of human recombinant interleukin-2. Determinations of the levels of immunoglobulin G and immunoglobulin M production in culture supernatants were performed by specific immunoassays.

    RESULTS:The baseline levels of immunoglobulin synthesis induced by pokeweed mitogen or human recombinant interleukin-2 stimulation were comparable in all groups. No significant changes in the production of pokeweed mitogen-induced immunoglobulins were observed during the post-treatment period in any of the study groups. In contrast, the production of interleukin-2 -induced immunoglobulin G and immunoglobulin M was significantly increased in cultures from subjects treated with spinal manipulation. At 20 min post-manipulation, immunoglobulin G synthesis was significantly elevated in subjects who received manipulation with cavitation, relative to that in cultures from subjects who received manipulation without cavitation and venipuncture alone. At 2 hr post-treatment, immunoglobulin M synthesis was significantly elevated in subjects who received manipulation with cavitation relative to the venipuncture group. There were no quantitative alterations within the population of peripheral blood B or T lymphocytes in the studied cultures.

    CONCLUSION:Spinal manipulative treatment does not increase interleukin-2 -dependent polyclonal immunoglobulin synthesis by mitogen-activated B cells. However, antibody synthesis induced by interleukin-2 alone can be, at least temporarily, augmented following spinal manipulation. Thus, under certain physiological conditions spinal manipulative treatment might influence interleukin-2 -regulated biological responses.

  • Intravenous Vitamin C for reduction of cytokines storm in Acute Respiratory Distress Syndrome📎

    Abstract Title:

    Intravenous Vitamin C for reduction of cytokines storm in Acute Respiratory Distress Syndrome.

    Abstract Source:

    PharmaNutrition. 2020 Apr 21:100190. Epub 2020 Apr 21. PMID: 32322486

    Abstract Author(s):

    Alberto Boretti, Bimal Krishna Banik

    Article Affiliation:

    Alberto Boretti

    Abstract:

    The recent outbreak of Covid19 has required urgent treatments for numerous patients. No suitable vaccines or antivirals are available for Covid19. The efficiency against Covid19 of WHO therapies of choice, that are two antivirals developed for other pathologies, is controversial. Therefore, alternative approaches are required. Intravenous (IV) Vitamin C (Vit-C) has emerged as one of the other alternatives for this purpose. Here we review the effects of IV Vit-C on the immune system response, the antiviral properties of IV Vit-C, and finally the antioxidant properties of IV Vit-C to specifically address the cytokines' storm characteristic of the Acute Respiratory Distress Syndrome (ARDS) that occur in the later cycle of the Covid19 infectious disease.

  • Is Vitamin C Beneficial to Patients with CAP?

    Abstract Title:

    Is Vitamin C Beneficial to Patients with CAP?

    Abstract Source:

    Curr Infect Dis Rep. 2016 Aug ;18(8):24. PMID: 27363830

    Abstract Author(s):

    Yin Li, Guoping Li

    Article Affiliation:

    Yin Li

    Abstract:

    Community-acquired pneumonia (CAP) is one of the most common causes of morbidity and mortality in elderly and children. Vitamin C is known as a physiological antioxidant, regulating innate immune system in the lung. Vitamin C has been used to prevent and treat CAP. However, the use of vitamin C for preventing and treating CAP has been a subject of controversy. We aim to review the most significant findings about vitamin C supplementation in patients with pneumonia based on literature from the PubMed. First, we reviewed recent advances about the role of oxidative stress in CAP. Oxidative stress is a crucial component of the host defense system and inflammatory response. However, excessive oxidative stress can cause a systemic inflammatory response leading to tissue damage. The degree of oxidative stress has been associated with the severity of CAP. Vitamin C is beneficial to the host defense system by regulating the innate immunity in the lungs. We also discuss the prophylactic use of vitamin C for pneumonia. Vitamin C supplementation decreased the pneumonia risk in patients with vitamin C deficiency. However, it is not beneficial for prophylactic use of vitamin C to prevent pneumonia in the well-nourished population. Finally, we summarize the effect of vitamin C on mechanical ventilation used during respiratory failure. Administration of vitamin C decreases the duration of mechanical ventilation by decreasing oxidative stress.

