CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Candida Albicans

  • Antimicrobial Activity of Extracts of the Oyster Culinary Medicinal Mushroom Pleurotus ostreatus (Higher Basidiomycetes) and Identification of a New Antimicrobial Compound.

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    Abstract Title:

    Antimicrobial Activity of Extracts of the Oyster Culinary Medicinal Mushroom Pleurotus ostreatus (Higher Basidiomycetes) and Identification of a New Antimicrobial Compound.

    Abstract Source:

    Int J Med Mushrooms. 2015 ;17(6):579-90. PMID: 26349515

    Abstract Author(s):

    Ahmed M Younis, Fang-Sheng Wu, Hussien H El Shikh

    Article Affiliation:

    Ahmed M Younis

    Abstract:

    Pleurotus ostreatus is an edible mushroom that also has high medicinal values. In this study, P. ostreatus was tested for its ability to inhibit the growth of fungi and bacteria. The freeze-dried fruiting body, broth from submerged culture, and mycelial biomass of P. ostreatus were extracted using alcohols and water as solvents. The extracts were then tested for their antimicrobial activity against the growth of fungi and bacteria. It was observed that the water extract from fruiting bodies had the strongest effect in inhibiting the growth of most fungi. The most sensitive test microfungi to the inhibition were Candida albicans, Cryptococcus humicola, and Trichosporon cutaneum, and the most sensitive test bacteria were Staphylococcus aureus followed by Escherichia coli. Water extracts from culture broth or mycelial biomass were moderately inhibitive to the growth of fungi and bacteria. The alcohol-based solvents from all samples had much less antimicrobial activity against most test microorganisms. An antimicrobial compound was purified from the water extracts of fruiting bodies with Sephadex G 100 column chromatography and characterized by infrared absorption spectrum (IR), nuclear magnetic resonance (NMR), and mass spectroscopic analysis. We have identified this compound to be 3-(2-aminopheny1thio)-3-hydroxypropanoic acid. This purified compound had a minimum inhibitory concentration of 30µg/mL and 20 µg/mL against the growth of fungi and bacteria, respectively.

  • Candida causes memory loss—and perhaps Alzheimer's too

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    Candida causes memory loss—and perhaps Alzheimer's too image

    Fungal infections such as Candida can cross the blood-brain barrier to cause temporary memory loss, researchers have found.

    Candida albicans is a yeast infection that causes inflammation in the brain and leads to mild and temporary memory problems. The yeast causes granuloma-type structures that are similar to plaques seen in Alzheimer's sufferers.

  • Eradication of C. albicans and T. rubrum with photoactivated indocyanine green, Citrus aurantifolia essential oil and fluconazole.

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    Abstract Title:

    Eradication of C. albicans and T. rubrum with photoactivated indocyanine green, Citrus aurantifolia essential oil and fluconazole.

    Abstract Source:

    Photodiagnosis Photodyn Ther. 2015 Jun ;12(2):289-97. Epub 2015 Jan 5. PMID: 25573286

    Abstract Author(s):

    Reza Fekrazad, Arash Poorsattar Bejeh Mir, Vadood Ghasemi Barghi, Masoomeh Shams-Ghahfarokhi

    Article Affiliation:

    Reza Fekrazad

    Abstract:

    BACKGROUND:We aimed to evaluate the efficacy of alternative therapies rather than the current antifungal conventional therapy and with assessing the hypothesis of photoactivation of citrus essential oil, fluconazole and Indocyanine green to treat two common mucocutaneous fungal infections.

