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Bibliografie

Bibliografie

Fibra

(1) Far infrared radiation (FIR): its biological effects and medical applications. Vatansever F & Hamblin MR. Photonics Lasers Med. 2012 November 1; 4: 255–266.

(2) Preliminary results of pinpoint plantar long-wavelength infrared light irradiation on blood glucose, insulin and stress hormones in patients with type 2 diabetes mellitus. Ryotokuji et al. Laser Ther. 2013;22(3):209-14.

(3) Effect of pinpoint plantar long-wavelenth infrared light irradation on subcutaneous temperature and stress markers. Ryotokuji et al. Laser Ther. 2013;22(2):93-102.

(4) Effects of whole-body cryotherapy vs. far-infrared vs. passive modalities on recovery from exercise-induced muscle damage in highly-trained runners. Hausswirth C et al. PLoS One. 2011;6(12):e27749.

(5) Effect of ceramic-impregnated “thermoflow” gloves on patients with Raynaud’s syndrome: randomized, placebo-controlled study. Ko GD, Berbrayer D. Altern Med Rev. 2002;7(4):328–35.

(6) Relieving pain in minor aphthous stomatitis by a single session of non-thermal carbon dioxide laser irradiation. Zand N, Ataie-Fashtami L, Djavid GE, Fateh M, Alinaghizadeh MR, Fatemi SM, Arbabi-Kalati F. Lasers Med Sci. 2009;24:515–520.

(7) Effect of optically modified polyethylene terephthalate fiber socks on chronic foot pain. York RMB and Gordon IL. BMC Complement Altern Med. 2009; 9: 10.

(8) Long-term antihypertensive effects of far-infrared ray irradiated from wooden board in spontaneously hypertensive rats. Chien-Tsong Lin, Ming-Ju Lin, Yung-Pin Chen, Ko-Chao Lee, Kuo-Chin Huang, Shun-Fu Chang, Cheng-Nan Chen BMC Complement Altern Med. 2015; 16: 57.

(9) Therapeutic photobiomodulation: nitric oxide and a novel function of mitochondrial cytochrome c oxidase. Poyton RO, Ball KA. Discov Med. 2011 Feb;11(57):154-9.

(10) Eells JT et al. Adv Exp Med Biol 2016

(11) Promotive effects of far-infrared ray on full-thickness skin wound healing in rats. Toyokawa H, Matsui Y, Uhara J, Tsuchiya H, Teshima S, Nakanishi H, Kwon AH, Azuma Y, Nagaoka T, Ogawa T, Kamiyama Y. Exp Biol Med (Maywood). 2003; 228(6):724–9.

(12) Far-infrared promotes burn wound healing by suppressing NLRP3 inflammasome caused by enhanced autophagy. Chiu HW, Chen CH, Chang JN, Chen CH, Hsu YH. J Mol Med (Berl). 2016 Feb 11.

(13) The Application of Far-Infrared in the Treatment of Wound Healing: A Short Evidence-Based Analysis. Lin YH, Li TS. J Evid Based Complementary Altern Med. 2015 Dec 23. pii: 2156587215623436.

(14) Far-infrared radiation protects viability in a cell model of Spinocerebellar Ataxia by preventing polyQ protein accumulation and improving mitochondrial function. Chang JC et al., Sci Rep, 2016 Jul 29;6:30436

(15) Dr. Yamasaki Toshio, „The scientific basis and therapeutic benefits of Far Infrared Ray Therapy“ im „Human history and publishing house“, S. Kyou, Mai 1987

(16) Far-infrared suppresses skin photoaging in ultraviolet B-exposed fibroblasts and hairless mice. Chiu HW,  Chen CH,  Chen YJ, Hsu YH.PLoS One. 2017 Mar 16;12(3):e0174042. doi: 10.1371/journal.pone.0174042. eCollection 2017.

(17) Far-infrared ray for treating chronic lower extremity lymphedema with dermatolymphangioadenitis: a postoperative complication of gynecological tumor resection.

Li K1, Xu H1, Liu NF2, Sadigh P3, Evans V4, Zhang YX5. Arch Gynecol Obstet. 2017 Jun;295(6):1441-1450. doi: 10.1007/s00404-017-4371-3. Epub 2017 Apr 22.