  • Ketogenic diet activates protectiveγδ T cell responses against influenza virus infection. 📎

    Abstract Title:

    Ketogenic diet activates protectiveγδ T cell responses against influenza virus infection.

    Abstract Source:

    Sci Immunol. 2019 Nov 15 ;4(41). PMID: 31732517

    Abstract Author(s):

    Emily L Goldberg, Ryan D Molony, Eriko Kudo, Sviatoslav Sidorov, Yong Kong, Vishwa Deep Dixit, Akiko Iwasaki

    Article Affiliation:

    Emily L Goldberg

    Abstract:

    Influenza A virus (IAV) infection-associated morbidity and mortality are a key global health care concern, necessitating the identification of new therapies capable of reducing the severity of IAV infections. In this study, we show that the consumption of a low-carbohydrate, high-fat ketogenic diet (KD) protects mice from lethal IAV infection and disease. KD feeding resulted in an expansion ofγδ T cells in the lung that improved barrier functions, thereby enhancing antiviral resistance. Expansion of these protective γδ T cells required metabolic adaptation to a ketogenic diet because neither feeding mice a high-fat, high-carbohydrate diet nor providing chemical ketone body substratethat bypasses hepatic ketogenesis protected against infection. Therefore, KD-mediated immune-metabolic integration represents a viable avenue toward preventing or alleviating influenza disease.

  • Laughter up-regulates the genes related to NK cell activity in diabetes. 📎

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    Abstract Title:

    Laughter up-regulates the genes related to NK cell activity in diabetes.

    Abstract Source:

    Biomed Res. 2007 Dec;28(6):281-5. PMID: 18202517

    Abstract Author(s):

    Takashi Hayashi, Satoru Tsujii, Tadao Iburi, Tamiko Tamanaha, Keiko Yamagami, Rieko Ishibashi, Miyo Hori, Shigeko Sakamoto, Hitoshi Ishii, Kazuo Murakami

    Abstract:

    To elucidate the sustainable effects of laughter on gene expression, we recruited type 2 diabetic patients who were in-patient for receiving self-management education and examined time-dependent regulation for gene expression by laughter. Two-day experiment was performed. On one day, the patients watched comic video and laughed together with hospital staffs. On the other day, they participated in an inpatient diabetes educational program. Blood samples were collected before and 1.5, 4 h after watching comic video or spending lecture time, and changes in gene expression were comprehensively analyzed by microarray technique. Of the 41,000 genes analyzed, the laughter relatively up-regulated 39 genes, among which, 27 genes were relatively increased in the expression for all the observation period after watching comic video. By functional classification of these genes, 14 genes were found to be related to natural killer cell activity. No genes were included that are directly involved in blood glucose regulation, though successive suppression of postprandial blood glucose levels was observed. These results suggest that the laughter influences the expression of many genes classified into immune responses, and may contribute to amelioration of postprandial blood glucose elevation through a modulation of NK cell activity caused by up-regulation of relating genes.

  • Macrophage immunomodulatory activity of the polysaccharide isolated from Collybia radicata mushroom.

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    Abstract Title:

    Macrophage immunomodulatory activity of the polysaccharide isolated from Collybia radicata mushroom.