    METHODS:Suspensions of Candida albicans and Tricophyton rubrum containing 10(6)cells/ml was prepared. Equal samples were treated with infrared (IR) laser irradiation (810 nm, 55 J/cm(2)) in the presence of Indocyanine green (Emundo, 1 mg/ml) (IRLE), photoactivated Citrus aurantifolia essential oil (EO) with sequential exposure to natural and tungsten lights (CE), control non-activated essential oil (CC), laser alone (IRL), indocyanine green alone (E) and neither of treatments as the control group (C). Additional fluconazole (FL, 25.6μg/ml) and IR activated fluconazole (IRLFL) groups were designed for T. rubrum fungi. Inoculums were serially diluted to 10(-2) and 10(-4) and streaked on Sabouraud dextrose agar plates. Final outcomes were assessed as the percent of reduction.

    RESULTS:Cell reduction rates (%) in C. albicans groups were 99.99 (CE), 91.67 (IRLE), 86.67 (CC), 72.37 (E) and 67.27 (RL). Whereas, a 99.99 (CE), 89.99 (CC), 74.5 (IRLE), 64.5 (E), 38.5 (IRLF), 37.5 (RL), and 31 (FL) percent eradication was achieved in T. rubrum groups.

    CONCLUSION:Photoactivation of Citrus EO increased the killing capability by 10-13%. A modest 7.5% augmented effect was observed with IR activation of Fluconazole. Both Citrus EO and photothermal-photodynamic therapy with ICG and IR diode laser exhibited remarkable lethal effect on fungal cells. Candida viable cells are more susceptible to laser only and ICG only treatments than Tricophyton cells.

  • High-dose ascorbate with low-dose amphotericin B attenuates severity of disease in a model of the reappearance of candidemia during sepsis in the mouse. 📎

    Abstract Title:

    High-dose ascorbate with low-dose amphotericin B attenuates severity of disease in a model of the reappearance of candidemia during sepsis in the mouse.

    Abstract Source:

    Am J Physiol Regul Integr Comp Physiol. 2015 Aug 1 ;309(3):R223-34. PMID: 25994956

    Abstract Author(s):

    Asada Leelahavanichkul, Poorichaya Somparn, Tanabodee Bootprapan, Hongbin Tu, Pattarin Tangtanatakul, Ratchanok Nuengjumnong, Navaporn Worasilchai, Khajohn Tiranathanagul, Somchai Eiam-ong, Mark Levine, Ariya Chinampon, Nattachai Srisawat

    Article Affiliation:

    Asada Leelahavanichkul

    Abstract:

    Amphotericin B (Ampho B) isa fungicidal drug that causes cell wall injury. Pharmacological ascorbate induces the extracellular prooxidants, which might enter the Ampho B-induced cell wall porosity and act synergistically.W e tested low-dose Ampho B with a short course of pharmacological ascorbate using a mouse model of sepsis preconditioned with an injection of Candida albicans 6 h prior to cecal ligation and puncture (CLP). In this model, candidemia reappeared as early as 6 h after CLP with a predictably high mortality rate. This characteristic mimics sepsis in the phase of immunosuppression inpatients. Using the model, at 12- and 18-h post-CLP, we administered isotonic (pH neutralized) pharmacological ascorbate intravenously with low-dose Ampho B or sodium deoxycholate, vehicle-controlled, administered IP. The survival rate of low-dose Ampho B plus ascorbate was 53%, compared with<11% for low-dose Ampho B or high-dose Ampho B alone. In addition, a beneficial effect was demonstrated in terms of kidney damage,liver injury, spleen histopathology, and serum markers at 24 h after CLP. Kidney injury was less severe in low-dose Ampho B plus ascorbate combination therapy due to less severe sepsis. Moreover, ascorbate enhanced the effectiveness of phagocytosis against C. albicans in human phagocytic cells. Taken together, the data indicate that the new mouse model simulates sepsis-induced immunosuppression and that the combination of pharmacological ascorbate with an antifungal drug is a potentially effective treatment that may reduce nephrotoxicity, and perhaps also increase fungicidal activity in patients with systemic candidiasis caused by Candida albicans.

  • Mycelial Growth and Antimicrobial Activity of Pleurotus Species (Agaricomycetes).