(18) Efficacy and safety of far infrared radiation in lymphedema treatment: clinical evaluation and laboratory analysis. Li K1, Zhang Z1, Liu NF1, Feng SQ1, Tong Y2, Zhang JF3, Constantinides J4, Lazzeri D5,6, Grassetti L6, Nicoli F4,5,7, Zhang YX8. Lasers Med Sci. 2017 Apr;32(3):485-494. doi: 10.1007/s10103-016-2135-0. Epub 2017 Jan 26.

(19) Nobelpreis für Medizin und Physiologie 2016 für Yoshinori Ohsumi für die Entdeckung und Beschreibung von Autophagie

Bibliografie

Funghi vitali

Reinhard Agerer, Warum Mykologie?, http://www.sysbot.biologie.uni-muenchen.de/en/people/agerer/warum_mykologie.html; München 2012.

Jan I. Lelley: „Die Heilkraft der Pilze“. B.o.s.s Druck und Medien GmbH, 2008, ISBN-Nr. 978-3- 933969-78-1.

Ivo Bianchi: „Moderne Mykotherapie“. Hinckel Druck, Wertheim, Deutsche Zweitauflage Mai 2009, ISBN 978-3-00-025880-0.

Xu H et al.: „The α-aminoadipate pathway for lysine biosynthesis in fungi“. Cell Biochemistry and Biophysics, 2006, 46 (1): 43–64.

Joachim Rösecke: „Isolierung und Identifizierung von Inhaltsstoffen aus Holz zersetzenden Basidiomyceten“. Dissertation, 2000, Universität Hamburg.

Kemami Wangun, Hilaire Vignie: “Isolation, Structure Elucidation and Evaluation of Anti-inflammatory and Anti-infectious Activities of Fungal Metabolites”. Dissertation, 2006, Friedrich-Schiller-Universität Jena.

Kandefer-Szerszeń et al.: „Fungal nucleic acids as interferon inducers“. Acta microbiologica Polonica, 1979, 28 (4): 277–91.

Manuela Harms: „Etablierung und Verwendung von humanen Keratinozytenmodellen zur Auffindung von Naturstoffen mit UV-schützenden und regenerationsfördernden Wirkstoffen“. Dissertation, 2011, Ernst-Moritz-Arndt-Universität Greifswald

Shoji Shibataoshihiro Nishikawa et al.: “Antitumor studies on some extracts of basidiomycetes“. GANN, April 1968, 59, 159-161.

S.P. Wasser: “Medicinal mushrooms as a source of antitumor and immunomodulating polysaccharides”. Appl Microbiol Biotechnol, 2002, 60:258–274.

Ferreira IC et al.: „Compounds from wild mushrooms with antitumor potential”. Anticancer Agents Med Chem., 2010 Jun, 10(5):424-36.

Mizuno T et al.: ”Antitumor-active substances from mushrooms”. Food Rev Int., 1995, 11:23–61. Leung M.Y.K et al.: “Polysaccharide biological response modifiers”. Immunology Letters, Volume 105, Issue 2, 15 June 2006, 101-114.

Godfrey Chan et al.: “The effects of β-glucan on human immune and cancer cell”. Journal of Hematology & Oncology, 2009.

Brown GD et al.: “Dectin-1 mediates the biological effects of beta-glucans”. The Journal of experimental medicine, 2003, 197(9): 1119-1124

Brown Gordon D. und Gordon Siamon: “Immune recognition: A new receptor for β-glucans”. Nature 413, 6 September 2001, 36-37.

Rice PJ et al.: “Oral delivery and gastrointestinal absorption of soluble glucans stimulate increased resistance to infectious challenge”. The Journal of pharmacology and experimental therapeutics, 2005, 314(3):1079-1086.

Kutalek Ruth: “Ethnomykologie - eine Übersicht“. Österr. Z. Pilzk., 2002, 11, 79. Borchers Andrea T. et al.: „Mushrooms, Tumors, and Immunity“. Experimental Biology and Medicine, 2004, 229:393-406.

Fortes Renata C. et al.: “Immunological, Hematological, and Glycemia Effects of Dietary Supplementation with Agaricus sylvaticus on Patients’ Colorectal Cancer”. Experimental Biology and Medicine, 2009, 234:53-62.