    Abstract Source:

    Int J Biol Macromol. 2018 Mar ;108:300-306. Epub 2017 Dec 6. PMID: 29222012

    Abstract Author(s):

    Yufeng Wang, Youqiu Tian, Jiangjuan Shao, Xu Shu, Jinxia Jia, Xiaojie Ren, Yue Guan

    Article Affiliation:

    Yufeng Wang

    Abstract:

    Polysaccharides from Collybia radicata mushroom (CRP) possess many functions, such as antiviral, anti-aging and hypolipidemic activities. However, little is known about their immunomodulatory activity. To address this issue, we did a thorough research into their immune effects on murine macrophages. The results showed that the 14942Da polysaccharide not only obviously improved the proliferation and phagocytosis of macrophages, but also induced the secretion of nitric oxide (NO), inducible nitric oxide synthase (iNOS) and cytokines, such as tumor necrosis factor-α (TNF-α) and interleukin factors (IL-1β, IL-6 and IL-10). At a concentration of 850.0μgmL, the polysaccharide stimulated their proliferation and phagocytosis to 2.1 and 3.4 times, respectively, as compared to the negative group. Meanwhile, it raised the production of NO by inducing iNOS in a concentration-dependent manner. Furthermore, it enhanced the release of these cytokines to multiples from 2.3 to 3.6 times. As an inhibitor of TLR4 (Toll-like Receptor 4), TAK242 suppressed the secretion of NO, iNOS and cytokines above 51%, and ORP acted on the cells mainly via TLR4. Consequently, the polysaccharide has a potent immunomodulatory activity by stimulating macrophages and can be considered as a novel potential immunopotentiator in medical and food industries.

  • Maximal exercise increases mucosal associated invariant T cell frequency and number in healthy young men.

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    Abstract Title:

    Maximal exercise increases mucosal associated invariant T cell frequency and number in healthy young men.

    Abstract Source:

    Eur J Appl Physiol. 2017 Sep 1. Epub 2017 Sep 1. PMID: 28864849

    Abstract Author(s):

    Erik D Hanson, Eli Danson, Catriona V Nguyen-Robertson, Jackson J Fyfe, Nigel K Stepto, David B Bartlett, Samy Sakkal

    Article Affiliation:

    Erik D Hanson

    Abstract:

    PURPOSE:Mucosal associated invariant T (MAIT) cells have properties of the innate and acquired immune systems. While the response to vigorous exercise has been established for most leukocytes, MAIT cells have not been investigated. Therefore, the purpose was to determine if MAIT cell lymphocytosis occurs with acute maximal aerobic exercise and if this response is influenced by exercise duration, cardiovascular fitness, or body composition.

    METHODS:Twenty healthy young males with moderate fitness levels performed an extended graded exercise test until volitional fatigue. Peripheral blood mononuclear cells were isolated from venous blood obtained prior and immediately after exercise and were labeled to identify specific T cell populations using flow cytometry.

    RESULTS:The percentage of MAIT cells relative to total T cells significantly increased from 3.0 to 3.8% and absolute MAIT cell counts increased by 2.2-fold following maximal exercise. MAIT cell subpopulation proportions were unchanged with exercise. Within cytotoxic T lymphocytes (CTL), MAIT cells consisted of 8% of these cells and this remained constant after exercise. MAIT cell counts and changes with exercise were not affected by body composition, VO2peak, or exercise duration.

    CONCLUSIONS:Maximal exercise doubled MAIT cell numbers and showed preferential mobilization within total T cells but the response was not influenced by fitness levels, exercise duration, or body composition. These results suggest that acute exercise could be used to offset MAIT cell deficiencies observed with certain pathologies. MAIT cells also make up a substantial proportion of CTLs, which may have implications for cytotoxicity assays using these cells.

  • Mindfulness meditation and the immune system: a systematic review of randomized controlled trials. 📎

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    Abstract Title:

    Mindfulness meditation and the immune system: a systematic review of randomized controlled trials.