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    Abstract Title:

    Mycelial Growth and Antimicrobial Activity of Pleurotus Species (Agaricomycetes).

    Abstract Source:

    Int J Med Mushrooms. 2018 ;20(2):191-200. PMID: 29773010

    Abstract Author(s):

    Teresa A Castillo, Renata A Lemos, José Raimundo G Pereira, José Maria A Alves, Maria Francisca S Teixeira

    Article Affiliation:

    Teresa A Castillo

    Abstract:

    The objective of this study was to analyze mycelial growth under different culture conditions and antimicrobial activity of Pleurotus ostreatus (Jacq.: Fr.) Kumm. (DPUA 1533) and P. ostreatus (Jacq.: Fr.) Kumm. cv. Florida (DPUA 1534) against fungi and bacteria of medical importance. The growth of Pleurotus species was evaluated in natural and complex media, with and without light, at 25°C and 28°C for 8, 15, and 30 days. Candida albicans (DPUA 1336), Cryptococcus laurentii (DPUA 1501), Aspergillus flavus (DPUA 1836), Escherichia coli (DAUPE 224), and Mycobacterium smegmatis (ATCC 607) were used to test antibiosis. Under all growth conditions in vitro, Pleurotus species evidencedgrowth and high density of mycelia on potato dextrose agar and Sabouraud agar with yeast extract; mycelial growth but lesser mycelial density was observed on rice bran extract agar. Organic mycelial extracts of Pleurotus species exhibited potential antibacterial and antifungal activity, and were selective for the tested microorganisms.

  • Photodynamic therapy of oral Candida infection in a mouse model. 📎

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    Abstract Title:

    Photodynamic therapy of oral Candida infection in a mouse model.

    Abstract Source:

    J Photochem Photobiol B. 2016 Apr 1 ;159:161-168. Epub 2016 Apr 1. PMID: 27074245

    Abstract Author(s):

    Fernanda Freire, Cleber Ferraresi, Antonio Olavo C Jorge, Michael R Hamblin

    Article Affiliation:

    Fernanda Freire

    Abstract:

    Species of the fungal genus Candida, can cause oral candidiasis especially in immunosuppressed patients. Many studies have investigated the use of photodynamic therapy (PDT) to kill fungi in vitro, but this approach has seldom been reported in animal models of infection. This study investigated the effects of PDT on Candida albicans as biofilms grown in vitro and also in an immunosuppressed mouse model of oral candidiasis infection. We used a luciferase-expressing strain that allowed non-invasive monitoring of the infection by bioluminescence imaging. The phenothiazinium salts, methylene blue (MB) and new methylene blue (NMB) were used as photosensitizers (PS), combined or not with potassium iodide (KI), and red laser (660nm) at four different light doses (10J, 20J, 40J and 60J). The best in vitro log reduction of CFU/ml on biofilm grown cells was: MB plus KI with 40J (2.31 log; p<0.001); and NMB without KI with 60J (1.77 log; p<0.001). These conditions were chosen for treating the in vivo model of oral Candida infection. After 5days of treatment the disease was practically eradicated, especially using MB plus KI with 40J. This study suggests that KI can potentiate PDT of fungal infection using MB (but not NMB) and could be a promising new approach for the treatment of oral candidiasis.

  • The Pelargonium sidoides Extract EPs 7630 Drives the Innate Immune Defense by Activating Selected MAP Kinase Pathways in Human Monocytes📎

    Abstract Title:

    The Pelargonium sidoides Extract EPs 7630 Drives the Innate Immune Defense by Activating Selected MAP Kinase Pathways in Human Monocytes.