Lindequist Ulrike et al.: „The Pharmacological Potential of Mushrooms.” eCAM 2, 2005, 285-299. Wasser Solomon P. “Shiitake (Lentinus edodes) “Encyclopedia of Dietary Supplements DOI:10.1081/ E-EDS-120024880.

Lui, E. “Free Radical Scavenging Activities of Mushroom Polysaccharide Extracts.” Life Sci 60:10, 1997, 763-771.

Wan-Jhen Wang et al.: „Mushroom β-Glucan May Immunomodulate the Tumor-Associated Macrophages in the Lewis Lung Carcinoma; BioMed Research International, Cancer Immunology and Immunotherapy, Volume 2015, Article ID 604385, 15.

Priscila Raquel Martins et al.: “Polysaccharide-rich fraction of Agaricus brasiliensis enhancesthe candidacidal activity of murine macrophages”; Mem Inst Oswaldo Cruz, Rio de Janeiro, May 2008, Vol. 103(3): 244-250.

Masanori Noguchi et al.: “Randomized clinical trial of an ethanol extract of Ganoderma lucidum in men with lower urinary tract symptoms“; Asian J Androl, 2008, 10 (5): 777–785. Ooi VE, Liu F: „Immunomodulation and anti-cancer activity of polysaccharide-protein complexes“; Curr Med Chem, Jul 2000, 7(7):715-29.

Tsang KW et al.: „Coriolus versicolor polysaccharide peptide slows progression of advanced nonsmall cell lung cancer”; Respir Med, Jun 2003, 97(6):618-24.

Maja Kozarski et al.: „Antioxidative and immunomodulating activities of polysaccharide extracts of the medicinal mushrooms Agaricus bisporus, Agaricus brasiliensis, Ganoderma lucidum and Phellinus linteus”; Food Chemistry, December 2011, 129(4):1667-1675.

Ohtsuru, M. “Anti-obesity Activity Exhibited by Orally Administered Powder of Maitake Mushroom (Gifola frondosa).” Anshin 7, 1992, 198-200.

Yang, B.K. et al.: ”Hypolipidemic Effect of an Exo-biopolymer Produced from a Submerged Mycelial Culture of Hericium erinaceus.” Biosci Biotechnol Biochem 67:6, 2003, 1292-1298.

Haijaj, H. et al. “Effect of 26-oxygeosterols from Ganoderma lucidum and their Activity as Cholesterol Synthesis Inhibitors.” Appl Environ Microbiol 71:7, 2005, 3653-3658.

Kim, Y.W. et al. “Anti-diabetic Activity of Beta-glucans and Their Enzymatically Hydrolyzed Oligosaccharides from Agaricus blazei.” Biotechnol Lett 27:7, 2005, 483-487.

A.S. Daba and O.U.Ezeronye: “Anti-cancer effect of polysaccharides isolated from higher basidiomycetes mushrooms”; African Journal of Biotechnology Vol. 2 (12), December 2003, 672-678.

Wang, J.C. et al.: “Hypoglycemic Effect of Extract of Hericium erinaceus.” J Sci Food Agric 85:4, 2005, 641-646.

Hong Fu et al.: “Inhibition of Lentinus edodes polysaccharides against liver tumour growth“; International Journal of the Physical Sciences Vol. 6(1), 4 January, 2011, 116-120.

S.W. KIM et al.: Submerged Production and Characterization of Grifola frondosa Polysaccharides – A New Application to Cosmeceuticals“; Food Technol. Biotechnol., 2007, 45 (3) 295–305.

K.H. WONG et al.: „Effects of Cultivation Techniques and Processing on Antimicrobial and Antioxidant Activities of Hericium erinaceus (Bull.:Fr.) Pers. Extracts“; Food Technol. Biotechnol., 2009, 47 (1) 47–55.

Ejikeme Nwachukwu and Henrietta O. Uzoeto: „Antimicrobial activity of some local mushrooms on pathogenic isolates“; Journal of Medicinal Plants Research Vol. 4(23), December 2010, 2460-2465, 18.

Bilal Ahmad Wani et al.: “Nutritional and medicinal importance of mushrooms“; Journal of Medicinal Plants Research Vol. 4(24), December 2010, 2598-2604, 18.

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