    Abstract Source:

    Ann N Y Acad Sci. 2016 Jun ;1373(1):13-24. Epub 2016 Jan 21. PMID: 26799456

    Abstract Author(s):

    David S Black, George M Slavich

    Article Affiliation:

    David S Black

    Abstract:

    Mindfulness meditation represents a mental training framework for cultivating the state of mindful awareness in daily life. Recently, there has been a surge of interest in how mindfulness meditation improves human health and well-being. Although studies have shown that mindfulness meditation can improve self-reported measures of disease symptomatology, the effect that mindfulness meditation has on biological mechanisms underlying human aging and disease is less clear. To address this issue, we conducted the first comprehensive review of randomized controlled trials examining the effects of mindfulness meditation on immune system parameters, with a specific focus on five outcomes: (1) circulating and stimulated inflammatory proteins, (2) cellular transcription factors and gene expression, (3) immune cell count, (4) immune cell aging, and (5) antibody response. This analysis revealed substantial heterogeneity across studies with respect to patient population, study design, and assay procedures. The findings suggest possible effects of mindfulness meditation on specific markers of inflammation, cell-mediated immunity, and biological aging, but these results are tentative and require further replication. On the basis of this analysis, we describe the limitations of existing work and suggest possible avenues for future research. Mindfulness meditation may be salutogenic for immune system dynamics, but additional work is needed to examine these effects.

  • Mobilizing serum factors and immune cells through exercise to counteract age-related changes in cancer risk. 📎

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    Abstract Title:

    Mobilizing serum factors and immune cells through exercise to counteract age-related changes in cancer risk.

    Abstract Source:

    Exerc Immunol Rev. 2020 ;26:80-99. PMID: 32139350

    Abstract Author(s):

    Ji Hui Hwang, Jacqui McGovern, Geoffrey M Minett, Paul A Della Gatta, Llion Roberts, Jonathan M Harris, Erik W Thompson, Tony J Parker, Jonathan M Peake, Oliver Neubauer

    Article Affiliation:

    Ji Hui Hwang

    Abstract:

    An increasing body of evidence suggests that age-related immune changes and chronic inflammation contribute to cancer development. Recognizing that exercise has protective effects against cancer, promotes immune function, and beneficially modulates inflammation with ageing, this review outlines the current evidence indicating an emerging role for exercise immunology in preventing and treating cancer in older adults. A specific focus is on data suggesting that muscle- derived cytokines (myokines) mediate anti-cancer effects through promoting immunosurveillance against tumourigenesis or inhibiting cancer cell viability. Previous studies suggested that the exercise-induced release of myokines and other endocrine factors into the blood increases the capacity of blood serum to inhibit cancer cell growth in vitro. However, little is known about whether this effect is influenced by ageing. Prostate cancer is the second most common cancer in men. We therefore examined the effects of serum collected before and after exercise from healthy young and older men on the metabolic activity of androgen-responsive LNCaP and androgen-unresponsive PC3 prostate cancer cells. Exercise-conditioned serum collected from the young group did not alter cell metabolic activity, whereas post-exercise serum (compared with pre-exercise serum) from the older men inhibited the metabolic activity of LNCaP cancer cells. Serum levels of candidate cancer-inhibitory myokines oncostatin M and osteonectin increased in both age groups following exercise. Serum testosterone increased only in the younger men postexercise, potentially attenuating inhibitory effects of myokines on the LNCaP cell viability. The data from our study and the evidence in this review suggest that mobilizing serum factors and immune cells may be a key mechanism of how exercise counteracts cancer in the older population.

  • Moderate physical activity associated with a higher naïve/memory T-cell ratio in healthy old individuals: potential role of IL15.

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    Abstract Title:

    Moderate physical activity associated with a higher naïve/memory T-cell ratio in healthy old individuals: potential role of IL15.

    Abstract Source:

    Age Ageing. 2020 Mar 28. Epub 2020 Mar 28. PMID: 32221610

    Abstract Author(s):

    David B Bartlett, Niharika A Duggal

    Article Affiliation:

    David B Bartlett

    Abstract:

    INTRODUCTION:ageing is accompanied by impairments in immune responses due to remodelling of the immune system (immunesenescence). Additionally, a decline in habitual physical activity has been reported in older adults. We have recently published that specific features of immunesenescence, such as thymic involution and naïve/memory T-cell ratio, are prevented by maintenance of a high level of physical activity. This study compares immune ageing between sedentary and physically active older adults.