    Abstract Source:

    PLoS One. 2015 ;10(9):e0138075. Epub 2015 Sep 25. PMID: 26406906

    Abstract Author(s):

    Katrin Witte, Egon Koch, Hans-Dieter Volk, Kerstin Wolk, Robert Sabat

    Article Affiliation:

    Katrin Witte

    Abstract:

    Pelargonium sidoides is a medical herb and respective extracts are used very frequently for the treatment of respiratory tract infections. However, the effects of Pelargonium sidoides and a special extract prepared from its roots (EPs 7630) on human immune cells are not fully understood. Here we demonstrate that EPs 7630 induced a rapid and dose-dependent production of TNF-α, IL-6, and IL-10 by human blood immune cells. This EPs 7630-induced cytokine profile was more pro-inflammatory in comparison with the profile induced by viral or bacterial infection-mimicking agents. The search for EPs 7630 target cells revealed that T-cells did not respond to EPs 7630 stimulation by production of TNF-α, IL-6, or IL-10. Furthermore, pretreatment of T-cells with EPs 7630 did not modulate their TNF-α, IL-6, and IL-10 secretion during subsequent activation. In contrast to lymphocytes, monocytes showed clear intracellular TNF-α staining after EPs 7630 treatment. Accordingly,EPs 7630 predominantly provoked activation of MAP kinases and inhibition of p38 strongly reduced the monocyte TNF-α production. The pretreatment of blood immune cells with EPs 7630 lowered their secretion of TNF-α and IL-10 and caused an IL-6 dominant response during second stimulation with viralor bacterial infection-mimicking agents. In summary, we demonstrate that EPs 7630 activates human monocytes, induces MAP kinase-dependent pro-inflammatory cytokines in these cells, and specifically modulates their production capacity of mediators known to lead to an increase of acute phase proteinproduction in the liver, neutrophil generation in the bone marrow, and the generation of adaptive Th17 and Th22 cells.

  • The Pelargonium sidoides Extract EPs 7630 Drives the Innate Immune Defense by Activating Selected MAP Kinase Pathways in Human Monocytes📎

    Abstract Title:

    The Pelargonium sidoides Extract EPs 7630 Drives the Innate Immune Defense by Activating Selected MAP Kinase Pathways in Human Monocytes.

    Abstract Source:

    PLoS One. 2015 ;10(9):e0138075. Epub 2015 Sep 25. PMID: 26406906

    Abstract Author(s):

    Katrin Witte, Egon Koch, Hans-Dieter Volk, Kerstin Wolk, Robert Sabat

    Article Affiliation:

    Katrin Witte

    Abstract:

    Pelargonium sidoides is a medical herb and respective extracts are used very frequently for the treatment of respiratory tract infections. However, the effects of Pelargonium sidoides and a special extract prepared from its roots (EPs 7630) on human immune cells are not fully understood. Here we demonstrate that EPs 7630 induced a rapid and dose-dependent production of TNF-α, IL-6, and IL-10 by human blood immune cells. This EPs 7630-induced cytokine profile was more pro-inflammatory in comparison with the profile induced by viral or bacterial infection-mimicking agents. The search for EPs 7630 target cells revealed that T-cells did not respond to EPs 7630 stimulation by production of TNF-α, IL-6, or IL-10. Furthermore, pretreatment of T-cells with EPs 7630 did not modulate their TNF-α, IL-6, and IL-10 secretion during subsequent activation. In contrast to lymphocytes, monocytes showed clear intracellular TNF-α staining after EPs 7630 treatment. Accordingly,EPs 7630 predominantly provoked activation of MAP kinases and inhibition of p38 strongly reduced the monocyte TNF-α production. The pretreatment of blood immune cells with EPs 7630 lowered their secretion of TNF-α and IL-10 and caused an IL-6 dominant response during second stimulation with viralor bacterial infection-mimicking agents. In summary, we demonstrate that EPs 7630 activates human monocytes, induces MAP kinase-dependent pro-inflammatory cytokines in these cells, and specifically modulates their production capacity of mediators known to lead to an increase of acute phase proteinproduction in the liver, neutrophil generation in the bone marrow, and the generation of adaptive Th17 and Th22 cells.

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