    METHODS:a cross-sectional study recruited 211 healthy older adults (60-79 years) and assessed their physical activity levels using an actigraph. We compared T- and B-cell immune parameters between relatively sedentary (n = 25) taking 2,000-4,500 steps/day and more physically active older adults (n = 25) taking 10,500-15,000 steps/day.

    RESULTS:we found a higher frequency of naïve CD4 (P = 0.01) and CD8 (P = 0.02) and a lower frequency of memory CD4 cells (P = 0.01) and CD8 (P = 0.04) T cells in the physically active group compared with the sedentary group. Elevated serum IL7 (P = 0.03) and IL15 (P = 0.003), cytokines that play an essential role in T-cell survival, were seen in the physically active group. Interestingly, a positive association was observed between IL15 levels and peripheral CD4 naïve T-cell frequency (P = 0.023).

    DISCUSSION:we conclude that a moderate level of physical activity may be required to give a very broad suppression of immune ageing, though 10,500-15,000 steps/day has a beneficial effect on the naïve T-cell pool.

  • Molecular basis for Poria cocos mushroom polysaccharide used as an antitumor drug in China.

    Abstract Title:

    Molecular basis for Poria cocos mushroom polysaccharide used as an antitumor drug in China.

    Abstract Source:

    Prog Mol Biol Transl Sci. 2019 ;163:263-296. Epub 2019 Apr 1. PMID: 31030751

    Abstract Author(s):

    Xiulian Li, Lina Ma, Lijuan Zhang

    Article Affiliation:

    Xiulian Li

    Abstract:

    Poria cocos is an edible mushroom known as"Fuling"in Chinese, which belongs to the fungus family of Polyporaceae. Poria cocos has been used as a Chinese traditional medicine for>2000 years. Indications for using it include promoting urination, to invigorate the spleen function, and to calm the mind. The bioactive components in Poria cocos include polysaccharides, triterpenoids, fatty acids, sterols, enzymes, etc. Poria cocos polysaccharide (PCP) accounts for 84% by weight among all constituents in the dried sclerotium. Biochemical and pharmacological studies reveal that PCP is the major bioactive component in Poria cocos and has a wide range of biological activities including antitumor, immunomodulation, anti-inflammation, anti-oxidation, anti-aging, anti-hepatitis, anti-diabetes, and anti-hemorrhagic fever effects. As a result,"Poria cocos polysaccharide oral solution"was developed and sold as an over-the-counter health supplement since 1970s. In 2015,"Polysaccharidum of Poria cocos oral solution"was approved as a drug by Chinese Food and Drug Administration (SFDA) for treating multiple types of cancers, hepatitis, and other diseases alone or during chemo- or radiation therapy for cancer patients. In this article, biochemical, preclinical and clinical studies of Poria cocos polysaccharide from 74 independent studies during the past 46 years (1970-2018) based on PubMed, VIP (Chongqing VIP Chinese Scientific Journals Database), CNKI (China National Knowledge Infrastructure), and Wanfang database searches are summarized. The structure, pharmacological effects, clinical efficacy, immune regulatory molecular mechanisms, and toxicity of PCP are deliberated to provide the data basis for PCP to serve as a clinically used antitumor drug.

  • Molecular basis for Poria cocos mushroom polysaccharide used as an antitumour drug in China📎

    Abstract Title:

    Molecular basis for Poria cocos mushroom polysaccharide used as an antitumour drug in China.

    Abstract Source:

    J Cell Mol Med. 2019 01 ;23(1):4-20. Epub 2018 Nov 15. PMID: 30444050

    Abstract Author(s):

    Xiulian Li, Yanli He, Pengjiao Zeng, Yong Liu, Meng Zhang, Cui Hao, Hua Wang, Zhihua Lv, Lijuan Zhang

    Article Affiliation:

    Xiulian Li

    Abstract:

    Poria cocos is an edible medicinal fungus known as"Fuling"in Chinese and has been used as a Chinese traditional medicine for more than two thousand years. Pharmacological studies reveal that polysaccharide is the most abundant substance in Poria cocos and has a wide range of biological activities including antitumour, immunomodulation, anti-inflammation, antioxidation, anti-ageing, antihepatitis, antidiabetics and anti-haemorrhagic fever effects. As a result,"Poria cocos polysaccharide oral solution"was developed and sold as an over-the-counter health supplement since 1970s. In 2015,"Polysaccharidum of Poria cocos oral solution"was approved as a drug by Chinese Food and Drug Administration for treating multiple types of cancers, hepatitis and other diseases alone or during chemo- or radiation therapy for patients with cancer. In this article, biochemical, preclinical and clinical studies of Poria cocos polysaccharide from 72 independent studies during the past 46 years (1970-2016) based on PubMed, VIP (Chongqing VIP Chinese Scientific Journals Database), CNKI (China National Knowledge Infrastructure) and Wanfang database searches are summarized. The structure, pharmacological effects, clinical efficacy, immunobalancing molecular mechanism and toxicity of Poria cocos polysaccharide are deliberated to provide a general picture of Poria cocos polysaccharide as a clinically used antitumour drug.

  • Mushroom Polysaccharides: Chemistry and Antiobesity, Antidiabetes, Anticancer, and Antibiotic Properties in Cells, Rodents, and Humans📎

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    Abstract Title:

    Mushroom Polysaccharides: Chemistry and Antiobesity, Antidiabetes, Anticancer, and Antibiotic Properties in Cells, Rodents, and Humans.

    Abstract Source:

    Foods. 2016 Nov 29 ;5(4). Epub 2016 Nov 29. PMID: 28231175

    Abstract Author(s):

    Mendel Friedman

    Article Affiliation:

    Mendel Friedman

    Abstract:

    More than 2000 species of edible and/or medicinal mushrooms have been identified to date, many of which are widely consumed, stimulating much research on their health-promoting properties. These properties are associated with bioactive compounds produced by the mushrooms, including polysaccharides. Althoughβ-glucans (homopolysaccharides) are believed to be the major bioactive polysaccharides of mushrooms, other types of mushroom polysaccharides (heteropolysaccharides) also possess biological properties. Here we survey the chemistry of such health-promoting polysaccharides and their reported antiobesity and antidiabetic properties as well as selected anticarcinogenic, antimicrobial, and antiviral effects that demonstrate their multiple health-promoting potential. The associated antioxidative, anti-inflammatory, and immunomodulating activities in fat cells, rodents, and humans are also discussed.The mechanisms of action involve the gut microbiota, meaning the polysaccharides act as prebiotics in the digestive system. Also covered here are the nutritional, functional food, clinical, and epidemiological studies designed to assess the health-promoting properties of polysaccharides, individually and as blended mixtures, against obesity, diabetes, cancer, and infectious diseases, and suggestions for further research. The collated information and suggested research needs might guide further studies needed for a better understanding of the health-promoting properties of mushroom polysaccharides and enhance their use to help prevent and treat human chronic diseases.

  • Mushroomβ-Glucan May Immunomodulate the Tumor-Associated Macrophages in the Lewis Lung Carcinoma📎

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    Abstract Title:

    Mushroomβ-Glucan May Immunomodulate the Tumor-Associated Macrophages in the Lewis Lung Carcinoma.

    Abstract Source:

    Biomed Res Int. 2015 ;2015:604385. Epub 2015 Jun 17. PMID: 26167490

    Abstract Author(s):

    Wan-Jhen Wang, Yu-Sheng Wu, Sherwin Chen, Chi-Feng Liu, Shiu-Nan Chen

    Article Affiliation:

    Wan-Jhen Wang

    Abstract:

    The present study showed that oral mushroom beta-glucan treatment significantly increased IFN-γ mRNA expression but significantly reduced COX-2 mRNA expression within the lung. For LLC tumor model, oral Ganoderma lucidum or Antrodia camphorata polysaccharides treatments significantly reduced TGF-β production in serum. In addition, IL-12 and IFN-γ mRNA expression were significantly increased, but IL-6, IL-10, COX-2, and TGF-β mRNA expression were substantially following oral mushroom polysaccharides treatments. The study highlights the efficacious effect of mushroom polysaccharides for ameliorating the immune suppression in the tumor microenvironment. Increased M1 phenotype of tumor-associated macrophages and attenuated M2 phenotype of tumor-associated macrophages could be achieved by ingesting mushroom polysaccharides.

  • Natural killer cells and lymphocytes increase in women with breast cancer following massage therapy.

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    Abstract Title:

    Natural killer cells and lymphocytes increase in women with breast cancer following massage therapy.

    Abstract Source:

    Int J Neurosci. 2005 Apr;115(4):495-510. PMID: 15809216

    Abstract Author(s):

    Maria Hernandez-Reif, Tiffany Field, Gail Ironson, Julia Beutler, Yanexy Vera, Judith Hurley, Mary Ann Fletcher, Saul Schanberg, Cynthia Kuhn, Monica Fraser

    Abstract:

    Women diagnosed with breast cancer received massage therapy or practiced progressive muscle relaxation (PMR) for 30-min sessions 3 times a week for 5 weeks or received standard treatment. The massage therapy and relaxation groups reported less depressed mood, anxiety, and pain immediately after their first and last sessions. By the end of the study, however, only the massage therapy group reported being less depressed and less angry and having more vigor. Dopamine levels, Natural Killer cells, and lymphocytes also increased from the first to the last day of the study for the massage therapy group. These findings highlight the benefit of these complementary therapies, most particularly massage therapy, for women with breast cancer.

  • Nitric oxide-mediated antitumor activity induced by the extract from Grifola frondosa (Maitake mushroom) in a macrophage cell line, RAW264.7.

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    Abstract Title:

    Nitric oxide-mediated antitumor activity induced by the extract from Grifola frondosa (Maitake mushroom) in a macrophage cell line, RAW264.7.

    Abstract Source:

    J Exp Clin Cancer Res. 2001 Dec;20(4):591-7. PMID: 11876556

    Abstract Author(s):

    I Sanzen, N Imanishi, N Takamatsu, S Konosu, N Mantani, K Terasawa, K Tazawa, Y Odaira, M Watanabe, M Takeyama, H Ochiai

    Abstract:

    We have investigated D-fraction (MDF) extracted from Grifola frondosa (Maitake mushroom) on the inducible nitric oxide synthase (iNOS)-mediated nitric oxide (NO) production in RAW264.7 (RAW) cells, a murine monocyte/macrophage cell line, with special reference to antitumor activity of MDF against human hepatoma-derived huH-1 cells. MDF could induce iNOS mRNA expression in RAW cells in a dose range of more than 30 microg/ml, but the effect of 10 microg/ml of MDF was negligible. The iNOS mRNA expression induced by 100 microg/ml of MDF was 6 hrs later, but lasted for a longer time than that of lipopolysaccharide (LPS), a representative iNOS inducer. Although iNOS mRNA levels in MDF-stimulated cells were almost equal to LPS-stimulated cells at the peak time, the cumulative amount of nitrite was only about 50% compared with that of LPS-treated cells. When huH-I cells were cultured in MDF containing media in a 24-well plate with inserted porous bottom in the presence or absence of RAW cells, the viability of huH-1 cells decreased significantly only in the presence of RAW cells in MDF dose-dependent manner. This antitumor activity of RAW cells in the presence of MDF was abolished or attenuated by the addition of L-NAME, a NOS inhibitor, confirming that this phenomenon is due to iNOS-mediated NO production by RAW cells, but not direct cytotoxic activity of MDF against huH-1 cells. These data suggest that MDF is a novel inducer for iNOS which contributes at least in part to antitumor activity of MDF.

  • Optimal Nutritional Status for a Well-Functioning Immune System Is an Important Factor to Protect against Viral Infections📎

    Abstract Title:

    Optimal Nutritional Status for a Well-Functioning Immune System Is an Important Factor to Protect against Viral Infections.

    Abstract Source:

    Nutrients. 2020 Apr 23 ;12(4). Epub 2020 Apr 23. PMID: 32340216

    Abstract Author(s):

    Philip C Calder, Anitra C Carr, Adrian F Gombart, Manfred Eggersdorfer

    Article Affiliation:

    Philip C Calder

    Abstract:

    Public health practices including handwashing and vaccinations help reduce the spread and impact of infections. Nevertheless, the global burden of infection is high, and additional measures are necessary. Acute respiratory tract infections, for example, were responsible for approximately 2.38 million deaths worldwide in 2016. The role nutrition plays in supporting the immune system is well-established. A wealth of mechanistic and clinical data show that vitamins, including vitamins A, B, B, C, D, E, and folate; trace elements, including zinc, iron, selenium, magnesium, and copper; and the omega-3 fatty acids eicosapentaenoic acid and docosahexaenoic acid play important and complementary roles in supporting the immune system. Inadequate intake and status of these nutrients are widespread, leading to a decrease in resistance to infections and as a consequence an increase in disease burden. Against this background the following conclusions are made: (1) supplementation with the above micronutrients and omega-3 fatty acids is a safe, effective, and low-cost strategy to help support optimal immune function; (2) supplementation above the Recommended Dietary Allowance (RDA), but within recommended upper safety limits, for specific nutrients such as vitamins C and D is warranted; and (3) public health officials are encouraged to include nutritional strategies in their recommendations to improve public health.

  • Pathophysiological Mechanisms in Gaseous Therapies for Severe Malaria. 📎

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    Abstract Title:

    Pathophysiological Mechanisms in Gaseous Therapies for Severe Malaria.

    Abstract Source:

    Infect Immun. 2016 Apr ;84(4):874-82. Epub 2016 Mar 24. PMID: 26831465

    Abstract Author(s):

    Ana Carolina A V Kayano, João Conrado K Dos-Santos, Marcele F Bastos, Leonardo J Carvalho, Júlio Aliberti, Fabio T M Costa

    Article Affiliation:

    Ana Carolina A V Kayano

    Abstract:

    Over 200 million people worldwide suffer from malaria every year, a disease that causes 584,000 deaths annually. In recent years, significant improvements have been achieved on the treatment of severe malaria, with intravenous artesunate proving superior to quinine. However, mortality remains high, at 8% in children and 15% in adults in clinical trials, and even worse in the case of cerebral malaria (18% and 30%, respectively). Moreover, some individuals who do not succumb to severe malaria present long-term cognitive deficits. These observations indicate that strategies focused only on parasite killing fail to prevent neurological complications and deaths associated with severe malaria, possibly because clinical complications are associated in part with a cerebrovascular dysfunction. Consequently, different adjunctive therapies aimed at modulating malaria pathophysiological processes are currently being tested. However, none of these therapies has shown unequivocal evidence in improving patient clinical status. Recently, key studies have shown that gaseous therapies based mainly on nitric oxide (NO), carbon monoxide (CO), and hyperbaric (pressurized) oxygen (HBO) alter vascular endothelium dysfunction and modulate the host immune response to infection. Considering gaseous administration as a promising adjunctive treatment against severe malaria cases, we review here the pathophysiological mechanisms and the immunological aspects of such therapies.

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